From 5eb98c45d92a898237a5354f302e20c4a73b02bf Mon Sep 17 00:00:00 2001 From: "St. Elmo Wilken" Date: Tue, 7 Jan 2025 13:51:01 +0100 Subject: [PATCH 01/45] add srba example skeleton --- docs/src/examples/07-srba.jl | 521 + docs/src/examples/data/README.md | 14 + docs/src/examples/data/e_coli_complex.tsv | 972 + docs/src/examples/data/e_coli_uniprot.tsv | 4519 + .../data/ecoli_gene_product_aa_counts.tsv | 86101 ++++++++++++++++ docs/src/examples/data/ecoli_kcats.tsv | 1871 + docs/src/examples/data/ecoli_ribosomes.tsv | 16 + 7 files changed, 94014 insertions(+) create mode 100644 docs/src/examples/07-srba.jl create mode 100644 docs/src/examples/data/README.md create mode 100644 docs/src/examples/data/e_coli_complex.tsv create mode 100644 docs/src/examples/data/e_coli_uniprot.tsv create mode 100644 docs/src/examples/data/ecoli_gene_product_aa_counts.tsv create mode 100644 docs/src/examples/data/ecoli_kcats.tsv create mode 100644 docs/src/examples/data/ecoli_ribosomes.tsv diff --git a/docs/src/examples/07-srba.jl b/docs/src/examples/07-srba.jl new file mode 100644 index 00000000..7e3a42b0 --- /dev/null +++ b/docs/src/examples/07-srba.jl @@ -0,0 +1,521 @@ + +# Copyright (c) 2021-2024, University of Luxembourg #src +# Copyright (c) 2021-2024, Heinrich-Heine University Duesseldorf #src +# #src +# Licensed under the Apache License, Version 2.0 (the "License"); #src +# you may not use this file except in compliance with the License. #src +# You may obtain a copy of the License at #src +# #src +# http://www.apache.org/licenses/LICENSE-2.0 #src +# #src +# Unless required by applicable law or agreed to in writing, software #src +# distributed under the License is distributed on an "AS IS" BASIS, #src +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. #src +# See the License for the specific language governing permissions and #src +# limitations under the License. #src + +# # Simplified resource balance analysis +# Resource balance analysis models are an extension of enzyme constrained +# models. They can incorporate translation, transcription and replication +# effects to dramatically increase the realism of a metabolic model. To +# demonstrate the ease of incrementally building complex models in COBREXA, we +# will build a simplified resource balance analysis model from the ground up, +# primarily focussing on translation extensions to an enzyme constrained flux +# balance analysis model. + +using COBREXA + +# In contrast to the previous examples, we will use the iML1515 model of _E. +# coli_, which is the latest, full-scale model of the organism. + +download_model( + "http://bigg.ucsd.edu/static/models/iML1515.json", + "iML1515.json", + "b0f9199f048779bb08a14dfa6c09ec56d35b8750d2f99681980d0f098355fbf5", +) + +# Additional to COBREXA, a solver, and the model format package, we will need a +# ConstraintTrees to simplify the model construction process: + +import AbstractFBCModels as A +import JSONFBCModels +import ConstraintTrees as C +import Gurobi # TODO maybe SCIP is better... can't test on windows +import HiGHS + +# load the model +model = load_model("iML1515.json", A.CanonicalModel.Model) + +# save biomass composition for later +biomass = model.reactions["BIOMASS_Ec_iML1515_core_75p37M"] +# remove the biomass functions for RBA +delete!(model.reactions, "BIOMASS_Ec_iML1515_WT_75p37M") +delete!(model.reactions, "BIOMASS_Ec_iML1515_core_75p37M") + +# Below we will make the assumption that the membrane space is limited, in +# addition to the usual total proteome capacity limitation. First, we identify +# membrane reactions (transporting metabolites between compartments) +membrane_rids = [ + rid for (rid, r) in model.reactions if + length(unique(last.(split.(keys(r.stoichiometry), "_")))) != 1 +] + +# Next, we identify membrane proteins as the ones catalyzing the membrane reactions from above +membrane_gids = unique( + g for + rid in membrane_rids if !isnothing(A.reaction_gene_association_dnf(model, rid)) for + gs in A.reaction_gene_association_dnf(model, rid) for g in gs +) + +# ## Collect data for RBA model +# RBA models require a lot of data. Below we have processed the data into a +# format that is amenable to model building. Sources of the data are shown where +# it is instantiated. In essence, we merely load the information into +# COBREXA/Julia objects. + +#md # ```@raw html +#md #
Data for reaction turnover numbers +#md # ``` + +import Tables, CSV # for data loading +import Statistics: mean + +data_root = joinpath(@__DIR__, "src", "examples", "data") + +# +# ### Helper functions +# + +# Checks if reaction has a gene reaction rule assigned to it. +function has_reaction_grr(model, rid) + grr = A.reaction_gene_association_dnf(model, rid) + if isnothing(grr) || isempty(grr) || isnothing(first(grr)) || isempty(first(grr)) + return false + end + return true +end + +# This adds kcats to +# 1] transporters (if the kcat is missing and the transporter has a grr) +# 2] physiological reactions which don't have a kcat (but they get an average +# one if grr is present) +function add_kcats!( + model, + kcat_data; + transporter_kcat = 180.0, + average_kcat = 25.0, + block_brackets = false, +) + for rid in A.reactions(model) + !has_reaction_grr(model, rid) && continue + rxn = A.reaction_stoichiometry(model, rid) + if block_brackets + suffixes = [split(met, "[")[end] for met in keys(rxn)] + else + suffixes = [split(met, "_")[end] for met in keys(rxn)] + end + if length(unique(suffixes)) > 1 + if !haskey(kcat_data, rid) + kcat_data[rid] = transporter_kcat + end + end + end + + for rid in A.reactions(model) + !has_reaction_grr(model, rid) && continue + if !haskey(kcat_data, rid) + kcat_data[rid] = average_kcat + elseif haskey(kcat_data, rid) + continue + end + end + + return nothing +end + +# Finds mass of each gene product in a model +function get_protein_masses(model, proteome_data) + avg_mass = (mean([x[1] for x in values(proteome_data)]),) + return Dict{String,Float64}( + gid => get(proteome_data, gid, avg_mass)[1] for gid in A.genes(model) + ) +end + +# Assemble reaction isozymes from kcat data, Uniprot proteome data, and ComplexPortal data. +# In a set of complexes, this also gets rid of low confidence complexes if any +# complex in the set can be found in the ComplexPortal. +function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) + # protein stoich map, infer from uniprot + mer_map = Dict( + "Homomonomer" => 1, + "Monomer" => 1, + "Homodimer" => 2, + "Homotrimer" => 3, + "Homotetramer" => 4, + "Homopentamer" => 5, + "Homohexamer" => 6, + "Homoheptamer" => 7, + "Homooctamer" => 8, + "Homodecamer" => 10, + "Homododecamer" => 12, + ) + + # infer protein stoichiometry from uniprot annotations + reaction_isozymes = Dict{String,Dict{String,Isozyme}}() + multi_component_enzymes = [] # for use later + for rid in A.reactions(model) + haskey(kcat_data, rid) || continue # skip if no kcat data available + if has_reaction_grr(model, rid) + grrs = A.reaction_gene_association_dnf(model, rid) + for (i, grr) in enumerate(grrs) + isozyme_id = "isozyme_" * string(i) + d = get!(reaction_isozymes, rid, Dict{String,Isozyme}()) + + if length(grr) == 1 # only assign homomers + gid = first(grr) + if haskey(proteome_data, gid) # has uniprot data + idx = proteome_data[gid][2] + ss_counts = [get(mer_map, idx, 1.0)] + else # no data + ss_counts = [1.0] + end + else # assume complexes have uni-stoichiometry, fix in next step + ss_counts = fill(1.0, length(grr)) + push!(multi_component_enzymes, (rid, isozyme_id)) + end + + d[isozyme_id] = Isozyme( + gene_product_stoichiometry = Dict(grr .=> ss_counts), + kcat_forward = round(kcat_data[rid] * scale, digits=3), + kcat_reverse = round(kcat_data[rid] * scale, digits=3), # assume forward and reverse are the same + ) + end + end + end + + # fix complex stoichiometry using ComplexPortal data + fixed_multi_component_enzymes = [] + not_fixed_multi_component_enzymes = [] + for (rid, isozyme_id) in multi_component_enzymes + grr = collect(keys(reaction_isozymes[rid][isozyme_id].gene_product_stoichiometry)) + + stoichs = [] + for v in values(complex_data) + if length(intersect(collect(keys(v)), grr)) == length(grr) && + length(intersect(collect(keys(v)), grr)) == length(v) + push!(stoichs, v) + end + end + + if length(stoichs) == 1 + push!(fixed_multi_component_enzymes, (rid, isozyme_id)) + d = first(stoichs) + for (k, v) in d + if v == 0 + d[k] = 1.0 + end + end + reaction_isozymes[rid][isozyme_id].gene_product_stoichiometry = d + else + push!(not_fixed_multi_component_enzymes, (rid, isozyme_id)) + end + end + + # use only the entries where the stoichiometry is known, if any are known + for (rid, isozyme_id) in not_fixed_multi_component_enzymes + if rid in first.(fixed_multi_component_enzymes) + delete!(reaction_isozymes[rid], isozyme_id) + end + end + + return reaction_isozymes +end + +# +# ### Data loading +# + +# load data from papers, complex DB, and uniprot +proteome_data = begin + x = CSV.File(joinpath(data_root, "e_coli_uniprot.tsv"), delim = '\t') + Dict{String,Tuple{Float64,String}}( + gp => (m, coalesce(k, "")) for (gp, m, k) in zip(x.gene_product, x.mass, x.kind) + ) +end + +kcat_data = Dict(String(r.KcatID) => r.KcatHeckmann for r in CSV.File(joinpath(data_root,"ecoli_kcats.tsv"))) + +complex_data = begin + x = CSV.File(joinpath(data_root, "e_coli_complex.tsv"), delim = '\t') + res = Dict{String,Dict{String,Float64}}() + for c in x.complex + res[c] = Dict{String,Float64}() + end + for (c, gp, s) in zip(x.complex, x.gene_product, x.stoichiometry) + res[c][gp] = s + end + res +end + +# +# ### Assemble the isozymes and gene product masses +# + +# increase protein concentrations by changing units, convert kcat units from 1/s to k/h +scale = 3600 / 1e3 + +# add kcats that are not measured +# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=114686&ver=3&trm=glucose+transport&org= +add_kcats!(model, kcat_data; transporter_kcat = 180.0, average_kcat = 25.0) + +# collect kcats and stoichiometry +reaction_isozymes = get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) + +# get uniprot molar masses (units: kDa = kg/mol) +gene_product_molar_masses = get_protein_masses(model, proteome_data) + +# apply analysis-specific quirks +gene_product_molar_masses["b1692"] = 54.58 +gene_product_molar_masses["s0001"] = 54.58 + + +# ribosome data (see comment URLs for sources) +# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=100118&ver=10&trm=e+coli+ribosome+molar+mass&org= ) +gene_product_molar_masses["ribosome"] = 2700.0 +# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=101175 +aas_in_ribosome = 7459 +# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=114971&ver=1&trm=ribosome+amino+acid&org= +atp_polymerization_cost = 4.2 +# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=109522&ver=2&trm=ribosome+density&org= +ribosomes_per_protein = 3.46 # multiple ribosomes can produce a single AA, effectively speeding up the overall rate (assume average for all genes) + +# +# ### Load and prepare the amino acid data +# + +amino_acids = Dict( + :glu__L_c => "E", + :lys__L_c => "K", + :his__L_c => "H", + :ser__L_c => "S", + :arg__L_c => "R", + :gln__L_c => "Q", + :trp__L_c => "W", + :ile__L_c => "I", + :tyr__L_c => "Y", + :gly_c => "G", + :thr__L_c => "T", + :ala__L_c => "A", + :cys__L_c => "C", + :asn__L_c => "N", + :pro__L_c => "P", + :phe__L_c => "F", + :asp__L_c => "D", + :val__L_c => "V", + :leu__L_c => "L", + :met__L_c => "M", +) + +aacount = begin + # convert the TSV into a dictionary structure + + x = CSV.File(joinpath(data_root,"ecoli_gene_product_aa_counts.tsv"), delim = '\t') + res = Dict{Symbol,Dict{Symbol,Int}}() + for gp in x.gene_product + res[Symbol(gp)] = Dict{Symbol,Int}() + end + for (gp, met, n) in zip(x.gene_product, x.metabolite, x.aa_count) + res[Symbol(gp)][Symbol(met)] = n + end + res +end + +# assume ribosome to be relatively average in AA counts +avg_prot = Dict() +for v in values(aacount) + for (k, vv) in v + avg_prot[k] = get(avg_prot, k, 0) + vv + end +end +for (k, v) in avg_prot + avg_prot[k] = v / sum(values(avg_prot)) +end +aacount[:ribosome] = Dict(k => round(Int, aas_in_ribosome * v, RoundNearest) for (k, v) in avg_prot) + + +#md # ```@raw html +#md #
+#md # ``` + +# ## Build an enzyme constrained model + +total_capacity_bound = 550.0 # mg/gDW +membrane_frac = 0.20 # membrane protein fraction of total + +ct = enzyme_constrained_flux_balance_constraints( + model; + reaction_isozymes, + gene_product_molar_masses, + capacity = [ + ("membrane", membrane_gids, total_capacity_bound * membrane_frac), + ("total", A.genes(model), total_capacity_bound), + ], +) + +# apply a few quirks to make the simulation realistic +ct.fluxes[:EX_glc__D_e].bound = C.Between(-1000, 1000) +ct.fluxes_forward[:EX_glc__D_e].bound = C.Between(0, 1000) +ct.fluxes_reverse[:EX_glc__D_e].bound = C.Between(0, 1000) +ct.fluxes[:EX_for_e].bound = C.EqualTo(0.0) +ct.fluxes[:EX_pyr_e].bound = C.EqualTo(0.0) +ct.fluxes[:EX_5dglcn_e].bound = C.EqualTo(0.0) +ct.fluxes[:EX_lac__D_e].bound = C.EqualTo(0.0) + +# ending up with a functional, enzyme constrained model +ct + + +# ## Add the RBA functionality + +kr = ribosomes_per_protein * 12 * 3600 # ribosome elongation rate amino acids/second => amino acids/hr +prot_atp_req = 12.0 # protein polymerization cost for average proteome in 1 gDW + +function with_srba_constraints(ct, mu) + + # we are going to modify a few parts of the tree, copy them + ct = C.ConstraintTree(ct..., :gene_product_amounts => deepcopy(ct.gene_product_amounts)) + + # atp + h2o -> adp + h + po4 + energy_metabolites = + Dict(:atp_c => -1, :h2o_c => -1, :adp_c => 1, :h_c => 1, :pi_c => 1) + + # attach new variables for ribosomes + rbatree = + ct + + :ribosomes^C.variables(; + keys = [collect(keys(ct.gene_product_amounts)); :ribosome], + bounds = C.Between(0, Inf), + ) + + # we are going to modify a few parts locally so let's make a copy of them + rbatree = C.ConstraintTree( + rbatree..., + :flux_stoichiometry => deepcopy(rbatree.flux_stoichiometry), + :gene_product_capacity => deepcopy(rbatree.gene_product_capacity), + ) + + # amino acid dilution by growth + for aa in keys(amino_acids) + rbatree.flux_stoichiometry[aa].value -= + mu * + 0.001 * + ( #= mol to mmol conversion ratio=# + sum( + aacount[g][aa] * c.value for (g, c) in rbatree.gene_product_amounts if + haskey(aacount, g) && haskey(aacount[g], aa); + init = zero(C.LinearValue), + ) + sum( + aacount["ribosome"][String(aa)] * C.value(c) for + (_, c) in rbatree.ribosomes if haskey(aacount[:ribosome], String(aa)); + init = zero(C.LinearValue), + ) + ) + end + + # add all biomass components diluted by growth, plus the energy metabolites + for (mid, v) in biomass.stoichiometry + k = Symbol(mid) + haskey(amino_acids, k) && continue + # if the metabolite is an energy metabolite, we add the energy cost of translation + offset = haskey(energy_metabolites, k) ? -energy_metabolites[k] * prot_atp_req : 0.0 + rbatree.flux_stoichiometry[k].value += mu * (v + offset) + end + + # energy costs of protein synthesis + for (k, kk) in energy_metabolites + # / 1000 to get units to mmol/gDW + # proteins + rbatree.flux_stoichiometry[k].value += + (kk * mu * 0.001 * atp_polymerization_cost) * sum( + sum(values(aacount[g])) * C.value(c) for + (g, c) in rbatree.gene_product_amounts if haskey(aacount, g); + init = C.zero(C.LinearValue), + ) + + # ribosome synthesis also costs energy + rbatree.flux_stoichiometry[k].value += + (kk * mu * 0.001 * atp_polymerization_cost * aas_in_ribosome) * + sum(C.value(x) for x in values(rbatree.ribosomes); init = C.zero(C.LinearValue)) + end + + # add the equations for protein synthesis by ribosomes + aa_sum(g) = haskey(aacount, g) ? sum(values(aacount[g])) : 300 + + rbatree *= + :protein_synthesis^C.ConstraintTree( + g => + C.Constraint(kr * rbatree.ribosomes[g].value - mu * c.value * aa_sum(g), 0) + for (g, c) in rbatree.gene_product_amounts + ) + + # add the equation for ribosome synthesis by themselves + rbatree *= + :ribosome_balance^C.Constraint( + kr * rbatree.ribosomes[:ribosome].value - + (mu * aas_in_ribosome) * + sum(C.value.(values(rbatree.ribosomes)); init = zero(C.LinearValue)), + 0, + ) + + # patch the total gene product capacity bound with the new ribosomes + rbatree.gene_product_capacity.total.value += + sum(C.value.(values(rbatree.ribosomes))) * gene_product_molar_masses["ribosome"] + + return rbatree +end + +# ## Simulate + +# screen through the expectably viable range +res = screen(range(0.1, 1.1, 10)) do mu + @info "mu = $mu" + rbat = with_srba_constraints(ct, mu) + rbat *= + :lp_objective^C.Constraint( + sum( + C.value(v) * gene_product_molar_masses[string(k)] for + (k, v) in rbat.gene_product_amounts + ) + sum( + C.value(v) * gene_product_molar_masses["ribosome"] for + v in values(rbat.ribosomes) + ), + nothing, + ) + + sol = optimized_values( + rbat; + settings = [silence,set_optimizer_attribute("solver", "simplex"),set_optimizer_attribute("simplex_strategy", 4),], + objective = rbat.lp_objective.value, + optimizer = HiGHS.Optimizer, + sense = Minimal, + ) + isnothing(sol) && return nothing + + return (; + mu, + ribosome_mass = gene_product_molar_masses["ribosome"] * sum(values(sol.ribosomes)), + ac_flux = sol.fluxes.EX_ac_e, + glc_flux = sol.fluxes.EX_glc__D_e, + o2_flux = sol.fluxes.EX_o2_e, + total_mass = sol.gene_product_capacity.total, + membrane_mass = sol.gene_product_capacity.membrane, + ) +end + +using CairoMakie + +ribosome_measurements = CSV.File(joinpath(data_root, "ecoli_ribosomes.tsv")) + +fig = Figure() +ax = Axis(fig[1,1], xlabel="Growth rate, 1/h", label="Ribosome mass fraction") +scatter!(ax, ) diff --git a/docs/src/examples/data/README.md b/docs/src/examples/data/README.md new file mode 100644 index 00000000..21c7556c --- /dev/null +++ b/docs/src/examples/data/README.md @@ -0,0 +1,14 @@ +# Source data + +This directory contains prepared "base" data for the other analyses. + +Here we refer to the data sources used to prepare this base data: + +- `basan2015.tsv` taken from: Basan, Markus, et al. "Inflating bacterial cells by increased protein synthesis." Molecular systems biology 11.10 (2015): 836. +- `ecoli_proteome_mass.tsv` taken from: Schmidt, Alexander, et al. "The quantitative and condition-dependent Escherichia coli proteome." Nature biotechnology 34.1 (2016): 104-110. +- `ecoli_ribosomes.tsv` taken from: Hu, Xiao-Pan, et al. "The protein translation machinery is expressed for maximal efficiency in Escherichia coli." Nature communications 11.1 (2020): 5260. +- `ecoli_2member_growths.tsv` and `ecoli_community_abundance.tsv` taken from: Mee, Michael T., et al. "Syntrophic exchange in synthetic microbial communities." Proceedings of the National Academy of Sciences 111.20 (2014): E2149-E2156. +- `ecoli_kcats.tsv` taken from: Wilken, St. Elmo, et al. "Interrogating the effect of enzyme kinetics on metabolism using differentiable constraint-based models." Metabolic engineering 74 (2022): 72-82 and Heckmann, David, et al. "Kinetic profiling of metabolic specialists demonstrates stability and consistency of in vivo enzyme turnover numbers." Proceedings of the National Academy of Sciences 117.37 (2020): 23182-23190. +- `e_coli_complex.tsv` taken from: Meldal, Birgit H. M., et al. "Complex Portal 2018: extended content and enhanced visualization tools for macromolecular complexes." Nucleic acids research 47.D1 (2019): D550-D558. +- `e_coli_uniprot.tsv` and `ecoli_gene_product_aa_counts.tsv` obtained from Uniprot, see UniProt Consortium. "UniProt: a worldwide hub of protein knowledge." Nucleic acids research 47.D1 (2019): D506-D515. +- `iML1515.json` taken from: Monk, Jonathan M., et al. "i ML1515, a knowledgebase that computes Escherichia coli traits." Nature biotechnology 35.10 (2017): 904-908. diff --git a/docs/src/examples/data/e_coli_complex.tsv b/docs/src/examples/data/e_coli_complex.tsv new file mode 100644 index 00000000..b21d096e --- /dev/null +++ b/docs/src/examples/data/e_coli_complex.tsv @@ -0,0 +1,972 @@ +complex gene_product stoichiometry +CPX-2313 b2441 6.0 +CPX-2313 b2440 6.0 +CPX-5122 b2868 0.0 +CPX-5122 b2866 1.0 +CPX-5122 b2867 0.0 +CPX-4389 b1310 1.0 +CPX-4389 b4524 2.0 +CPX-4389 b1311 1.0 +CPX-4389 b1312 1.0 +CPX-3743 b1022 0.0 +CPX-3743 b1021 0.0 +CPX-2244 b1718 0.0 +CPX-2244 b3168 1.0 +CPX-2244 b0884 1.0 +CPX-1974 b1227 2.0 +CPX-1974 b1224 2.0 +CPX-1974 b1225 2.0 +CPX-5628 b4348 1.0 +CPX-5628 b4350 2.0 +CPX-5628 b4349 2.0 +CPX-4388 b3566 1.0 +CPX-4388 b3567 2.0 +CPX-4388 b3568 2.0 +CPX-3822 b4238 2.0 +CPX-5124 b1861 4.0 +CPX-5124 b1860 12.0 +CPX-1945 b2496 1.0 +CPX-1945 b3701 2.0 +CPX-1945 b3702 0.0 +CPX-1083 b3005 1.0 +CPX-1083 b3006 4.0 +CPX-1083 b3966 1.0 +CPX-1083 b1252 1.0 +CPX-4681 b3579 0.0 +CPX-4681 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b2201 2.0 +CPX-3568 b2197 0.0 +CPX-3568 b2198 0.0 +CPX-3568 b2200 1.0 +CPX-3568 b2199 1.0 +CPX-5629 b2763 4.0 +CPX-5629 b2764 8.0 +CPX-2107 b0878 6.0 +CPX-2107 b3035 3.0 +CPX-2107 b0879 2.0 +CPX-2947 b3080 2.0 +CPX-5967 b4194 0.0 +CPX-5967 b4195 0.0 +CPX-5967 b4193 0.0 +CPX-1095 b0408 1.0 +CPX-1095 b3981 1.0 +CPX-1095 b3705 1.0 +CPX-1095 b3300 1.0 +CPX-1095 b0409 1.0 +CPX-1095 b0407 1.0 +CPX-1095 b3175 1.0 +CPX-1087 b4539 1.0 +CPX-1087 b2017 2.0 +CPX-6026 b0233 0.0 +CPX-6026 b0232 0.0 +CPX-1929 b4096 0.0 +CPX-1929 b4099 0.0 +CPX-1929 b4101 0.0 +CPX-1929 b4097 0.0 +CPX-1929 b4100 0.0 +CPX-1929 b4098 0.0 +CPX-5892 b1305 0.0 +CPX-5892 b1306 0.0 +CPX-3445 b3839 0.0 +CPX-3445 b0627 0.0 +CPX-3445 b3838 0.0 +CPX-3445 b3836 0.0 +CPX-3575 b0077 2.0 +CPX-3575 b0078 2.0 +CPX-2115 b0761 2.0 +CPX-3206 b3255 4.0 +CPX-3206 b0185 2.0 +CPX-3206 b2316 2.0 +CPX-3206 b3256 4.0 +CPX-4273 b2367 0.0 +CPX-4273 b2368 0.0 +CPX-4273 b3035 3.0 +CPX-5285 b4345 2.0 +CPX-5285 b4346 12.0 +CPX-1937 b0032 4.0 +CPX-1937 b0033 4.0 +CPX-5624 b4254 3.0 +CPX-2197 b2822 1.0 +CPX-2197 b2820 1.0 +CPX-2197 b2819 1.0 +CPX-4314 b1901 1.0 +CPX-4314 b4460 2.0 +CPX-4314 b1900 2.0 +CPX-4404 b0589 1.0 +CPX-4404 b0590 1.0 +CPX-4404 b0592 1.0 +CPX-4404 b0588 2.0 +CPX-4822 b0810 2.0 +CPX-4822 b0809 2.0 +CPX-4822 b0811 1.0 +CPX-4841 b2243 0.0 +CPX-4841 b2241 0.0 +CPX-4841 b2242 0.0 +CPX-2113 b4143 14.0 +CPX-2113 b4142 7.0 +CPX-1079 b0225 2.0 +CPX-1079 b0226 2.0 +CPX-1932 b4034 1.0 +CPX-1932 b4032 1.0 +CPX-1932 b4035 2.0 +CPX-1932 b4033 1.0 +CPX-4281 b0284 1.0 +CPX-4281 b0285 1.0 +CPX-4281 b0286 1.0 +CPX-4887 b3988 1.0 +CPX-4887 b3649 1.0 +CPX-4887 b3295 2.0 +CPX-4887 b3461 1.0 +CPX-4887 b3987 1.0 +CPX-3446 b1260 2.0 +CPX-3446 b1261 2.0 +CPX-2102 b0431 1.0 +CPX-2102 b0432 1.0 +CPX-2102 b0430 1.0 +CPX-2102 b0429 1.0 +CPX-4318 b0863 1.0 +CPX-4318 b0862 1.0 +CPX-4318 b0861 1.0 +CPX-4318 b0864 2.0 +CPX-5626 b4254 1.0 +CPX-5626 b0273 2.0 +CPX-4422 b1290 1.0 +CPX-4422 b1293 1.0 +CPX-4422 b1294 1.0 +CPX-4422 b1292 1.0 +CPX-4422 b1291 1.0 +CPX-5056 b2726 1.0 +CPX-5056 b2727 1.0 +CPX-5899 b1654 1.0 +CPX-5899 b3190 1.0 +CPX-6035 b3339 2.0 +CPX-6035 b0170 2.0 +CPX-4885 b3988 1.0 +CPX-4885 b2573 1.0 +CPX-4885 b3649 1.0 +CPX-4885 b3295 2.0 +CPX-4885 b3987 1.0 +CPX-1925 b1842 1.0 +CPX-1925 b0184 1.0 +CPX-1925 b0215 1.0 +CPX-4383 b1124 1.0 +CPX-4383 b1123 1.0 +CPX-4383 b1126 2.0 +CPX-4383 b1125 1.0 +CPX-5126 b2565 0.0 +CPX-5126 b0472 0.0 +CPX-4881 b3988 1.0 +CPX-4881 b3067 1.0 +CPX-4881 b3649 1.0 +CPX-4881 b3295 2.0 +CPX-4881 b3987 1.0 +CPX-5909 b4052 6.0 +CPX-5909 b4362 0.0 +CPX-5909 b4361 6.0 +CPX-5909 b3066 3.0 +CPX-5909 b3935 0.0 +CPX-5909 b0467 0.0 +CPX-4743 b1037 9.0 +CPX-4743 b1039 9.0 +CPX-5161 b2540 0.0 +CPX-5161 b2542 0.0 +CPX-5161 b2538 1.0 +CPX-5161 b2539 0.0 diff --git a/docs/src/examples/data/e_coli_uniprot.tsv b/docs/src/examples/data/e_coli_uniprot.tsv new file mode 100644 index 00000000..532b9884 --- /dev/null +++ b/docs/src/examples/data/e_coli_uniprot.tsv @@ -0,0 +1,4519 @@ +gene_product mass kind +b0688 58.361 +b0832 33.238 +b0586 141.991 +b3772 56.195 Homotetramer +b1759 15.046 Monomer +b4283 10.344 +b3850 21.226 Homotetramer +b1884 32.849 +b3428 93.173 +b2143 31.54 Homodimer +b2988 70.532 Homodimer +b2314 22.938 +b2341 77.072 Heterotetramer +b2355 18.252 +b2529 13.849 Homodimer +b0164 29.863 +b3676 12.779 +b1404 44.281 +b0316 34.866 +b4110 32.899 +b0386 28.145 +b2152 43.394 +b1627 20.898 +b4048 26.673 +b2005 13.899 +b2673 9.139 +b3047 28.492 +b3947 91.774 +b3939 41.55 Homotetramer +b1427 20.681 +b4802 3.574 +b3683 39.692 +b1913 68.188 +b0179 36.038 Homotrimer +b4299 29.877 +b2119 39.682 +b4739 4.303 +b2981 44.674 +b0651 33.823 +b1279 11.351 +b2959 12.881 +b1264 57.494 Heterotetramer +b2827 30.48 Homodimer +ECOK12F003 16.463 +b0292 24.517 +b1633 23.562 Monomer +b3333 44.54 +b2110 26.589 +b1482 15.088 +b0139 95.499 +b0285 33.858 Heterotrimer +b2900 11.905 Monomer +b3938 12.141 Homodimer +b2343 10.318 +b0020 34.284 +b2575 27.27 +b3190 9.452 +b2490 15.577 +b4045 8.325 +b2040 32.694 Homodimer +b3377 46.516 +b3445 19.565 +b3191 10.68 +b4314 18.111 +b4302 15.638 +b3617 43.117 Homodimer +b0992 40.097 +b1894 9.868 +b4166 43.073 Monomer +b4136 61.795 +b0932 98.919 +b2258 14.085 Heterodimer +JW5914 37.851 +b0291 91.229 +b1452 38.613 Monomer +b3725 29.027 +b0520 29.597 +JW5903 35.098 +b1734 50.513 Homotetramer +b2861 13.452 +b0080 37.999 Homotetramer +b0804 25.529 +b2787 49.141 Homodimer +b4310 39.572 Homodimer +b1562 5.737 +b3460 39.076 +b3691 47.077 +b1833 48.273 +b0998 22.574 +b0400 49.629 +b4174 45.545 +b4731 4.432 +b3554 25.663 +b4548 7.861 +b0335 69.351 +b2631 13.665 +b0384 11.687 +b3553 35.396 Homodimer +b1345 47.539 +b2780 60.374 Homodimer +b0891 22.497 Monomer +b2578 21.248 +b4115 46.843 Homodimer +b0397 118.721 Heterodimer +b2172 54.032 +b1263 56.87 Heterotetramer +b0903 85.357 Homodimer +b1044 11.194 +b2181 12.525 +b2470 113.047 +b1053 43.867 +b0896 30.826 Heterotrimeric +b2899 23.847 +b2054 19.962 +b3410 8.66 +b4398 26.125 +b0450 12.259 Homotrimer +b1421 58.899 +b3923 16.293 +b3186 11.564 +b3652 76.43 +b1904 11.741 +b1716 13.497 +b3674 19.188 +b2235 43.517 Tetramer +b4775 3.858 +b3008 43.212 Homotetramer +b1462 20.967 +b1967 31.19 Homodimer +b0694 25.362 +b1068 33.682 +b1590 30.524 +b4511 8.271 +b4486 103.403 +b3889 8.408 +b1197 63.637 Monomer +b3563 12.555 +b3949 37.086 +b1808 70.378 +b1490 53.178 +b3507 20.408 +b3728 37.024 +b1812 50.97 Monomer +b2561 30.708 +b4409 4.556 +b1158 20.573 +b0103 22.622 Monomer +b3984 24.73 +b0993 101.024 +b2093 10.222 +b0436 48.193 Homodimer +b1167 9.701 +b3332 37.647 +b3366 12.284 +b0985 27.296 +b1596 45.258 +b0442 12.704 +b4102 27.621 +b3241 34.775 +b4366 25.622 +b4665 2.209 +b1265 1.723 +b2821 107.708 Monomer +b3100 11.811 +b4226 19.704 Homohexamer +b1209 23.551 Monomer +b0301 21.899 +b0532 95.677 +b0498 14.152 +b3284 18.51 +b1510 136.515 +b1625 8.417 +b0568 111.308 +b2547 55.016 +b3675 13.768 +b1580 36.564 +b4213 70.832 +b0107 50.615 +b0573 12.251 +b0280 15.815 +b0867 31.072 +b3935 81.655 +b3043 19.494 +b4720 3.949 +b0144 34.868 +b3291 14.957 Homopentamer +b3101 14.102 +b3931 49.594 +b4154 65.972 +b3897 66.0 +b3125 30.427 +b3729 66.894 Homodimer +b3624 32.92 +b3535 7.018 +b1780 32.666 Monomer +b0644 37.031 +b3459 14.506 +b3030 70.244 Heterotetramer +ECOK12F049 19.067 +b0605 20.761 Homodimer +b2229 23.767 +b3465 21.678 +b2092 48.365 +b0801 38.897 +b0214 17.597 Monomer +b3879 34.01 +b0525 18.153 +b1395 51.733 Homotrimer +b1969 25.018 +b0796 25.017 +b3066 65.565 Monomer +b3660 33.113 +b0541 33.54 +b0853 17.666 +b2016 29.68 +b4252 16.865 +b3857 21.643 Monomer +b2637 17.099 +b4269 36.502 +ECOK12F014 15.854 +b3943 32.866 +b0811 27.19 +b1252 26.094 Homodimer +b3355 32.344 +b1680 44.434 Homodimer +b2311 20.695 +b0685 11.28 +b4470 45.361 +b2133 64.612 +b0657 57.066 Monomer +b2157 32.724 +b2921 34.674 +b2347 34.503 +b3723 32.097 +b2944 19.348 +b0624 13.777 +b1120 31.464 +b4123 47.935 +b0776 41.594 Homodimer +b4513 3.072 +b0965 14.701 +b4308 37.997 +b0596 26.25 Homotetramer +b1606 26.348 +b0311 61.878 +b1343 49.188 Monomer +b4336 48.242 +b3337 7.363 Monomer +b2545 38.051 +b2552 43.868 Monomer +b0634 40.476 +b1450 25.151 +b0629 35.96 +b2405 33.627 +b3418 103.118 Monomer +b3326 54.611 +b1796 6.608 Homodimer +b0604 27.495 Homodimer +b0463 42.197 Monomeric +b2279 10.845 +b4059 18.975 Homotetramer +b2850 16.878 +b0237 52.915 +b3555 11.033 +b3501 13.253 +b2860 34.398 +b4145 32.947 +b3899 51.12 +b4535 4.115 +b3831 27.159 Homohexamer +b1389 10.942 Homotrimer +b1157 19.284 +b2985 26.347 +b2028 43.657 +b0545 19.476 Homodimer +b0769 37.06 +b2768 20.786 +b2386 43.966 +b1413 149.028 +b2629 9.967 +b4248 14.59 +b0798 18.669 +b1411 49.563 +b3437 19.543 +b2002 16.557 +b1438 15.247 +b2775 46.831 +b3544 60.294 +b0322 10.634 +b1697 27.47 +b4206 23.505 +b1794 38.546 Homodimer +b0278 27.274 +b4402 4.886 +b3895 30.56 Homodimer +ECOK12F009 20.362 +b0330 58.649 +b1496 64.985 +b1224 140.489 Dimer +b4128 11.468 Monomer +b1222 67.084 +b1816 56.528 +b3178 70.708 +b2330 35.002 +b1690 44.608 +b1813 21.436 +b1199 22.632 Homodimer +b2993 17.751 +b0636 17.341 Homodimer +b1831 25.893 +b2941 9.519 +b2488 20.159 +b2089 33.54 +b2037 45.383 +b0343 46.503 Monomer +b4568 5.536 +b3384 37.438 Homodimer +b3264 25.198 +ECOK12F098 50.244 +b0583 23.259 +b2094 16.907 +b2844 41.019 +b1491 49.574 +b2390 13.263 +b0378 40.414 +b1634 53.991 Monomer +b4125 60.551 Homodimer +b1219 12.693 Homohexamer +b3076 117.879 Heterooctamer +b0421 32.16 +ECOK12F056 19.51 +b3805 33.852 Monomer +b3991 26.896 Homotetramer +b3147 72.825 +b0241 38.922 Homotrimer +b3204 17.96 +b1674 22.367 +b2795 50.972 +b1707 27.046 +b4610 5.231 +b2418 30.847 Homodimer +b4599 3.509 +b2163 25.294 Homodimer +b3199 21.703 +b3327 44.339 +b0257 15.85 +b2034 37.757 +b0475 35.884 Monomer +b1216 39.168 +b3955 66.61 +b3045 34.398 +b3226 29.524 Homodimer +b0561 21.203 +b1412 21.658 Homodimer +b3411 33.267 +b0962 77.976 +b4245 34.427 Heterododecamer +b2947 35.561 Homotetramer +b0449 65.222 +b0168 29.331 Monomer +b2845 45.099 +b1919 35.153 Homodimer +b0711 23.947 +b4267 37.147 +b3150 20.028 +b1292 31.548 +b4234 21.359 +b2904 13.811 +b4065 60.523 +b3210 87.983 +b2025 28.454 Heterodimer +b1881 23.976 Homodimer +b0222 20.815 Homotetramer +b4604 6.218 +b1377 41.22 Homotrimer +b0606 56.177 Homodimer +b0491 28.165 +b3531 41.7 +b3257 9.098 +b4239 63.838 +b3894 112.549 +b1107 37.595 Monomer +b4401 27.292 +b4524 40.147 +b2788 48.85 +b1695 43.002 +b2670 16.949 +b1054 35.407 Monomer +b2840 25.248 +b4396 33.145 +b1811 6.554 +b0733 58.205 Heterodimer +b1092 32.417 +b0123 56.556 Monomer +b2708 34.031 Homotetramer +b0795 36.416 +b2434 16.312 +b3663 17.219 +b2286 68.236 +b3880 47.433 Homohexamer +b4738 1.589 +b2215 40.368 Homotrimer +b4725 6.229 +b4153 27.123 +b4399 52.176 +b0999 11.512 +b2880 28.65 +b3381 42.294 +b4055 26.104 Homotetramer +b3699 89.95 Heterotetramer +b4790 4.153 +b4504 8.581 +b3025 24.678 +b0414 40.338 Homodimer +b1566 12.208 +b1475 32.239 Trimer +b1460 43.079 +b0030 32.561 +b2282 36.219 +b4031 53.608 +b2213 39.324 +b4589 7.521 +b3649 10.237 +b1922 27.521 +b1917 27.677 +b3239 10.796 +b1664 42.876 +b1121 28.865 +b0313 21.815 +b4111 54.846 +b3847 50.176 +b0555 17.972 +b1921 21.658 +b2086 32.039 Monomer +b2609 9.191 +b0947 40.644 +b2376 10.162 +b2914 22.86 Homodimer +b3348 8.214 +b0298 11.543 +b3919 26.972 Homodimer +b3115 43.384 Homodimer +ECOK12F081 9.126 +b0909 26.74 +b4776 6.371 +b0831 34.066 +b2602 13.204 +b3509 12.043 Homodimer +b2250 18.61 +b2901 55.361 Homotetramer +b3483 14.531 +b2454 30.082 +b3265 41.318 +b3773 33.204 +b4363 17.047 +b1497 44.518 +b4782 1.604 +b0231 39.516 Monomer +b3053 108.418 Monomer +b3073 49.661 Homodimer +b0866 11.437 +b0037 58.559 +b0186 80.59 Homodecamer +b1378 128.824 +b0012 17.637 +b4498 12.403 +b1871 37.007 Homotetramer +b2195 20.809 +b1756 24.017 +b1119 33.043 +b2326 21.146 +b2375 22.977 +b0934 28.925 +b2320 41.368 Homodimer +b3114 85.936 +b4515 4.042 +b3085 19.483 +b1165 10.345 +b4215 35.935 +b3423 28.048 +b0869 53.707 +b0199 37.788 +b4084 33.821 +b2946 26.978 Homodimer +b3656 88.079 Homohexamer +b0842 44.321 Monomer +b2049 53.016 +b0849 9.685 Monomer +b2917 77.871 Homodimer +b2842 27.07 Homotetramer +b4057 13.519 +b1181 17.91 +b2462 11.65 Homohexamer +b1243 60.899 +b1645 75.267 +b4382 47.207 Homodimer +b4816 2.079 +b0197 29.432 +b3595 26.447 +b2798 28.166 +b1985 60.061 +b3219 24.9 +b4550 8.171 +b3927 29.78 Homotetramer +b3886 32.839 +b3376 38.599 +b0029 34.775 Homodimer +b0429 12.029 Heterooctamer +b2951 25.787 Monomer +b3200 20.127 +b1201 70.562 Homodimer +b1155 15.434 +b2148 35.55 +b4262 39.619 +b3876 51.574 +b2989 32.392 Homodimer +b2302 24.516 Homodimer +b0224 28.021 +b2543 15.211 +b1080 38.169 +b2196 71.389 +ECOK12F053 8.628 +b0268 32.53 +b4056 15.656 +b0944 25.853 +b2886 17.513 +b3906 32.373 +b1568 10.976 +b4053 39.153 Homodimer +b2146 44.329 Heterotetramer +b1790 30.554 +b1506 6.88 +b3331 22.231 +b4818 1.841 +b2444 9.206 +b0488 16.939 +b0305 31.474 +b2797 48.753 +b1559 27.926 +b4342 58.553 +b2125 27.4 +b2033 21.675 +b4592 3.597 +b4730 2.629 +b3730 49.19 Homotrimer +b0939 25.389 +b3856 19.363 Homodimer +b3172 49.898 Homotetramer +b3230 14.856 +b1846 23.687 +b0405 39.431 Monomer +b0125 20.115 Homotetramer +b2208 18.047 +b1241 96.127 +b0620 25.453 +b1045 18.88 Homodimer +b1608 26.704 +b1057 20.736 +b2296 43.29 Homodimer +b2283 100.299 +b2188 67.296 +b0957 37.201 Monomer +b1678 36.082 +b1277 21.836 Homodimer +b3734 55.222 +b0926 20.354 +b0788 35.86 +b4686 3.618 +b0803 9.756 +b2923 23.176 +b4471 48.522 +b1928 14.983 +b0426 18.344 Monomer +b1817 35.048 Homodimer +b2509 51.832 Heterooligomer +b3893 33.1 +b0083 13.627 +b2605 17.245 +b1143 12.883 +b3406 18.527 +b4502 8.954 +b1673 77.877 +b0550 13.846 Homodimer +b1677 8.323 Homotrimer +b3417 90.522 Homodimer +b4390 47.346 Homotetramer +b4673 2.465 +b1256 22.928 +b2237 25.296 +ECOK12F004/ECOK12F005 7.792 +b3306 14.127 +b3302 6.542 +b3642 23.567 Homodimer +b0227 28.785 +b2131 32.609 +b2522 28.643 +b1929 44.429 +b2616 61.396 +b1879 74.843 +b1658 38.175 Homodimer +b3954 32.149 +b3214 26.352 +b4305 40.615 +b0314 75.842 +b4482 27.908 +b4063 17.15 Homodimer +b0269 69.399 +b3539 47.258 +b1220 52.1 +b2299 20.376 +b2340 17.208 +b3705 61.526 +b0928 43.573 Homodimer +b1444 50.83 Homotetramer +b4766 3.681 +b2287 25.056 +b1767 37.127 Homotetramer +b0148 89.148 +b4081 76.151 +b0530 18.475 +b3110 48.315 +b2436 34.323 Homodimer +b4620 10.049 +b3912 26.312 +b0890 146.663 Homohexamer +b1095 43.046 Homodimer +b3031 21.642 +b2385 39.624 +b2896 16.064 +b0949 72.067 +b1939 36.776 +b1516 36.685 +b1179 12.415 +b2943 50.983 +b3427 10.129 +b4406 7.214 +b0031 28.757 Homotetramer +b1156 21.662 +b1717 7.289 +b2257 62.543 +b2001 57.237 +b4689 9.463 +b1259 6.002 +b2643 17.303 +b1858 27.867 +b3402 64.637 +b0619 61.684 +b0014 69.115 +b1507 49.276 +ECOK12F085 14.132 +ECOK12F054 16.013 +b3303 17.603 +b3283 19.871 +b2256 33.112 +b4606 2.408 +b1247 37.198 +b4539 10.216 +b2894 34.246 +b1866 65.913 Homodimer +b2164 43.432 +b3290 50.368 +b3924 27.751 Monomer +b2472 41.269 Homodimer +b3453 48.449 +b0425 33.871 Monomer +b0936 34.558 +b0116 50.688 Homodimer +b1557 7.717 +b3471 25.269 +b3942 80.024 Homotetramer +b1897 29.175 +b2014 49.538 +b0333 43.102 Homodimer +b0946 20.589 +b4472 139.053 +b4702 2.123 +b4212 14.075 +b3937 23.14 +b2212 24.076 +b4087 56.745 +b0180 17.033 Oligomer +b0905 65.652 +b1643 8.891 +b0504 34.512 +b2487 63.383 +b0094 45.33 +b3144 93.616 +b2618 10.789 +b1189 47.607 +b0467 20.375 +b2892 63.389 +b3997 39.248 Homodimer +b0049 31.297 Monomer +b4664 2.151 +b0969 12.41 +b0977 31.431 +b3594 31.874 +b0095 40.324 Homodimer +b1262 49.492 Monomer +b4099 38.853 +b2648 5.438 +b2837 37.094 Homodimer +b0007 51.663 +b3748 15.292 Homodecamer +ECOK12F082 18.588 +b4263 54.332 +b2806 41.905 Monomer +b0710 26.892 +b1959 32.194 +b0779 76.226 +ECOK12F075 10.379 +b0642 97.234 Monomer +b1785 56.101 Homodimer +b3779 54.871 +b2808 34.402 +b1486 37.345 +b2045 47.344 +b4085 26.109 Homohexamer +b0819 33.325 +b0078 17.977 Dimer +b3229 24.305 +b0033 117.842 +b1083 34.281 +b4232 36.834 Homotetramer +b3987 150.632 +b2649 29.787 +b2331 21.013 +b4345 40.59 +b1061 8.949 +b1855 37.41 +b2702 20.58 +b2856 16.577 +b4742 5.971 +b3059 22.193 +b3038 45.026 +b1530 16.065 +b3700 40.514 +b2439 22.788 Homotrimerizes +b0560 20.428 +b4403 25.259 +ECOK12F067 11.389 +b1851 64.639 +b2577 33.243 +b2207 9.469 Monomer +b4706 2.33 +b3932 19.093 +b1598 29.277 +b0612 53.093 +b1326 26.558 Homodimer +b2705 27.858 Homotetramer +b0013 14.482 +b1255 26.419 +b0872 35.74 +b1049 96.937 +b1873 40.286 +b3916 34.842 Homotetramer +b4298 32.722 +b3739 13.632 +b0799 81.44 Monomer +b3398 79.49 +b0366 28.297 +b1109 47.359 Monomer +b3869 38.556 +b0270 50.632 +b3034 23.667 Homodimer +b0208 33.776 +b2455 49.022 +b2725 17.627 +b2319 36.364 +b2511 55.036 +b4770 2.707 +b2802 64.977 Homohexamer +b0246 11.94 +b2039 32.694 Homotetramer +b0837 41.054 Monomer +b0916 47.656 +b0375 23.956 +b4528 6.761 Homodimer +b3439 26.279 +b1479 63.197 Homotetramer +ECOK12F097 14.48 +b4303 29.355 +b1409 33.054 +b2284 49.292 +b1312 31.25 +b0907 39.783 Homodimer +b0490 25.382 +b2759 18.702 Homodimer +b1485 31.971 +b2669 15.348 +b3055 23.076 +b2938 73.898 Homotetramer +b1026 33.54 +b1887 18.084 +b3733 31.577 +b0923 26.974 +b0778 24.14 Homodimer +b0557 10.447 +b2395 83.524 +b2542 43.978 +b3307 11.58 +b0980 47.057 Monomer +b4496 17.296 +b4097 27.831 +b1313 38.217 +b1725 32.459 +b3849 52.96 +b1968 50.85 +b0494 23.622 Monomer +b2267 17.42 +b2464 35.659 Homodimer +b3011 42.097 Homodimer +b4516 9.902 +b3401 32.534 +b0983 41.741 +b3403 59.643 Monomer +b1246 37.188 +b3446 10.613 +b1454 23.321 +b1297 53.177 Dodecamer +b3653 42.425 +b2427 31.192 Homotetramer +b2567 25.55 Homodimer +b3362 6.599 +ECOK12F047 35.372 +b3533 99.785 +b1249 54.822 +b0782 18.665 Homohexamer +b2352 51.484 +b1553 18.31 +b2438 17.893 Monomeric +b0697 72.199 +b2109 92.282 +b3234 47.205 +b4278 50.386 +b0295 8.767 +b3529 74.381 +b4052 52.39 Homohexamer +b3151 37.257 +b2873 51.025 Homotetramer +b4362 19.455 +b2728 9.732 Homodimer +b4261 40.358 +b4484 18.965 Homodimer +b0529 31.044 Homodimer +b2571 35.75 Homodimer +b0900 34.294 +b2953 10.456 +b4670 2.056 +b4678 2.242 +b2720 20.309 +b3349 20.853 Monomer +b0389 7.281 +b1841 13.41 +b1652 23.523 Homodimer +b3827 33.727 +b2975 58.92 +b1153 21.644 +b2170 42.746 +ECOK12F036 8.172 +b3094 29.836 +b1714 36.832 Tetramer +b3600 41.139 Monomer +b0120 30.385 Heterooctamer +b2411 73.606 +b2373 60.581 Homotetramer +b0177 90.553 +b0726 105.062 Homodimer +b4138 45.751 +b1453 54.233 +b0232 11.234 +b2557 141.403 Monomer +b1545 21.852 +b1772 34.121 +b3706 49.231 Homodimer +b1451 77.261 +b2762 27.976 Homodimer +b0028 16.081 +b2731 78.468 +b1088 19.315 +b0756 38.19 +b3206 9.81 +b2632 32.094 +b4703 3.465 +b1414 29.706 Monomer +b0901 23.036 +b3745 55.907 +b3551 85.851 +b1526 32.483 +b3176 47.544 +b2682 26.108 +b2496 26.633 +b4148 10.9 Homodimer +b0339 23.764 Oligomer +b2739 29.217 +b0544 57.527 +b1854 51.357 Homotetramer +b4133 57.813 +b1094 8.64 +b2429 49.802 +b4198 25.278 +b0640 38.704 +b3754 51.462 +b1455 8.27 +b2568 35.96 +b1078 27.744 +b1151 17.609 +b1139 33.762 +b0820 59.858 +b0348 34.196 Homotetramer +b0398 44.714 Heterodimer +b1973 24.762 +b2666 5.865 +b1748 43.665 +b0259 37.851 +b0968 10.3 +b3197 35.196 Homotetramer +b4778 1.63 +b4546 8.415 +b4506 5.467 +b4024 48.532 Homodimer +ECOK12F079 21.961 +b0761 28.281 Homodimer +b0660 39.039 +b0937 21.253 Homodimer +ECOK12F104 192.016 Monomer +b0511 52.456 +b0161 49.354 +b2512 41.887 +b3537 7.364 +b1551 5.639 +b3587 12.409 +b1515 34.456 +b0978 57.92 Heterodimer +b1944 17.221 +b2242 45.357 +b0369 35.625 Homooctamer +b2106 30.419 +b1528 42.538 +b1368 37.06 +b3807 12.231 Monomer +b2329 39.137 Homotetramer +b2530 45.09 Homodimer +b3985 17.712 +b0808 81.904 Homoheptamer +b1775 49.602 +b1422 33.402 +b3404 50.334 Homodimer +b2042 32.829 +b1517 31.893 Homodecamer +b3891 34.747 +b3585 37.274 +b2630 40.061 +b1366 13.473 +b0964 24.594 +b3124 39.104 +b2038 21.27 Homodimer +JW5899 35.098 +b3666 50.607 Monomer +b0581 41.688 Homodimer +b3543 37.497 +b0341 41.361 +b0085 53.344 +b2322 40.465 +b3201 26.801 +b2633 31.255 +b1691 46.08 +b1204 21.082 Monomer +b4183 25.009 +b3463 24.439 Homodimer +b0505 18.17 Homodimer +b1591 23.345 Monomer +b2061 16.709 +b0887 65.056 +b3090 20.512 +b3577 17.516 +b0874 32.34 +b3527 55.527 +b3467 13.496 +b2990 8.808 +ECOK12F024 26.439 +b2956 38.459 +b4086 34.316 +b2998 10.945 +b4361 27.935 +b2551 45.317 Homodimer +b4058 103.868 +b0248 17.42 +b2407 29.835 Hexamer +b0955 65.819 +b3904 54.069 Monomer +b1058 5.897 +b2359 13.102 +b3682 17.626 +b0416 15.689 Monomer +b3395 29.0 +b0110 20.536 +b0674 62.659 Homodimer +b0354 19.923 +b1978 248.569 +ECOK12F002 33.54 +b2486 56.767 +b0807 34.226 +b2676 36.443 Tetramer +b3882 31.158 Homotetramer +b2677 44.163 +b3466 10.252 +b3504 29.45 +b2823 12.004 +b1776 38.732 +b3526 33.962 +ECOK12F048 9.763 +b2303 14.082 Homooctamer +b3057 29.759 +b1275 36.15 Homotetramer +b0875 23.703 Homotetramer +b1727 24.33 +b3921 16.542 +b1302 44.729 +b3794 27.928 +b1073 15.24 +b0084 63.877 Homodimer +b2683 12.024 +b3308 20.302 +b1549 16.497 +b1285 74.665 +b0331 32.135 Homotetramer +b4260 54.88 Homohexamer +b2960 27.307 Monomer +b1573 8.35 +b2500 23.238 Monomer +b4326 14.747 +b0317 17.311 +b2858 27.365 +b0068 36.163 Monomer +b0462 113.574 Homotrimer +b0404 22.961 +b1150 6.381 +b3556 7.403 +b0996 43.607 +b1319 34.913 Monomer +b3777 16.873 +b0655 33.42 +b3252 73.339 +b2774 28.042 +b3192 23.963 +b2276 52.044 +b0200 21.294 Monomer +b3352 71.843 +b1077 25.912 +b4176 7.166 +b0256 44.267 +b3565 49.742 Homotetramer +b3518 51.571 +b3774 54.069 Homotetramer +b2463 82.417 Homooligomer +b4755 5.465 +b1504 18.949 +b0170 30.423 Heterotetramer +b3386 24.554 +ECOK12F017 33.563 +b2727 31.565 Monomer +b3800 46.513 +b4466 167.246 +b3098 11.051 +b0182 42.382 +b2952 21.167 +b1684 13.3 Homodimer +b2469 63.697 +b3350 66.411 +b0601 23.943 +b3155 11.27 +b0212 28.434 Monomer +b3926 56.231 Homotetramer +b4319 17.317 +b4661 97.49 +b2740 46.77 +b2521 30.812 Monomer +b2627 83.062 +b2934 16.046 +b3394 20.796 +b3946 23.555 Homodecamer +b0106 44.45 +b2789 49.142 +b0011 26.665 +b0454 14.45 +b0622 21.77 Homodimer +b0638 23.308 +b1999 27.074 +b2201 23.053 +b3330 13.901 +b0627 7.024 +b0172 20.639 +b3135 17.519 +b3651 25.343 +ECOK12F041 40.653 +b2918 36.704 Monomer +b0860 26.829 +b2867 31.557 Heterotrimer +b2754 10.518 Homodimer +b4104 22.797 +b1254 20.79 +b3579 35.97 +b1689 13.929 +b2041 40.558 Homodimer +b3571 75.713 Monomer +b2317 24.51 +b0684 19.737 Monomer +b1429 35.932 Homotrimer +b3282 20.768 +b3014 9.513 +b2520 181.585 +b1499 28.725 +b1859 27.729 +b3654 48.868 +b4329 16.193 +b1512 33.797 +b1335 19.179 +b1781 30.987 +b2832 26.157 +b4105 37.371 +b3605 42.728 +b4151 13.107 +b2859 16.403 +b1712 11.354 Heterodimer +b3361 22.96 +b2247 44.226 Homooctamer +b3070 28.872 +b0166 29.892 +b3429 52.822 +b4069 72.094 +b2127 28.046 +b4570 5.888 +b2507 58.679 Homodimer +b2936 26.842 +b2345 40.249 +b3928 9.635 Homodimer +b1272 39.366 +b2615 32.566 Homohexamer +b3690 40.142 +b2843 31.076 Homohexamer +b3261 11.24 Homodimer +b3964 13.024 +b4322 44.838 +b4005 45.94 Monomer +b3287 19.328 Monomer +b1370 37.777 +b0159 24.354 Homodimer +b2238 7.517 +b2875 57.682 +b0772 46.082 +b3958 35.952 +b3426 56.751 +b0507 64.732 Homotetramer +b2763 63.998 +b1484 36.1 +b4116 29.007 +b3574 31.067 +b1556 7.741 +b1200 38.215 Homodimer +b2368 42.585 +b1111 23.362 +b1722 27.607 +b3193 19.576 +b3988 155.16 +b1766 67.219 Homotetramer +JW2619 11.824 +b1344 35.561 Homodimer +b2796 46.906 +b1042 15.049 +b3703 5.38 +b2384 37.409 +b2506 20.23 +b0323 33.931 +b2096 30.812 +b3370 47.577 +b1798 23.201 +b3713 20.376 Homotetramer +b3221 17.038 +b4711 37.851 +b4605 5.325 +b3354 8.47 +b3078 52.147 +b1793 8.942 +b1287 42.22 +b1125 31.062 +b3145 38.535 +b2356 10.336 +b3608 36.362 +b0881 12.179 +b3986 12.295 Homodimer +b1147 20.212 +b3353 38.495 +b0704 21.961 +b3196 34.741 +b0961 16.275 +b2162 33.748 Homotetramer +b3084 42.331 +b0215 27.099 +b2746 16.898 Homotrimer +b4357 35.397 +b1244 33.443 +ECOK12F059 13.916 +b2052 36.141 Homodimer +b0319 32.266 +b2412 36.475 +b3472 19.787 +b2493 39.194 +b0006 29.586 +b1387 73.003 +b0122 12.854 +b1588 89.987 +b4478 42.523 +b1523 13.544 +b0815 59.706 +b1619 26.779 Homotetramer +b1561 9.235 +b2515 40.684 +b4331 20.53 +b1630 38.14 +b2450 29.751 +b3189 44.818 +b1947 12.67 +b2053 42.047 Homodimer +b1269 32.711 +b0572 50.27 Homotrimer +b3295 36.512 Homodimer +b1400 21.325 +b0153 70.423 +b3231 16.019 +b2617 12.302 +b2966 24.614 +b1195 8.775 +b1025 51.783 Homodimer +b1468 140.227 Tetramer +b2879 48.842 +b2076 111.01 +b4520 8.255 +b1096 29.715 Homodimer +b0146 26.229 +b2662 45.775 Homotetramer +b1555 12.091 +b2393 43.476 +b2160 39.71 +b0833 90.049 +b2171 21.533 +b2743 23.258 Monomer +b1069 55.267 +b3142 20.744 +b0118 93.498 Monomer +b1752 26.16 +b0722 12.868 +b4780 5.068 +b0588 29.784 +b0482 29.902 +b2878 115.582 +b2457 9.866 Homohexamer +b0193 29.912 +b4193 50.737 Homodimer +b1184 47.68 +b1477 10.401 +b0387 16.969 +b2665 16.063 +b1115 40.834 +b1316 84.867 +b2144 27.287 +b3218 37.851 +b3618 33.458 +b4667 2.232 +b4240 51.081 +b2124 17.973 +b0156 12.1 Homodimer +ECOK12F007 2.588 +b1205 10.486 +b1215 30.833 Homotrimer +b0235 9.82 +b1924 48.456 Homopentamer +b0927 23.784 +b3493 53.389 +b1146 7.402 +b1110 18.92 +b3224 53.551 +b1646 17.681 Monomer +b0413 17.229 +b3318 11.199 +b0994 37.865 +b2252 22.257 +b1857 33.777 +ECOK12F105 27.535 +b2883 50.244 +b1415 52.273 Homotetramer +b2581 37.784 +b2173 36.113 Oligomerizes +b0575 114.707 +b3035 53.741 Homotrimer +b2765 13.773 +b3317 29.86 +b4090 16.073 Homodimer +b2180 58.726 +b2889 20.508 Homodimer +b1974 20.337 +b1849 42.434 Homodimer +b3871 67.355 Monomer +b3297 13.845 +b2620 18.269 +b0812 18.695 Homododecamer +b3782 3.75 +b1039 14.879 +b1738 11.427 +b1961 53.465 +b2165 32.91 Homotrimer +b3524 74.457 +b0312 52.911 Dimer +b1729 48.662 +b0044 10.479 +b3080 88.321 +b2625 54.027 +b2707 28.236 +b0211 49.417 +b2623 37.139 +b3838 18.421 +b1945 37.849 +b0294 23.274 +b1737 48.332 +b0851 26.801 Homodimer +b0399 26.433 +b3538 62.032 +b1327 33.659 +b2548 35.058 +b0329 9.895 +b0388 19.151 Monomer +b4021 24.57 +b4219 23.315 +b2122 67.73 +b0854 40.84 +b0818 41.169 +b0648 27.022 +b0774 47.336 Homodimer +b1116 43.264 +b4182 25.334 +b1810 10.835 +b1828 48.152 +b4235 48.37 +b4622 10.257 +b3077 17.457 Heterooctamer +b4017 82.598 +b4109 84.371 +b4525 6.725 +b2141 14.579 +b2452 42.807 +ECOK12F013 20.966 +b4580 104.725 +b2150 35.713 +b3475 21.768 +b4380 58.02 +b0943 18.512 +b3461 32.469 +b3444 9.868 +b1533 32.324 +b0334 53.952 Monomer +b4297 70.017 +b3957 42.347 Homodimer +b3250 39.53 +b3632 38.731 +b3634 17.837 Homohexamer +b0662 42.953 +b1801 52.881 +b1745 49.299 Homodimer +b3107 5.961 +b1465 26.018 Dimer +b4129 57.827 Homodimer +b3424 31.307 +b0938 18.68 +b3679 62.085 +b1105 22.516 +b4743 6.428 +b4768 1.172 +b3589 40.351 +b0063 61.089 +b0768 36.058 +b2913 44.176 Homotetramer +b2136 21.445 +b2565 27.391 Monomer +b0132 34.607 +b2477 36.842 +b1065 44.363 +b4118 34.928 +b3862 36.289 +b0981 81.242 +b1436 8.709 +b4722 3.016 +b4598 3.538 +b4394 18.213 Homodimer +b1585 26.507 +b1862 22.704 +b4596 6.441 +b1668 60.755 +b0360 13.452 +b1348 7.019 +b4132 46.665 +b3072 55.066 +b2484 51.755 +b3623 41.729 +b3963 26.553 Homodimer +b4277 12.161 +b0293 20.111 +b2916 33.472 Homodimer +b1927 56.639 Monomer +b1140 42.799 +b2804 15.473 Homodecamer +b1546 21.338 +b2958 26.429 +b3616 37.239 Homotetramer +b2554 49.148 +b3655 62.272 +b1192 33.567 +b3839 28.876 +b0066 24.999 +b1373 21.337 +b2963 40.113 +b1232 31.935 Homohexamer +b1762 40.346 +b0191 15.623 +b2114 76.255 Homodimer +b1923 51.295 +b1471 36.241 +b2877 21.514 Monomer +b1676 50.729 Homotetramer +b1301 47.17 +b1351 10.016 +b1013 23.688 Homodimer +b1144 11.458 +b4779 1.23 +b0877 38.358 +b1539 27.249 Homotetramer +b0196 14.163 +b3378 12.479 +b0247 18.099 +b2024 26.033 Monomer +b2408 29.233 +b4249 24.598 +b0043 45.703 +b3612 56.194 Monomer +b0935 41.736 Homotetramer +b1724 10.865 +b1825 10.792 +b3357 23.64 Homodimer +b4659 24.791 +b0591 43.282 +b2495 13.399 +b2336 27.728 +b0884 8.25 +b0721 14.299 +b4428 5.626 +b3476 58.719 +b3262 33.397 +b0351 33.442 +b0828 33.394 Heterotetramer +b2415 9.119 +b2183 25.865 Monomer +b3103 14.281 +b1616 49.908 +b0236 18.834 +b4671 3.999 +b0115 66.096 +b3592 22.545 +b3496 53.575 +ECOK12F064 27.723 +b4789 1.043 +b2300 20.122 +b1852 55.704 +b0272 27.838 +b2562 9.791 +b3645 31.078 +b0703 55.232 +b4460 34.211 +b2187 8.288 +b3945 38.712 Homodimer +b3741 69.521 Homodimer +ECOK12F027 10.455 +b2030 37.851 +b0824 33.038 +b2752 35.188 Heterodimer +b0393 33.993 +b2781 30.412 Homodimer +b2222 22.96 Heterodimer +b3061 32.734 Tetramer +b2524 7.732 Monomer +b2103 28.634 Monomer +b0951 60.52 Homohexamer +b2231 96.964 Heterotetramer +b3669 20.889 +JW5919 13.452 +ECOK12F061 9.377 +b4412 5.502 Homodimer +b1820 17.615 +b3044 13.452 +b1330 38.755 Homoheptamer +b0501 10.052 +b3048 38.555 +b1099 36.937 +b1029 38.668 +b0995 26.233 +ECOK12F065 7.894 +b0274 19.758 +b2364 35.332 +b2292 65.872 +b1554 19.663 +b3766 3.231 +b4715 9.556 +b4517 6.576 +b0447 17.437 +b4041 91.381 +b2383 92.13 +b4289 34.893 +b2935 72.212 Homodimer +b3021 14.703 Homodimer +b0271 60.825 +b0967 44.357 Homodimer +b0198 23.256 +b0183 21.526 +b4062 12.911 +ECOK12F101 26.032 +b4773 1.992 +b2925 39.147 Homodimer +b4565 9.803 +b4553 11.336 +b3570 30.868 +b4214 27.176 +b0991 8.727 +b2518 15.463 Homotetramer +b3941 33.103 Homotetramer +b4018 29.739 Homotetramer +b3065 8.5 +b0117 69.362 +b4567 8.697 +b1483 34.621 +b1631 21.912 +b0589 34.91 +b1769 50.318 +b3746 56.389 Hexameric +b2505 17.705 +b1705 7.117 +b3064 36.008 Homodimer +b1661 43.909 Homodimer +b0700 157.776 +b1779 35.532 Homotetramer +b1472 10.736 +b2584 97.987 +b3281 29.414 Monomer +b2010 43.346 +b3432 84.337 Monomer +b2446 15.729 +b3482 159.395 +b1178 14.906 +b4483 28.974 Monomer +b3712 27.647 +b0473 71.423 Homodimer +b2290 45.517 Homodimer +b0379 11.424 +b2193 23.575 +b1356 17.663 +b2786 102.453 +b1446 8.8 +b2604 45.989 Homodimer +b4285 22.265 +b2592 95.585 Homohexamer +b4243 13.612 Homotrimer +b3409 84.474 +b1949 9.632 +b2685 42.736 Homodimer +b4734 3.258 +b4365 27.032 +b3334 17.234 +b0486 45.659 +b2374 45.828 Homodimer +b4070 53.703 Homodimer +b3708 52.773 Homotetramer +b0394 32.5 +b2636 16.735 +b2332 30.26 +b1893 19.565 +b3060 35.315 +b2082 8.43 +b4264 37.567 +b4340 53.047 +b1227 25.497 Dimer +b4621 7.888 +b2784 83.876 +b2606 13.133 +b4677 2.665 +b1571 5.792 +b3967 31.002 Monomer +b0652 26.661 +b0724 26.77 +b4750 3.193 +b0817 17.64 Homodimer +b3809 30.209 Homodimer +b4304 46.684 +b1629 80.172 +b3156 18.534 +b3237 16.995 Homohexamer +b4179 92.109 Monomer +b2778 32.206 +b4195 17.238 +b3434 21.49 +b2893 25.622 Homodimer +b0570 53.738 +b4377 39.832 +b1584 21.887 Homododecamer +b1514 36.395 +b2095 47.109 +b4258 108.192 Monomer +b2533 29.172 Monomer +b2323 42.613 Homodimer +b3822 68.364 +b3811 33.868 +b2219 67.79 Homodimer +b0759 37.265 Homodimer +b2741 37.972 +b0345 38.59 Homotetramer +b2126 62.092 +b3989 21.131 +b2927 37.299 Homotetramer +b2583 25.995 Monomer +b1340 21.512 +b1410 65.456 +b0365 34.266 +ECOK12F073 15.183 +b2291 22.708 Homodimer +b3917 36.659 +b2777 25.03 Homodimer +b2217 23.671 +b2536 41.593 +b4190 27.588 +b4047 9.749 +b1876 64.683 Monomer +b1464 32.319 Homodimer +JW5928 37.851 +b0192 25.844 +b1357 10.976 +b3129 12.359 Homodimer +b0862 26.217 +b2004 13.684 Homodimer +b0956 17.693 Homodimer +b0607 15.935 +b2813 40.411 +b0537 45.09 +b1311 33.225 +b3561 37.57 +b3194 27.863 +b3801 60.718 +b0440 9.226 Heterodimer +b1946 14.855 +b1868 31.479 +b1856 49.058 +b1003 8.524 +b4143 57.329 +b3126 27.384 Homohexamer +ECOK12F022 10.26 +b4150 41.556 Monomer +b1258 18.597 Homodimer +b2139 52.138 +b3668 56.306 +b4536 8.514 +b3032 30.938 +b0255 15.25 +b0567 33.057 +b2020 46.11 Homodimer +b1321 52.609 +b1131 51.543 Homotetramer +b1925 14.95 +b3141 27.724 +b2101 28.277 +b4485 55.26 +b2478 31.27 Homotetramer +b1611 50.489 Homotetramer +b0039 42.558 Homotetramer +b4684 4.791 +b2003 8.411 +b2799 40.513 Homodimer +b4282 8.714 +JW5902 13.452 +b3532 86.024 +b1589 22.752 +b4602 2.998 +b4015 47.522 Homotetramer +b1480 5.096 +b4476 46.416 +b0150 82.182 Monomer +b2416 63.562 Homodimer +b0988 19.7 +b0391 10.234 +b2841 51.684 +b0169 26.744 +b3667 48.257 +b1018 41.138 Monomer +b3269 43.261 +b0880 7.969 Homodimer +b3866 19.059 Homodimer +b1447 15.855 +b1615 46.648 +b4747 4.711 +b1586 10.477 +b2686 55.624 +b2801 47.545 +b2514 47.029 Homodimer +b2570 16.639 +b1135 24.88 +b0649 55.682 +b4255 15.603 +b2251 16.371 Monomer +b3644 33.175 +b4545 5.315 +b1541 7.276 +b1778 15.451 +ECOK12F052 25.446 +b0187 14.737 +b1206 59.429 +b3159 32.535 +b2961 39.149 Monomer +b2714 36.813 +b1976 30.279 +b1739 12.021 +b2008 39.955 +b1493 52.668 Homohexamer +b3063 52.906 +b1358 15.743 +b4022 32.477 Monomer +b1248 12.687 +b2074 44.464 +b3104 13.456 +b0914 64.461 Homodimer +b2608 20.605 +b4317 96.482 +b1067 24.177 +b2155 73.896 +b4001 26.317 +b4636 7.821 +b4461 48.044 +b2349 44.061 +b2770 28.72 +b1388 35.499 +b3131 29.572 +b4508 8.493 +b1055 39.781 +b1500 7.272 +b4666 2.207 +b0595 32.554 +b0383 49.439 +b3792 44.96 +b4480 31.746 +b0979 42.424 Heterodimer +b1613 42.85 +b4175 37.65 +b1281 26.35 Homodimer +b4221 136.78 +b1900 55.018 +b1431 24.427 +b1037 30.557 +b3481 15.094 Homotetramer +b2479 20.769 +b2199 27.885 +b2526 65.652 +b1886 59.944 +b3966 68.407 +b4020 59.467 +b3578 45.368 +b4543 6.881 +b0076 35.695 +b1741 33.739 +b2223 47.528 +b1605 49.501 +b3323 55.298 +b2068 31.393 Monomer +b1048 57.912 +b3140 29.001 +b3414 20.998 Homodimer +ECOK12F030 55.682 +b4751 6.058 +b0185 35.242 +b2262 31.633 Homohexamer +b4637 3.109 +b1325 34.674 Monomer +b1930 8.639 +b0603 34.397 +b0008 35.219 Homodimer +ECOK12F057 16.38 +b4014 60.274 +b0385 41.537 +b0433 53.245 +b0027 18.156 +b2972 29.466 +JW5936 37.851 +b4464 46.758 +b1117 25.438 +b4356 49.44 +b1850 22.284 Homotrimer +b1675 7.907 +b1822 30.419 Homodimer +b0297 33.175 +b1434 19.731 +b4144 11.958 +b1056 20.912 +b1521 54.808 +b1218 25.512 +b0516 45.694 Homodimer +b3247 55.364 Homodimer +b1009 28.898 +b4542 3.643 +b2365 47.163 +b2113 39.938 Homodimer +b0134 28.237 Homodecamer +b0594 59.112 +b3737 8.256 +b3606 17.726 Homodimer +b3175 11.365 +b0258 43.739 +b0223 28.636 +b0412 19.56 +b3795 50.399 +b2593 26.339 Homodimer +b2721 64.98 +b2194 39.089 +b1022 50.766 +b1656 21.266 Homodimer +b1194 27.857 Monomer +b0009 21.222 Homotrimer +b0760 54.536 +b4385 49.757 +b4488 34.507 Tetramer +b2366 47.901 Monomer +b1363 53.944 +b4332 41.361 +b4330 23.793 +b2013 38.1 +b0510 10.844 +b1097 38.247 Homodimer +b3393 16.846 +b1902 18.894 +b2132 83.46 +b2948 20.686 +b1334 27.967 Homodimer +b2667 10.596 Homodimer +b2661 51.72 Homotetramer +b0784 8.758 Heterotetramer +b1225 58.066 Dimer +b4227 34.345 +b2145 9.264 +b0895 22.869 Heterotrimeric +b1014 143.815 Homodimer +b2737 41.339 +b3523 47.208 +b2569 66.57 +b2398 12.72 +b1000 34.455 +b0766 30.201 +b4463 53.737 +b0340 17.049 Homodecamer +b0948 78.854 Monomer +b4274 13.085 +b2297 77.172 Homohexamer +b4313 23.116 +b2079 27.656 +b3697 29.721 Homodimer +b2075 112.078 +b1962 25.904 +b0004 47.114 +b0705 43.161 +b2458 36.067 Homodimer +b3267 7.452 +b1583 12.909 +b4353 7.729 +b0147 19.934 Monomer +b1594 44.316 Homodimer +b2862 11.291 +JW5935 37.851 +b0356 39.359 Homodimer +b0373 11.543 +b3364 43.166 +b1278 29.021 +b3138 17.622 +b3486 100.785 +b2221 23.526 Heterodimer +b0483 13.171 +b0174 28.444 Homodimer +b3249 18.788 +b4029 78.491 +b1138 27.579 +b1609 49.283 +b4360 17.353 +b2273 27.991 +b3105 33.256 +b2949 15.186 Monomer +b2301 24.326 +b3375 27.821 +b0355 31.424 +b2179 38.092 +b4307 19.957 +b4122 60.105 Homodimer +ECOK12F032 28.164 +b0859 41.956 +b4044 49.646 +b0281 53.074 +b1736 12.748 +b1839 12.378 +b4139 52.356 Homotetramer +b0249 9.014 +b1915 8.239 +b3153 18.858 +b2717 17.057 Monomer +b4347 12.203 +b2984 28.151 +b2182 43.353 +b2576 49.914 +b2065 21.249 Homotrimer +b1397 42.277 +b0048 17.999 +b0194 63.693 Homodimer +b1090 38.214 Homodimer +b0090 37.815 Homodimer +b2104 27.339 +b4309 36.878 +b4669 1.91 +b2129 34.425 +b0984 78.687 +b3787 45.839 Homodimer +b0267 43.769 +b3012 31.11 Monomer +b2907 42.288 +b2572 24.321 +b3956 99.063 Homotetramer +b3293 13.945 +b1765 20.059 Homodimer +b3872 26.939 +b3888 37.094 +b0396 41.926 +b0563 7.088 +b0814 18.603 +b4375 59.574 +b4006 57.329 +b2467 21.749 Homodimer +b0844 30.196 +b1550 6.548 +b2626 24.561 +b0209 29.992 +b3639 43.438 Homododecamer +b3844 26.242 Monomer +b2134 33.887 +b0018 7.742 +b1617 68.447 Homotetramer +ECOK12F008 80.33 +b2964 46.389 +b2872 44.804 +b0189 9.48 +b4051 35.172 Homodimer +b0072 49.882 Heterodimer +b2994 62.491 Heterodimer +b4259 16.633 +b1936 10.732 +b2260 50.185 +b2306 28.653 +b4121 23.442 +b2073 24.218 +b3775 10.232 +b0574 44.305 +b1093 25.56 Homotetramer +b2699 37.973 Polymerizes +b3062 22.679 Heterotetramer +b3322 15.876 +b1593 24.981 Homodimer +b1036 17.074 +b4341 6.709 +b0910 24.746 +b1089 6.446 +b1180 23.711 +b3385 27.389 Monomer +b0108 15.622 +b0367 29.812 +b2764 66.27 +b4016 67.699 +b1826 5.552 +b1229 3.447 +b1710 20.47 +b1019 46.754 Homodimer +b1266 32.58 +b0559 7.624 +b4655 4.779 +b0972 40.681 Heterodimer +b3842 18.34 +b4512 7.467 +b4359 85.494 +b3244 51.364 +b3567 56.47 +b4529 8.696 +b0737 25.598 +b0621 48.412 +b0071 22.487 Heterodimer +b2007 12.778 +b0728 41.393 Heterotetramer +b4311 27.888 Monomer +b1624 38.257 +b3564 52.618 Homodimer +b2394 40.909 +b2244 34.923 +b4595 7.102 +b4211 29.734 Monomer +b2043 51.316 +b4337 44.688 +b3568 41.031 +b4494 18.234 +b0618 40.077 +b3500 48.773 Homodimer +b4618 3.222 +b0441 68.15 +b0315 40.725 +b1267 23.212 +b3534 27.14 +b3431 73.577 Monomer +b1101 50.677 Homodimer +b4559 6.555 +b4518 5.883 +b2060 79.343 +b3093 46.892 +b0569 85.319 +b2549 123.832 +b4159 123.968 Homoheptamer +b2266 11.306 +b1662 23.445 Homotrimer +b2249 44.226 +b1768 23.362 +b3067 70.263 +b4233 49.874 +b2184 66.413 Monomer +b1642 16.353 Homodimer +b3980 43.314 Monomer +b1481 7.987 +b1317 23.565 Monomer +b1654 12.879 Homodimer +b3920 21.763 +b1853 31.976 +b1920 29.039 +b3835 63.203 +b0732 100.015 +b3013 34.983 +b1570 15.656 +b1914 23.893 +b3298 13.099 +b4126 8.55 +b2527 20.138 +b3911 51.624 +b4774 2.4 +b1543 46.267 +b0834 49.873 Homodimer +b3848 21.757 Monomer +b3473 42.156 +ECOK12F001 11.543 +b0149 94.293 +b0392 10.618 +b1238 23.457 Homotetramer +b0336 43.65 +b3127 49.009 +b1185 20.142 +b0035 21.244 +b3452 33.264 +b0892 49.626 Homotetramer +b4487 13.469 +b4537 9.123 +b3405 27.354 Monomer +b3648 23.593 Homotetramer +b1430 22.531 Homodimer +b4217 8.072 +b1082 57.93 +b2263 27.682 Monomer +b3633 47.291 +b4023 10.532 +b4147 20.591 +b1380 36.535 +b0841 22.399 +b0843 9.971 +b4695 15.411 +b2585 52.802 Multimeric +b0599 39.092 +b4354 77.324 +b1353 19.244 +b0474 23.586 Monomer +b1547 32.902 +b2910 12.594 Homodimer +b0566 29.019 +b1805 62.332 Homodimer +b0133 31.598 Homodimer +b2066 24.353 Homotetramer +b2206 93.042 +b3091 54.093 +b0057 5.737 +b4415 5.564 +b4030 15.597 +JW5900 13.452 +b0435 11.994 +b0324 50.549 +b2491 75.305 +b3134 13.721 +b3266 111.454 +b3320 22.244 +JW1882 37.851 +b0326 31.793 +b2414 34.49 Homodimer +b1428 35.849 +b1337 52.194 +b3552 22.197 +b2525 12.331 +b3029 11.532 Homodimer +b3487 38.828 +b1171 11.852 +b2812 28.562 +b1508 10.016 Homodimer +b0982 16.386 +b3342 13.737 +b1655 29.917 +b1987 35.856 +b0040 56.587 +b1638 25.545 Homodimer +b2822 128.848 Heterotrimer +b4181 14.935 +b3412 28.505 Monomer +b3506 20.964 +b2233 131.153 +b1569 8.578 +b4271 45.582 +b4210 35.208 +b2216 100.372 +b4728 2.33 +b1693 27.467 Homodimer +b2876 28.103 +b1683 54.745 +b2224 40.352 +b2869 66.096 +b3764 13.134 +b3925 35.852 Homodimer +ECOK12F071 14.507 Homotetramer +b3382 13.528 +b3121 45.251 +b0252 31.051 +b3166 35.087 +b3081 72.678 Monomer +b2265 48.765 Homodimer +b1997 13.452 +b3106 25.895 Monomer +b0765 39.102 +b2730 35.092 Homodimer +b4389 49.472 +b1990 34.411 +b0184 129.905 +b2794 32.588 Homodimer +b4046 19.254 +b2480 17.634 Monomer +b3635 30.29 Monomer +b0484 87.873 +b0138 20.307 +b0602 47.827 +b4349 59.307 +b3922 10.776 +b0633 37.528 +b3881 31.983 +b0142 18.079 Monomer +b3559 76.813 Tetramer +b0074 57.298 Homotetramer +b2767 9.662 +b3546 63.804 +b1186 56.728 +b0727 44.011 +b2803 52.259 +b4135 21.931 +b1260 28.724 Tetramer +b3006 26.287 +b3211 34.607 +b0579 14.05 +JW5933 35.098 +b2760 55.901 +b1303 36.986 +b0407 11.887 +b2646 12.308 +b0806 8.896 +b4293 19.48 +b1372 113.78 +b2081 51.193 +b3709 45.211 +b4040 32.512 +b3464 54.513 +b3636 6.372 +b0065 28.244 +ECOK12F055 28.808 +b1883 37.468 +b2701 40.256 Monomer +b0087 39.875 +b4209 24.883 Homodimer +b4381 27.734 Monomer +b2828 33.108 +b2388 34.723 +b1134 17.433 Monomer +b0540 11.543 +b4026 7.386 +b1298 28.013 Homodimer +b4083 73.151 +b4131 81.26 Homodecamer +b2700 17.582 Homodimer +b2178 40.36 +b2891 41.251 +b1520 34.809 +JW5951 37.851 +b1877 18.885 +b4501 7.678 +ECOK12F084 99.192 +b2202 23.101 +b0976 14.89 +b1123 38.867 +b4799 2.14 +b0250 17.026 +b1439 52.793 +b4752 6.767 +b0218 12.136 +b4387 24.083 +b3022 11.232 +b3478 30.362 +b4004 48.395 Monomer +ECOK12F077 25.627 +b1542 53.685 +ECOK12F026 182.631 +b3898 38.733 +b4178 15.593 +b1777 10.338 +b0915 35.589 +b4680 2.704 +b2381 28.721 +b3647 63.179 +b3360 20.772 Monomer +b0696 20.267 +b2912 21.105 +b1838 25.274 +b2854 18.277 +b4817 7.582 +b1952 6.946 +b0533 35.696 +b1177 13.414 +ECOK12F023 8.15 +b0081 17.386 Dodecamer +b4727 1.69 +b0283 34.954 Homodimer +b0628 36.072 Monomer +b0038 45.127 Homodimer +b1832 18.122 +b4034 43.388 +b4526 6.584 +b1440 42.295 +b2099 35.621 +b4593 6.518 +b3884 28.507 Monomer +b3769 9.703 Tetramer +b4558 7.177 +b2531 17.337 +b1329 59.9 +b3236 32.337 Homodimer +b3834 22.153 +b3609 17.277 Homotetramer +b1604 33.903 +b0079 3.291 +b4754 3.191 +b1282 11.396 +b1339 34.058 +b3505 37.851 +ECOK12F083 8.313 +b1006 45.557 +b3238 9.196 +b0623 7.463 +b2933 48.971 +b4160 35.934 Heterodimer +b3374 28.332 Monomer +b3240 73.591 +b2248 28.904 +b0879 70.702 Homodimer +b2790 16.274 Monomer +b1237 15.54 Homodimer +b0041 27.144 Heterodimer +ECOK12F039 33.661 +b3198 19.997 Homotetramer +b1305 8.763 +b1518 11.255 Homodimer +b0709 54.159 +b3180 10.784 +b3883 31.728 +b2288 16.457 +b1010 13.763 Homotrimer +b2517 43.086 +b1942 17.307 +b3598 13.866 +b2866 81.321 Heterotrimer +b1074 13.968 +b2430 47.752 +b2971 14.67 +b1323 57.656 Homodimer +ECOK12F021 13.452 +b2186 37.823 +b2293 23.008 +b2782 12.098 +b1711 34.949 +b0781 37.346 Monomer +b3389 38.881 Monomer +b1280 44.531 +b3665 63.739 Homodimer +b2546 34.483 +b4392 73.353 +b3711 36.882 +b1250 46.063 Dimer +b2378 35.493 +b2372 33.616 +b0157 22.128 +b4569 19.193 +b2926 41.118 Monomer +b2970 37.349 +b1755 56.243 +b3480 29.722 +b4514 9.555 +b2610 49.787 +ECOK12F086 23.63 +ECOK12F092 12.945 +b2909 21.23 +b4027 23.755 +b3959 27.16 Homodimer +b3096 14.172 +b3755 26.076 +b4218 49.763 +b1217 8.945 Monomer +b2027 36.455 Homodimer +b4300 29.268 +b0437 23.187 +b4393 12.355 Homodimer +b0195 26.362 Homodimer +b0585 45.652 Monomer +b3859 38.12 Monomer +b3484 43.146 +b1889 34.186 +b3934 37.82 +b2903 104.376 +b4767 2.019 +b1420 5.894 +b3643 24.425 Homodimer +ECOK12F066 6.108 +b1071 10.341 +b0126 25.097 Homodimer +b0091 53.626 +b4038 51.708 +b3905 32.315 +b3717 22.485 +b1476 25.368 Trimer +b3485 41.062 +b0919 34.488 +b3650 79.342 +b2211 61.553 +b1938 60.589 +b2826 17.865 +b1133 40.959 +b2328 30.137 Dimer +b3833 28.073 +b2077 50.901 +b0791 15.465 +b4225 12.492 Homodimer +b2668 18.639 +b0780 32.788 +b1955 30.439 +b4492 87.13 +b2281 20.538 +b0632 44.444 +b3806 97.586 +b1024 92.207 +b3347 28.882 +b1740 30.637 Homodimer +b1511 57.545 +b3998 24.673 Monomer +b0459 20.096 Homodimer +b0093 31.434 +b2333 18.951 +b0310 25.589 +b3039 29.903 Monomer +b4386 37.926 Monomer +b0882 84.207 +b2432 20.898 +b0718 90.128 +b1804 42.734 +b2516 36.192 +b1912 20.701 +b4388 35.043 +b0534 18.223 +b1021 16.082 +b2123 16.594 +b2019 33.367 +b1295 9.321 +b1211 40.517 +b2158 36.882 +b4505 12.857 +b1070 15.867 +b2664 24.991 +b0681 52.78 +b3458 39.379 +b4351 33.52 +b4741 3.823 +b3743 16.888 +b3962 51.56 Homooligomer +ECOK12F094 10.866 +b2424 30.292 +ECOK12F063 15.853 +b1610 35.783 Monomer +b0716 39.539 +b0446 30.371 +b2358 14.401 +b4586 18.118 +b2218 106.506 +b3830 29.425 +b4812 4.477 +b3050 23.087 +b2174 26.759 +b4746 1.481 +b4383 44.37 +b2445 13.778 +b0556 17.226 +b1473 31.539 +b2497 45.06 +b2476 26.995 Homotrimer +b4662 5.338 +b4169 47.985 +b0190 20.877 +b3019 83.831 Heterotetramer +b3132 47.192 +b4207 22.216 Homodimer +ECOK12F051 11.429 +b4411 4.81 +b0263 13.093 +b3727 34.121 +b3400 15.496 Monomer +b1701 62.759 Homodimer +b3740 23.431 +b0342 22.799 Homotrimer +ECOK12F034 18.133 +b2783 9.356 +b1449 37.61 Homodimer +b0822 30.413 Homodimer +b2121 42.119 +b0229 63.153 +b3343 10.718 Heterohexamer +b4242 99.466 +b4096 24.705 +b1308 11.475 Monomer +b4320 31.473 +b3168 97.35 +b4301 23.214 +b1300 53.419 +b0207 29.437 Monomer +b1384 34.62 +b2111 19.061 +b3951 85.96 +b3944 22.955 +b2346 28.042 +b2071 17.428 +b4555 11.07 +b0792 41.566 +b0613 31.644 +b1038 15.056 +b2324 74.434 +b1487 57.641 +b2698 19.424 +b0119 13.942 +b2214 38.549 Homodimer +b1008 21.57 +b2098 47.359 +b3960 50.318 +b4137 12.331 Homotrimer +b1732 84.163 Homotetramer +b1489 90.26 Homodimer +b4781 1.029 +b0069 63.975 +b4683 3.203 +b3878 77.275 +b0830 56.47 +b0918 27.614 +b1874 26.762 Homodimer +ECOK12F044 29.627 +b4141 44.778 +b2755 33.194 Homodimer +b3071 23.401 Oligomer +b0865 18.991 +b1648 9.359 +b4777 3.906 +b0676 44.541 +b1103 13.241 Homodimer +b0402 50.216 +b4224 9.272 +b2156 53.576 +b4294 9.925 +b4407 7.311 +b3442 44.231 +b0424 20.777 Homodimer +b2544 32.716 +b3148 14.798 +b0427 48.81 +b2688 58.269 +b0970 23.363 +b1823 7.402 +b4797 2.183 +b3228 18.262 Homodimer +b4281 8.821 +b0997 94.456 +b1159 31.39 +b3873 36.942 +b0303 8.472 +b1981 47.817 +b4042 13.245 Homotrimer +ECOK12F070 19.285 +b2962 10.953 Monomer +b4231 34.978 +b4318 18.715 +b4786 2.198 +b3315 12.226 +b1236 32.942 Homotetramer +b4538 12.969 +b0015 41.1 Homodimer +b0940 95.242 +b3456 46.269 +b1830 76.663 +b0129 16.54 +ECOK12F089 65.715 +b4732 3.234 +b1441 37.041 +b4788 1.576 +b3380 44.56 +b0929 39.333 Homotrimer +b2945 26.709 +b2154 31.259 Homotetramer +b3120 20.577 +b2871 43.328 Homodimer +b1770 28.261 +b1773 30.81 +b3268 37.021 +b3659 43.493 +b1789 15.256 +b0275 9.902 +b1733 27.774 Homodimer +b2607 28.422 Homodimer +b3462 38.544 +b1122 17.416 +b4687 3.103 +b3169 54.871 Monomer +b1641 15.602 +b2628 62.007 +b1172 10.807 +b2466 38.746 +b1291 37.661 +b0661 53.663 Monomer +b3212 163.297 +b1896 53.611 Homotetramer +b1957 6.678 +ECOK12F046 43.66 +b2709 55.236 +b3689 46.187 +b4544 12.192 Heterodimer +b0920 28.666 +b0466 6.025 +b1760 9.947 +b3907 37.32 +b0088 46.974 +b2246 46.294 +b0096 33.956 +b2270 63.634 +b0930 52.57 Homodimer +b0888 34.623 Homodimer +b0127 34.647 +b0899 52.496 +b1578 24.724 +b3491 37.657 +b0325 37.978 +b0368 32.41 Homodimer +b2072 27.208 +b1614 54.689 Homodimer +b4054 43.538 Homodimer +b4533 9.023 +b4220 64.796 +b4315 19.373 +b2756 22.293 +b1704 38.735 +b3160 37.129 +b4188 9.949 +b4733 5.943 +b2022 40.278 +b2147 45.069 Heterotetramer +b0738 15.383 +b4372 15.174 +b1374 21.908 +b0499 26.96 +b1529 23.617 +b1148 12.156 +b4253 69.578 +b3216 86.289 +b4753 2.617 +b0835 49.582 +ECOK12F033 37.284 +b3593 156.321 +b0945 36.775 Monomer +b1971 37.369 Heterodimer +b3903 47.199 Homotetramer +b2468 71.844 +b4676 3.458 +b2285 18.59 +b2558 58.302 +b2532 27.048 Homodimer +b4265 46.041 +b0723 64.422 +ECOK12F050 16.507 +b0472 21.963 +b0158 29.367 +b2742 40.149 +b1270 21.999 +b3255 16.687 Homodimer +b1166 9.694 Homodimer +b2392 44.194 +b1795 8.671 +b4395 24.065 +b0531 25.458 +b0254 33.639 +b3685 58.939 +b2937 33.557 +b3974 36.36 +b1336 54.886 +b2723 64.077 +b3392 15.098 +b0372 33.54 +b0434 20.95 +b1136 45.757 Homodimer +b3289 48.348 +b0130 46.315 +b3875 27.2 +b3994 70.85 Homodimer +b1587 89.78 +b4172 11.166 Homohexamer +b3680 33.958 +b4820 2.169 +b4358 36.448 +b2733 95.247 +b0813 31.168 +b1869 15.226 +b2118 138.068 +b0363 44.708 +b2423 32.538 +b1607 12.323 +b1382 6.84 +b0300 28.475 +b0456 13.318 +b0571 25.395 +b1288 27.864 Homotetramer +b3495 16.066 Homodimer +b3184 34.963 +b2977 13.737 +b4663 3.408 +b2205 24.925 +b3314 25.983 +b2734 25.098 +b3896 39.294 +b1198 51.449 Homodimer +b0873 60.064 +b2986 25.356 +b2528 11.556 Homodimer +b1682 27.582 +b4462 85.227 +b4474 31.169 Homooctamer +b2064 68.963 +b4352 35.66 Monomer +b4257 44.9 +b1442 34.36 +b1845 79.491 +b1104 13.981 +b1626 16.319 +b0730 28.273 +b3744 36.651 Homodimer +b0496 89.332 +ECOK12F102 81.489 +b0698 59.189 +b4334 27.255 Homodimer +b0493 29.41 +b2091 37.39 +b1127 44.923 Homodimer +b3972 37.851 Monomer +b4241 34.531 Homodimer +b4149 19.852 Homodimer +b3365 93.121 Homodimer +b2367 56.001 +b3248 21.515 Homodimer +b3371 38.569 Homododecamer +b1599 11.72 +b1432 45.741 +b2344 48.542 +b3181 17.641 +b0564 28.763 +b3702 52.551 +b1659 35.25 +b1023 77.413 +b1834 94.97 Homohexamer +b0714 29.845 +b0104 37.384 Homotetramer +b4339 21.769 +b2225 28.304 +b3581 23.445 Homodimer +b1548 21.404 +b2241 58.958 +b1577 35.071 +b3391 44.716 +b3024 14.011 +b3698 13.787 +b4192 40.061 +b0480 60.824 Monomer +b0942 18.914 +b2426 27.85 +b3173 60.753 +b3328 15.905 +b0023 9.684 +b3027 13.201 +b2461 17.659 +b2012 8.148 +b4500 151.114 +b0752 34.678 +b3118 34.539 +b4824 2.149 +b0850 10.521 +b1888 71.382 +b1699 45.923 +b2852 52.753 +b0178 17.688 Homotrimer +b4194 10.896 +ECOK12F096 12.587 +b1203 39.667 Monomer +b1168 56.906 +b3868 52.255 Homodimer +b4465 45.818 +b1392 39.32 +b0086 47.447 Monomer +b0885 26.619 Monomer +b1375 8.751 +b4088 32.91 +b0109 32.762 Homodimer +b0677 40.949 Homotetramer +b4075 14.523 +b3300 48.512 +b1445 6.646 +b0827 44.067 Homodimer +b0552 37.851 +b3821 33.163 Homodimer +b0181 28.08 Homotrimer +b3824 22.427 +b3558 33.477 +b0553 40.302 Homotrimer +b2556 53.33 +b4108 12.345 +b3812 27.122 +b0220 16.872 Homodimer +b1385 53.699 Homodimer +b1213 14.639 +b1803 35.661 +b0238 16.971 Homotetramer +b0485 32.903 Homotetramer +b3657 50.948 +b4186 45.02 +b4080 53.453 +b4367 30.113 +b0344 116.483 Homotetramer +b2128 25.515 +b1744 35.8 +b3747 69.294 +b1540 26.565 +b3693 31.374 +b0523 17.78 Homooctamer +b4588 3.644 +b2501 80.432 Homotetramer +b0230 23.779 +b4074 61.295 +b3910 25.343 Monomer +b0432 34.911 Heterooctamer +b1307 8.042 +b2080 12.024 +b3780 47.126 +b3521 33.33 +b1245 33.022 +b0546 30.841 +b2771 48.234 +b3525 29.601 +b2168 33.756 Homodimer +b4291 85.322 +b1396 14.851 Homotetramer +b3865 23.561 +b3996 29.689 Homodimer +b3646 22.048 +b4745 7.383 +b0870 36.495 Homotetramer +b4423 4.014 +b2929 19.272 +b3158 37.047 +b2362 13.672 +b3088 35.909 +b4120 52.636 Monomer +b4541 12.603 +b2681 41.655 +b0682 11.999 +b4729 8.638 +b0886 62.92 +b1289 13.989 +b3614 35.353 +b3982 20.532 Monomer +b2153 24.831 +b2451 49.599 +ECOK12F072 27.062 +b0650 61.986 +b1757 48.229 Monomer +b0763 27.364 +b2342 46.531 Heterotetramer +b3640 16.287 Homotrimer +b0503 41.111 Monomer +b3793 51.517 +b3573 17.459 +b1791 41.208 +b1210 46.307 Homodimer +b3704 13.789 +b0461 14.557 +b2417 18.251 Heterodimer +b1982 53.995 Homohexamer +b0438 46.356 +b2992 17.964 +b1672 24.421 +b3771 65.532 Homodimer +b0699 8.275 +b3312 7.273 +b2327 28.643 +b1544 8.778 +b2259 9.871 +b1657 40.064 +b1635 22.868 Homodimer +b4050 9.023 +b3164 77.101 +b3503 15.853 +b3292 16.179 Homodimer +b3028 21.891 Homodimer +b0401 46.209 +b0286 24.343 Heterotrimer +b2839 34.365 +b3137 31.294 Homotetramer +b3785 39.489 +b3752 32.291 Homodimer +b3902 30.145 Homotetramer +b2818 49.195 Homohexamer +b3641 22.836 Homodimer +b0408 66.632 +b3596 18.079 +b3572 46.711 Homodimer +b2023 21.653 Heterodimer +b3157 19.672 +b4112 41.029 +b4073 35.042 +b4551 7.599 +b4328 41.084 +b2983 38.533 +b1565 11.308 +b2269 46.078 +b4273 34.398 +b1576 6.842 +b2456 9.956 +b2566 33.81 Monomer +b2906 44.245 Homotetramer +b1448 19.248 +b0005 11.355 +b3999 22.613 +b1931 24.979 +b4601 3.236 +b3661 29.424 +b2838 46.177 +b3627 39.423 +b2976 80.489 Monomer +b0171 25.97 Homohexamer +b4180 26.557 Homodimer +b2130 41.139 +b4113 25.031 Homodimer +b1457 18.907 +b2197 17.698 +b1663 49.447 +b0228 20.042 Monomer +b1463 32.275 Homodimer +b2220 52.176 +b1950 28.543 +b2726 13.168 Homodimer +b2107 12.466 +b3900 16.094 +b2710 54.234 Homotetramer +b0338 32.961 +b2887 69.089 +b2177 69.669 +b2062 41.91 +b1572 4.688 +b1381 96.835 +b3918 28.451 +b0565 35.562 Homopentamer +b0679 68.347 +b3068 18.673 +b1534 42.659 +b1519 29.006 Monomer +b0952 20.634 +b3056 46.467 Monomer +b2793 20.708 +b0477 48.449 Homodimer +b2442 45.382 +b4140 17.692 +b0810 24.364 +b1535 33.863 Homodimer +b0448 66.017 +b1694 57.562 Homotetramer +b4453 3.917 +b3161 44.333 +b2601 38.804 +b2112 10.137 +b1379 15.166 +b2819 66.902 Heterotrimer +b0464 24.767 +b3469 76.84 +b3311 9.704 +b4490 30.292 +b1560 39.26 +b4079 79.374 +b0176 49.071 +b1208 30.925 Homodimer +b3421 45.222 Monomer +b3696 24.17 +b1114 129.983 Monomer +b1908 25.039 +b3083 12.103 +b1051 14.259 +b0034 15.436 +b1492 55.077 Monomer +b3299 4.364 +b1085 12.1 +b0986 24.268 +b1799 34.631 +b1361 20.05 +b2508 52.022 Homotetramer +b0713 25.8 +b4161 39.193 Monomer +b2660 46.082 +b4748 4.013 +b0959 24.147 +b3033 16.548 +b2234 85.775 Tetramer +b4012 16.447 +b0364 20.487 +b1100 29.809 +b1953 8.579 +b1552 7.684 +b2573 21.696 +b4509 5.494 +b1751 24.125 +ECOK12F078 50.46 +b1786 56.603 Homodimer +b3804 27.798 Monomer +b4477 21.391 Homotrimer +b1149 50.871 +b0064 33.384 Homodimer +b1941 49.316 +ECOK12F088 23.433 +b4272 13.452 +b3637 9.006 +b3530 127.724 +b1988 32.835 +b0731 69.668 +b1012 42.219 +b0631 9.827 +b0630 23.883 Monomer +b4469 83.478 +b1935 13.396 +b2274 16.163 +b4177 47.345 Homodimer +b4373 16.61 +b3929 17.36 Homotrimer +b0687 20.315 Homodimer +b2598 1.924 +b1783 74.48 +b1020 39.265 +b4783 2.162 +b3625 27.461 +b3514 111.517 Homotrimer +b3575 36.573 Homodimer +b3324 30.038 +b0871 62.011 Homotetramer +b0576 50.677 +b0592 34.283 +b1667 11.288 Homodimer +b3786 42.245 Homodimer +b4114 61.667 +b3336 18.495 Homooligomer +b3765 55.146 +b2069 49.371 +b2210 60.23 +b0558 16.414 +b1176 24.776 +b1513 55.821 +b2334 17.89 +b1761 48.581 Homohexamer +b3846 79.594 Heterotetramer +b4146 38.75 +b2085 11.465 +b3430 48.698 Homotetramer +b3547 42.951 +b2379 46.216 Homodimer +b4522 5.337 +b0852 32.436 +ECOK12F043 11.707 Homodimer +b2614 21.798 Homodimer +b1709 27.081 +ECOK12F095 19.719 +b3165 10.269 +b1435 72.702 +b1907 42.819 +b4497 26.725 +b3628 40.826 +b4384 25.95 Homohexamer +b1047 44.69 +b3580 55.155 Homodimer +b2594 37.122 +b1960 18.016 +b0527 19.53 +b0861 24.914 +b4547 8.071 +b0047 67.796 Homodimer +b4556 23.724 +b1106 32.397 +b4171 35.065 Monomer +b1196 16.695 +b3952 32.43 +b0987 9.508 +b3867 52.729 Monomer +b0376 41.849 +b4737 0.915 +b3390 19.538 Monomer +b2339 19.851 +b1905 19.424 Homooligomer +b1728 22.35 +b2067 123.887 Homodimer +b4204 29.739 +b2140 35.199 +b3915 32.927 Homodimer +b3588 56.306 Homotetramer +b2431 33.052 +b1723 32.456 Homodimer +b1618 21.799 +b2735 27.435 +b1829 31.923 +b1386 84.379 Homodimer +b1141 9.287 +b0021 19.565 +b4615 12.34 +b1355 5.194 +ECOK12F068 11.008 +b0262 39.059 +b4003 51.032 +b1958 32.191 +b4726 1.758 +b0973 66.253 Heterodimer +b0593 42.932 Monomer +b4371 37.625 Monomer +b1536 14.121 +b0481 17.093 +b2058 17.616 +b3152 23.198 +b4199 10.149 +b3288 34.168 Monomer +b3448 16.624 +b2687 19.416 Homodimer +b0966 11.779 +b0445 64.992 +b2409 33.903 +b0958 18.801 +b0646 55.256 +b4244 17.121 Heterododecamer +b3195 29.097 +b2380 62.657 +b3950 11.248 +b2192 37.851 +b2703 33.332 +b0046 20.17 Homodimer +b2672 11.847 +b1970 15.46 Homotetramer +b2035 44.744 +b0213 27.244 +b0163 15.096 +b2387 11.735 +ECOK12F103 26.259 +b3810 26.729 +b0175 31.454 +ECOK12F010 113.788 +b2922 26.635 +b1338 46.588 +b1819 30.955 Homotrimer +b4798 2.827 +b2957 36.851 Homotetramer +b4064 45.711 +b4397 17.108 +b1299 20.092 +b4579 24.932 +b0680 63.478 Monomer +b3003 31.488 +b3271 28.574 +b1046 53.666 +b3874 46.335 +b2751 52.558 Heterodimer +b0755 28.556 Homodimer +b0279 32.679 +b2399 14.91 +b2204 31.874 +b0308 25.213 +b0590 33.871 +b1686 14.945 Homotetramer +b1992 26.386 +b3515 28.028 Homodimer +b2135 21.691 +b1474 112.963 Trimer +b2824 14.973 +b3687 15.774 Monomer +b0154 45.366 Homodimer +b0422 8.952 Heterooligomer +b4350 134.095 +b2377 8.874 +ECOK12F011 40.465 +b3513 41.191 Homotrimer +b2833 7.877 +b2460 25.418 Homodimer +b0089 45.987 +b0702 12.557 +b0136 21.112 +b3584 27.414 +b1079 24.615 +b4668 2.064 +b3179 23.335 +b3368 49.951 Monomer +b0790 28.79 +b1644 31.496 +b0111 32.122 +b3678 57.295 +b1937 11.127 +b0495 24.533 +b2996 36.003 +b3818 14.408 +b2056 45.409 +b2954 21.039 Homodimer +b1726 20.367 +b0098 102.023 Monomer +b1015 54.344 +b3388 46.162 +b3887 15.95 Homodimer +b0845 41.852 +b3075 36.21 +b3304 12.77 +b1202 99.685 +b3791 41.901 Homotetramer +b0309 7.854 +b2881 103.519 +b3183 43.286 Monomer +b0615 55.173 Oligomer +b1362 11.07 +b2029 51.481 Homodimer +b2704 13.304 +b3149 21.106 Homotetramer +b0526 52.202 Monomer +ECOK12F040 84.966 +b0415 16.157 +b1865 17.306 +b4043 22.358 Homodimer +b3154 16.776 +b1108 21.226 +b2535 49.04 +b2745 39.091 Monomer +b0458 18.267 +b3684 27.328 +b0715 36.884 +b0026 104.297 Monomer +b3783 47.004 Homohexamer +b2255 74.289 Homohexamer +b3498 77.167 +b2716 53.935 +b3550 17.104 +b3508 23.213 +b4089 32.362 +b2230 62.671 +b0904 30.991 +b0468 14.77 +b0639 24.528 +b1892 13.316 Homodimer +b2275 32.136 +b3742 15.808 Homodimer +b0941 37.851 +b2580 25.693 Monomer +b2761 100.545 +b0771 81.505 +b0287 22.967 Homodimer +b2277 56.525 +b1276 97.677 Monomer +b3724 27.417 Homodimer +b4287 28.191 +b4421 3.972 +b2940 8.114 +b3399 25.399 +b2050 44.914 +b1621 56.627 +b3344 13.045 Heterohexamer +b2295 17.213 +b4613 3.021 +b2510 7.994 +b0856 35.49 +b4772 4.937 +b2748 11.622 +b3119 8.608 +b0740 45.956 +b3310 13.541 +b2137 26.951 +b3041 23.353 Homodimer +b4237 17.446 Monomer +b3583 25.561 +b2370 134.743 +b4162 20.816 Homodimer +b0145 17.528 +b0614 20.27 +b0840 28.548 Homooctamer +b3449 27.41 +b0128 28.516 +b4312 22.993 +b4035 40.99 +b2325 10.0 +b1399 35.295 +b4503 6.953 +b4819 3.427 +b2449 14.554 +b4705 5.031 +b3566 35.734 +b1818 27.636 Homotrimer +b4801 2.72 +b2538 51.109 +b2553 12.425 Homotrimer +b0457 58.72 +b3313 15.281 +b1650 39.516 +b1637 47.527 Homodimer +b3557 19.725 +b2316 33.322 +b3443 15.95 +b2513 22.176 +b2015 34.169 +b0489 33.743 +b0658 33.298 +b4660 61.576 +b2574 60.337 Monomer +b1774 37.701 +b4187 60.59 Homotetramer +b2874 33.071 +b2982 37.851 +b1564 9.071 Homotetramer +b2870 44.187 Homotrimer +b3586 41.771 +b3082 14.995 +b0736 15.562 +b2851 19.093 +b0825 22.997 Homodecamer +b4658 12.628 +b0508 29.377 Homodimer +b1324 17.835 Homodimer +b0846 20.307 +b2254 36.339 +b4355 59.443 +b1063 20.5 +b0307 53.052 +b0289 26.628 +b0707 20.211 +b2243 44.108 +ECOK12F093 12.131 +b0509 30.801 +ECOK12F029 35.499 +b1602 48.723 Heterodimer +b0847 60.351 +b3259 31.877 +JW2286 9.868 +b3363 20.431 +b1257 18.961 +b2753 37.92 +b2729 41.363 Monomer +b0975 21.546 +b0151 28.886 +b2834 38.5 +b0839 43.609 +b3367 28.563 +b2357 18.766 +b1595 33.281 +b0580 9.404 +b0253 31.892 +b3517 52.685 Homohexamer +ECOK12F100 19.518 +b1456 77.142 +b2166 33.573 +b0751 26.996 +b3973 35.312 Monomer +b3086 25.48 +b4127 10.468 +b3718 26.279 +b1901 35.541 +b0320 55.581 +b4795 8.757 +b3715 24.664 +b1792 13.386 +b4290 33.146 +b1060 9.664 +b1393 27.237 +b3861 52.637 +b2000 106.825 +b0764 24.939 +b2360 30.443 +b4124 27.488 +b3736 17.264 +b0506 29.27 Homotetramer +b2465 73.043 Homodimer +b1286 72.491 +b0036 28.19 Homotrimer +b4279 44.104 +b4481 40.64 +b2369 22.69 Homodimer +b2232 26.555 Homodimer +b1043 11.967 +b2492 30.565 +b0321 50.374 +b0470 71.138 +b3222 29.644 Homodimer +b0137 21.047 +b2991 12.697 Monomer +b4103 13.335 +b1749 30.969 Monomer +b0173 43.388 Homodimer +b1788 3.772 +b3858 10.273 +b1466 26.161 +b2151 37.357 Homodimer +b1996 34.398 +b2088 11.543 +b3784 40.957 +b2167 57.519 +b2389 43.574 +b2482 72.583 +b3005 15.527 +ECOK12F045 29.359 Monomer +b1214 30.841 +b3095 24.585 +b0777 28.276 +b4119 50.657 Homodimer +b1494 104.656 +b0953 6.507 +b4335 42.743 +b3316 10.43 +b2245 28.916 Homohexamer +b0382 9.937 +b4184 14.224 +b2102 31.604 +b4674 2.657 +ECOK12F069 31.615 +b0635 70.857 +b2541 28.5 +b1943 39.312 +b0419 36.42 +b4238 80.023 Homodimer +b0757 41.442 +b2719 27.999 +b0587 42.1 +b1860 37.174 Homododecamer +b3751 30.95 +b3202 53.99 +b1601 37.543 +b0754 38.01 Homotetramer +b1895 15.633 +b3346 26.821 +b1719 74.014 Homodimer +b1112 8.815 +b2697 96.032 Homotetramer +b3803 42.963 Homooligomer +b2309 28.483 +b0016 40.909 +b1035 20.724 +b3203 10.75 +b4246 5.098 +b1698 33.77 +b4467 45.11 +ECOK12F074 12.768 Monomer +b1837 7.315 +b2835 41.656 +b1527 42.841 +b3936 7.871 +b2868 16.922 Heterotrimer +b0240 15.655 +b3319 22.087 +b1347 7.863 +b4288 34.131 +b3626 39.04 +b4348 51.395 +b3845 40.876 Heterotetramer +b3136 41.783 +b3408 8.371 Monomer +b0773 17.085 Homodimer +b1408 22.524 +ECOK12F012 16.141 +b0990 7.781 +b0431 74.368 Heterooctamer +b1331 37.851 +b0469 19.859 Homodimer +b4306 27.354 +b0513 47.239 +b0858 18.518 +b0487 15.235 Homodimer +ECOK12F025 9.271 +b1730 30.16 +b4324 29.308 +b3631 42.284 +b0318 21.687 +b3345 13.641 Heterohexamer +b1290 30.571 +b0802 8.568 +b4092 27.848 Homodimer +b2363 12.133 +ECOK12F031 10.249 +b2650 18.024 +b3721 53.161 +b2036 42.966 Homodimer +b4557 9.381 +b4346 53.157 +b4338 12.078 +b1268 71.289 +b3597 41.988 +b2435 31.412 +ECOK12F042 8.372 Homodimer +b3162 70.546 +b1651 14.92 Homodimer +b1916 28.117 +b0160 59.383 Homotetramer +b2471 13.601 +b1687 113.248 +b1342 36.612 +b4757 3.112 +b2805 27.362 +b0551 14.176 +b2560 24.439 +b3256 49.321 +b0600 42.963 Homodimer +b1742 21.577 +b0492 31.791 +b2503 85.608 +b2494 53.908 +b1041 15.882 +ECOK12F058 15.695 +b3440 38.765 +b4735 3.827 +b1132 22.948 +b3528 45.436 +b3209 22.982 Homodimer +b3726 32.322 +b1875 21.205 +b3953 12.637 +b0719 19.838 +b3790 24.22 Homodimer +b3870 51.904 Oligomer +b4771 1.882 +b0823 90.125 +b2678 37.62 +b1750 26.058 +b0712 34.386 +b0917 6.855 +ECOK12F087 36.787 +b4039 18.777 Monomer +b0786 25.902 +b3243 34.516 +b1164 8.769 +b1735 32.968 Homodimer +b1294 61.565 +b2696 6.856 Homodimer +b1418 20.286 Monomer +b2644 17.964 +b0284 78.088 Heterotrimer +b3511 20.903 +b0328 24.811 +b1864 26.423 +b1402 34.398 +b0925 67.812 +b2078 51.991 +b4185 23.352 +b1059 40.902 Monomer +b1731 9.377 +b0739 43.157 +b3407 85.12 +b3981 13.643 +b3701 40.587 +b0381 39.316 +b1809 12.493 +b2534 31.516 +b2863 29.513 +b1002 45.683 Homodimer +ECOK12F020 34.398 +b2200 23.619 +b1807 25.181 Homodimer +b4724 7.141 +b4475 35.903 +b1315 38.652 +b3359 43.767 Homodimer +b2382 32.356 +b2289 34.594 +b2354 16.408 +b3778 77.024 Homodimer +b0471 12.015 Homodimer +b2853 8.055 +b3877 50.982 +b2400 53.816 Monomer +b0242 39.057 Homotetramer +b3714 46.866 +b1713 87.378 Tetramer +b0420 67.617 Homodimer +b0809 26.731 Heterotetramer +b4566 9.734 +b3735 19.332 +b2747 25.737 Homodimer +b0753 12.872 +b0350 28.89 +b2149 56.415 +b3133 17.086 +b3416 78.503 +b4378 28.909 +b0659 17.526 +b2930 34.323 Homodimer +b3753 36.612 +b3454 26.31 +b1746 53.026 +b3863 103.118 +ECOK12F091 27.973 +b0692 46.495 Monomer +b1261 42.983 Tetramer +b0358 29.04 +b3037 23.479 +b4532 6.782 +b1126 43.028 +b4527 5.769 +b0411 33.589 +b2897 10.547 Monomer +b1161 15.769 +b2785 48.052 +b0082 34.878 +b3590 68.867 +b0913 84.474 +b3843 55.604 Homohexamer +b2115 30.613 +b1628 20.544 +b1098 23.783 Homodimer +b0140 27.054 +b1532 7.537 +b3258 51.717 +b1007 17.749 +b4376 21.074 +b2712 82.066 Monomer +b4675 2.691 +b2371 41.671 Homodimer +b0517 37.967 Homodimer +b1782 27.831 +b3425 12.082 Homodimer +b2603 18.978 +b0478 59.424 +b1322 39.392 +b2713 19.026 +b2413 29.305 +b2800 23.775 Homotetramer +b3933 35.793 +b3604 29.166 +b4410 4.359 +b4571 31.061 +b3128 56.402 Homodimer +b2836 80.7 +b3338 97.058 +b1718 20.564 Monomer +b1592 44.153 +b0188 48.204 +b4736 2.716 +b1228 9.607 +b1669 29.341 +b0735 10.932 +b0524 26.894 +b3688 11.826 +JW2285 19.565 +b2848 18.72 +b0577 46.603 Homoheptamer +b3770 34.094 Homohexamer +b2519 85.067 +b3549 21.1 +b3130 17.836 Homohexamer +b3732 50.325 +b4793 2.605 +b1359 32.509 +b3630 30.872 +b1154 22.02 +b4473 40.955 +b4364 28.001 +b0055 30.579 Homodimer +b4216 20.421 +b2485 23.361 +b1763 73.217 +b2422 41.059 +b1918 24.801 +b0562 21.121 +b0233 15.488 +b4419 4.014 +b2070 71.639 +b4066 49.378 +b1142 10.963 +b4254 36.907 +b0357 10.318 +b2965 79.416 +b3819 33.283 +b3309 11.316 +b3457 32.982 +b2619 17.727 +b1040 24.935 +b1027 11.543 +b1328 33.482 +b0439 87.438 Homohexamer +b2830 20.795 Monomer +b4011 14.447 +b1306 13.517 +b1064 24.35 +b4002 15.199 +b2240 50.31 Monomer +b0502 13.916 +ECOK12F019 12.371 +b0954 18.969 Homodimer +b2504 7.462 +b2305 34.179 +b2226 61.476 +b3074 12.315 Homodimer +b3447 61.768 +b4082 36.908 +b1827 30.029 +b2715 51.026 +b3227 48.831 +b2017 9.308 +b1715 1.762 +b1647 33.676 +b2268 32.93 Homodimer +b2059 33.035 +b1426 8.878 +b3182 51.798 +b1128 42.579 Homodimer +b3510 11.858 Homodimer +b4201 11.442 +b2865 26.565 +b2599 43.111 Homodimer +b4468 38.361 +b3673 42.216 +b1124 29.111 +b3613 46.595 +b3220 43.293 +b1223 49.693 +b1836 8.753 +ECOK12F090 9.911 +b0124 86.747 Monomer +b3788 39.754 Homodimer +b1600 13.115 +b0908 46.096 Monomer +b2595 27.829 +b3686 16.093 Homodimer +b3621 35.544 +b3611 15.596 +b4158 12.638 +b2997 39.652 Heterodimer +b2732 13.94 +b0453 19.431 +b0059 109.769 +b3163 33.621 Homodimer +b3820 17.163 +b0444 25.514 +b0653 24.915 +b2942 41.952 Homotetramer +b3422 60.299 +b3789 32.734 Homotetramer +b3836 9.664 +b4157 11.819 +b2968 20.395 +b0024 7.89 +b0675 27.163 Monomer +b0058 24.861 +b3139 28.645 +b3781 11.807 Monomer +b3177 30.615 Homodimer +b4723 7.104 +b0542 7.173 +b2831 25.527 +b0912 10.651 Heterodimer +b3215 25.339 +b0051 30.42 +b0002 89.12 Homotetramer +b2766 46.393 +b1696 34.894 +b1234 33.067 +b0933 27.738 +b2564 26.384 Homooctamer +b1314 29.832 +b3492 43.741 +b2310 27.992 +b4794 0.951 +b0219 28.925 +b2315 45.406 Monomer +b2829 83.716 +b2239 40.843 Homodimer +b4479 26.08 +b2750 22.321 +b4173 48.327 Monomer +b1597 10.591 +b3170 16.651 +b2420 28.243 +b0678 29.774 Homohexamer +b3223 24.074 +b4100 21.027 Homodimer +b3965 41.967 +b1700 10.724 +b2009 18.081 +b0742 28.231 Homotrimer +b0121 32.321 Homodimer +b2622 46.652 +b1086 36.027 +b1304 25.493 +b1824 5.212 +b0547 17.433 +b0647 20.915 +b0264 19.758 +b4284 44.281 +b2011 54.501 Monomer +b3502 45.497 +b2419 13.732 +b3638 25.343 +b2437 40.16 +b2361 20.255 +b1632 24.459 +b1882 14.097 +b4072 24.567 +b0729 29.777 Heterotetramer +b2105 10.134 +b2425 37.615 +b2051 18.273 Homodimer +b4803 4.249 +b3040 26.485 +b0003 33.624 +b1193 22.227 +b3602 13.696 +b3908 23.097 Homodimer +b2711 41.404 +b1113 34.636 +b4222 12.866 +b2563 14.052 Homodimer +b4785 3.188 +b0479 43.306 +b1333 35.707 +b3102 37.386 Homodimer +b2447 22.907 +b0430 22.623 Heterooctamer +b3499 31.942 Monomer +b2161 43.41 +b2582 15.555 +b3054 48.389 +b0598 75.105 +b3433 40.018 Homodimer +b1956 64.283 Homodimer +b0070 42.713 +b0010 20.071 +b0829 69.114 +b3749 55.042 +b2190 91.202 +b0032 41.431 +b1221 23.927 +b2209 18.192 Homodimer +b1274 97.35 Monomer +b1679 15.8 Homodimer +b1802 42.561 +b2021 39.36 Homodimer +b0691 24.604 +b2749 12.017 +b1383 11.878 +b0075 3.146 +b0549 10.348 +b3441 18.794 +b4325 30.593 +b2684 20.563 +b3263 7.204 +b0617 10.689 Oligomer +b3892 24.606 +b4106 29.431 +b2537 32.838 +b4098 31.845 +b1062 38.827 Homodimer +b0162 43.687 +b1102 81.233 +b1233 16.99 +b1843 24.395 +b1623 36.397 +b2499 36.854 Homodimer +b1581 45.968 +b3117 35.232 +b0838 23.713 +b2271 35.931 +b3018 27.453 +b3023 17.827 +b0022 9.868 +b1509 50.539 +b0135 44.899 +b3816 36.59 Homopentamer +b3260 35.866 +b1706 54.382 +b4709 9.868 +b1660 43.367 +b4060 10.303 +b0226 9.406 +b3167 15.154 Monomer +b3722 66.483 +b1821 20.117 +b2987 53.809 +b0112 49.69 +b3520 22.604 +b0443 15.088 Homotetramer +b1488 21.213 +b4094 20.73 +b2236 9.293 +b4170 67.924 +b4612 6.027 +b1191 62.285 +b3591 50.607 Homodecamer +b2313 17.907 +b1118 45.344 +b2502 58.136 Homodimer +b4510 6.69 Homodimer +b2321 36.668 +b1991 36.987 Homodimer +b1861 22.086 Homotetramer +b2108 36.885 +b3301 14.98 +b1758 22.752 +b3321 11.736 +b1844 25.133 +b2846 24.287 +b2718 15.465 +b0152 32.998 +b2849 16.272 +b2498 22.533 Homodimer +b3383 33.504 +b4765 1.806 +b4028 26.281 +b4280 41.384 +b1880 42.238 +b1162 28.265 +b1620 36.625 +b1708 17.283 +b1870 27.777 Homodimer +b3046 91.792 +b3540 37.56 +b4327 34.711 +b3026 50.282 +b4167 54.65 +b1498 62.802 +b0131 13.834 Heterooctamer +b0898 41.432 +b2890 57.603 Homodimer +b1800 40.315 +b2539 20.579 +b0512 49.602 Homotetramer +b0406 42.594 Homodimer +b4682 5.383 +b4554 7.995 +b1671 25.093 +b2559 18.718 Homodimer +b3232 43.064 +b2006 6.959 +b2579 14.284 +b1524 33.516 Homotetramer +b3615 40.524 +b1522 34.322 Homodimer +b2440 31.782 +b0217 29.606 +b2550 44.521 +b3294 14.365 +b2635 7.703 +b1531 15.184 Monomer +b2489 28.101 +b4251 21.502 +b2312 56.488 Homotetramer +b2307 26.87 +b4191 27.602 +b2203 16.297 +b3672 3.206 +b0061 25.519 Homotetramer +b2253 42.238 Homodimer +b0783 17.467 Homohexamer +b1764 36.687 Homodimer +b4784 5.22 +b0234 17.555 +b2198 7.745 +b1806 20.921 +b3548 25.951 +b2969 32.058 +b1163 45.295 Monomer +b2905 40.147 +b2264 61.367 Homodimer +b1983 25.867 +b0554 7.778 +b0251 16.815 +b4013 35.727 Homodimer +b1293 36.038 +b1341 46.452 +b2882 49.108 +b1066 22.688 +b3901 12.265 Homodimer +b1273 9.386 +b2353 12.658 +b1575 6.964 +b4740 7.677 +b2523 46.18 Homohexamer +b1502 32.07 +b0410 13.364 +b2758 40.025 +b2792 12.787 +b0417 35.071 +b3208 27.342 +b3860 23.105 +b2955 42.584 +b3415 45.967 +b4521 16.533 +b4230 35.659 +b0548 6.494 +b3829 84.674 Monomer +b3738 30.303 +ECOK12F035 23.657 +b4036 49.912 Homotrimer +b2980 28.826 +b0911 61.158 +b1815 59.711 +b1525 49.718 Homodimer +b3823 22.474 +b2611 29.262 +b4019 135.997 +b3042 11.276 Homotrimer +b3270 41.484 +b0001 2.138 +b3351 20.958 +b0863 26.93 +b1235 37.302 +b2063 59.45 +b1567 5.881 +b4189 12.038 +b2634 26.606 +b4756 6.81 +b0989 7.72 +b3808 17.342 +b1906 8.629 +b2689 15.59 +b3451 31.5 +b1034 26.891 Homotrimer +b1639 12.568 Monomer +b3992 26.97 Homodimer +b2779 45.655 +b0403 69.041 Monomer +b3468 23.791 +b0683 16.795 Homodimer +JW5918 35.098 +b1579 45.262 +b0960 81.668 +b4822 2.29 +b3296 23.469 +b0893 48.414 Homodimer +b4744 4.013 +b0597 14.97 Homotetramer +b0720 48.015 Homohexamer +b1284 27.603 +b1784 49.392 +b0641 21.357 +b4594 7.362 +ECOK12F080 7.053 +b4152 15.015 +b0610 14.927 +b3622 46.878 +b0296 9.92 +b0113 29.425 +b2902 25.938 +b1242 23.521 +b1890 32.011 +b0645 27.736 +b1688 39.841 +b4582 14.467 +b1320 36.134 +b2979 53.812 +b4823 1.393 +b1390 27.877 +b1424 62.758 +b3089 43.478 +b3305 18.904 +b3146 31.348 +b3620 39.042 +b4268 21.004 +b1011 25.209 +b4037 31.943 +b2736 30.751 +b1563 11.225 +b4821 2.128 +b3802 45.245 +b3187 35.217 +b1467 58.558 Dimer +b1376 16.017 Homodimer +b2919 29.173 Dimer +b4142 10.387 Heptamer +b0836 14.536 +b0225 10.847 Monomer +b0025 34.734 +b0775 38.648 Homodimer +b0805 81.96 +b4710 19.565 +b1251 10.602 Homodimer +b4374 25.301 Monomer +b0346 31.322 +b2586 11.805 +b1459 27.838 +b4391 62.443 Monomer +b3358 79.972 +b0584 82.107 +b3253 34.724 Homodimer +b2810 43.234 Homodimer +b0060 90.053 +b0654 27.503 +b2663 51.08 +b0906 26.282 +b3213 52.015 +b4033 57.013 +b0062 56.074 Homohexamer +b3664 46.934 +b3225 32.593 Homotetramer +b3474 38.522 +b0894 90.399 Heterotrimeric +b2272 19.019 Monomer +b2453 41.031 +ECOK12F038 10.748 +b0717 26.954 +b4379 31.491 +b2335 17.89 +b3562 16.123 +b1084 118.197 +b4032 32.225 +b2261 35.477 +b0924 170.23 Homodimerization +b1283 6.948 +b4796 4.027 +b2048 50.463 +b2950 35.994 +b0608 44.176 +b1461 8.673 Homodimer +b4400 49.83 +b4078 25.079 +b3832 54.764 +b2675 80.479 Tetramer +b2441 49.403 +b2142 24.47 +b3607 29.317 Homohexamer +b2473 24.855 +ECOK12F062 71.76 +b3909 33.669 +b0643 18.797 +b2920 53.824 +b0821 47.329 +JW5934 13.452 +b0515 28.73 Monomer +b1075 23.575 +b0409 35.382 +b2018 2.081 +b1495 89.283 +b3020 60.694 +b4076 22.784 +b2047 52.408 +b0758 39.646 Homodimer +b0050 13.867 +b0793 42.06 +b0428 32.248 +b2809 8.174 +b4787 3.305 +b1352 8.434 +b3010 35.957 +b4575 13.956 +b2888 51.758 +b0290 59.997 +b2738 23.222 +b0787 26.123 +b2185 10.693 +b1994 37.823 +b3519 63.697 Monomer +b3116 48.879 +b4203 15.769 +b1310 46.808 +b1190 38.845 +b3052 51.051 Homodimer +b2474 74.893 +b3450 39.524 +b3983 14.875 +b1365 9.787 +b1403 13.452 +b0460 8.628 +b3582 32.455 +b2690 20.78 +b3092 53.987 +b1188 60.814 +b1681 46.823 +b3629 36.73 +b0974 27.597 +b0950 46.463 +b0689 18.282 +b2097 38.109 Homooctamer +b4292 35.532 +b0337 47.591 Homohexamer +b3599 67.972 Homodimer +b1394 28.405 +b3049 7.892 +b0868 38.086 +ECOK12F015 24.081 +b1391 18.324 Monomer +b1863 18.747 Homodimer +b1360 28.128 +b2820 133.959 Heterotrimer +b2057 45.26 +b3677 15.729 +b1926 13.829 Homodimer +b2406 46.14 +b0260 50.526 +b2351 34.635 +b0347 62.186 +b2350 13.226 +b2624 8.133 +b3670 11.106 Dimer +b0770 51.351 +b3516 31.563 Homodimer +b2638 11.824 +b4534 4.039 +b2924 30.896 Homoheptamer +b3280 10.007 +b2448 13.819 +b0637 11.582 +b2600 42.043 +b1406 30.706 +ECOK12F006 9.604 +b0451 44.515 Homotrimer +b3825 38.978 +b1004 20.846 Homodimer +b1182 33.759 Monomer +b1653 169.381 +b2776 54.177 +b3009 24.134 +b2459 30.172 Homodimer +b4749 2.308 +b3731 15.068 +b1835 53.228 +b2898 36.094 +b0897 23.1 Homooctamer +b1033 35.343 +b0963 16.919 Homohexamer +b1872 88.964 +b1469 49.89 +b0143 53.871 Monomer +b4067 59.197 +b1787 17.851 +b2308 24.649 +b0273 36.827 +b0141 20.118 +b2674 15.34 +b3099 15.147 +b1505 41.616 +b2769 30.308 +b4130 53.055 Monomer +b3185 9.124 +b3087 36.214 +b2280 19.875 +b1145 25.095 +b0889 18.887 Homodimer +b4095 42.01 +b1183 15.063 +b0304 48.244 +b1072 23.519 +b3479 26.82 +b1332 9.339 +b4321 47.138 +b1174 10.235 +b3890 8.442 +b3233 14.961 +b3707 2.894 +b3990 43.32 +b3470 9.095 +b2294 19.536 +b3512 20.599 +b3205 32.492 Homotrimer +b4061 60.801 +b2481 22.154 +b0741 18.824 +b3235 37.581 Homotrimer +b0855 41.931 +b2318 30.4 Homodimer +b3097 13.906 +b0210 22.991 +b0042 33.513 Heterodimer +b4202 8.986 +b0265 9.902 +b0706 28.865 +b1878 14.059 +b4049 38.468 +b0794 63.132 +b1501 83.495 +b0077 62.984 Dimer +b3002 18.641 +b3662 41.842 +b2475 31.46 +b0167 102.39 Monomer +b3455 28.427 +b4573 33.808 +b4688 4.63 +b4155 36.976 Homodimer +b1253 14.231 +b3826 29.708 +b4333 31.956 +b2642 64.196 +b2939 4.859 +b1842 8.846 +b2915 8.372 +b3369 5.819 +b1175 29.614 +b0922 50.579 +b0767 36.308 +b1087 21.691 Monomer +b3488 61.164 +b0377 46.459 +b1407 86.716 +b3940 88.888 Homotetramer +b3387 32.1 +b2176 58.588 +b1603 54.623 Heterodimer +b0092 32.84 Monomer +b0611 29.618 Monomer +b0539 10.509 +b1470 12.872 +b1891 21.566 Heterohexamer +b2724 21.873 +b3720 60.657 Homomonomer +b0686 28.437 +b0543 11.958 Homodimer +b0797 49.989 +b1754 42.845 +b1212 30.975 +b2807 14.333 +b1747 38.456 +b0518 58.596 +b1271 27.933 +b4581 7.969 +b1443 28.722 +b0288 11.798 +b3542 32.308 +b1743 18.199 Homodimer +b3716 16.683 +b1753 20.533 +b3610 9.137 Monomer +b0616 33.11 Oligomer +b2671 13.066 +b3710 41.49 +b4455 5.998 +b1932 17.891 +b4196 23.578 Homodimer +b2100 34.385 +b2032 43.188 +b4316 26.689 +b3494 13.027 +b2645 11.737 +b3560 34.774 Tetramer +b1993 20.164 Homodimer +b3051 60.7 Homooligomerizes +b2647 157.5 +b3817 14.549 +b1771 36.329 Monomer +b0708 53.667 Monomer +b0465 127.215 +b0045 48.667 +b0380 8.097 +b4791 2.925 +b1685 7.266 +b0239 47.009 +b0390 24.917 +b2757 25.209 +b3279 20.245 +b0578 23.905 Homodimer +b1187 26.969 Homodimer +b2410 36.406 +b0102 28.292 +b3207 24.345 +b4644 10.073 +b4800 1.763 +b3143 25.677 +b0931 45.897 +b4523 6.338 +b1419 5.86 +b1537 18.321 +b1296 50.853 +b4197 32.007 +b2443 25.143 +JW5895 37.851 +b1649 22.275 +b3339 43.284 Monomer +b1867 20.452 +b0789 47.634 +b0582 40.909 +b1226 26.449 +b1670 29.583 +b2908 49.815 Homotetramer +b1309 64.186 +b3885 22.732 +b0902 28.204 Monomer +b3341 20.019 +b2026 22.756 +b4256 18.622 +ECOK12F037 8.576 +b2895 19.7 +b3188 10.495 +b0857 30.541 +b0306 26.004 +b0155 50.349 Homodimer +b0266 13.184 +b2791 29.666 +b2597 12.785 +b2817 45.634 +b3438 36.422 +b0876 63.589 +b0067 59.533 +b0848 14.203 +b3329 18.565 +b2679 36.023 +b2928 27.132 +b0522 39.461 Homodimer +b3396 93.636 +b1640 39.496 +b3750 33.452 +b0349 31.937 Homodimer +b3335 24.957 +b1885 57.512 +b3497 26.949 +b4815 1.201 +b4093 16.57 Homodimer +b0695 98.718 +b3961 34.276 Homodimer +ECOK12F076 21.224 +b3325 70.698 +b4792 2.925 +b0476 36.034 Homodimer +b3601 21.99 Homodimer +b1346 8.456 +ECOK12F018 11.543 +b0864 27.022 +b0514 38.734 +b2659 37.36 Homotetramer +b0053 47.284 +b2847 30.85 +b1797 13.611 +ECOK12F060 19.636 Homotetramer +b0535 23.664 +b0073 39.517 Homodimer +b1503 18.144 +b1076 42.045 +b1001 48.355 +b4101 16.54 +b0353 41.551 +b0261 33.423 Monomer +b1398 48.953 Monomer +b4156 54.725 +b3242 7.847 +b1091 33.515 Homodimer +b2433 17.168 +b0693 82.416 +b0114 99.668 Homodimer +b4286 15.067 +b0277 24.471 +b0019 41.356 Monomer +b4107 16.171 +b0361 34.398 +b0921 29.814 +b3413 25.726 +b0521 31.644 Homodimer +ECOK12F028 143.692 +b1972 24.068 Heterodimer +b3477 35.248 +b4077 47.159 +b1814 48.907 +b1160 12.133 +b3379 32.915 Monomer +b3569 44.869 +b1028 12.008 +b3671 60.441 Dimer +b0878 40.624 Homohexamer +b1152 28.233 +b2483 34.359 +b2046 53.693 +b2706 12.953 +b0826 26.719 Homodimer +b4679 3.092 +b0452 31.966 Homotetramer +b3576 17.549 +b0800 35.049 +b3058 13.62 Homooctamer +b2304 32.699 +b3113 14.007 Homotrimer +b2120 83.39 +b0299 33.54 +b0052 35.114 Homodimer +b4266 27.563 +b3251 36.952 +b2169 39.648 +b4685 2.979 +b3813 81.99 +b3340 77.581 +b4000 9.535 Heterodimer +b1538 77.516 +b1703 31.211 Homotetramer +b0221 89.224 +b2540 11.329 +b4295 36.112 +b2811 15.94 Homodimer +b4025 61.53 Homodimer +b3930 33.594 +ECOK12F099 102.472 +b0099 14.927 Monomer +b3995 18.243 +b2825 20.52 +b1050 8.443 +b0243 44.63 Homodimer +b4572 44.979 +b1951 23.516 +b0750 38.241 Monomer +b0785 16.981 Heterotetramer +b1848 10.717 +b1840 32.526 +b1129 55.3 Homodimer +b3719 42.755 +b0101 7.306 +b3522 37.911 +b4296 47.004 +b0418 19.418 +b1948 26.928 +b0327 8.89 +b1940 25.05 +b4721 5.511 +b3017 51.858 +b2175 21.04 Monomer +b0734 42.453 Heterodimer +b4071 20.714 +b0528 7.39 +b3603 59.168 +b2722 33.029 +b1963 11.325 +b2995 43.602 +b0497 159.725 +b1433 40.583 +b4117 84.425 Homodecamer +b4200 15.703 +b1702 87.435 Homodimer +b1622 43.642 Homodimer +b0352 36.47 +b1612 60.299 Homodimer +b3619 34.893 Homopentamer +b2298 54.797 +b4168 16.853 Homodimer +b4068 11.672 +b4323 53.58 +b2278 66.438 +b1137 25.147 +b1423 51.043 +b1558 7.563 +b2055 27.894 +b3079 40.099 +b1582 11.92 +b4672 4.122 +b2044 45.362 +b4769 2.006 +b2428 31.22 Homodimer +b1349 29.721 Homotetramer +b1350 96.368 Homotetramer +b2421 32.664 Homodimer +b3397 21.153 Homodimer +b1130 25.535 Monomer +b0276 27.859 +b2555 27.348 +b1636 31.322 Homodimer +b1478 35.38 +b1847 12.962 Monomer +b3541 35.844 +b2587 47.052 +b0762 5.3 +b4205 12.247 +b0245 12.905 +b1081 34.475 +b2744 26.9 Monomer +b3828 35.629 +b1207 34.218 Homohexamer +b0054 89.671 +b0423 54.973 +b3536 59.428 +b2159 31.48 Monomer +b0656 37.851 +b3356 14.517 +b3001 38.832 Homotetramer +b3993 23.015 +b0097 18.88 +b4208 51.66 diff --git a/docs/src/examples/data/ecoli_gene_product_aa_counts.tsv b/docs/src/examples/data/ecoli_gene_product_aa_counts.tsv new file mode 100644 index 00000000..221f46b2 --- /dev/null +++ b/docs/src/examples/data/ecoli_gene_product_aa_counts.tsv @@ -0,0 +1,86101 @@ +gene_product metabolite aa_count +b0688 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a/docs/src/examples/data/ecoli_kcats.tsv b/docs/src/examples/data/ecoli_kcats.tsv new file mode 100644 index 00000000..529b958c --- /dev/null +++ b/docs/src/examples/data/ecoli_kcats.tsv @@ -0,0 +1,1871 @@ +KcatHeckmann KcatID KcatWilken +9.43196005260989 PACOAT 10.9120128736813 +32.0146989593031 METSOXR1 165.285310417079 +7.91377087589054 FACOAL180t2pp 10.2386395121356 +36.1806204157884 ORNDC 36.7405980852963 +6.85848692170799 NTD11 155.381793927963 +6.70053017457135 ALAGLUE 42.0253463517743 +3.3 UAGCVT 1.30705129092317 +11.3233008256728 PGSA141 5.64931147279789 +5 GMPS2 8.07638220306335 +16.3194538084558 LPLIPAL1A181pp 16.3194538084554 +8.4 ACGK 27.6724140070047 +22.6714957215784 MCITD 22.6865368606216 +2.79595711420478 MLDCP3App 5.7251444016901 +10.9966267301907 AMPN 77.3765615479587 +1.92184908723055 ASPO4 1.92362605160684 +0.445730546112667 MLTG3 67.8712565472095 +141.171248093136 ACOAD2f 141.173888351252 +3.28379953890912 QMO2 5.45673248230946 +100.558809027635 PAPSR 100.870965305321 +0.112264526711574 UPP3MT 0.172851992487584 +2.06191272909666 AACPS5 8.13644354061057 +4.39387451614104 3HAD161 20.2079881365452 +0.122167138105439 NADS1 0.249032845069962 +0.0143369406308285 TYRL 0.0143369406308285 +18.7248986850497 KDOPP 77.2883393436443 +71.1055373608447 ETHAAL 71.2306309376164 +588.747629875143 PGL 586.39682377293 +99.6353948883991 ACLS 106.830240320908 +0.02 PERD 0.0286781361381749 +19.2183185651919 PLIPA1A141pp 19.6785462045252 +4.4800608462323 3OAR120 86.0686170855472 +35.7649614246495 GAPD 53.2785993677246 +1.42274572189134 GLYK 113.064144701073 +29.2711483800407 FBA3 29.2711354120221 +8.6979639005214 GLBRAN2 151.200330262706 +1.22603165516902 TDPDRR 2.23467029991883 +7.9106756849236 SOTA 30.8116139504105 +8.41916898496515 GLCP 28.7526179967746 +4.39387451614104 3HAD181 19.0734701910554 +4.88887249825539 DURIPP 11.2171376193392 +32.2022536372637 FA141ACPHi 0.0277778036288518 +37.4175053228345 G3PAT161 38.3584514581406 +9.78994837774661 NNAM 1.63227747834688 +8.28107699735692 RNTR3c2 14.8146162825956 +6.19497135686288 ACPPAT181 14.6099513866662 +42.5161615804862 AGPAT180 42.6777585419664 +6.16253252869977 3PEPTabcpp 13.5782558740914 +9.43165489858234 MLDCP2Bpp 14.2135558833711 +38.6801727600959 NDPK2 52.5233160379649 +13.5464745532275 ACCOAC 138.632463171414 +36.924305260043 ACPPAT141 37.1803146988015 +0.993811031248455 SPMS 2.08624986876921 +70.9551139784491 LPLIPAL2G181 63.4612343862657 +7.91377087589054 FACOAL120t2pp 8.3287078898557 +1.85198942878732 SSALx 46.2398938965107 +5.94746483433418 ALR4x 9.35361959271919 +57.8983630936063 HACD2 78.7360095503009 +72.4442343685591 THRD_L 79.6951309654221 +20 PRAGSr 16.7384047678623 +11.1279549747511 PSSA140 11.1718306303849 +5.07458857570637 PGSA181 8.53995093996578 +8.44448432836534 XAND 19.2606878975392 +4.93456729372366 NADDP 5.54617251663392 +117.570990995235 GNK 131.65079196951 +16.9676597109052 PAPA160 17.0374360339197 +4.41185684255258 MLDEP1pp 6.06362924749609 +491.5502437377 RPE 491.893276243817 +32.0280109910669 SSALy 350.685640463426 +6.32674528403374 ICHORS_copy2 25.327784696219 +3.30165956241704 I2FE2SS2 3.18756532761165 +16.9676597109052 PAPA180 17.0008515689021 +6.50195825224657 XYLI2 97.6601507759918 +14.0623086215301 IG3PS 19.4762349809081 +14.7767439401705 ADK3 34.0930287086376 +0.509427511775445 DHBS 6.85811709381124 +177.843931399064 ACOAD6f 177.844949908588 +17.8653110991477 PPNDH 30.2469838380866 +9.87477281963863 APG3PAT180 10.3137538937935 +9.84431651530832 ALLTN 13.7101061039416 +6.34828672805857 ECAP3pp 8.73742377756047 +0.209117787538849 SERASr 5.65727157633988 +16.3194538084558 LPLIPAL1A120pp 16.3163273143542 +5.51442024445757 GGGABADr 14.4133011463264 +5.74534530970532 PSD180 11.4378574206988 +10.5134422900573 GSPMDS 134.305984038697 +58.9910628293098 OMPDC 57.6554181521944 +6.37340143940361 DAGK180 0.0277781110682206 +4.03455769786865 EAR80y 31.1289909955973 +0.46 NNDPR 0.190338042346845 +10.7537996694691 PLIPA1A161pp 10.3513999125154 +6.82122326168105 EDTXS1 8.2817598491849 +10.7537996694691 PLIPA1E141pp 19.3456954316171 +4.39387451614104 3HAD120 17.9262445411535 +0.008 ADNK1 0.008 +0.371229170487303 DHPS2 0.0729373657245774 +0.507402231738151 EAR181x 25.1226076678753 +438.012822340482 FUM 926.985122788092 +4.39387451614104 3HAD180 6.70541870111596 +9.66340435185086 ECAP1pp 10.9383447535555 +6.87430439124086 HEPT4 5.60206713146548 +3.28395809606657 FEROpp 4.31541354923658 +13.3447540146703 PPCSCT 42.5162931865175 +3.29516313117813 RNTR4c2 3.79724662089966 +147.301927177988 PDH 239.608918828279 +10.8557719467887 GLCTR3 10.9070685027437 +3.61218245230292 PUNP5 29.5953899652237 +1.49190406602306 EAR121x 28.2869532411161 +31.4913433767798 CS 57.4780540823508 +177.065139062978 ACOAD3f 177.066817390225 +13.678526406088 FACOAE180 31.5224193315994 +6.37340143940361 DAGK160 0.0277793996268651 +699.450754301741 NADH16pp 703.301975422063 +4.7238623506414 3HAD60 22.275591576624 +11.1279549747511 PSSA141 13.5610514462322 +34.7185511909517 G3PAT120 34.7513262498806 +0.15 PPCDC 0.407426249003398 +19.0103517848249 RHAT1 22.2236289765125 +5 PRAIi 6.12122486691319 +13.9694726459131 MEPCT 13.9696650944432 +1.27988953981167 3OAR181 61.3961108918232 +3.28311771871243 PYK6 19.1950656249907 +0.0542946360539788 METAT 0.295830141038553 +0.00407857264841925 DHORD5 0.00407857264841925 +18.1561006422383 NADPHQR2 124.333275230633 +80.4671796115922 GLUDC 146.332428655654 +9.87477281963863 APG3PAT141 14.8055152685988 +1.82257631235063 ADCS 16.9170405510094 +0.12 GART 5.08333475653984 +12.2100308227317 AGM4PCPpp 12.9200900807758 +6.23665409241565 PPK 0.0277798257318668 +8.6990148311021 PPGPPDP 44.7469456365525 +42.5161615804862 AGPAT141 42.6395642052658 +4.95176257517003 HEPT2 5.60847802108991 +0.474918771833212 MPTG2 6.12804682618814 +2155.66943545417 EDA 2155.89208295077 +8.49287900299281 PTRCTA 198.222292960297 +135.338619967144 ME1 611.547633403789 +14.5830301099742 PRAIS 12.9416319613328 +136 AGPAT160 136.394835709328 +16.7126625970639 TDSK 30.7985985069289 +3.81484086552927 EAR160y 21.340122733011 +5.86971862887959 RNDR3b 5.90724772868684 +16.9676597109052 PAPA161 16.9855027851897 +278 PFK 278 +3.7544744728258 ATPPRT 3.19217918278974 +44.351669172647 DHAPT 49.2721963465659 +7.13686041960961 MMM 13.2109177684435 +7.12301822013926 FEOXAMR3 0.432520444337824 +4.03455769786865 EAR120y 30.8582688078458 +59.2531488956125 HACD5 85.4935286617234 +5.04881721113684 GGPTRCS 87.2513131470686 +4.39387451614104 3HAD80 22.2658727853376 +3.76112320556721 AACPS2 17.3813342701599 +16 G1PACT 63.5241823966578 +0.444460993907051 MTAN 1.34486104893421 +11.6645773743091 ASAD 9.32252082178174 +42 GK1 99.2101610416183 +16.7969392463763 GGGABAH 71.1541727154328 +5.29079931198922 S2FE2SS 5.29079931435412 +6.34828672805857 ECAP2pp 8.73742377756047 +108.588027779767 G3PD2 108.413694541783 +0.32 DHPPDA2 37.7160794186968 +24.532646993107 MLDEP2pp 24.5480711991132 +7.91269582629219 MCITS 9.30356281977296 +24.9302195019085 GLNS 83.0647007093046 +3.81484086552927 EAR161y 29.5895670241788 +4.7238623506414 3HAD140 14.1323474099951 +6.10494911723952 FOMETRi 163.733093348062 +10.7537996694691 PLIPA2G181pp 21.3381006224578 +9.62180248466948 MCITL2 12.6901269715786 +4.43933684472924 GHMT2r 14.0464753478018 +7.11827119414585 ACOAD1f 7.19230032350075 +28.1553987688921 SHK3Dr 30.8686359508281 +3.63395450143943 GLYCK 41.6291155304584 +0.696852840385725 CPPPGO 1.9575474232322 +5.92034460327097 3OAS180 8.62272334281505 +22.0985712615015 CBMKr 48.9923131785471 +10.0047946408752 DGK1 25.7742216037812 +2.43103799110981 DRPA 2.59138992709921 +22 PPND 20.4608900970349 +8.24329298955517 3OAR100 97.8987867315128 +36 U23GAAT 4.827637391977 +7.67790795167168 G1PTT 23.858080016648 +22 PRAMPC 20.8675052220888 +59.1963000296893 NDPK1 66.3260696592308 +8.4755108185456 PMANM 8.82236450158008 +0.028018758934332 PANTS 0.03269069418323 +7.91377087589054 FACOAL161t2pp 10.0952231487247 +6.40152230045654 POR5 18.4205899764218 +10.7537996694691 PLIPA1A181pp 8.58788686938986 +1.87647496051425 3OAS161 19.352448409774 +12.2100308227317 4PCPpp 12.3592941369574 +141.171248093136 ACOAD4f 141.173888351252 +49.4063744431873 G3PAT160 49.8824051422951 +13.3568510646453 NTPP5 13.4068883690137 +88.2049040495694 TRPS3 89.1711821382672 +17.6458325266833 ECA4OALpp 17.6796523128988 +0.15 PPNCL2 0.407426249001308 +4.32739356849149 GMPR 39.7852294929437 +6.90934583794074 PROD3 132.948646303977 +18.4911010881758 NTPTP1 31.8180329331548 +0.724280662050357 QULNS 0.14467746640514 +14.8549990880405 ACPPAT161 19.4772722341392 +7.79882868786899 UM3PL 11.575109077135 +1 UPP3S 1.48210597603188 +4.39387451614104 3HAD40 22.2658727853376 +12.0188378623327 GLYCLTDx 215.096783859061 +70.9551139784491 LPLIPAL2E160 65.5229971428497 +2.16834205221814 AACPS3 15.8490923889944 +0.007 AMPMS2 0.007 +23.1463962552721 RNDR3 23.1955143619255 +35.4580895556515 TRDR 55.9260185151911 +18.1800830767426 S4FE4ST 18.1800830784897 +1.87647496051425 3OAS141 19.352448409774 +10 IPPS 10.1114223948264 +14 DHDPRy 38.2054456973526 +12.1013484522464 HEPT3 12.2052285413896 +10.6291000267471 ALLTAMH2 17.6389391475821 +30.6265997297014 ARGDCpp 25.8313564046201 +42.1371456160758 GLYOX3 76.2405910195335 +16.7144388326034 FADRx2 16.7144388326034 +4.84920199788896 ICL 37.6755111535914 +129.542321434344 PGMT 129.565545948733 +6.68041709674797 HXCT 6.83291151453169 +6.19300769135426 GDPMNH 9.04085053750334 +7.06844849399563 TDPGDH 16.9879958213875 +30.4744957510635 DDPA 45.9226356513373 +6.90950541323177 PDE1 32.005489949609 +14 UAMAS 2.61479777813301 +11 ICDHyr 9.18680434483867 +9.99748309362758 CYTK2 20.9638639679666 +5.726958245789 UACMAMO 13.0272760928959 +9.32263154247246 NTPP3 9.35633156276175 +0.608388066657058 MCTP2App 6.16710231660382 +49.8379866532823 HPYRRy 83.9075174470313 +17.9131183641197 UM4PCP 10.559819092414 +32.7894786514513 ECOAH4 78.7146105594081 +12.4033324847194 GSNK 35.0712822578486 +7.67399226946877 TDP 21.278603427696 +1.77608521380872 EAR100x 31.0564301138869 +0.029624088079717 MOHMT 0.0891676245334938 +70.9551139784491 LPLIPAL2E120 70.9446943513978 +12.150661503191 HEPK2 12.1742856013593 +14.9811492626551 NTPP1 14.981226548581 +10.7537996694691 PLIPA1G161pp 0.523954526404158 +11.8847026786785 AICART 11.1097609865022 +8.85987966614543 MACPD 14.7988246725104 +7.60892130006815 OAADC 48.3779877348618 +1.48129909978704 PDX5PS 1.48684022401947 +34.2295171481601 GAPP 99.7459028364127 +28.6460085431503 THRS 25.3271371933677 +6.8670545591118 THD2pp 125.875975404661 +13.5923766946336 ENTERES 13.5924336120343 +10.1661537772165 ADD 10.2060361413686 +70 PAPPT3 64.9670376151988 +69 MTHFD 235.074563132314 +4.27830584222986 2AGPGAT120 9.43117373836633 +106.717501617949 CAT 107.262466139275 +26 ACODA 24.861721138483 +36.1816049123875 HPYRRx 128.570225892172 +46 PPC 90.1815937994103 +9.47722204912371 ADNUC 9.56920628218936 +112 GARFT 111.833789319993 +6.33810777213502 APG3PAT161 9.3198539789387 +10.1158531405334 CYTDK2 0.0277875005335043 +0.12 GTPCII2 18.2687320785189 +78.6920349312527 LPLIPAL2A181 43.1207136664636 +6.95125327838478 AGPR 9.27601959862679 +5.01271223867661 ADPRDP 5.61797190703738 +3.2680205804032 EAR40x 40.9543155479592 +7.9498660634001 PYDAMK 1.80942465329374 +15.5612145346491 HEPT1 15.6104419150812 +44.4918869994071 ACACT6r 44.7515663426474 +228 ACGS 227.106464912501 +0.07 ASP1DC 0.0296497952311108 +0.763830547473857 KDOPS 2.60912112660982 +9.72248156463871 CYTDH 11.8036185563134 +7.0441397354614 DSERDHr 78.1705736293342 +3.70100063106254 MDDCP4pp 7.95952943485877 +3.79385723706577 EDTXS2 3.84096152387249 +14.6480923425953 ECOAH8 112.578527881852 +21.1013834797386 ALCD2x 21.1206595580602 +9.78144941091262 CYTDK1 0.0277784191925643 +1.30103467933211 FCLT 2.42767920636038 +16.3405813766365 MCOATA 71.4812765634496 +8.46642382814223 TMDK1 22.950759867895 +32.4432385562773 ARGDC 39.7918900555391 +3.76112320556721 AACPS6 20.0930209451119 +70.9551139784491 LPLIPAL2E140 70.0230213809846 +17.9905730992609 GLCTR2 18.0224920881973 +0.0299207198851433 5DOAN 0.45311965079172 +53.0481222661386 ACONTa 47.911914120386 +86.4269139876146 TKT1 139.068207332488 +3.58216518716408 PUNP1 8.65562275394425 +7.6212375081202 R5PP 7.62720492923544 +70.9551139784491 LPLIPAL2E180 67.0379046036806 +19.4287147866981 GTPDPDP 39.3396352213152 +18.2998718885334 TREH 18.3407611944274 +9.72248156463871 URIH 17.003822706945 +163.678729835396 G6PDH2r 153.270343002344 +5.50686501417287 GTHOr 67.8048542143961 +84.8451257345241 BPNT 83.2091669933782 +21 PSCVT 5.73724481310076 +59 DHQTi 35.5800131345032 +2.2 GF6PTA 5.13566832163632 +12.0179446399117 INSK 62.1246310816741 +0.23 DHFS 0.0293678704469519 +10 SHSL1 7.42738402879147 +4.82665967492526 AHGDx 0.0277802282007662 +0.567371613797198 HBZOPT 0.581259469851581 +7.34603584029288 ALR2x 11.0765469632116 +1.28772688539305 OCTDPS 0.173464681957904 +23.3858776716333 ABTA 118.467562989803 +8.24337196264866 3OAR60 97.8988162144909 +5.74534530970532 PSD141 9.55371876757977 +92.8305552312845 EDD 418.45468773565 +7.4 TMDS 2.59222368382665 +5.93045782748065 AST 20.6956557321808 +18.3123222720833 MDDEP4pp 18.4837209942582 +2.65203617251836 DHFR 6.17073584840659 +3.32633594496724 PPPGO 4.99093164206129 +7.9 PSD161 15.9799506675708 +12.0135408265643 F6PP 56.6419210101268 +11.5424674218984 NTD9 56.6867424601346 +0.0156143146075014 RHCCE 0.0156143146075014 +9.1 HCO3E 83.0401108134006 +3.76323216049135 3OAR161 64.7843237618887 +0.120344379706301 GLUTRS 0.128228220796823 +0.184466497531518 PPPGO3 0.773710484000868 +10.1733686206634 ALATA_L 65.2617570245243 +151.868642334337 HSK 151.327705486595 +11.1279549747511 PSSA120 15.0638517524493 +34.7185511909517 G3PAT180 34.8742754091884 +1.30900572807743 GALUi 4.35940540827003 +13.5382564797121 HPYRP 14.6777374182253 +17.6986182226431 G3PD5 37.7507808729059 +17 UAGPT3 10.9919417562605 +36 FACOAE160 45.4583538201912 +17.7605080306089 GLCTR1 17.7722889211921 +9.71671132192274 AGM3Pt2pp 15.8084684361627 +2.44626436685676 AACPS4 26.1661930762634 +32.2022536372637 FA100ACPHi 0.0277802607994991 +16.3194538084558 LPLIPAL1E181pp 11.8698679761853 +0.34 SHCHF 0.0776539148481969 +6.84138279261006 ACCOAL 31.2362832907044 +14 PRFGS 6.35255612105195 +8.50809961482906 MMCD 10.3219908778047 +12.3521936260443 GPDDA2pp 42.5798691689966 +14.5905993785821 CDAPPA120 30.6543183424727 +0.34 SHCHD2 0.0776539149716929 +103.561878025645 FBA 103.695676737481 +7.04964753908229 GUAPRT 11.3174001229189 +48.3375841974961 IPPMIa 49.2955413121866 +31.631520610796 DASYN141 31.6776892121928 +1.8061711658725 GMHEPK 5.71389838937478 +3.39630763544674 I4FE4ST 3.36124197044872 +12.1134114172347 RNTR1c2 21.0628193110183 +7.55355587820654 AGM4PA 6.83228326928934 +14.4370563752109 GPDDA2 14.4846535856684 +13.0123677341436 SADT2 25.8644361774866 +5.33664385022243 PYNP2r 12.8664175857397 +4.62720290212769 LCADi 42.5111540022742 +30.2656512306736 TALA 105.270840461532 +31.631520610796 DASYN140 31.6795948265049 +31.8462858930882 RNDR1 31.9930090111683 +22.4670136651908 CHORM 32.8165439924679 +38.5306805462644 DHORD2 38.5258791229216 +17.7430003261412 G3PT 75.4927505593541 +31.631520610796 DASYN120 31.9374034892371 +2.8 ARGSS 7.52509570788556 +9.47722204912371 XTSNH 0.0321883713176667 +7.02372014918449 AADDGT 21.0646670914908 +18.1561006422383 NADPHQR4 166.21179709183 +13.678526406088 FACOAE141 37.5855946176834 +29.258245134103 GLUDy 197.658178965366 +13.4963772115735 NTPP11 13.4963772115736 +28.98710156221 TRPAS2 105.095399500571 +4.03455769786865 EAR100y 27.6279842534269 +6.12785683575419 POX 82.1643573361679 +13.0634177806784 RNTR2c2 14.943909812043 +129.94468556604 PGI 129.944685566075 +22.9493866299083 FACOAE181 21.4915924341425 +5.86685213809256 ACACT8r 12.3742260902234 +7.57928781022639 GLYCK2 49.5592469670276 +3.53916021095346 PAI2I 3.83812395812714 +4.94263743088984 FESR 43.2273410539044 +6.02573911039186 SULR 60.6896119304698 +17.1915076828226 GSPMDA 134.357074204726 +52 LPADSS 52.0013736658151 +3.8511448018947 MECDPDH5 3.93349733571202 +0.27 PNTK 0.0907608083981143 +10.7537996694691 PLIPA2E120pp 19.229976932835 +31.4348629061135 ACOATA 4.53729320842702 +325.69661009454 PTAr 327.277062235138 +16.9676597109052 PAPA140 16.979897484894 +14.4982404650522 TRE6PH 21.749093049772 +0.135608986592734 CLPNS181pp 4.22649994365184 +12.3521936260443 GPDDA4pp 24.135741303877 +0.00298546352020273 AACPS9 0.00298546352020273 +7.79882868786899 UM4PL 0.133991649860263 +1.84914427838857 MDDCP3pp 7.10021893095112 +5.32236823396501 NNATr 5.48990822777255 +71.4293253002498 TRPS2 96.8903135204454 +47.9316975036025 ACACT1r 47.9525460592378 +5.84679084607549 GDPDPK 19.7945796779595 +29.3601534015691 ECAtpp 31.2218025934023 +7.04937702292617 RBK 23.3677876978669 +33.3731597285484 PGPP140pp 33.3732134597078 +19.1000025991512 CYTBD2pp 84.9926410613544 +70.9551139784491 LPLIPAL2G120 70.9527975531773 +5.74534530970532 PSD140 5.77967680033412 +0.03 PDX5POi 0.0300000004887914 +6.82409057435941 ACMAMUT 22.6269456018971 +8.4280132477343 MLTP2 5.78721350298169 +0.00167803910640036 OHPBAT 0.00167803910640036 +17.0332729614286 PRPPS 42.0521922302344 +17.8309398407416 VPAMTr 121.133084614804 +5 ANPRT 4.44534572367273 +0.936895016381711 DHBD 60.8469753808853 +16.9676597109052 PAPA141 16.9932185016743 +18.8449876726474 GMPS 21.6742020217549 +78.6920349312527 LPLIPAL2A161 26.3205245086476 +33.3731597285484 PGPP180pp 33.3736257199926 +3.45122103767822 DNTPPA 3.4586268758147 +4.27830584222986 2AGPEAT181 9.71864214464363 +0.585096478864559 GRTT 0.597857852755903 +8.57137535484602 ACGAMK 17.1937654081739 +171.897800219254 ALAALAr 171.898177365063 +32.7526628660403 CTECOAI6 88.0820975076227 +24.4710071815017 ACPPAT160 25.277977486808 +5.64532486823644 APH180 0.0304038898718575 +6.9761014205088 MLTGY2pp 8.32416543178487 +156.615656584062 ASPK 236.339357309974 +3.76323216049135 3OAR121 60.4082607213155 +4.98904680464982 NDPK5 5.51771770685484 +10.7537996694691 PLIPA2A181pp 22.2801740618146 +0.117179957550107 E4PD 1.23226619334962 +12.2299655765177 GDPMNP 86.8801934285514 +5.92034460327097 3OAS80 27.0824308653484 +8.75928626340847 LSERDHr 80.6095264177537 +24.9864478005271 ECOAH6 74.3677610520841 +22 FACOAE120 15.1137212680748 +33.3731597285484 PGPP180 39.3175151180912 +13.4859997903367 GLUR 34.659197578155 +7.5975929923852 2MAHMP 7.66926426967754 +19.2183185651919 PLIPA1E180pp 30.8777772671989 +13.9136776986161 4HTHRA 13.913833715265 +4.27830584222986 2AGPGAT161 6.26981946339601 +11.3233008256728 PGSA120 11.3332450995983 +10 ADSL1r 34.0569248264458 +43 UAPGR 36.6636752275822 +9.66611921712663 DHORTS 5.43730910309877 +17.477194593864 L_LACD2 78.1583168394546 +4.2 ASPO6 0.167953520271859 +53.9575791765669 NADH17pp 254.384044021033 +2.16536211916694 NTD8 41.2259281640062 +16.3194538084558 LPLIPAL1G120pp 1.65489502285713 +139 DHAD2 138.837906039493 +38 SERAT 111.158792591811 +6.37340143940361 DAGK181 13.7143614703853 +10.0950127452361 AGM4PApp 10.8565224067691 +4.84128359060696 SGSAD 20.6776734592339 +17.477194593864 L_LACD3 17.7160238440235 +1.8061711658725 GMHEPAT 5.71389838937472 +8.4280132477343 MLTP3 6.19847386918635 +1.25856158095846 KARA2 7.6534844387969 +42.5161615804862 AGPAT140 43.0700530870953 +4.39387451614104 3HAD121 20.2079881365448 +154.296915465516 ACKr 154.92958199942 +4.81427669638384 DADK 17.8719143269618 +19 ASNS2 15.5080444399407 +60.7437517420101 PPCK 60.7437517419543 +8.99468052267482 UPPRT 1.71378957922102 +0.148088871232051 DMPPS 0.14021411783765 +7.86168894408219 HSDy 58.5438487149103 +14 G5SD 20.1655832248775 +68.3525058092151 GLCDpp 320.107006609722 +7.55355587820654 AGM3PA 20.0531880812331 +14.5905993785821 CDAPPA161 10.583867946368 +4.03455769786865 EAR60y 31.3483327132076 +21.1202496280269 GLCS1 20.4759833494006 +18.8214703548273 LALGP 0.50441148147678 +15.8474194403512 SERD_D 205.041937012887 +9.73912172260244 AP4AS 41.3952453682804 +7.12301822013926 FEOXAMR2 0.467945152108023 +33.3731597285484 PGPP120 33.376732488462 +8 UAAGDS 4.8236348890679 +59.423158320646 HACD3 85.5677181660235 +9.94912056286888 PLIPA2G180pp 19.1022052107948 +4.34390852749122 ORPT 36.6658794371609 +5.28666282406101 NTD2 116.645913462721 +76.9849171370588 FDH4pp 278.25454705588 +11 ARGSL 7.73634132264702 +141.171248093136 ACOAD8f 141.171231411502 +0.00541425854537074 FACOAE80 0.00541425854537074 +16.3194538084558 LPLIPAL1E120pp 16.4840441127524 +66.7611983218546 GND 102.728933767382 +34.7185511909517 G3PAT141 34.8566039579823 +8.28061648420117 VALTA 4.93300423171554 +5.92034460327097 KAS14 22.145157336612 +96.7379748902582 IPPMIb 96.9808429771706 +4.26551759693818 3OAR140 83.7095104895704 +12.0378378856263 NTD10 151.352780766228 +8.38446736006649 SDPTA 36.9361124201246 +16.7185097291515 UGCIAMH 17.6613850799989 +10.1004168584709 ILETA 30.0919870951282 +12.2318421292692 AMPTASECG 11.9376763776869 +68.9189154272571 PPA 635.909687681267 +78 DHQS 73.7608805894546 +42.5161615804862 AGPAT120 44.1270490140079 +3.1795960845827 HISTD 3.40845698021283 +10.7537996694691 PLIPA1E140pp 9.69123937824694 +6.37340143940361 DAGK140 4.72703387286322 +3.3 ADSS 3.77497546990187 +6.27275024623321 FLVRx 5.81184070846522 +64.4189010282935 LGTHL 135.60038791433 +11.7689348811775 TRE6PP 11.7974934013733 +6.28235209377117 NTD6 137.666116462489 +3.33574484275822 PTA2 2.50284375236198 +395.486610471369 ATPS4rpp 1249.09518030494 +1.87647496051425 3OAS121 19.352448409774 +37.2296643882805 A5PISO 38.1724023937267 +42 CHORS 60.2637580350781 +7.9498660634001 PYDXNK 0.176648998417731 +0.24 PPBNGS 1.37151724670131 +5.13659347260333 SUCOAS 44.144600740976 +26.4872899377807 UDCPDPpp 64.4510604397518 +17.9131183641197 AM4PCP 4.73521166143761 +5.2334005566775 CLPNS140pp 5.2382419696826 +0.0214258833324572 TMPPP 0.0214258833324572 +49.3225731395513 ACACT4r 49.5341549224539 +7.65991161133188 NAMNPP 0.15489936551657 +9.82711567839092 ABUTD 145.545222999148 +4.06600945016315 AGMH 7.56688447924258 +7.49076096620309 PGAMT 3.76478360108829 +8.53911941823882 HSST 4.30954609576446 +6.7 PSD160 15.0363209117008 +12.3450146303109 SHGO 15.8175209679612 +7.91314238864529 TRE6PS 64.0579550730976 +0.00908518444447114 GTPCI 0.00908518444447114 +3.81484086552927 EAR121y 24.7023983988598 +1.67871775655375 AACPS7 7.08353929366853 +1.63139027289837 S7PI 4.1136801613763 +24 CYTK1 43.5804902484381 +1.28656250077213 PTPATi 1.85829074575948 +21 UHGADA 22.2030002985878 +18.4911010881758 NTPTP2 41.9179876083894 +70.9551139784491 LPLIPAL2E141 69.3231872101431 +8.27561050810826 PACCOAL 0.027779128705969 +22.4070633631046 NDPK3 26.8998401587778 +23.7281625729441 UDCPDP 50.2418428338084 +11.2622474817792 NTP5 0.0277848046063613 +9.23596612648813 NTP1 0.0277946511922708 +154 AIRC2 153.691369747039 +84 DAPE 82.7805810681957 +2.20365653517859 PSD181 4.81364218828696 +7.72563595203305 OPHHXy 7.72574289871407 +14.5905993785821 CDAPPA160 27.373443570904 +5.02373334184366 F6PA 179.41706768728 +9.71671132192274 AGM4Pt2pp 10.4072554124564 +32.1934820696073 ECOAH3 78.399478302884 +108.169244504748 PFK_3 108.16923573373 +4.39490951111428 EAR180x 7.22290301954882 +188.924437140568 SUCDi 427.94900970527 +5.92034460327097 3OAS160 21.495288287332 +10.1593467066937 IMPC 11.109758632224 +7.91377087589054 FACOAL141t2pp 8.5131448982464 +35.7711244019367 HACD8 117.248078999605 +4.30144019884974 PPAKr 23.0499897245991 +0.31 METS 12.9216264186971 +11.3233008256728 PGSA180 23.2584499893801 +32.7526628660403 CTECOAI8 116.704333901848 +57.8494981269925 HACD1 78.7102803204279 +16 UAGDP 63.5241823966578 +6.9761014205088 MLTGY4pp 7.41761060978355 +15.0781276605754 SADH 30.5375702421432 +9.74701540726299 HEPK1 9.89779003662669 +70.9551139784491 LPLIPAL2G141 69.7217667640864 +5.26176283862732 FE3Ri 17.9448830184223 +10.7537996694691 PLIPA1G160pp 7.92884710943499 +10.6047276455777 ICHORS_copy1 9.20714560613371 +5.64532486823644 APH181 5.36771211992988 +0.194692175869479 HMBS 0.212864732405117 +9.24437268361056 GLUSy 90.6016622247883 +8.508720299453 ACOTA 9.26711943497305 +3.34738015798494 4HTHRK 3.3473801579833 +7.12301822013926 FEOXAMR1 7.75068424331035 +4.7238623506414 3HAD160 18.7661407087355 +44.3822675925909 ACONTb 36.4771408270688 +3.94877616119486 UAG2E 12.0791827200543 +6.51408479417205 THFAT 7.80311235238343 +7.91377087589054 FACOAL140t2pp 7.93415241458294 +1.35081523236687 EAR140x 23.0914493243252 +2.4 THDPS 1.30917318647903 +7.52114907689696 NTPP8 8.92902089545807 +85.0720534858788 ADSK 83.6628201916483 +1.49190406602306 EAR141x 27.8145454551133 +3.30275553856767 I2FE2SS 3.18874020491303 +3.2680205804032 EAR80x 40.9543155479592 +0.0165967054233192 GTHS 0.0165967054233192 +6.2099955014517 ALAR 7.29502400894512 +5.95604008098527 HSTPT 11.7939085506811 +11.379820332083 NDP3 5.47875948783633 +16.9676597109052 PAPA181 16.9729532743964 +9.43165489858234 MLDCP2App 10.0769347519706 +0.543619102929351 CHRPL 3.31319521224883 +3.49684293835857 NDPK8 13.9028114415899 +0.168924501541162 G1SAT 0.340676682597438 +1.48400860358283 PSSA181 1.61644361122554 +3.61218245230292 PUNP6 36.3096721883803 +12.1491081447529 GLUTRR 22.4920155563849 +9.64357492966325 IPMD 7.55088319744533 +11.5036707235437 GTHPi 94.4565728727754 +14.5905993785821 CDAPPA181 17.734596436953 +50.5363737418265 HACD7 90.8339820478366 +5.4924414425035 APG3PAT181 12.045122803018 +29 UAMAGS 18.8695471818252 +9.94959455216948 ADPT 6.57366882575784 +0.011359717623223 I4FE4SR 0.011359717623223 +18.1561006422383 NADPHQR3 57.8560938654247 +3.91046418939074 TDPDRE 6.48792729756343 +15.8619296332902 AP4AH 97.0674661390234 +4.27830584222986 2AGPEAT120 4.40381042173382 +0.212326005766108 DAAD 0.0315905281452287 +37.3656163524736 FRD3 222.610277040407 +55.4094643400599 HACD6 83.6741584863222 +33.3731597285484 PGPP120pp 33.3731759169585 +28.6731048574488 TRSARr 45.6932589868003 +14.9841776036285 KAS15 17.1272548322859 +3.43804149583395 PAI2T 6.45447768040333 +10.0950127452361 AGM3PApp 11.2581114166559 +14.3908252606217 CSND 22.1209021506982 +3.34464481213215 MDH3 265.575450211433 +805.926305067497 MGSA 1067.80206678054 +34.7185511909517 G3PAT140 34.7220802771363 +10.7537996694691 PLIPA1E120pp 10.8676680605739 +5.74534530970532 PSD120 13.1522250740428 +2.40084005051582 PAPSR2 19.5265424932005 +4.64863027546045 FLVR 0.0278339827979088 +21.7906889741116 DURIK1 22.0807760416647 +14.6251536039818 GTHRDHpp 14.6251772458887 +11 CTPS2 2.6791758612393 +33.0541357457718 DADA 33.0541425094199 +5.17741184962385 3OAR180 8.04473443119367 +3.61218245230292 PUNP3 3.69934166345311 +0.00208115513686405 G6PP 0.00208115513686405 +7.43237917930687 PDXPP 0.105256380024536 +4.2 KDOCT2 1.51311741947082 +189.368885346935 PGM 203.484552162899 +5.92034460327097 3OAS60 27.0824308653484 +3.57382272279548 GNP 52.0685052792075 +18.5317969992483 CBPS 31.55731622661 +11.3233008256728 PGSA140 8.2656987981438 +0.09 FMNAT 1.99938158515757 +2.16143696367366 ADMDC 3.07356540595758 +3.35086834918046 ENTCS 5.18126733252531 +3.67344216144375 QMO3 55.8286526629646 +4.27830584222986 2AGPGAT160 8.55390544855073 +8.46991458184782 G3PAT181 18.9743011657182 +3.76112320556721 AACPS8 0.0687674509410358 +16.9676597109052 PAPA181pp 25.9827730338465 +5.64532486823644 APH161 2.99892975676163 +3.81484086552927 EAR141y 34.145905360484 +0.32 APRAUR 37.7160794186968 +1.1 DXPS 0.120156891951524 +4.39387451614104 3HAD141 20.2079881365345 +0.81 UPPDC1 0.204483847112815 +0.313750394210426 HPPK2 0.78009095725086 +6.23665409241565 PPK2 6.23665408847789 +7.36065535534709 NTPP7 32.506139617685 +4.95149832289923 NDPK7 7.46952431530987 +0.445730546112667 MLTG4 0.0277821230209013 +11.1279549747511 PSSA180 10.848281388395 +33.4229717576011 ACACT7r 33.8800799000221 +8.19083404537989 GTPDPK 29.5475764651855 +10.7537996694691 PLIPA1G181pp 10.7806411003098 +9.8696185083081 LDH_D2 64.0834672602208 +4.75412267252741 ASPO3 4.75409931324696 +6.37340143940361 DAGK141 0.0277779702802118 +1.33389682554036 DPCOAK 1.34546879208571 +7.91377087589054 FACOAL160t2pp 8.23986617404274 +9.05553677971361 PHETA1 15.5183180540692 +0.0523365402118008 AHCYSNS 0.460396629583062 +13.678526406088 FACOAE60 47.0447457620905 +20.0797810122274 OCBT 30.9491514892288 +9.78144941091262 URIK1 41.7376838273811 +3.81995890025428 GLXCL 91.0352563802908 +1.31640661008089 3OAS181 2.18619085391962 +12.946525398015 MN6PP 11.1584193395002 +22 PRATPP 20.8675052220888 +59 MOAT2 59.0006205750039 +5.29079931198922 S2FE2SS2 5.29079940304036 +2609.26794703223 GLYOX 2609.25957729466 +8.03893063993268 GLYCLTDy 274.797439916288 +15 PSSA160 19.1999894563388 +5.79890677379566 FEENTERR4 6.16803718289403 +195.856878553668 PPS 223.185785567362 +4.27830584222986 2AGPGAT181 10.1000732260843 +23.3169310769599 GMHEPPA 23.0006399112711 +8.24337196264866 3OAR80 97.8988162144909 +3.15043503552138 FDH5pp 48.0827551581215 +18.5922898085779 PUNP7 19.2185077419964 +0.0737204848470377 RBFSa 6.21434562734705 +12.0076793406068 GLDBRAN2 226.053436790013 +51.2640144234606 ADNCYC 52.4305021147881 +10.1158531405334 URIK2 7.84770374142707 +10.7649039385675 HCYSMT 1.09783883665642 +37.4134199559911 PSERT 104.38640182271 +24.2416058379824 ECOAH7 86.1343885555008 +12.0367226800489 AGPAT181 13.0373741736549 +10.7537996694691 PLIPA1G141pp 7.11684316935168 +14.7813586093928 ASPT 151.752134415835 +43 FACOAE161 70.6822506515365 +4.08681070369138 CDPMEK 0.404128742412186 +14.4370563752109 GPDDA4 14.4696513551035 +16.3194538084558 LPLIPAL1G181pp 11.2185971387046 +21.7085522706885 KARA1 27.4177110859734 +14.2250386671848 AIRC3 104.157881825031 +16.9676597109052 PAPA140pp 16.9688689589968 +32.4949661754608 SHKK 48.9166153382574 +17.5269456107024 NTD7 151.631856922207 +7.31569220491032 TDPAGTA 25.6931136677735 +5.92034460327097 3OAS100 27.0824308653484 +26.7081760308423 THIORDXi 11.008603871167 +44.6903126035828 DASYN181 72.7282412845507 +6.360662346572 ASNS1 2.43473510364746 +420 DHAD1 419.946617562976 +16.3816873656339 LIPAabcpp 28.8366836323098 +160 AGPAT161 160.335142052697 +4.93247882186656 MCTP1App 7.5767662359004 +26.5565496634357 UMPK 49.4667928671333 +3.8 HISTP 5.84617387144119 +70.9551139784491 LPLIPAL2E181 47.2438699265444 +3.38629696219554 MECDPS 3.44663178135214 +10.6917095572778 NTD3 110.560962591191 +9.87477281963863 APG3PAT120 14.8012204777298 +5.33350755901341 PPM 22.6655750131648 +9.71671132192274 AGMt2pp 10.0166177554422 +3.19280138872202 3OAR160 59.6012770117803 +13.8996381142985 ASNNpp 34.3323626597057 +6.17726180909412 4PEPTabcpp 18.6517214646923 +16.5941999635267 USHD 17.1538655249424 +8.24337196264866 3OAR40 97.8988162144909 +4.06600945016315 AGM4PH 4.53342997784784 +8.41916898496515 GLCP2 19.9455469175705 +2.3137737375996 ASPO5 2.32527376513382 +13.8354553098106 ALKP 22.4394919150282 +0.888063877555547 IPDPS 0.888063877552197 +9.27286448964064 LPLIPAL1G180pp 9.36697341790446 +178.097602229689 ACOAD5f 178.099261154487 +7.2 MDH 13.6611250664431 +18 PSSA161 21.5850708525597 +10.7537996694691 PLIPA1G120pp 24.876666705637 +32.2022536372637 FA80ACPHi 32.2022536476606 +37.564156745734 MICITDr 37.5648144339073 +7.13652466003536 APG3PAT160 11.6187069414473 +1.26576123437941 EAR160x 21.8021187000377 +57.5550750822299 HACD4 84.7748266793122 +5.98058042386664 FMNRx 2.43308684147239 +11.5118670178791 S4FE4SR 11.5118670179939 +15 ADSL2r 29.1185189629681 +86.7116673035816 DASYN161 132.175984005822 +0.03 RBFSb 21.2774519509611 +4.39387451614104 3HAD100 22.2658727853376 +0.0797674465458344 G1PP 0.0792818445612659 +0.373794511155472 MDDCP2pp 4.42497866202754 +157.881311434786 ACALD 158.134554655276 +32.1731186850537 ECOAH2 69.6530585333102 +5.82556844710157 ALDD2y 118.903534068151 +7.3273393941184 NTD4 75.1711770142311 +0.0215920627931895 ICYSDS 0.028606963862759 +33.0541357457718 ADA 24.4317247213951 +59 MOAT 59.0006205750039 +5.64532486823644 APH141 0.0352030254959299 +15.825706161739 SGDS 22.1099501644316 +0.0165119707806824 GLUCYS 0.0165119707806824 +8.38052765338577 NDPK4 13.1610848966833 +193.906572544439 TPI 193.906572544439 +33.3731597285484 PGPP181pp 43.5238619474473 +3.81484086552927 EAR180y 7.27653986256944 +13.138414218614 ASPCT 50.4080189796211 +61 GLUPRT 58.9835055590327 +1.8 IMPD 8.64285767974561 +17.9131183641197 4PCP 17.9131183640867 +26.824997024954 PFL 156.767838931358 +1.23246860390301 MCTP1Bpp 5.58025998658015 +0.5 PMPK 0.0371339869751646 +11.2866253651575 LADGMDH 40.5423624942287 +17.6729642199055 AGDC 28.9082081590882 +50.1551506475236 ACACT2r 50.3597392127115 +11 DHDPS 25.8905647185067 +16.0100104283114 PGK 24.3139524216734 +6.0730986057998 NADH10 12.3794422742497 +10.7537996694691 PLIPA2E181pp 26.8478589817141 +8.65643947924285 LDH_D 79.2606128630183 +17.2590808767831 ANS 17.4455325131076 +7.10499831048079 PETNT161pp 20.1744233561608 +2.08168429864306 GRXR 16.4207021284037 +32 P5CR 25.0941316360891 +11.8151570105411 GGPTRCO 15.3127262555338 +141.171248093136 ACOAD7f 141.17286449216 +4.19282309762856 3OAS140 21.1384023280281 +12.3434475641483 GUAD 10.4302285743422 +4.46670653180314 SPODM 42.2809820325572 +10.7537996694691 PLIPA2G120pp 1.20930146332253 +24.2146880499225 ACHBS 51.8161656546549 +33.1249150534487 SERD_L 95.3863917433755 +0.797018233205693 PUNP4 3.55274294509316 +3.3 DXPRIi 0.319937455182416 +31.2362234610073 LYSDC 125.34427050428 +117.269621287688 PYK 131.758796565638 +7.74158107713212 ACS 22.044352863885 +150.315575924322 MDH2 468.311554623403 +1.5530820637521 ADCL 44.5717995268221 +12.8389409520264 MPTG 14.3521720099001 +7.16428041109659 TDPADGAT 49.4623208958842 +2.91790367174636 DHNPA2r 3.11014198240838 +4.83037995559269 ACM6PH 132.620929783655 +157.859884613081 FBP 157.888336495849 +9.32990956289489 UGLYCH 17.484360612017 +5.61409039436033 XPPT 9.69660994353709 +7.04964753908229 HXPRT 7.03374166818891 +35.4055116366341 4ABZGLUH 35.7803674647353 +17.7319925689386 GLYCL 84.7864510871154 +36.924305260043 ACPPAT180 37.179330507898 +4.31628619828794 DCTPD 4.31390685013272 +5.40405812820357 CPPPGO2 0.112849417855932 +111.484064976126 DASYN160 139.96992502931 +6.0730986057998 NADH9 24.9887065689571 +3.2680205804032 EAR60x 40.9543155479592 +48.8046583918772 FRD2 194.061131693333 +16.9676597109052 PAPA120 16.9681526012865 +54.6504588981143 TRPS1 55.4491288388172 +10.7537996694691 PLIPA1G140pp 9.69123937824695 +5.21653540222097 2DDARAA 5.21655155808572 +8.42233184067756 NTD5 157.455878454157 +31.631520610796 DASYN180 41.0020873911265 +0.113635978384975 ICHORT 6.90330084847515 +2.64096179762377 NADK 5.26286375844736 +4.67691144447274 NTD12 85.2495467401865 +39.6398380856591 CYSS 59.6772003976535 +9.12247253823189 GALT1 9.14950294686965 +3.32901422177842 PPA2 66.0927765323177 +40.7277313515213 ACACT5r 40.7621798402361 +26.9093338335343 ECOAH1 68.9503476237359 +7.55355587820654 AM3PA 19.4675632032559 +1.77608521380872 EAR120x 31.0564301138869 +5.60790271955258 FMNRx2 1.46229261053298 +40.7277313515213 ACACT3r 41.0370705570667 +14.5905993785821 CDAPPA140 19.9870823176851 +10.59607020381 DCYTD 13.8085054055079 +3.8 IGPDH 5.84617387144117 +4.03455769786865 EAR40y 31.3483327132076 +17.8650969005895 SCYSDS 17.8650969017868 +4.06600945016315 AGM3PH 5.43495065697899 +7.80073017029772 TYRTA 13.7231974483886 +0.23 TMPK 0.274041824709955 +0.09 RBFK 26.7320913196862 +13.4800577512757 PRMICI 8.16129754969286 +2.44977186579031 UAGAAT 20.9123084816918 +6.37340143940361 DAGK120 0.0277779469904667 +9.47722204912371 INSH 9.56137793807862 +37.5180492534449 LEUTAi 47.7809377889222 +1.49808180321955 MDDEP1pp 5.32660513268425 +122.993573124826 ME2 122.993573124079 +10.2736379789841 ANHMK 15.5005178573354 +10.3954899567112 ACGAMT 30.3581777028958 +11.4055353088469 GLGC 59.8824190106411 +54.2201067396986 ALCD19 54.4439793256873 +4.27830584222986 2AGPGAT140 1.040325187712 +5.51462248092798 PRASCSi 8.25139826670435 +31 ADK1 56.2084256637901 +55.7009974553855 DAPDC 54.2397145821785 +0.445730546112667 MLTG5 0.0277797407776567 +24.2199993725483 R15BPK 38.3856450444084 +3.72011217539015 MTHFR2 4.425293301419 +10.59607020381 CYTD 14.7055978754878 +6.2019908206647 TMDPP 7.49449433961738 +3.42551556403819 GLYCTO2 129.125294020083 +18.4653911971493 ACOAD1fr 19.9821890626055 +18 DTMPK 18.0123957012714 +19.5202533533525 GLYAT 42.047101723796 +12.3954475664231 MDDCP5pp 12.8452486156871 +19.2183185651919 PLIPA2A120pp 22.1901873701974 +3.81484086552927 EAR181y 23.1900638544989 +17.3714931361751 THRA 24.6296483741545 +45.3482514390652 CYTBO3_4pp 499.346172847825 +2.04743283973816 T2DECAI 17.4339608630475 +8.42233184067756 NTD1 25.5345712231044 +10.0373918643451 DXYLTD 10.037394132192 +129.988812763387 TKT2 159.678884777606 +32.1975067467725 ECOAH5 78.40157006433 +5 IGPS 6.12122486691322 +303 FADRx 303.000000019419 +53.9279454930502 NADH18pp 299.121011808396 +55.6113261824479 FTHFD 458.871328175265 +8.40984804863167 CYSTL 25.8665288143905 +0.518672695127365 DPR 1.18830226391311 +6.9761014205088 MLTGY3pp 7.7030460166367 +3.76323216049135 3OAR141 63.9801844492073 +5.92034460327097 3OAS120 23.4775017954542 +36.924305260043 ACPPAT120 36.9918674441195 +6.0730986057998 NADH5 24.9564035063976 +0.808873218866375 COLIPAabcpp 1.54565083791465 +0.585096478864559 DMATT 0.597857852755903 +68.2906734786104 HPYRI 82.7068527823386 +4.6710064327499 OBTFL 21.4119157353745 +305.067211620742 HEX1 410.085241339593 +7.10499831048079 PETNT181pp 16.422179387078 +16 UGMDDS 7.98007369085429 +7.48538395020982 HEX7 157.099858616494 +0.215400054772666 PMDPHT 14.0214528535803 +14.3838357545581 RPI 696.890254949965 +4.03455769786865 EAR140y 23.7855386938817 +13.3479399927695 AGMT 16.3007726644751 +8.4280132477343 MLTP1 17.4287922674523 +6.37340143940361 DAGK161 13.8129614368735 +13.4963772115735 NTPP10 13.4958315777306 +7.91377087589054 FACOAL181t2pp 16.2973842818838 +3.90009990403904 PGPP181 6.28273690261955 +0.161613505067713 PUNP2 22.8965700564099 +6.67679651458127 IPDDI 6.68274892245471 +0.150831209620209 THZPSN3 0.0280577218757936 +15.5671218675882 G6PDA 13.2863480222502 +0.0263814182897123 DUTPDP 10.3191433759219 +12.8800134178269 ASPTA 14.8400703674814 +19.2183185651919 PLIPA1E160pp 18.1576069200108 +3.6316462288739 AI2K 3.70718086087905 +9.97267444166286 NADHPO 144.180040002275 +17.9131183641197 AGM4PCP 8.05121536428233 +37.464286427222 PGCD 110.528548630229 +6.9761014205088 MLTGY1pp 7.83736223309529 +2693.14210994718 PSP_L 2693.07285687818 +0.0429060109254141 GCALDD 1.28664307856576 +14.5905993785821 CDAPPA141 38.9485731284329 +0.34 DB4PS 38.2673566603552 +25 GLU5K 52.7720323292437 +428 SDPDS 427.879266228514 +32.7526628660403 CTECOAI7 116.704333901456 +15.8054508832196 MOAT3C 19.2898831519911 +10.7537996694691 PLIPA1E181pp 18.2107765546399 +30.1104369946513 THRD 32.4939828574272 +8.44448432836534 HXAND 19.2994563863166 +1.49190406602306 EAR161x 28.2869532411162 +69 MTHFC 235.074563132314 +3.30832139753064 OPHBDC 3.3172868178427 +8.43283823160346 MAN1PT2 18.9644530414812 +58.1848761721395 ENO 58.1848761721405 +6.46472426311112 PPM2 6.85511921424223 +7.55355587820654 AM4PA 10.1118080761559 +70.1659565032491 MALS 89.9150055278743 +0.934695618341888 AGMHE 3.80769420694561 +78.6920349312527 LPLIPAL2A141 78.3609546840485 +33.3731597285484 PGPP141 33.3749802478474 +5.95572870045351 GUI1 +7.98690145352878 DXYLK +5.07144077841572 GLUNpp +3.32432583544691 I2FE2ST +41.469124247573 6D6SPA +0.02 BMOCOS +31.4348629061135 ACOATA_b +8.61983957121507 RNDR2b +8.26488093467909 FRULYSE +5.80040086969086 GLTPD_b +70.9551139784491 LPLIPAL2G160 +0.336712933665159 OHPBAT_b +9.78017358694592 BWCOGDS2 +5.06552584681538 3OAR40_b +7.8456224702159 PSURIK +356 ACOAD2f_b +7.17026079129293 DTARTD +8.28835858207763 RMPA +7.54006725425595 SHK3Dr_b +7.45089023981007 MALTATr_b +21.4753385719262 NADPPPS +8.7518300449315 ACP1_FMN +13.5320841274986 ECOAH3_b +3.31883883080054 OMMBLHX3 +15.8060012194203 NTD10pp +9.68776117812554 SULRi +7.08438771382553 5DKGR_b +37.7623836733976 HKNDDH +21.5778026792875 ASPTA_b +17.6458325266833 O16A4Lpp +14.4370563752109 GPDDA5 +5.66311126869771 3OAR160_b +9.23305898355569 POR5_b +12.8197036018068 DM_aacald_c +60.9399212836141 LPLIPAL2ATE140 +0.0330976153708453 PPK2r_b +5.84761566870932 SBTPD +14.1325789520922 O16GLCT2 +27.9908309721225 UPLA4FNF +4.85857997201296 URDGLYCD +10.7537996694691 PLIPA2E140pp +18.7533823196001 DHCINDO +3.41688678082287 DM_4crsol_c +12.8197036018068 GUR1PPpp +18.5922898085779 PUNP7_b +5.96746421768547 TAGURr_b +14.1325789520922 SELGTHR +22.7222398931112 DURADx_b +356 ACOAD3f_b +9.07436584506882 GLYCDx +10.341849774767 AB6PGH +16.0961503466412 GLYAT_b +22.0816112336816 TARTD +6.31794152342441 EDTXS3 +6.19703519832067 O16GLCT1 +4.75751325035118 GTHOr_b +8.31138565047014 QUINDHyi +5.76393685859313 PYNP2r_b +13.531522603259 ECOAH5_b +22.9970612997064 CU1Opp +16.3194538084558 LPLIPAL1E140pp +21.9537427390778 3NTD4pp +8.42750201034672 CFAS180E +4.949595302671 CLPNS161pp_b +5.07134589760155 NDPK7_b +5.35167572464651 RMI_b +16.9676597109052 PAPA120pp +70.0381260814935 GAPD_b +7.84494481662741 CTBTCAL2 +6.2019908206647 TMDPP_b +53.1524935888073 UDPG4E +19.2183185651919 PLIPA1A120pp +19.440284535597 PPTHpp +9.00256637955014 HMPK1 +7.25064876591939 METNA_b +10.1957746136553 MAN6PI +7.96759097242003 FCLPA_b +5.76332229126599 FALDH2_b +14.1325789520922 ARBTNR1 +6.6833968551003 G1SAT_b +6.29087964911215 FDMO3 +12.6451091022919 MANPGH +6.32150383138407 RMK +7.54961253966413 ASNN +18.8282093195665 MTHFD_b +60.9399212836141 LPLIPAL2ATE141 +6.7523723830486 FHL +14.1325789520922 CPGNR3 +6.60197172550686 LYSAM_b +7.22516165822894 ACACT1r_b +6.53829788537226 SBTPD_b +21.6425991513373 UAGAAT_b +14.4370563752109 GPDDA1 +39.149077156915 G3PD6 +5.35167572464651 RMI +10.7537996694691 PLIPA2E160pp +60.9399212836141 LPLIPAL2ATE181 +41.6517242342344 3AMACHYD +3.33744250073237 4HTHRA_b +11.3033957407599 URACPAH +7.73272914476094 GALCTD +10.5533836284025 ALCD2x_b +3.32750574421132 PDX5PO2 +9.1e-05 OPMEACPD +120.40415251836 RPI_b +5.75735046248501 HADPCOADH3_b +4.27830584222986 2AGPEAT140 +6.60197172550686 LYSAM +5.16779470190159 DHCIND +24.9412421205754 23PDE7pp +20.8067764969771 LDH_D_b +320.762753520128 ACKr_b +5.97053657094509 CCGS +6.22246300009095 HACD1_b +20.3139791833709 PHETA1_b +6.54026436603574 CYSTRS +0.683201038913556 DHNCOAT +6.25704495866425 HACD2_b +70.9551139784491 LPLIPAL2G180 +7.20073662862541 YUMPS_b +12.3459265445801 G6PDH2r_b +6.54026436603574 ILETRS +14.1325789520922 ARBTNR3 +6.55692163777932 FCLK +5.95572870045351 GUI2 +11.7706732280931 LIPATPT +4.29065074800568 UGLCURPpp +26.4845496436311 IDOND2 +6.05596664911473 NDPK2_b +7.21837245614033 ALR2 +4.26710833801534 APCS +10.157757624107 SERAT_b +5.64694381091642 GALCTLO +6.23343768080963 DHPTPE_b +6.54026436603574 ARGTRS +5.36360113159844 CHOLD +9.57e-05 OGMEACPS +21.8287269409359 CBMKr_b +6.29087964911215 FDMO6 +5.93571799059276 ATHRDHr +22.6470341696899 DC6PH +7.40701886614873 PYROX +6.54026436603574 PROTRS +5.56551811436266 DHMPTR +5.94746483433418 APPLDHr +33.7198546749132 MNNH +86.8866356040527 GALKr +7.05493128586977 CYSTA +3.84509092381357 AHGDx_b +8.49633380346128 XYLK2 +6.5760235412013 M1PD_b +33.3731597285484 PGPP140 +7.39349607059153 PYDXPP +12.702060036899 ACONTa_b +5.54421888697013 NADPHXD +14.1325789520922 H2SO +7.45089023981007 MALTATr +13.5311904775331 CDGS +3.9488237038152 DURIPP_b +6.54026436603574 GLYTRS +60.9399212836141 LPLIPAL2ATG120 +0.0133419286015386 OMBZLM +14.8363565861348 DAPE_b +6.54026436603574 TYRTRS +8.35689008733074 UDPGD +8.17787745477089 BSORy +16.3194538084558 LPLIPAL1G160pp +3.78736509301032 KARA1_b +0.00257808962634552 LIPOCT +33.5048559640593 MTHFC_b +8.56879850392903 NMNAT +3.28206581081228 F1PP +19.2183185651919 PLIPA1A180pp +4.67933517568821 BWCOS +9.67741894601476 NDPK1_b +17.3024053604118 NTD9pp +3.38190933710789 MLTP2_b +11.6285888435292 NNDMBRT +5.71796624690977 DHBD_b +24.9412421205754 23PDE2pp +6.54026436603574 HISTRS +6.54384597382893 LSERDHr_b +16.3194538084558 LPLIPAL1A141pp +3.38190933710789 MLTP1_b +68.673625342829 ENO_b +3.50210030846351 SHCHCS3 +3.96269305821496 UDPGDC +10.1089184986542 ULA4Ntppi +12.8197036018068 CLPNH160pp +12.835497303321 ECOAH7_b +5.73475014712646 3HCINNMH +6.29087964911215 FDMO4 +16.3194538084558 LPLIPAL1E180pp +0.0133419286015386 AMMQLT8 +6.92589213957476 3HBZCT +0.29951252665605 RNDR4 +6.89005553020675 ACOXT_b +7.91377087589054 FACOAL80t2pp +8.50596574781977 S2FE2SR +5.95572870045351 GUI1_b +8.29965923722674 RHMND_b +22.6470341696899 NACODA +73.5351271880204 AKGDH +110.352952443697 IPPMIa_b +4.67933517568821 WCOS +5.79890677379566 FE3DHBZS3R +19.2183185651919 PLIPA2A141pp +60.9399212836141 LPLIPAL2ATE180 +20.9564430124409 CDPPH +7.67514104450385 DDGLK +7.91377087589054 FACOAL60t2pp +21.0017209929976 PTHRpp +10.7984207007903 NO3R2bpp +0.004 PMEACPE +15.8060012194203 NTD11pp +5.26e-05 OPMEACPR +4.27830584222986 2AGPGAT180 +70.9551139784491 LPLIPAL2E161 +5.86685213809256 ACACT3r_b +5.26e-05 OGMEACPR +12.1207185944742 NTPP4 +4.42736783437002 DHFR_b +7.17711069342902 ALAALAD +60.9399212836141 LPLIPAL2ATE161 +0.42509131330408 PERD_b +276.485032638806 PGM_b +11.7171019105839 PHYTSpp +7.94967517744325 2DGULRGy +12.1774551184445 ADSL1r_b +5.13795333895422 ALDD19xr +15.8060012194203 NTD3pp +5.73475014712646 3HPPPNH +6.88501156036144 XYLI1_b +3.28313773971342 GLYCTO4 +5.07134589760155 NDPK3_b +0.43501507610676 OPHHX +9.74904608686967 SPMDAT1 +5.26519589876188 OMMBLHXy +5.97805153408351 HCO3E_b +25.1652984052316 OXCDC +7.91377087589054 FACOAL100t2pp +7.65295096835558 CURR +12.2062522431945 PCNO_b +278 ACOAD6f_b +12.3690225993407 HYD3pp +19.5741993920429 HOPNTAL +14.1325789520922 OXAMTC +12.3130464319242 ACACT8r_b +4.27830584222986 2AGPEAT161 +14.5905993785821 CDAPPA180 +27.2430167123806 FBA3_b +4.87786505085693 FALDH2 +14.1325789520922 FE3HOXR1 +7.31518304078335 YUMPS +8.01083747359174 ACACT4r_b +5.98679926956662 ALLPI_b +6.50749299599942 DHNPTE +13.678526406088 FACOAE100 +185 GLUDy_b +9.34074844522538 XYHDL +5.32855487393035 MALDDH 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+6.54026436603574 LEUTRS +70.9551139784491 LPLIPAL2G140 +22.6470341696899 NADN +12.8197036018068 CLPNH180pp +6.45309523398801 GHBDHx +165.651619616071 PTAr_b +9.66703987066147 NTP3 +65.0207730024042 THRA2 +11.0171500568784 CDGUNPD +28.3362824926326 ALAALAr_b +9.29941870599852 NADHXE +12.0858394364867 ECOAH1_b +4.80484263429064 GLTPD +14.1325789520922 ARBTNR2 +22.6470341696899 FFSD +9.1e-05 OGMEACPD +12.8197036018068 PPK2r +6.54026436603574 TRPTRS +8.00707222190863 ThDPAT +20.9564430124409 NDP7 +3.28333714722111 DM_amob_c +4.81595877778011 GLCRAL +7.94967517744325 DKGLCNR2y +1.7 MPTSS +17.3024053604118 NTD2pp +3e-05 EGMEACPR +9.29941870599852 NADPHXE_b +5.99250249426982 DHPTDNR +8.62007041767261 ALLULPE_b +5.89775281528862 MANAO_b +9.23547561261836 LDGUNPD +80.2014089960751 TRSARr_b +60.9399212836141 LPLIPAL2ATG140 +4.949595302671 CLPNS140pp_b +24.9412421205754 23PDE4pp +8.44090400765777 FACOAE140 +50.6456147443905 FBA_b +10.730580277584 LALDO3 +0.14 UDCPDPS +12.8197036018068 CLPNH120pp 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+22.6470341696899 HYPOE +12.901700505449 MCOATA_b +10.7537996694691 PLIPA2E180pp +9.78017358694592 BMOGDS1 +9.72298155344663 CMPN +7.97479082251521 AMAOTr_b +8.14837102939885 CRNBTCT +2.62e-05 OPMEACPS +7.38416285367725 ARHGDx +0.00177887784592734 AOXSr2 +3.28274965624399 DHORDfum +13.4542965656053 NTRIR3pp +60.9399212836141 LPLIPAL2ATG160 +18.3123222720833 MDDEP2pp +26.1973199145951 ALATA_L_b +3.28353278683241 GLYCTO3 +6.3869982316261 DDPGALA +10.3226638115809 NTP12 +12.3580625736735 PCNO +26.0925894155051 3NTD2pp +30.295743086643 ICHORS_copy2_b +105.549374987197 PGI_b +5.35167572464651 LYXI +11.0650875369486 PPDOy +7.88288000368347 PYDXK +40.5940989045039 LCARSyi +14.9031987512286 MLTG1 +6.54026436603574 THRTRS +12.3521936260443 GPDDA3pp +78.6920349312527 LPLIPAL2A140 +5.77471066931013 DHNPA2r_b +14.4370563752109 GPDDA3 +12.096336840044 TYRTA_b +13.5216641984178 METSOXR2 +4.93303445876218 DSBAO2 +8.4755108185456 PMANM_b +10.7537996694691 PLIPA2G140pp +3.60529488225729 ADOCBIK +11.4950407883335 GALKr_b diff --git a/docs/src/examples/data/ecoli_ribosomes.tsv b/docs/src/examples/data/ecoli_ribosomes.tsv new file mode 100644 index 00000000..956b8690 --- /dev/null +++ b/docs/src/examples/data/ecoli_ribosomes.tsv @@ -0,0 +1,16 @@ +Condition GR Ribosome ActiveR +Acetate 0.3 6.624906061 4.687433534 +Chemostat 0.12 5.824027364 2.864275753 +Chemostat 0.2 6.339881832 3.913507304 +Chemostat 0.35 7.035733218 5.195161659 +Chemostat 0.5 9.420515091 7.548489656 +Fructose 0.65 12.36148947 10.3810958 +Fumarate 0.42 8.9221144 6.888397147 +Galactose 0.26 7.522765265 5.093538981 +Glucose 0.58 12.31629979 10.14695153 +Glucosamine 0.46 10.10666059 7.960725809 +Glycerol 0.47 10.45813488 8.274955209 +Mannose 0.47 9.030639429 7.145455441 +Pyruvate 0.4 8.207851571 6.265535551 +Succinate 0.44 9.678353479 7.55048853 +Xylose 0.55 11.71670541 9.561109759 From 7ad133af691b925ea0c4f3581a6cb6b96691716c Mon Sep 17 00:00:00 2001 From: "St. Elmo Wilken" Date: Wed, 8 Jan 2025 12:31:43 +0100 Subject: [PATCH 02/45] working srba example --- docs/Project.toml | 1 + docs/src/examples/07-srba.jl | 207 ++++++++++++++++++++--------------- 2 files changed, 118 insertions(+), 90 deletions(-) diff --git a/docs/Project.toml b/docs/Project.toml index 21355a32..c116451d 100644 --- a/docs/Project.toml +++ b/docs/Project.toml @@ -1,6 +1,7 @@ [deps] AbstractFBCModels = "5a4f3dfa-1789-40f8-8221-69268c29937c" COBREXA = "babc4406-5200-4a30-9033-bf5ae714c842" +CairoMakie = "13f3f980-e62b-5c42-98c6-ff1f3baf88f0" Clarabel = "61c947e1-3e6d-4ee4-985a-eec8c727bd6e" ConstraintTrees = "5515826b-29c3-47a5-8849-8513ac836620" Documenter = "e30172f5-a6a5-5a46-863b-614d45cd2de4" diff --git a/docs/src/examples/07-srba.jl b/docs/src/examples/07-srba.jl index 7e3a42b0..0f74bfa4 100644 --- a/docs/src/examples/07-srba.jl +++ b/docs/src/examples/07-srba.jl @@ -26,7 +26,8 @@ using COBREXA # In contrast to the previous examples, we will use the iML1515 model of _E. -# coli_, which is the latest, full-scale model of the organism. +# coli_, which is the latest, full-scale genome-scale metabolic model of the +# organism. download_model( "http://bigg.ucsd.edu/static/models/iML1515.json", @@ -34,38 +35,15 @@ download_model( "b0f9199f048779bb08a14dfa6c09ec56d35b8750d2f99681980d0f098355fbf5", ) -# Additional to COBREXA, a solver, and the model format package, we will need a -# ConstraintTrees to simplify the model construction process: +# In additional to COBREXA, the optimization solver, and the model format +# package, we will use ConstraintTrees to simplify the RBA model construction +# process: import AbstractFBCModels as A import JSONFBCModels import ConstraintTrees as C -import Gurobi # TODO maybe SCIP is better... can't test on windows -import HiGHS - -# load the model -model = load_model("iML1515.json", A.CanonicalModel.Model) - -# save biomass composition for later -biomass = model.reactions["BIOMASS_Ec_iML1515_core_75p37M"] -# remove the biomass functions for RBA -delete!(model.reactions, "BIOMASS_Ec_iML1515_WT_75p37M") -delete!(model.reactions, "BIOMASS_Ec_iML1515_core_75p37M") - -# Below we will make the assumption that the membrane space is limited, in -# addition to the usual total proteome capacity limitation. First, we identify -# membrane reactions (transporting metabolites between compartments) -membrane_rids = [ - rid for (rid, r) in model.reactions if - length(unique(last.(split.(keys(r.stoichiometry), "_")))) != 1 -] - -# Next, we identify membrane proteins as the ones catalyzing the membrane reactions from above -membrane_gids = unique( - g for - rid in membrane_rids if !isnothing(A.reaction_gene_association_dnf(model, rid)) for - gs in A.reaction_gene_association_dnf(model, rid) for g in gs -) +import SCIP +using Gurobi # ## Collect data for RBA model # RBA models require a lot of data. Below we have processed the data into a @@ -82,7 +60,6 @@ import Statistics: mean data_root = joinpath(@__DIR__, "src", "examples", "data") -# # ### Helper functions # @@ -116,6 +93,7 @@ function add_kcats!( end if length(unique(suffixes)) > 1 if !haskey(kcat_data, rid) + # println("Transporter ", rid, " assigned kcat.") kcat_data[rid] = transporter_kcat end end @@ -125,8 +103,11 @@ function add_kcats!( !has_reaction_grr(model, rid) && continue if !haskey(kcat_data, rid) kcat_data[rid] = average_kcat + # println("Assigned average kcat to: ", rid) elseif haskey(kcat_data, rid) continue + else + # println("Rid not assigned a kcat: ", rid) end end @@ -141,9 +122,11 @@ function get_protein_masses(model, proteome_data) ) end -# Assemble reaction isozymes from kcat data, Uniprot proteome data, and ComplexPortal data. -# In a set of complexes, this also gets rid of low confidence complexes if any -# complex in the set can be found in the ComplexPortal. +# Assemble reaction isozymes from kcat data, Uniprot proteome data, and +# ComplexPortal data. This changes the GRR structure of the model (basically +# making it match the expectations from the data files). In a set of complexes, +# this also gets rid of low confidence complexes if any complex in the set can +# be found in the ComplexPortal. function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) # protein stoich map, infer from uniprot mer_map = Dict( @@ -186,8 +169,8 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s d[isozyme_id] = Isozyme( gene_product_stoichiometry = Dict(grr .=> ss_counts), - kcat_forward = round(kcat_data[rid] * scale, digits=3), - kcat_reverse = round(kcat_data[rid] * scale, digits=3), # assume forward and reverse are the same + kcat_forward = kcat_data[rid] * scale, + kcat_reverse = kcat_data[rid] * scale, # assume forward and reverse are the same ) end end @@ -231,11 +214,9 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s return reaction_isozymes end -# # ### Data loading -# +# load data from papers, complex DB, and Uniprot -# load data from papers, complex DB, and uniprot proteome_data = begin x = CSV.File(joinpath(data_root, "e_coli_uniprot.tsv"), delim = '\t') Dict{String,Tuple{Float64,String}}( @@ -243,7 +224,10 @@ proteome_data = begin ) end -kcat_data = Dict(String(r.KcatID) => r.KcatHeckmann for r in CSV.File(joinpath(data_root,"ecoli_kcats.tsv"))) +# this data is taken from: *Heckmann, David, et al. "Machine learning applied +# to enzyme turnover numbers reveals protein structural correlates and improves +# metabolic models." Nature communications 9.1 (2018): 1-10.* +kcat_data = Dict(String(r.KcatID) => r.KcatHeckmann for r in CSV.File(joinpath(data_root, "ecoli_kcats.tsv"))) complex_data = begin x = CSV.File(joinpath(data_root, "e_coli_complex.tsv"), delim = '\t') @@ -257,28 +241,28 @@ complex_data = begin res end -# -# ### Assemble the isozymes and gene product masses -# +# load the E. coli model as a basis to assemble the data around -# increase protein concentrations by changing units, convert kcat units from 1/s to k/h +model = load_model("iML1515.json", A.CanonicalModel.Model) + +# Assemble the isozymes and gene product masses increase protein concentrations +# by changing units, convert kcat units from 1/s to k/h scale = 3600 / 1e3 # add kcats that are not measured # https://bionumbers.hms.harvard.edu/bionumber.aspx?id=114686&ver=3&trm=glucose+transport&org= add_kcats!(model, kcat_data; transporter_kcat = 180.0, average_kcat = 25.0) -# collect kcats and stoichiometry -reaction_isozymes = get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) - # get uniprot molar masses (units: kDa = kg/mol) gene_product_molar_masses = get_protein_masses(model, proteome_data) +# collect kcats and stoichiometry +reaction_isozymes = get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) + # apply analysis-specific quirks gene_product_molar_masses["b1692"] = 54.58 gene_product_molar_masses["s0001"] = 54.58 - # ribosome data (see comment URLs for sources) # https://bionumbers.hms.harvard.edu/bionumber.aspx?id=100118&ver=10&trm=e+coli+ribosome+molar+mass&org= ) gene_product_molar_masses["ribosome"] = 2700.0 @@ -289,9 +273,7 @@ atp_polymerization_cost = 4.2 # https://bionumbers.hms.harvard.edu/bionumber.aspx?id=109522&ver=2&trm=ribosome+density&org= ribosomes_per_protein = 3.46 # multiple ribosomes can produce a single AA, effectively speeding up the overall rate (assume average for all genes) -# -# ### Load and prepare the amino acid data -# +# Load and prepare the amino acid data amino_acids = Dict( :glu__L_c => "E", @@ -316,10 +298,9 @@ amino_acids = Dict( :met__L_c => "M", ) -aacount = begin +aacount = begin # count of each amino acid in a gene product # convert the TSV into a dictionary structure - - x = CSV.File(joinpath(data_root,"ecoli_gene_product_aa_counts.tsv"), delim = '\t') + x = CSV.File(joinpath(data_root, "ecoli_gene_product_aa_counts.tsv"), delim = '\t') res = Dict{Symbol,Dict{Symbol,Int}}() for gp in x.gene_product res[Symbol(gp)] = Dict{Symbol,Int}() @@ -330,7 +311,6 @@ aacount = begin res end -# assume ribosome to be relatively average in AA counts avg_prot = Dict() for v in values(aacount) for (k, vv) in v @@ -342,27 +322,54 @@ for (k, v) in avg_prot end aacount[:ribosome] = Dict(k => round(Int, aas_in_ribosome * v, RoundNearest) for (k, v) in avg_prot) - #md # ```@raw html #md # #md # ``` -# ## Build an enzyme constrained model +# ## Model assembly +# Now that we have loaded all the data, we can start building the simplified RBA model + +# First, load the model +model = load_model("iML1515.json", A.CanonicalModel.Model) -total_capacity_bound = 550.0 # mg/gDW -membrane_frac = 0.20 # membrane protein fraction of total +# Next, we will remove the biomass reactions, as these are handled differently +# in RBA. However, we will save biomass composition for later use. +biomass = model.reactions["BIOMASS_Ec_iML1515_core_75p37M"] +# remove the biomass functions for rba +delete!(model.reactions, "BIOMASS_Ec_iML1515_WT_75p37M") +delete!(model.reactions, "BIOMASS_Ec_iML1515_core_75p37M") + +# identify membrane reactions (transporting stuff between compartments) +membrane_rids = [ + rid for (rid, r) in model.reactions if + length(unique(last.(split.(keys(r.stoichiometry), "_")))) != 1 +] +# identify membrane proteins as the ones catalyzing the membrane reactions from above +membrane_gids = unique( + g for + rid in membrane_rids if !isnothing(A.reaction_gene_association_dnf(model, rid)) for + gs in A.reaction_gene_association_dnf(model, rid) for g in gs +) + +# Now we build an enzyme constrained metabolic model using COBREXA. Note, we +# assume two capacity limitations here: 1) a total capacity bound, and a +# membrane capacity bound. +total_capacity = 550.0 +membrane_frac = 0.20 # fraction of total proteome that is allowed to be membrane associated + +# use COBREXA's built in function to lay the foundation of the RBA model ct = enzyme_constrained_flux_balance_constraints( model; reaction_isozymes, gene_product_molar_masses, capacity = [ - ("membrane", membrane_gids, total_capacity_bound * membrane_frac), - ("total", A.genes(model), total_capacity_bound), + ("membrane", membrane_gids, float(total_capacity * membrane_frac)), + ("total", A.genes(model), float(total_capacity)), ], ) -# apply a few quirks to make the simulation realistic +# apply a few quirks ct.fluxes[:EX_glc__D_e].bound = C.Between(-1000, 1000) ct.fluxes_forward[:EX_glc__D_e].bound = C.Between(0, 1000) ct.fluxes_reverse[:EX_glc__D_e].bound = C.Between(0, 1000) @@ -371,25 +378,20 @@ ct.fluxes[:EX_pyr_e].bound = C.EqualTo(0.0) ct.fluxes[:EX_5dglcn_e].bound = C.EqualTo(0.0) ct.fluxes[:EX_lac__D_e].bound = C.EqualTo(0.0) -# ending up with a functional, enzyme constrained model -ct - - -# ## Add the RBA functionality - -kr = ribosomes_per_protein * 12 * 3600 # ribosome elongation rate amino acids/second => amino acids/hr -prot_atp_req = 12.0 # protein polymerization cost for average proteome in 1 gDW - +# We now need to extend the enzyme constrained model with further resource +# allocation constraints. Since RBA models are bilinear, it is simpler to create +# a function that builds a model at a specific growth rate, transforming the +# problem into a linear one. Future extensions of cobrexa will allow parameters +# to be inserted into models directly, obviating the need for this +# function-based appraoch. The function belows glues the sRBA constraint system +# to the given ecRBA model at a specific growth rate. function with_srba_constraints(ct, mu) - # we are going to modify a few parts of the tree, copy them - ct = C.ConstraintTree(ct..., :gene_product_amounts => deepcopy(ct.gene_product_amounts)) - # atp + h2o -> adp + h + po4 energy_metabolites = Dict(:atp_c => -1, :h2o_c => -1, :adp_c => 1, :h_c => 1, :pi_c => 1) - # attach new variables for ribosomes + # attach new variables for ribosomes (recall ribosomes are required to make proteins, and ribosomes themselves) rbatree = ct + :ribosomes^C.variables(; @@ -397,14 +399,17 @@ function with_srba_constraints(ct, mu) bounds = C.Between(0, Inf), ) - # we are going to modify a few parts locally so let's make a copy of them + # we are going to modify a few parts locally so let's make a copy of them to not change the base model (ct) rbatree = C.ConstraintTree( rbatree..., :flux_stoichiometry => deepcopy(rbatree.flux_stoichiometry), :gene_product_capacity => deepcopy(rbatree.gene_product_capacity), ) - # amino acid dilution by growth + # amino acid dilution by growth note: in RBA biomass components get diluted + # directly, and it is not necessary to have a biomass reaction for this + # purpose. Here the amino acids get special attention, since they are + # consumed by the ribosomes. for aa in keys(amino_acids) rbatree.flux_stoichiometry[aa].value -= mu * @@ -422,8 +427,9 @@ function with_srba_constraints(ct, mu) ) end - # add all biomass components diluted by growth, plus the energy metabolites - for (mid, v) in biomass.stoichiometry + # In contrast, the other biomass components just get diluted by growth, including the energy metabolites + prot_atp_req = 12.0 # protein polymerization cost for average proteome in 1 gDW + for (mid, v) in biomass.stoichiometry # from the saved biomass composition of the original model k = Symbol(mid) haskey(amino_acids, k) && continue # if the metabolite is an energy metabolite, we add the energy cost of translation @@ -449,6 +455,8 @@ function with_srba_constraints(ct, mu) end # add the equations for protein synthesis by ribosomes + kr = ribosomes_per_protein * 12 * 3600 # ribosome elongation rate amino acids/second => amino acids/hr + aa_sum(g) = haskey(aacount, g) ? sum(values(aacount[g])) : 300 rbatree *= @@ -474,11 +482,15 @@ function with_srba_constraints(ct, mu) return rbatree end -# ## Simulate -# screen through the expectably viable range -res = screen(range(0.1, 1.1, 10)) do mu - @info "mu = $mu" +# ## Run the simulations +# Here we use screen to efficiently run all the simulations through the +# expectably viable growth range + +mus = range(0.1, 0.95, 10) # simulate at these growth rates + +res = screen(mus) do mu + @info "sRBA step" mu rbat = with_srba_constraints(ct, mu) rbat *= :lp_objective^C.Constraint( @@ -494,28 +506,43 @@ res = screen(range(0.1, 1.1, 10)) do mu sol = optimized_values( rbat; - settings = [silence,set_optimizer_attribute("solver", "simplex"),set_optimizer_attribute("simplex_strategy", 4),], + settings = [silence], objective = rbat.lp_objective.value, - optimizer = HiGHS.Optimizer, + optimizer = Gurobi.Optimizer, sense = Minimal, ) isnothing(sol) && return nothing return (; mu, - ribosome_mass = gene_product_molar_masses["ribosome"] * sum(values(sol.ribosomes)), + ribosome_mass = gene_product_molar_masses["ribosome"] * + sum(values(sol.ribosomes)), + total_mass = sol.gene_product_capacity.total, ac_flux = sol.fluxes.EX_ac_e, glc_flux = sol.fluxes.EX_glc__D_e, o2_flux = sol.fluxes.EX_o2_e, - total_mass = sol.gene_product_capacity.total, - membrane_mass = sol.gene_product_capacity.membrane, ) end +# finally, we can plot the data, to see if we can recapitulate known phenomena + using CairoMakie +# load measured ribosome protein mass fractions ribosome_measurements = CSV.File(joinpath(data_root, "ecoli_ribosomes.tsv")) -fig = Figure() -ax = Axis(fig[1,1], xlabel="Growth rate, 1/h", label="Ribosome mass fraction") -scatter!(ax, ) +# First, show that the predicted ribosome density matches experimental +# observations, and also show that overflow metabolism occurs (latter is due to +# the membrane bound). +fig = Figure(); +ax = Axis(fig[1,1], xlabel="Growth rate, 1/h", ylabel="Ribosome mass fraction") +scatter!(ax, ribosome_measurements.GR, ribosome_measurements.ActiveR ./ 100 ,label = "Measurements") +lines!(ax, mus, [r.ribosome_mass/r.total_mass for r in res], label="Model predictions") +axislegend(ax, position=:lt) + +ax2 = Axis(fig[2,1], xlabel="Growth rate, 1/h", ylabel="Metabolite flux") +lines!(ax2, mus,[r.ac_flux for r in res], label ="Acetate") +lines!(ax2, mus,[abs(r.glc_flux) for r in res], label ="Glucose") +lines!(ax2, mus,[abs(r.o2_flux) for r in res], label ="Oxygen") +axislegend(ax2, position=:lt) +fig From ac48b3ca1c76f90866215ec16665543ea1edfd1f Mon Sep 17 00:00:00 2001 From: "St. Elmo Wilken" Date: Wed, 8 Jan 2025 12:34:58 +0100 Subject: [PATCH 03/45] rm gurobi --- docs/src/examples/07-srba.jl | 3 +-- 1 file changed, 1 insertion(+), 2 deletions(-) diff --git a/docs/src/examples/07-srba.jl b/docs/src/examples/07-srba.jl index 0f74bfa4..9e4ce999 100644 --- a/docs/src/examples/07-srba.jl +++ b/docs/src/examples/07-srba.jl @@ -43,7 +43,6 @@ import AbstractFBCModels as A import JSONFBCModels import ConstraintTrees as C import SCIP -using Gurobi # ## Collect data for RBA model # RBA models require a lot of data. Below we have processed the data into a @@ -508,7 +507,7 @@ res = screen(mus) do mu rbat; settings = [silence], objective = rbat.lp_objective.value, - optimizer = Gurobi.Optimizer, + optimizer = SCIP.Optimizer, sense = Minimal, ) isnothing(sol) && return nothing From cdb0031d02c4fd9390fb19d68f8bae3e835e6db4 Mon Sep 17 00:00:00 2001 From: "St. Elmo Wilken" Date: Wed, 8 Jan 2025 15:04:12 +0100 Subject: [PATCH 04/45] finish community example --- docs/src/examples/08-community-enzyme.jl | 509 +++++++++++++++++++++++ 1 file changed, 509 insertions(+) create mode 100644 docs/src/examples/08-community-enzyme.jl diff --git a/docs/src/examples/08-community-enzyme.jl b/docs/src/examples/08-community-enzyme.jl new file mode 100644 index 00000000..86da1da8 --- /dev/null +++ b/docs/src/examples/08-community-enzyme.jl @@ -0,0 +1,509 @@ + +# Copyright (c) 2021-2025, University of Luxembourg #src +# Copyright (c) 2021-2025, Heinrich-Heine University Duesseldorf #src +# #src +# Licensed under the Apache License, Version 2.0 (the "License"); #src +# you may not use this file except in compliance with the License. #src +# You may obtain a copy of the License at #src +# #src +# http://www.apache.org/licenses/LICENSE-2.0 #src +# #src +# Unless required by applicable law or agreed to in writing, software #src +# distributed under the License is distributed on an "AS IS" BASIS, #src +# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. #src +# See the License for the specific language governing permissions and #src +# limitations under the License. #src + +# # Enzyme constrained community flux balance analysis +# In this example we will demonstrate how to merge two enzyme constrained models +# together, and run community flux balance analysis simulation on them. The goal +# is to compare the optimal community abundance of models using cFBA and ec-cFBA +# simulations, illustrating the superiority of the latter approach. The specific +# communities simulated here will be _E.coli_ auxotrophic co-cultures. Each +# community member is dependent on the other through an amino acid knockout. The +# simulations are based on the experimental work in *Mee, Michael T., et al. +# "Syntrophic exchange in synthetic microbial communities." Proceedings of the +# National Academy of Sciences 111.20 (2014)*. Finally, the predicted abundances +# using the two modeling approaches will be compared to experimental data. + +using COBREXA + +# Like the previous tutorial, we will use the iML1515 model of _E. +# coli_, which is the latest, full-scale genome-scale metabolic model of the +# organism. + +download_model( + "http://bigg.ucsd.edu/static/models/iML1515.json", + "iML1515.json", + "b0f9199f048779bb08a14dfa6c09ec56d35b8750d2f99681980d0f098355fbf5", +) + +# In additional to COBREXA, the optimization solver, and the model format +# package, we will use ConstraintTrees to simplify the model construction +# process: + +import AbstractFBCModels as A +import JSONFBCModels +import ConstraintTrees as C +import SCIP + +# ## Collect data for enzyme constrained models +# Like in the previous example, we will spend some time gathering the necessary +# data to build the wild type enzyme constrained metabolic models. + +#md # ```@raw html +#md #
Data for reaction turnover numbers +#md # ``` + +import Tables, CSV # for data loading +import Statistics: mean + +data_root = joinpath(@__DIR__, "src", "examples", "data") + +# ### Helper functions + +# Checks if reaction has a gene reaction rule assigned to it. +function has_reaction_grr(model, rid) + grr = A.reaction_gene_association_dnf(model, rid) + if isnothing(grr) || isempty(grr) || isnothing(first(grr)) || isempty(first(grr)) + return false + end + return true +end + +# This adds kcats to +# 1] transporters (if the kcat is missing and the transporter has a grr) +# 2] physiological reactions which don't have a kcat (but they get an average +# one if grr is present) +function add_kcats!( + model, + kcat_data; + transporter_kcat = 180.0, + average_kcat = 25.0, + block_brackets = false, +) + for rid in A.reactions(model) + !has_reaction_grr(model, rid) && continue + rxn = A.reaction_stoichiometry(model, rid) + if block_brackets + suffixes = [split(met, "[")[end] for met in keys(rxn)] + else + suffixes = [split(met, "_")[end] for met in keys(rxn)] + end + if length(unique(suffixes)) > 1 + if !haskey(kcat_data, rid) + # println("Transporter ", rid, " assigned kcat.") + kcat_data[rid] = transporter_kcat + end + end + end + + for rid in A.reactions(model) + !has_reaction_grr(model, rid) && continue + if !haskey(kcat_data, rid) + kcat_data[rid] = average_kcat + # println("Assigned average kcat to: ", rid) + elseif haskey(kcat_data, rid) + continue + else + # println("Rid not assigned a kcat: ", rid) + end + end + + return nothing +end + +# Finds mass of each gene product in a model +function get_protein_masses(model, proteome_data) + avg_mass = (mean([x[1] for x in values(proteome_data)]),) + return Dict{String,Float64}( + gid => get(proteome_data, gid, avg_mass)[1] for gid in A.genes(model) + ) +end + +# Assemble reaction isozymes from kcat data, Uniprot proteome data, and +# ComplexPortal data. This changes the GRR structure of the model (basically +# making it match the expectations from the data files). In a set of complexes, +# this also gets rid of low confidence complexes if any complex in the set can +# be found in the ComplexPortal. +function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) + # protein stoich map, infer from uniprot + mer_map = Dict( + "Homomonomer" => 1, + "Monomer" => 1, + "Homodimer" => 2, + "Homotrimer" => 3, + "Homotetramer" => 4, + "Homopentamer" => 5, + "Homohexamer" => 6, + "Homoheptamer" => 7, + "Homooctamer" => 8, + "Homodecamer" => 10, + "Homododecamer" => 12, + ) + + # infer protein stoichiometry from uniprot annotations + reaction_isozymes = Dict{String,Dict{String,Isozyme}}() + multi_component_enzymes = [] # for use later + for rid in A.reactions(model) + haskey(kcat_data, rid) || continue # skip if no kcat data available + if has_reaction_grr(model, rid) + grrs = A.reaction_gene_association_dnf(model, rid) + for (i, grr) in enumerate(grrs) + isozyme_id = "isozyme_" * string(i) + d = get!(reaction_isozymes, rid, Dict{String,Isozyme}()) + + if length(grr) == 1 # only assign homomers + gid = first(grr) + if haskey(proteome_data, gid) # has uniprot data + idx = proteome_data[gid][2] + ss_counts = [get(mer_map, idx, 1.0)] + else # no data + ss_counts = [1.0] + end + else # assume complexes have uni-stoichiometry, fix in next step + ss_counts = fill(1.0, length(grr)) + push!(multi_component_enzymes, (rid, isozyme_id)) + end + + d[isozyme_id] = Isozyme( + gene_product_stoichiometry = Dict(grr .=> ss_counts), + kcat_forward = kcat_data[rid] * scale, + kcat_reverse = kcat_data[rid] * scale, # assume forward and reverse are the same + ) + end + end + end + + # fix complex stoichiometry using ComplexPortal data + fixed_multi_component_enzymes = [] + not_fixed_multi_component_enzymes = [] + for (rid, isozyme_id) in multi_component_enzymes + grr = collect(keys(reaction_isozymes[rid][isozyme_id].gene_product_stoichiometry)) + + stoichs = [] + for v in values(complex_data) + if length(intersect(collect(keys(v)), grr)) == length(grr) && + length(intersect(collect(keys(v)), grr)) == length(v) + push!(stoichs, v) + end + end + + if length(stoichs) == 1 + push!(fixed_multi_component_enzymes, (rid, isozyme_id)) + d = first(stoichs) + for (k, v) in d + if v == 0 + d[k] = 1.0 + end + end + reaction_isozymes[rid][isozyme_id].gene_product_stoichiometry = d + else + push!(not_fixed_multi_component_enzymes, (rid, isozyme_id)) + end + end + + # use only the entries where the stoichiometry is known, if any are known + for (rid, isozyme_id) in not_fixed_multi_component_enzymes + if rid in first.(fixed_multi_component_enzymes) + delete!(reaction_isozymes[rid], isozyme_id) + end + end + + return reaction_isozymes +end + +# ### Data loading +# load data from papers, complex DB, and Uniprot + +proteome_data = begin + x = CSV.File(joinpath(data_root, "e_coli_uniprot.tsv"), delim = '\t') + Dict{String,Tuple{Float64,String}}( + gp => (m, coalesce(k, "")) for (gp, m, k) in zip(x.gene_product, x.mass, x.kind) + ) +end + +# this data is taken from: *Heckmann, David, et al. "Machine learning applied +# to enzyme turnover numbers reveals protein structural correlates and improves +# metabolic models." Nature communications 9.1 (2018): 1-10.* +kcat_data = Dict(String(r.KcatID) => r.KcatHeckmann for r in CSV.File(joinpath(data_root, "ecoli_kcats.tsv"))) + +complex_data = begin + x = CSV.File(joinpath(data_root, "e_coli_complex.tsv"), delim = '\t') + res = Dict{String,Dict{String,Float64}}() + for c in x.complex + res[c] = Dict{String,Float64}() + end + for (c, gp, s) in zip(x.complex, x.gene_product, x.stoichiometry) + res[c][gp] = s + end + res +end + +# load the E. coli model as a basis to assemble the data around + +model = load_model("iML1515.json", A.CanonicalModel.Model) + +# Assemble the isozymes and gene product masses increase protein concentrations +# by changing units, convert kcat units from 1/s to k/h +scale = 3600 / 1e3 + +# add kcats that are not measured +# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=114686&ver=3&trm=glucose+transport&org= +add_kcats!(model, kcat_data; transporter_kcat = 180.0, average_kcat = 25.0) + +# get uniprot molar masses (units: kDa = kg/mol) +gene_product_molar_masses = get_protein_masses(model, proteome_data) + +# collect kcats and stoichiometry +reaction_isozymes = get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) + +# apply analysis-specific quirks +gene_product_molar_masses["b1692"] = 54.58 +gene_product_molar_masses["s0001"] = 54.58 + +#md # ```@raw html +#md #
+#md # ``` + +# ## Build community models +# Now we will focus on building the community models. Since constraints can be +# added incrementally, and are not dependent on the modeling framework, we only +# need to write a general purpose community construction function, which will +# naturally work with either classic FBA or enzyme constrained FBA models. + +# below we create a community assembly function, assuming an input of a wildtype model +function auxotrophe_community(wt, aa_ko; fbc_only = false) + + # these are the possible KOs we consider + kos = Dict( + :argA => (:ACGS, :arg), + :ilvA => (:THRD_L, :ile), + :metA => (:HSST, :met), + :hisB => (:HISTP, :his), + :proA => (:G5SD, :pro), + :cysE => (:SERAT, :cys), + :thrC => (:THRS, :thr), + :leuB => (:IPMD, :leu), + :trpC => (:IGPS, :trp), + :pheA => (:PPNDH, :phe), + :tyrA => (:PPND, :tyr), + :lysA => (:DAPDC, :lys), + ) + + aa_id(aa) = Symbol("EX_", aa, "__L_e") + + # bound the exchanges + boundf(id) = begin + ex_id = first(id) + if fbc_only && ex_id == :EX_glc__D_e + C.Between(-50, 0) + else + wt.interface.exchanges[ex_id].bound + end + end + + # create KO pairs to be joined via their exchanges + ko_pairs = [ + ko => (deepcopy(wt), deepcopy(wt.interface.exchanges), ko_ab) for + (ko, ko_ab) in aa_ko + ] + + # create community model (interface joins them) + x = interface_constraints(ko_pairs...; bound = boundf) + + all_kos = first.(aa_ko) # get model ids + x *= # set all growth rates equal + :equalgrowth^all_equal_constraints( + x[first(all_kos)].fluxes.BIOMASS_Ec_iML1515_core_75p37M, + C.ConstraintTree( + ko => x[ko].fluxes.BIOMASS_Ec_iML1515_core_75p37M for ko in all_kos[2:end] + ), + ) + x *= # set objective + :objective^C.Constraint( + x[first(all_kos)].fluxes.BIOMASS_Ec_iML1515_core_75p37M.value, + nothing, + ) + + # knockout - single gene + for ko in all_kos + x[ko].fluxes[first(kos[ko])].bound = C.EqualTo(0) + end + + # allow exchanges of KO'd aa + all_aa_exs = [aa_id(last(kos[ko])) for ko in all_kos] + for ko in all_kos + for aa_ex in all_aa_exs + if fbc_only + open_bounds_fbc!(x[ko], aa_ex) + else + open_bounds_ecfbc!(x[ko], aa_ex) + end + end + end + + x +end + +# simulate a model +function auxotrophe_fba(wt, aa_ko; fbc_only = false) + x = auxotrophe_community(wt, aa_ko; fbc_only) + + sol = optimized_values( + x; + optimizer = SCIP.Optimizer, + objective = x.objective.value, + sense = Maximal, + settings = [silence], + ) + isnothing(sol) && return nothing + + (; + mu = sol.objective, + (Symbol(aa) => ab for (aa, ab) in aa_ko)..., + ) +end + +# open specific bounds +function open_bounds_fbc!(ct, rxn_id) + ct.fluxes[rxn_id].bound = C.Between(-1000, 1000) + ct.interface.exchanges[rxn_id].bound = C.Between(-1000, 1000) +end + +# since enzyme constrained models add more reactions to the models, the bound opening is more intensive +function open_bounds_ecfbc!(ct, rxn_id) + ct.fluxes[rxn_id].bound = C.Between(-1000, 1000) + ct.fluxes_forward[rxn_id].bound = C.Between(0, 1000) + ct.fluxes_reverse[rxn_id].bound = C.Between(0, 1000) + ct.interface.exchanges[rxn_id].bound = C.Between(-1000, 1000) +end + +# fix some model quirks +function fix_bounds_ecfbc!(ct) + ct.fluxes[:EX_5dglcn_e].bound = C.EqualTo(0.0) + ct.fluxes[:EX_for_e].bound = C.EqualTo(0.0) + ct.fluxes[:EX_pyr_e].bound = C.EqualTo(0.0) +end + +# ## Assemble community models + +# load the basis model +model = load_model("iML1515.json", A.CanonicalModel.Model) + +# identify membrane reactions (transporting stuff between compartments), used in the capacity bounds +membrane_rids = [ + rid for (rid, r) in model.reactions if + length(unique(last.(split.(keys(r.stoichiometry), "_")))) != 1 +] + +# these co-cultures will be simulated +aa_pairs = [ + (:metA, :thrC), + (:ilvA, :pheA), + (:argA, :lysA), + (:metA, :proA), + (:argA, :metA), + (:argA, :ilvA), + (:metA, :pheA), + (:ilvA, :lysA), + (:ilvA, :metA), +] + +# abundance range to screen through +abundances = [(a, 1 - a) for a in range(0.001, 0.999, length = 10)] + +# parameters fed into screen function below +specs = [ + [(aa1, abun1), (aa2, abun2)] for (aa1, aa2) in aa_pairs for (abun1, abun2) in abundances +] + +# ## Simulate cFBA + +wt = flux_balance_constraints(model; interface = :identifier_prefixes) +open_bounds_fbc!(wt, :EX_glc__D_e) + +cfba_res = screen(specs) do spec + auxotrophe_fba(wt, spec; fbc_only = true) +end + +# ## Simulate ec-cFBA + +wt = simplified_enzyme_constrained_flux_balance_constraints( + model; + reaction_isozymes, + gene_product_molar_masses, + capacity = [("membrane", membrane_rids, 166.0), ("total", A.reactions(model), 500.0)], + interface = :identifier_prefixes, +) +open_bounds_ecfbc!(wt, :EX_glc__D_e) +fix_bounds_ecfbc!(wt) + +eccfba_res = screen(specs) do spec + auxotrophe_fba(wt, spec) +end + +# ## Plot cFBA vs. ec-cFBA vs. experimental data +# Now that we have simulated the models, we need to compare them to data. The +# data from the paper is processed below, and then plotted. + +using CairoMakie + +# data from Mee et al., 2014 +observed_abundances = [ # these pairings were simulated + (:metA, :thrC, 17.0 / (17.0 + 80.8)), + (:ilvA, :pheA, 15.2/ (15.2 + 51.0)), + (:argA, :lysA, 11.7 / (11.7 + 37.1)), + (:metA, :proA, 13.7 / (13.7 + 36.5)), + (:argA, :metA, 22.8 / (22.8 + 19.8)), + (:argA, :ilvA, 13.2 / (13.2 + 10.4)), + (:metA, :pheA, 25.9 / (25.9 + 19.5)), + (:ilvA, :lysA, 35.7 / (35.7 + 18.5)), + (:ilvA, :metA, 71.3 / (71.3 + 17.3)), +] +observed_abundances = last.(observed_abundances) # in order of aa_pairs + +# get maximum growth for each pairing in both simulations +cfba_abs = zeros(9) # optimal abundance using cFBA +eccfba_abs = zeros(9) # optimal abundance using ec-cFBA +for (i, (ko1, ko2)) in enumerate(aa_pairs) + x = argmax(x -> x.mu, filter(x -> haskey(x, ko1) && haskey(x, ko2), cfba_res)) + cfba_abs[i] = x[ko1] / (x[ko1] + x[ko2]) + + x = argmax(x -> x.mu, filter(x -> haskey(x, ko1) && haskey(x, ko2), eccfba_res)) + eccfba_abs[i] = x[ko1] / (x[ko1] + x[ko2]) +end + +# The figure below shows that using enzyme constraints dramatically improves the +# predictive validity of community simulations +fig = Figure(); +ax = Axis(fig[1,1], xlabel="Observed composition", ylabel="Predicted composition", title="cFBA") +stem!( + ax, + observed_abundances, + cfba_abs, + offset = observed_abundances, + marker = :rect, + color = :blue, + stemcolor=:blue, + trunkcolor=:grey, + label="cFBA" +) +xlims!(ax, 0, 1) +ylims!(ax, 0, 1) + +ax2 = Axis(fig[1,2], xlabel="Observed composition", title="ec-cFBA") +stem!( + ax2, + observed_abundances, + eccfba_abs, + offset = observed_abundances, + marker = :circle, + color = :red, + stemcolor=:red, + trunkcolor=:grey, + label="ec-cFBA" +) +xlims!(ax2, 0, 1) +ylims!(ax2, 0, 1) +fig From e0e38666dec011dc35a5f8124c315bff036a2438 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 15:18:51 +0100 Subject: [PATCH 05/45] format --- docs/src/examples/07-srba.jl | 41 ++++++++++------- docs/src/examples/08-community-enzyme.jl | 58 +++++++++++++----------- 2 files changed, 57 insertions(+), 42 deletions(-) diff --git a/docs/src/examples/07-srba.jl b/docs/src/examples/07-srba.jl index 9e4ce999..8fb944e6 100644 --- a/docs/src/examples/07-srba.jl +++ b/docs/src/examples/07-srba.jl @@ -226,7 +226,10 @@ end # this data is taken from: *Heckmann, David, et al. "Machine learning applied # to enzyme turnover numbers reveals protein structural correlates and improves # metabolic models." Nature communications 9.1 (2018): 1-10.* -kcat_data = Dict(String(r.KcatID) => r.KcatHeckmann for r in CSV.File(joinpath(data_root, "ecoli_kcats.tsv"))) +kcat_data = Dict( + String(r.KcatID) => r.KcatHeckmann for + r in CSV.File(joinpath(data_root, "ecoli_kcats.tsv")) +) complex_data = begin x = CSV.File(joinpath(data_root, "e_coli_complex.tsv"), delim = '\t') @@ -256,7 +259,8 @@ add_kcats!(model, kcat_data; transporter_kcat = 180.0, average_kcat = 25.0) gene_product_molar_masses = get_protein_masses(model, proteome_data) # collect kcats and stoichiometry -reaction_isozymes = get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) +reaction_isozymes = + get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) # apply analysis-specific quirks gene_product_molar_masses["b1692"] = 54.58 @@ -319,7 +323,8 @@ end for (k, v) in avg_prot avg_prot[k] = v / sum(values(avg_prot)) end -aacount[:ribosome] = Dict(k => round(Int, aas_in_ribosome * v, RoundNearest) for (k, v) in avg_prot) +aacount[:ribosome] = + Dict(k => round(Int, aas_in_ribosome * v, RoundNearest) for (k, v) in avg_prot) #md # ```@raw html #md # @@ -350,7 +355,7 @@ membrane_gids = unique( rid in membrane_rids if !isnothing(A.reaction_gene_association_dnf(model, rid)) for gs in A.reaction_gene_association_dnf(model, rid) for g in gs ) - + # Now we build an enzyme constrained metabolic model using COBREXA. Note, we # assume two capacity limitations here: 1) a total capacity bound, and a # membrane capacity bound. @@ -514,8 +519,7 @@ res = screen(mus) do mu return (; mu, - ribosome_mass = gene_product_molar_masses["ribosome"] * - sum(values(sol.ribosomes)), + ribosome_mass = gene_product_molar_masses["ribosome"] * sum(values(sol.ribosomes)), total_mass = sol.gene_product_capacity.total, ac_flux = sol.fluxes.EX_ac_e, glc_flux = sol.fluxes.EX_glc__D_e, @@ -534,14 +538,19 @@ ribosome_measurements = CSV.File(joinpath(data_root, "ecoli_ribosomes.tsv")) # observations, and also show that overflow metabolism occurs (latter is due to # the membrane bound). fig = Figure(); -ax = Axis(fig[1,1], xlabel="Growth rate, 1/h", ylabel="Ribosome mass fraction") -scatter!(ax, ribosome_measurements.GR, ribosome_measurements.ActiveR ./ 100 ,label = "Measurements") -lines!(ax, mus, [r.ribosome_mass/r.total_mass for r in res], label="Model predictions") -axislegend(ax, position=:lt) - -ax2 = Axis(fig[2,1], xlabel="Growth rate, 1/h", ylabel="Metabolite flux") -lines!(ax2, mus,[r.ac_flux for r in res], label ="Acetate") -lines!(ax2, mus,[abs(r.glc_flux) for r in res], label ="Glucose") -lines!(ax2, mus,[abs(r.o2_flux) for r in res], label ="Oxygen") -axislegend(ax2, position=:lt) +ax = Axis(fig[1, 1], xlabel = "Growth rate, 1/h", ylabel = "Ribosome mass fraction") +scatter!( + ax, + ribosome_measurements.GR, + ribosome_measurements.ActiveR ./ 100, + label = "Measurements", +) +lines!(ax, mus, [r.ribosome_mass / r.total_mass for r in res], label = "Model predictions") +axislegend(ax, position = :lt) + +ax2 = Axis(fig[2, 1], xlabel = "Growth rate, 1/h", ylabel = "Metabolite flux") +lines!(ax2, mus, [r.ac_flux for r in res], label = "Acetate") +lines!(ax2, mus, [abs(r.glc_flux) for r in res], label = "Glucose") +lines!(ax2, mus, [abs(r.o2_flux) for r in res], label = "Oxygen") +axislegend(ax2, position = :lt) fig diff --git a/docs/src/examples/08-community-enzyme.jl b/docs/src/examples/08-community-enzyme.jl index 86da1da8..622e4935 100644 --- a/docs/src/examples/08-community-enzyme.jl +++ b/docs/src/examples/08-community-enzyme.jl @@ -226,7 +226,10 @@ end # this data is taken from: *Heckmann, David, et al. "Machine learning applied # to enzyme turnover numbers reveals protein structural correlates and improves # metabolic models." Nature communications 9.1 (2018): 1-10.* -kcat_data = Dict(String(r.KcatID) => r.KcatHeckmann for r in CSV.File(joinpath(data_root, "ecoli_kcats.tsv"))) +kcat_data = Dict( + String(r.KcatID) => r.KcatHeckmann for + r in CSV.File(joinpath(data_root, "ecoli_kcats.tsv")) +) complex_data = begin x = CSV.File(joinpath(data_root, "e_coli_complex.tsv"), delim = '\t') @@ -256,7 +259,8 @@ add_kcats!(model, kcat_data; transporter_kcat = 180.0, average_kcat = 25.0) gene_product_molar_masses = get_protein_masses(model, proteome_data) # collect kcats and stoichiometry -reaction_isozymes = get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) +reaction_isozymes = + get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) # apply analysis-specific quirks gene_product_molar_masses["b1692"] = 54.58 @@ -359,10 +363,7 @@ function auxotrophe_fba(wt, aa_ko; fbc_only = false) ) isnothing(sol) && return nothing - (; - mu = sol.objective, - (Symbol(aa) => ab for (aa, ab) in aa_ko)..., - ) + (; mu = sol.objective, (Symbol(aa) => ab for (aa, ab) in aa_ko)...) end # open specific bounds @@ -452,7 +453,7 @@ using CairoMakie # data from Mee et al., 2014 observed_abundances = [ # these pairings were simulated (:metA, :thrC, 17.0 / (17.0 + 80.8)), - (:ilvA, :pheA, 15.2/ (15.2 + 51.0)), + (:ilvA, :pheA, 15.2 / (15.2 + 51.0)), (:argA, :lysA, 11.7 / (11.7 + 37.1)), (:metA, :proA, 13.7 / (13.7 + 36.5)), (:argA, :metA, 22.8 / (22.8 + 19.8)), @@ -477,32 +478,37 @@ end # The figure below shows that using enzyme constraints dramatically improves the # predictive validity of community simulations fig = Figure(); -ax = Axis(fig[1,1], xlabel="Observed composition", ylabel="Predicted composition", title="cFBA") +ax = Axis( + fig[1, 1], + xlabel = "Observed composition", + ylabel = "Predicted composition", + title = "cFBA", +) stem!( - ax, - observed_abundances, - cfba_abs, - offset = observed_abundances, + ax, + observed_abundances, + cfba_abs, + offset = observed_abundances, marker = :rect, - color = :blue, - stemcolor=:blue, - trunkcolor=:grey, - label="cFBA" + color = :blue, + stemcolor = :blue, + trunkcolor = :grey, + label = "cFBA", ) xlims!(ax, 0, 1) ylims!(ax, 0, 1) -ax2 = Axis(fig[1,2], xlabel="Observed composition", title="ec-cFBA") +ax2 = Axis(fig[1, 2], xlabel = "Observed composition", title = "ec-cFBA") stem!( - ax2, - observed_abundances, - eccfba_abs, - offset = observed_abundances, - marker = :circle, - color = :red, - stemcolor=:red, - trunkcolor=:grey, - label="ec-cFBA" + ax2, + observed_abundances, + eccfba_abs, + offset = observed_abundances, + marker = :circle, + color = :red, + stemcolor = :red, + trunkcolor = :grey, + label = "ec-cFBA", ) xlims!(ax2, 0, 1) ylims!(ax2, 0, 1) From 415c96927c5b76962705dadeac0a893d498edcdc Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 15:21:12 +0100 Subject: [PATCH 06/45] rename to shceme --- docs/src/examples/{07-srba.jl => 07a-srba.jl} | 0 .../examples/{08-community-enzyme.jl => 07b-community-ecfba.jl} | 0 2 files changed, 0 insertions(+), 0 deletions(-) rename docs/src/examples/{07-srba.jl => 07a-srba.jl} (100%) rename docs/src/examples/{08-community-enzyme.jl => 07b-community-ecfba.jl} (100%) diff --git a/docs/src/examples/07-srba.jl b/docs/src/examples/07a-srba.jl similarity index 100% rename from docs/src/examples/07-srba.jl rename to docs/src/examples/07a-srba.jl diff --git a/docs/src/examples/08-community-enzyme.jl b/docs/src/examples/07b-community-ecfba.jl similarity index 100% rename from docs/src/examples/08-community-enzyme.jl rename to docs/src/examples/07b-community-ecfba.jl From 31c1a410b1944b5e24d33fd170ea90c457cf1398 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 15:24:56 +0100 Subject: [PATCH 07/45] remove unsupported/unused code --- docs/src/examples/07a-srba.jl | 14 ++++++++++++-- docs/src/examples/07b-community-ecfba.jl | 9 ++++++--- 2 files changed, 18 insertions(+), 5 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 8fb944e6..fc4562c7 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -42,7 +42,7 @@ download_model( import AbstractFBCModels as A import JSONFBCModels import ConstraintTrees as C -import SCIP +import HiGHS # ## Collect data for RBA model # RBA models require a lot of data. Below we have processed the data into a @@ -493,6 +493,11 @@ end mus = range(0.1, 0.95, 10) # simulate at these growth rates +settings = [ + set_optimizer_attribute("solver", "simplex"), + set_optimizer_attribute("simplex_strategy", 4), +] + res = screen(mus) do mu @info "sRBA step" mu rbat = with_srba_constraints(ct, mu) @@ -512,8 +517,9 @@ res = screen(mus) do mu rbat; settings = [silence], objective = rbat.lp_objective.value, - optimizer = SCIP.Optimizer, + optimizer = HiGHS.Optimizer, sense = Minimal, + settings, ) isnothing(sol) && return nothing @@ -529,6 +535,8 @@ end # finally, we can plot the data, to see if we can recapitulate known phenomena +#= TODO + using CairoMakie # load measured ribosome protein mass fractions @@ -554,3 +562,5 @@ lines!(ax2, mus, [abs(r.glc_flux) for r in res], label = "Glucose") lines!(ax2, mus, [abs(r.o2_flux) for r in res], label = "Oxygen") axislegend(ax2, position = :lt) fig + +=# diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 622e4935..8b7f6711 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -45,7 +45,7 @@ download_model( import AbstractFBCModels as A import JSONFBCModels import ConstraintTrees as C -import SCIP +import HiGHS # ## Collect data for enzyme constrained models # Like in the previous example, we will spend some time gathering the necessary @@ -356,10 +356,9 @@ function auxotrophe_fba(wt, aa_ko; fbc_only = false) sol = optimized_values( x; - optimizer = SCIP.Optimizer, + optimizer = HiGHS.Optimizer, objective = x.objective.value, sense = Maximal, - settings = [silence], ) isnothing(sol) && return nothing @@ -444,6 +443,8 @@ eccfba_res = screen(specs) do spec auxotrophe_fba(wt, spec) end +#= + # ## Plot cFBA vs. ec-cFBA vs. experimental data # Now that we have simulated the models, we need to compare them to data. The # data from the paper is processed below, and then plotted. @@ -513,3 +514,5 @@ stem!( xlims!(ax2, 0, 1) ylims!(ax2, 0, 1) fig + +=# From 98dd524cf057bc4bfb53149caa7061c609383e9b Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 15:31:20 +0100 Subject: [PATCH 08/45] squash blanks --- docs/src/examples/07a-srba.jl | 8 ++++---- docs/src/examples/07b-community-ecfba.jl | 6 +++--- 2 files changed, 7 insertions(+), 7 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index fc4562c7..aa494b61 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -169,7 +169,7 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s d[isozyme_id] = Isozyme( gene_product_stoichiometry = Dict(grr .=> ss_counts), kcat_forward = kcat_data[rid] * scale, - kcat_reverse = kcat_data[rid] * scale, # assume forward and reverse are the same + kcat_reverse = kcat_data[rid] * scale, # assume forward and reverse are the same ) end end @@ -248,7 +248,7 @@ end model = load_model("iML1515.json", A.CanonicalModel.Model) # Assemble the isozymes and gene product masses increase protein concentrations -# by changing units, convert kcat units from 1/s to k/h +# by changing units, convert kcat units from 1/s to k/h scale = 3600 / 1e3 # add kcats that are not measured @@ -358,7 +358,7 @@ membrane_gids = unique( # Now we build an enzyme constrained metabolic model using COBREXA. Note, we # assume two capacity limitations here: 1) a total capacity bound, and a -# membrane capacity bound. +# membrane capacity bound. total_capacity = 550.0 membrane_frac = 0.20 # fraction of total proteome that is allowed to be membrane associated @@ -544,7 +544,7 @@ ribosome_measurements = CSV.File(joinpath(data_root, "ecoli_ribosomes.tsv")) # First, show that the predicted ribosome density matches experimental # observations, and also show that overflow metabolism occurs (latter is due to -# the membrane bound). +# the membrane bound). fig = Figure(); ax = Axis(fig[1, 1], xlabel = "Growth rate, 1/h", ylabel = "Ribosome mass fraction") scatter!( diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 8b7f6711..00c6a90f 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -169,7 +169,7 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s d[isozyme_id] = Isozyme( gene_product_stoichiometry = Dict(grr .=> ss_counts), kcat_forward = kcat_data[rid] * scale, - kcat_reverse = kcat_data[rid] * scale, # assume forward and reverse are the same + kcat_reverse = kcat_data[rid] * scale, # assume forward and reverse are the same ) end end @@ -248,7 +248,7 @@ end model = load_model("iML1515.json", A.CanonicalModel.Model) # Assemble the isozymes and gene product masses increase protein concentrations -# by changing units, convert kcat units from 1/s to k/h +# by changing units, convert kcat units from 1/s to k/h scale = 3600 / 1e3 # add kcats that are not measured @@ -276,7 +276,7 @@ gene_product_molar_masses["s0001"] = 54.58 # need to write a general purpose community construction function, which will # naturally work with either classic FBA or enzyme constrained FBA models. -# below we create a community assembly function, assuming an input of a wildtype model +# below we create a community assembly function, assuming an input of a wildtype model function auxotrophe_community(wt, aa_ko; fbc_only = false) # these are the possible KOs we consider From 33a234ee70662227eb38bb68629d6610d2241288 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 15:35:32 +0100 Subject: [PATCH 09/45] makie is forbidden --- docs/Project.toml | 1 - 1 file changed, 1 deletion(-) diff --git a/docs/Project.toml b/docs/Project.toml index c116451d..21355a32 100644 --- a/docs/Project.toml +++ b/docs/Project.toml @@ -1,7 +1,6 @@ [deps] AbstractFBCModels = "5a4f3dfa-1789-40f8-8221-69268c29937c" COBREXA = "babc4406-5200-4a30-9033-bf5ae714c842" -CairoMakie = "13f3f980-e62b-5c42-98c6-ff1f3baf88f0" Clarabel = "61c947e1-3e6d-4ee4-985a-eec8c727bd6e" ConstraintTrees = "5515826b-29c3-47a5-8849-8513ac836620" Documenter = "e30172f5-a6a5-5a46-863b-614d45cd2de4" From 5dcda75f3fb2bb1aa283b8125cd63ec4ea51f2e3 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 15:36:56 +0100 Subject: [PATCH 10/45] rm Tables, install CSV dep --- docs/Project.toml | 1 + docs/src/examples/07a-srba.jl | 2 +- docs/src/examples/07b-community-ecfba.jl | 2 +- 3 files changed, 3 insertions(+), 2 deletions(-) diff --git a/docs/Project.toml b/docs/Project.toml index 21355a32..fd6f99d9 100644 --- a/docs/Project.toml +++ b/docs/Project.toml @@ -1,6 +1,7 @@ [deps] AbstractFBCModels = "5a4f3dfa-1789-40f8-8221-69268c29937c" COBREXA = "babc4406-5200-4a30-9033-bf5ae714c842" +CSV = "336ed68f-0bac-5ca0-87d4-7b16caf5d00b" Clarabel = "61c947e1-3e6d-4ee4-985a-eec8c727bd6e" ConstraintTrees = "5515826b-29c3-47a5-8849-8513ac836620" Documenter = "e30172f5-a6a5-5a46-863b-614d45cd2de4" diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index aa494b61..8df87312 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -54,7 +54,7 @@ import HiGHS #md #
Data for reaction turnover numbers #md # ``` -import Tables, CSV # for data loading +import CSV import Statistics: mean data_root = joinpath(@__DIR__, "src", "examples", "data") diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 00c6a90f..f23111c1 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -55,7 +55,7 @@ import HiGHS #md #
Data for reaction turnover numbers #md # ``` -import Tables, CSV # for data loading +import CSV import Statistics: mean data_root = joinpath(@__DIR__, "src", "examples", "data") From 9c3d6d6e093252bf25be463a7c76b99e3b928ca4 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 15:43:48 +0100 Subject: [PATCH 11/45] CSV belongs to dest deps too --- Project.toml | 3 ++- 1 file changed, 2 insertions(+), 1 deletion(-) diff --git a/Project.toml b/Project.toml index 975ef333..d7b9de3a 100644 --- a/Project.toml +++ b/Project.toml @@ -34,6 +34,7 @@ julia = "1.5" [extras] Aqua = "4c88cf16-eb10-579e-8560-4a9242c79595" +CSV = "336ed68f-0bac-5ca0-87d4-7b16caf5d00b" Clarabel = "61c947e1-3e6d-4ee4-985a-eec8c727bd6e" Downloads = "f43a241f-c20a-4ad4-852c-f6b1247861c6" HiGHS = "87dc4568-4c63-4d18-b0c0-bb2238e4078b" @@ -44,4 +45,4 @@ Test = "8dfed614-e22c-5e08-85e1-65c5234f0b40" Tulip = "6dd1b50a-3aae-11e9-10b5-ef983d2400fa" [targets] -test = ["Aqua", "Clarabel", "Downloads", "HiGHS", "JSONFBCModels", "SBMLFBCModels", "SHA", "Test", "Tulip"] +test = ["Aqua", "CSV", "Clarabel", "Downloads", "HiGHS", "JSONFBCModels", "SBMLFBCModels", "SHA", "Test", "Tulip"] From 8997062ba76f12c3480a2dc4e15f0fff0a4afad1 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 15:50:14 +0100 Subject: [PATCH 12/45] clean up the breaks --- docs/src/examples/07a-srba.jl | 47 +++++++++++++---------------------- 1 file changed, 17 insertions(+), 30 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 8df87312..fad3861f 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -92,21 +92,16 @@ function add_kcats!( end if length(unique(suffixes)) > 1 if !haskey(kcat_data, rid) - # println("Transporter ", rid, " assigned kcat.") kcat_data[rid] = transporter_kcat end end end - for rid in A.reactions(model) !has_reaction_grr(model, rid) && continue if !haskey(kcat_data, rid) kcat_data[rid] = average_kcat - # println("Assigned average kcat to: ", rid) elseif haskey(kcat_data, rid) continue - else - # println("Rid not assigned a kcat: ", rid) end end @@ -141,7 +136,7 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s "Homodecamer" => 10, "Homododecamer" => 12, ) - + #+ # infer protein stoichiometry from uniprot annotations reaction_isozymes = Dict{String,Dict{String,Isozyme}}() multi_component_enzymes = [] # for use later @@ -152,7 +147,6 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s for (i, grr) in enumerate(grrs) isozyme_id = "isozyme_" * string(i) d = get!(reaction_isozymes, rid, Dict{String,Isozyme}()) - if length(grr) == 1 # only assign homomers gid = first(grr) if haskey(proteome_data, gid) # has uniprot data @@ -165,7 +159,6 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s ss_counts = fill(1.0, length(grr)) push!(multi_component_enzymes, (rid, isozyme_id)) end - d[isozyme_id] = Isozyme( gene_product_stoichiometry = Dict(grr .=> ss_counts), kcat_forward = kcat_data[rid] * scale, @@ -174,7 +167,7 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s end end end - + #+ # fix complex stoichiometry using ComplexPortal data fixed_multi_component_enzymes = [] not_fixed_multi_component_enzymes = [] @@ -188,7 +181,6 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s push!(stoichs, v) end end - if length(stoichs) == 1 push!(fixed_multi_component_enzymes, (rid, isozyme_id)) d = first(stoichs) @@ -202,14 +194,13 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s push!(not_fixed_multi_component_enzymes, (rid, isozyme_id)) end end - + #+ # use only the entries where the stoichiometry is known, if any are known for (rid, isozyme_id) in not_fixed_multi_component_enzymes if rid in first.(fixed_multi_component_enzymes) delete!(reaction_isozymes[rid], isozyme_id) end end - return reaction_isozymes end @@ -302,7 +293,6 @@ amino_acids = Dict( ) aacount = begin # count of each amino acid in a gene product - # convert the TSV into a dictionary structure x = CSV.File(joinpath(data_root, "ecoli_gene_product_aa_counts.tsv"), delim = '\t') res = Dict{Symbol,Dict{Symbol,Int}}() for gp in x.gene_product @@ -390,11 +380,11 @@ ct.fluxes[:EX_lac__D_e].bound = C.EqualTo(0.0) # function-based appraoch. The function belows glues the sRBA constraint system # to the given ecRBA model at a specific growth rate. function with_srba_constraints(ct, mu) - + #+ # atp + h2o -> adp + h + po4 energy_metabolites = Dict(:atp_c => -1, :h2o_c => -1, :adp_c => 1, :h_c => 1, :pi_c => 1) - + #+ # attach new variables for ribosomes (recall ribosomes are required to make proteins, and ribosomes themselves) rbatree = ct + @@ -402,14 +392,14 @@ function with_srba_constraints(ct, mu) keys = [collect(keys(ct.gene_product_amounts)); :ribosome], bounds = C.Between(0, Inf), ) - + #+ # we are going to modify a few parts locally so let's make a copy of them to not change the base model (ct) rbatree = C.ConstraintTree( rbatree..., :flux_stoichiometry => deepcopy(rbatree.flux_stoichiometry), :gene_product_capacity => deepcopy(rbatree.gene_product_capacity), ) - + #+ # amino acid dilution by growth note: in RBA biomass components get diluted # directly, and it is not necessary to have a biomass reaction for this # purpose. Here the amino acids get special attention, since they are @@ -430,46 +420,45 @@ function with_srba_constraints(ct, mu) ) ) end - + #+ # In contrast, the other biomass components just get diluted by growth, including the energy metabolites prot_atp_req = 12.0 # protein polymerization cost for average proteome in 1 gDW for (mid, v) in biomass.stoichiometry # from the saved biomass composition of the original model k = Symbol(mid) haskey(amino_acids, k) && continue + #+ # if the metabolite is an energy metabolite, we add the energy cost of translation offset = haskey(energy_metabolites, k) ? -energy_metabolites[k] * prot_atp_req : 0.0 rbatree.flux_stoichiometry[k].value += mu * (v + offset) end - + #+ # energy costs of protein synthesis for (k, kk) in energy_metabolites - # / 1000 to get units to mmol/gDW - # proteins rbatree.flux_stoichiometry[k].value += - (kk * mu * 0.001 * atp_polymerization_cost) * sum( + (kk * mu * 0.001 #= mmol conversion =# * atp_polymerization_cost) * sum( sum(values(aacount[g])) * C.value(c) for (g, c) in rbatree.gene_product_amounts if haskey(aacount, g); init = C.zero(C.LinearValue), ) - + #+ # ribosome synthesis also costs energy rbatree.flux_stoichiometry[k].value += (kk * mu * 0.001 * atp_polymerization_cost * aas_in_ribosome) * sum(C.value(x) for x in values(rbatree.ribosomes); init = C.zero(C.LinearValue)) end - + #+ # add the equations for protein synthesis by ribosomes kr = ribosomes_per_protein * 12 * 3600 # ribosome elongation rate amino acids/second => amino acids/hr - + #+ aa_sum(g) = haskey(aacount, g) ? sum(values(aacount[g])) : 300 - + #+ rbatree *= :protein_synthesis^C.ConstraintTree( g => C.Constraint(kr * rbatree.ribosomes[g].value - mu * c.value * aa_sum(g), 0) for (g, c) in rbatree.gene_product_amounts ) - + #+ # add the equation for ribosome synthesis by themselves rbatree *= :ribosome_balance^C.Constraint( @@ -478,7 +467,7 @@ function with_srba_constraints(ct, mu) sum(C.value.(values(rbatree.ribosomes)); init = zero(C.LinearValue)), 0, ) - + #+ # patch the total gene product capacity bound with the new ribosomes rbatree.gene_product_capacity.total.value += sum(C.value.(values(rbatree.ribosomes))) * gene_product_molar_masses["ribosome"] @@ -512,7 +501,6 @@ res = screen(mus) do mu ), nothing, ) - sol = optimized_values( rbat; settings = [silence], @@ -522,7 +510,6 @@ res = screen(mus) do mu settings, ) isnothing(sol) && return nothing - return (; mu, ribosome_mass = gene_product_molar_masses["ribosome"] * sum(values(sol.ribosomes)), From 619a0593dc5d47cb1b2dad2fb7c0256f8c062d7f Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 21:25:53 +0100 Subject: [PATCH 13/45] add Statistics to deps --- Project.toml | 3 ++- docs/Project.toml | 1 + 2 files changed, 3 insertions(+), 1 deletion(-) diff --git a/Project.toml b/Project.toml index d7b9de3a..a07e79bd 100644 --- a/Project.toml +++ b/Project.toml @@ -41,8 +41,9 @@ HiGHS = "87dc4568-4c63-4d18-b0c0-bb2238e4078b" JSONFBCModels = "475c1105-d6ed-49c1-9b32-c11adca6d3e8" SBMLFBCModels = "3e8f9d1a-ffc1-486d-82d6-6c7276635980" SHA = "ea8e919c-243c-51af-8825-aaa63cd721ce" +Statistics = "10745b16-79ce-11e8-11f9-7d13ad32a3b2" Test = "8dfed614-e22c-5e08-85e1-65c5234f0b40" Tulip = "6dd1b50a-3aae-11e9-10b5-ef983d2400fa" [targets] -test = ["Aqua", "CSV", "Clarabel", "Downloads", "HiGHS", "JSONFBCModels", "SBMLFBCModels", "SHA", "Test", "Tulip"] +test = ["Aqua", "CSV", "Clarabel", "Downloads", "HiGHS", "JSONFBCModels", "SBMLFBCModels", "SHA", "Statistics", "Test", "Tulip"] diff --git a/docs/Project.toml b/docs/Project.toml index fd6f99d9..550d8c1a 100644 --- a/docs/Project.toml +++ b/docs/Project.toml @@ -11,6 +11,7 @@ IterTools = "c8e1da08-722c-5040-9ed9-7db0dc04731e" JSONFBCModels = "475c1105-d6ed-49c1-9b32-c11adca6d3e8" Literate = "98b081ad-f1c9-55d3-8b20-4c87d4299306" SBMLFBCModels = "3e8f9d1a-ffc1-486d-82d6-6c7276635980" +Statistics = "10745b16-79ce-11e8-11f9-7d13ad32a3b2" Tulip = "6dd1b50a-3aae-11e9-10b5-ef983d2400fa" [compat] From 790020ae6b252f8748b5f7c5fa798178895e27e6 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 21:28:58 +0100 Subject: [PATCH 14/45] fix literate code --- docs/src/examples/07a-srba.jl | 7 ++----- 1 file changed, 2 insertions(+), 5 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index fad3861f..5cf5be9a 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -104,7 +104,6 @@ function add_kcats!( continue end end - return nothing end @@ -173,7 +172,6 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s not_fixed_multi_component_enzymes = [] for (rid, isozyme_id) in multi_component_enzymes grr = collect(keys(reaction_isozymes[rid][isozyme_id].gene_product_stoichiometry)) - stoichs = [] for v in values(complex_data) if length(intersect(collect(keys(v)), grr)) == length(grr) && @@ -448,10 +446,9 @@ function with_srba_constraints(ct, mu) end #+ # add the equations for protein synthesis by ribosomes - kr = ribosomes_per_protein * 12 * 3600 # ribosome elongation rate amino acids/second => amino acids/hr - #+ + # (the conversion is: ribosome elongation rate amino acids/second => amino acids/hr) + kr = ribosomes_per_protein * 12 * 3600 aa_sum(g) = haskey(aacount, g) ? sum(values(aacount[g])) : 300 - #+ rbatree *= :protein_synthesis^C.ConstraintTree( g => From c12ca652988d2f2e8e8f243748920edcb4f06547 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 21:33:19 +0100 Subject: [PATCH 15/45] fmt --- docs/src/examples/07a-srba.jl | 4 ++-- 1 file changed, 2 insertions(+), 2 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 5cf5be9a..f3b55a73 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -406,7 +406,7 @@ function with_srba_constraints(ct, mu) rbatree.flux_stoichiometry[aa].value -= mu * 0.001 * - ( #= mol to mmol conversion ratio=# + ( sum( aacount[g][aa] * c.value for (g, c) in rbatree.gene_product_amounts if haskey(aacount, g) && haskey(aacount[g], aa); @@ -433,7 +433,7 @@ function with_srba_constraints(ct, mu) # energy costs of protein synthesis for (k, kk) in energy_metabolites rbatree.flux_stoichiometry[k].value += - (kk * mu * 0.001 #= mmol conversion =# * atp_polymerization_cost) * sum( + (kk * mu * 0.001 * atp_polymerization_cost) * sum( sum(values(aacount[g])) * C.value(c) for (g, c) in rbatree.gene_product_amounts if haskey(aacount, g); init = C.zero(C.LinearValue), From 4c35fe1b97466fb28302e76374da10098e89d006 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 21:37:19 +0100 Subject: [PATCH 16/45] fix data sourcing --- docs/src/examples/07a-srba.jl | 2 +- docs/src/examples/07b-community-ecfba.jl | 2 +- 2 files changed, 2 insertions(+), 2 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index f3b55a73..272c7c98 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -57,7 +57,7 @@ import HiGHS import CSV import Statistics: mean -data_root = joinpath(@__DIR__, "src", "examples", "data") +data_root = joinpath(dirname(pathof(COBREXA)), "..", "docs", "src", "examples", "data") # ### Helper functions # diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index f23111c1..9c855c59 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -58,7 +58,7 @@ import HiGHS import CSV import Statistics: mean -data_root = joinpath(@__DIR__, "src", "examples", "data") +data_root = joinpath(dirname(pathof(COBREXA)), "..", "docs", "src", "examples", "data") # ### Helper functions From 5c3df03b289329d8b81be35dec77a4b3e80dc236 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 21:44:01 +0100 Subject: [PATCH 17/45] fix settings --- docs/src/examples/07a-srba.jl | 1 - 1 file changed, 1 deletion(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 272c7c98..54e4a2d8 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -500,7 +500,6 @@ res = screen(mus) do mu ) sol = optimized_values( rbat; - settings = [silence], objective = rbat.lp_objective.value, optimizer = HiGHS.Optimizer, sense = Minimal, From fd93334b9f011d379b6af48303ef9692ddfb1768 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 8 Jan 2025 22:03:52 +0100 Subject: [PATCH 18/45] fix comment --- docs/src/examples/07a-srba.jl | 1 - 1 file changed, 1 deletion(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 54e4a2d8..a0fd7b6f 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -121,7 +121,6 @@ end # this also gets rid of low confidence complexes if any complex in the set can # be found in the ComplexPortal. function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) - # protein stoich map, infer from uniprot mer_map = Dict( "Homomonomer" => 1, "Monomer" => 1, From 9ac52957ccbacd73484c63ae0a62670aca75c7dd Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Mon, 13 Jan 2025 15:27:41 +0100 Subject: [PATCH 19/45] prevent distributed issues by setting workers --- docs/src/examples/07a-srba.jl | 2 +- docs/src/examples/07b-community-ecfba.jl | 4 ++-- 2 files changed, 3 insertions(+), 3 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index a0fd7b6f..76ed27ac 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -483,7 +483,7 @@ settings = [ set_optimizer_attribute("simplex_strategy", 4), ] -res = screen(mus) do mu +res = screen(mus, workers = [1]) do mu @info "sRBA step" mu rbat = with_srba_constraints(ct, mu) rbat *= diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 9c855c59..2986b4b9 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -423,7 +423,7 @@ specs = [ wt = flux_balance_constraints(model; interface = :identifier_prefixes) open_bounds_fbc!(wt, :EX_glc__D_e) -cfba_res = screen(specs) do spec +cfba_res = screen(specs, workers = [1]) do spec auxotrophe_fba(wt, spec; fbc_only = true) end @@ -439,7 +439,7 @@ wt = simplified_enzyme_constrained_flux_balance_constraints( open_bounds_ecfbc!(wt, :EX_glc__D_e) fix_bounds_ecfbc!(wt) -eccfba_res = screen(specs) do spec +eccfba_res = screen(specs. workers = [1]) do spec auxotrophe_fba(wt, spec) end From 7ed6ed52a0e080ada2bd6f15160e7f4bcb4051d1 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Mon, 13 Jan 2025 15:29:58 +0100 Subject: [PATCH 20/45] temporarily prevent comment issues --- docs/src/examples/07a-srba.jl | 32 ---------- docs/src/examples/07b-community-ecfba.jl | 76 +----------------------- 2 files changed, 1 insertion(+), 107 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 76ed27ac..8fda01e0 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -514,35 +514,3 @@ res = screen(mus, workers = [1]) do mu o2_flux = sol.fluxes.EX_o2_e, ) end - -# finally, we can plot the data, to see if we can recapitulate known phenomena - -#= TODO - -using CairoMakie - -# load measured ribosome protein mass fractions -ribosome_measurements = CSV.File(joinpath(data_root, "ecoli_ribosomes.tsv")) - -# First, show that the predicted ribosome density matches experimental -# observations, and also show that overflow metabolism occurs (latter is due to -# the membrane bound). -fig = Figure(); -ax = Axis(fig[1, 1], xlabel = "Growth rate, 1/h", ylabel = "Ribosome mass fraction") -scatter!( - ax, - ribosome_measurements.GR, - ribosome_measurements.ActiveR ./ 100, - label = "Measurements", -) -lines!(ax, mus, [r.ribosome_mass / r.total_mass for r in res], label = "Model predictions") -axislegend(ax, position = :lt) - -ax2 = Axis(fig[2, 1], xlabel = "Growth rate, 1/h", ylabel = "Metabolite flux") -lines!(ax2, mus, [r.ac_flux for r in res], label = "Acetate") -lines!(ax2, mus, [abs(r.glc_flux) for r in res], label = "Glucose") -lines!(ax2, mus, [abs(r.o2_flux) for r in res], label = "Oxygen") -axislegend(ax2, position = :lt) -fig - -=# diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 2986b4b9..0d014d5a 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -439,80 +439,6 @@ wt = simplified_enzyme_constrained_flux_balance_constraints( open_bounds_ecfbc!(wt, :EX_glc__D_e) fix_bounds_ecfbc!(wt) -eccfba_res = screen(specs. workers = [1]) do spec +eccfba_res = screen(specs, workers = [1]) do spec auxotrophe_fba(wt, spec) end - -#= - -# ## Plot cFBA vs. ec-cFBA vs. experimental data -# Now that we have simulated the models, we need to compare them to data. The -# data from the paper is processed below, and then plotted. - -using CairoMakie - -# data from Mee et al., 2014 -observed_abundances = [ # these pairings were simulated - (:metA, :thrC, 17.0 / (17.0 + 80.8)), - (:ilvA, :pheA, 15.2 / (15.2 + 51.0)), - (:argA, :lysA, 11.7 / (11.7 + 37.1)), - (:metA, :proA, 13.7 / (13.7 + 36.5)), - (:argA, :metA, 22.8 / (22.8 + 19.8)), - (:argA, :ilvA, 13.2 / (13.2 + 10.4)), - (:metA, :pheA, 25.9 / (25.9 + 19.5)), - (:ilvA, :lysA, 35.7 / (35.7 + 18.5)), - (:ilvA, :metA, 71.3 / (71.3 + 17.3)), -] -observed_abundances = last.(observed_abundances) # in order of aa_pairs - -# get maximum growth for each pairing in both simulations -cfba_abs = zeros(9) # optimal abundance using cFBA -eccfba_abs = zeros(9) # optimal abundance using ec-cFBA -for (i, (ko1, ko2)) in enumerate(aa_pairs) - x = argmax(x -> x.mu, filter(x -> haskey(x, ko1) && haskey(x, ko2), cfba_res)) - cfba_abs[i] = x[ko1] / (x[ko1] + x[ko2]) - - x = argmax(x -> x.mu, filter(x -> haskey(x, ko1) && haskey(x, ko2), eccfba_res)) - eccfba_abs[i] = x[ko1] / (x[ko1] + x[ko2]) -end - -# The figure below shows that using enzyme constraints dramatically improves the -# predictive validity of community simulations -fig = Figure(); -ax = Axis( - fig[1, 1], - xlabel = "Observed composition", - ylabel = "Predicted composition", - title = "cFBA", -) -stem!( - ax, - observed_abundances, - cfba_abs, - offset = observed_abundances, - marker = :rect, - color = :blue, - stemcolor = :blue, - trunkcolor = :grey, - label = "cFBA", -) -xlims!(ax, 0, 1) -ylims!(ax, 0, 1) - -ax2 = Axis(fig[1, 2], xlabel = "Observed composition", title = "ec-cFBA") -stem!( - ax2, - observed_abundances, - eccfba_abs, - offset = observed_abundances, - marker = :circle, - color = :red, - stemcolor = :red, - trunkcolor = :grey, - label = "ec-cFBA", -) -xlims!(ax2, 0, 1) -ylims!(ax2, 0, 1) -fig - -=# From 2e20df837b2f053275d127480e498e067cfbbe34 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Mon, 13 Jan 2025 15:48:41 +0100 Subject: [PATCH 21/45] notebookize --- docs/src/examples/07b-community-ecfba.jl | 33 ------------------------ 1 file changed, 33 deletions(-) diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 0d014d5a..1ebc140a 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -92,7 +92,6 @@ function add_kcats!( end if length(unique(suffixes)) > 1 if !haskey(kcat_data, rid) - # println("Transporter ", rid, " assigned kcat.") kcat_data[rid] = transporter_kcat end end @@ -102,11 +101,8 @@ function add_kcats!( !has_reaction_grr(model, rid) && continue if !haskey(kcat_data, rid) kcat_data[rid] = average_kcat - # println("Assigned average kcat to: ", rid) elseif haskey(kcat_data, rid) continue - else - # println("Rid not assigned a kcat: ", rid) end end @@ -127,7 +123,6 @@ end # this also gets rid of low confidence complexes if any complex in the set can # be found in the ComplexPortal. function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) - # protein stoich map, infer from uniprot mer_map = Dict( "Homomonomer" => 1, "Monomer" => 1, @@ -141,8 +136,6 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s "Homodecamer" => 10, "Homododecamer" => 12, ) - - # infer protein stoichiometry from uniprot annotations reaction_isozymes = Dict{String,Dict{String,Isozyme}}() multi_component_enzymes = [] # for use later for rid in A.reactions(model) @@ -152,7 +145,6 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s for (i, grr) in enumerate(grrs) isozyme_id = "isozyme_" * string(i) d = get!(reaction_isozymes, rid, Dict{String,Isozyme}()) - if length(grr) == 1 # only assign homomers gid = first(grr) if haskey(proteome_data, gid) # has uniprot data @@ -165,7 +157,6 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s ss_counts = fill(1.0, length(grr)) push!(multi_component_enzymes, (rid, isozyme_id)) end - d[isozyme_id] = Isozyme( gene_product_stoichiometry = Dict(grr .=> ss_counts), kcat_forward = kcat_data[rid] * scale, @@ -174,13 +165,10 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s end end end - - # fix complex stoichiometry using ComplexPortal data fixed_multi_component_enzymes = [] not_fixed_multi_component_enzymes = [] for (rid, isozyme_id) in multi_component_enzymes grr = collect(keys(reaction_isozymes[rid][isozyme_id].gene_product_stoichiometry)) - stoichs = [] for v in values(complex_data) if length(intersect(collect(keys(v)), grr)) == length(grr) && @@ -188,7 +176,6 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s push!(stoichs, v) end end - if length(stoichs) == 1 push!(fixed_multi_component_enzymes, (rid, isozyme_id)) d = first(stoichs) @@ -202,14 +189,11 @@ function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, s push!(not_fixed_multi_component_enzymes, (rid, isozyme_id)) end end - - # use only the entries where the stoichiometry is known, if any are known for (rid, isozyme_id) in not_fixed_multi_component_enzymes if rid in first.(fixed_multi_component_enzymes) delete!(reaction_isozymes[rid], isozyme_id) end end - return reaction_isozymes end @@ -278,8 +262,6 @@ gene_product_molar_masses["s0001"] = 54.58 # below we create a community assembly function, assuming an input of a wildtype model function auxotrophe_community(wt, aa_ko; fbc_only = false) - - # these are the possible KOs we consider kos = Dict( :argA => (:ACGS, :arg), :ilvA => (:THRD_L, :ile), @@ -294,10 +276,7 @@ function auxotrophe_community(wt, aa_ko; fbc_only = false) :tyrA => (:PPND, :tyr), :lysA => (:DAPDC, :lys), ) - aa_id(aa) = Symbol("EX_", aa, "__L_e") - - # bound the exchanges boundf(id) = begin ex_id = first(id) if fbc_only && ex_id == :EX_glc__D_e @@ -306,16 +285,11 @@ function auxotrophe_community(wt, aa_ko; fbc_only = false) wt.interface.exchanges[ex_id].bound end end - - # create KO pairs to be joined via their exchanges ko_pairs = [ ko => (deepcopy(wt), deepcopy(wt.interface.exchanges), ko_ab) for (ko, ko_ab) in aa_ko ] - - # create community model (interface joins them) x = interface_constraints(ko_pairs...; bound = boundf) - all_kos = first.(aa_ko) # get model ids x *= # set all growth rates equal :equalgrowth^all_equal_constraints( @@ -329,13 +303,9 @@ function auxotrophe_community(wt, aa_ko; fbc_only = false) x[first(all_kos)].fluxes.BIOMASS_Ec_iML1515_core_75p37M.value, nothing, ) - - # knockout - single gene for ko in all_kos x[ko].fluxes[first(kos[ko])].bound = C.EqualTo(0) end - - # allow exchanges of KO'd aa all_aa_exs = [aa_id(last(kos[ko])) for ko in all_kos] for ko in all_kos for aa_ex in all_aa_exs @@ -346,14 +316,12 @@ function auxotrophe_community(wt, aa_ko; fbc_only = false) end end end - x end # simulate a model function auxotrophe_fba(wt, aa_ko; fbc_only = false) x = auxotrophe_community(wt, aa_ko; fbc_only) - sol = optimized_values( x; optimizer = HiGHS.Optimizer, @@ -361,7 +329,6 @@ function auxotrophe_fba(wt, aa_ko; fbc_only = false) sense = Maximal, ) isnothing(sol) && return nothing - (; mu = sol.objective, (Symbol(aa) => ab for (aa, ab) in aa_ko)...) end From 03666e95f73605cc75fab1de49dc0b33d6856761 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 15 Jan 2025 10:20:39 +0100 Subject: [PATCH 22/45] clean up all data --- docs/src/examples/data/README.md | 22 +- docs/src/examples/data/e_coli_complex.tsv | 972 - docs/src/examples/data/e_coli_gp_aa.tsv | 4228 + docs/src/examples/data/e_coli_gp_mass.tsv | 1518 + docs/src/examples/data/e_coli_isozyme_gp.tsv | 4750 + .../examples/data/e_coli_reaction_kcat.tsv | 1871 + docs/src/examples/data/e_coli_uniprot.tsv | 4519 - .../data/ecoli_gene_product_aa_counts.tsv | 86101 ---------------- docs/src/examples/data/ecoli_kcats.tsv | 1871 - docs/src/examples/data/ecoli_ribosomes.tsv | 16 - 10 files changed, 12378 insertions(+), 93490 deletions(-) delete mode 100644 docs/src/examples/data/e_coli_complex.tsv create mode 100644 docs/src/examples/data/e_coli_gp_aa.tsv create mode 100644 docs/src/examples/data/e_coli_gp_mass.tsv create mode 100644 docs/src/examples/data/e_coli_isozyme_gp.tsv create mode 100644 docs/src/examples/data/e_coli_reaction_kcat.tsv delete mode 100644 docs/src/examples/data/e_coli_uniprot.tsv delete mode 100644 docs/src/examples/data/ecoli_gene_product_aa_counts.tsv delete mode 100644 docs/src/examples/data/ecoli_kcats.tsv delete mode 100644 docs/src/examples/data/ecoli_ribosomes.tsv diff --git a/docs/src/examples/data/README.md b/docs/src/examples/data/README.md index 21c7556c..95b66001 100644 --- a/docs/src/examples/data/README.md +++ b/docs/src/examples/data/README.md @@ -1,14 +1,14 @@ -# Source data +# Source data for examples -This directory contains prepared "base" data for the other analyses. +This directory contains prepared data for several example analyses. All data +was manually cleaned. -Here we refer to the data sources used to prepare this base data: +The data were collected from the following publications: -- `basan2015.tsv` taken from: Basan, Markus, et al. "Inflating bacterial cells by increased protein synthesis." Molecular systems biology 11.10 (2015): 836. -- `ecoli_proteome_mass.tsv` taken from: Schmidt, Alexander, et al. "The quantitative and condition-dependent Escherichia coli proteome." Nature biotechnology 34.1 (2016): 104-110. -- `ecoli_ribosomes.tsv` taken from: Hu, Xiao-Pan, et al. "The protein translation machinery is expressed for maximal efficiency in Escherichia coli." Nature communications 11.1 (2020): 5260. -- `ecoli_2member_growths.tsv` and `ecoli_community_abundance.tsv` taken from: Mee, Michael T., et al. "Syntrophic exchange in synthetic microbial communities." Proceedings of the National Academy of Sciences 111.20 (2014): E2149-E2156. -- `ecoli_kcats.tsv` taken from: Wilken, St. Elmo, et al. "Interrogating the effect of enzyme kinetics on metabolism using differentiable constraint-based models." Metabolic engineering 74 (2022): 72-82 and Heckmann, David, et al. "Kinetic profiling of metabolic specialists demonstrates stability and consistency of in vivo enzyme turnover numbers." Proceedings of the National Academy of Sciences 117.37 (2020): 23182-23190. -- `e_coli_complex.tsv` taken from: Meldal, Birgit H. M., et al. "Complex Portal 2018: extended content and enhanced visualization tools for macromolecular complexes." Nucleic acids research 47.D1 (2019): D550-D558. -- `e_coli_uniprot.tsv` and `ecoli_gene_product_aa_counts.tsv` obtained from Uniprot, see UniProt Consortium. "UniProt: a worldwide hub of protein knowledge." Nucleic acids research 47.D1 (2019): D506-D515. -- `iML1515.json` taken from: Monk, Jonathan M., et al. "i ML1515, a knowledgebase that computes Escherichia coli traits." Nature biotechnology 35.10 (2017): 904-908. +- Heckmann, David, et al. "Kinetic profiling of metabolic specialists demonstrates stability and consistency of in vivo enzyme turnover numbers." Proceedings of the National Academy of Sciences 117.37 (2020): 23182-23190. +- Meldal, Birgit H. M., et al. "Complex Portal 2018: extended content and enhanced visualization tools for macromolecular complexes." Nucleic acids research 47.D1 (2019): D550-D558. +- Monk, Jonathan M., et al. "i ML1515, a knowledgebase that computes Escherichia coli traits." Nature biotechnology 35.10 (2017): 904-908. + +Mass and sequence data were collected from Uniprot: + +- UniProt Consortium. "UniProt: a worldwide hub of protein knowledge." Nucleic acids research 47.D1 (2019): D506-D515. diff --git a/docs/src/examples/data/e_coli_complex.tsv b/docs/src/examples/data/e_coli_complex.tsv deleted file mode 100644 index b21d096e..00000000 --- a/docs/src/examples/data/e_coli_complex.tsv +++ /dev/null @@ -1,972 +0,0 @@ -complex gene_product stoichiometry -CPX-2313 b2441 6.0 -CPX-2313 b2440 6.0 -CPX-5122 b2868 0.0 -CPX-5122 b2866 1.0 -CPX-5122 b2867 0.0 -CPX-4389 b1310 1.0 -CPX-4389 b4524 2.0 -CPX-4389 b1311 1.0 -CPX-4389 b1312 1.0 -CPX-3743 b1022 0.0 -CPX-3743 b1021 0.0 -CPX-2244 b1718 0.0 -CPX-2244 b3168 1.0 -CPX-2244 b0884 1.0 -CPX-1974 b1227 2.0 -CPX-1974 b1224 2.0 -CPX-1974 b1225 2.0 -CPX-5628 b4348 1.0 -CPX-5628 b4350 2.0 -CPX-5628 b4349 2.0 -CPX-4388 b3566 1.0 -CPX-4388 b3567 2.0 -CPX-4388 b3568 2.0 -CPX-3822 b4238 2.0 -CPX-5124 b1861 4.0 -CPX-5124 b1860 12.0 -CPX-1945 b2496 1.0 -CPX-1945 b3701 2.0 -CPX-1945 b3702 0.0 -CPX-1083 b3005 1.0 -CPX-1083 b3006 4.0 -CPX-1083 b3966 1.0 -CPX-1083 b1252 1.0 -CPX-4681 b3579 0.0 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47.159 +b4079 79.374 +b4084 33.821 +b4085 26.109 +b4086 34.316 +b4087 56.745 +b4088 32.91 +b4090 16.073 +b4092 27.848 +b4093 16.57 +b4094 20.73 +b4095 42.01 +b4096 24.705 +b4098 31.845 +b4099 38.853 +b4100 21.027 +b4101 16.54 +b4104 22.797 +b4105 37.371 +b4106 29.431 +b4111 54.846 +b4115 46.843 +b4117 84.425 +b4119 50.657 +b4120 52.636 +b4122 60.105 +b4123 47.935 +b4129 57.827 +b4130 53.055 +b4131 81.26 +b4132 46.665 +b4136 61.795 +b4138 45.751 +b4139 52.356 +b4141 44.778 +b4146 38.75 +b4151 13.107 +b4152 15.015 +b4153 27.123 +b4154 65.972 +b4159 123.968 +b4160 35.934 +b4161 39.193 +b4167 54.65 +b4169 47.985 +b4173 48.327 +b4177 47.345 +b4192 40.061 +b4193 50.737 +b4194 10.896 +b4195 17.238 +b4196 23.578 +b4197 32.007 +b4198 25.278 +b4208 51.66 +b4209 24.883 +b4213 70.832 +b4214 27.176 +b4219 23.315 +b4226 19.704 +b4227 34.345 +b4230 35.659 +b4231 34.978 +b4232 36.834 +b4233 49.874 +b4237 17.446 +b4238 80.023 +b4239 63.838 +b4240 51.081 +b4242 99.466 +b4244 17.121 +b4245 34.427 +b4254 36.907 +b4260 54.88 +b4261 40.358 +b4262 39.619 +b4265 46.041 +b4266 27.563 +b4267 37.147 +b4268 21.004 +b4269 36.502 +b4287 28.191 +b4288 34.131 +b4289 34.893 +b4290 33.146 +b4291 85.322 +b4297 70.017 +b4298 32.722 +b4311 27.888 +b4321 47.138 +b4322 44.838 +b4323 53.58 +b4337 44.688 +b4352 35.66 +b4356 49.44 +b4358 36.448 +b4367 30.113 +b4374 25.301 +b4381 27.734 +b4382 47.207 +b4383 44.37 +b4384 25.95 +b4386 37.926 +b4388 35.043 +b4390 47.346 +b4392 73.353 +b4394 18.213 +b4407 7.311 +b4460 34.211 +b4464 46.758 +b4467 45.11 +b4468 38.361 +b4471 48.522 +b4474 31.169 +b4476 46.416 +b4477 21.391 +b4478 42.523 +b4481 40.64 +b4485 55.26 +b4513 3.072 +b4515 4.042 +b4544 12.192 +ribosome 2700.0 +s0001 54.58 diff --git a/docs/src/examples/data/e_coli_isozyme_gp.tsv b/docs/src/examples/data/e_coli_isozyme_gp.tsv new file mode 100644 index 00000000..3ed4c83f --- /dev/null +++ b/docs/src/examples/data/e_coli_isozyme_gp.tsv @@ -0,0 +1,4750 @@ +reaction isozyme gene_product stoichiometry +12PPDRtex iso1 b0241 3 +12PPDRtex iso2 b0929 3 +12PPDRtex iso3 b1377 3 +12PPDRtex iso4 b2215 3 +12PPDStex iso1 b0241 3 +12PPDStex iso2 b0929 3 +12PPDStex iso3 b1377 3 +12PPDStex iso4 b2215 3 +13PPDH2 iso1 b3011 2 +14GLUCANabcpp iso1 b4032 1 +14GLUCANabcpp iso1 b4033 1 +14GLUCANabcpp iso1 b4034 1 +14GLUCANabcpp iso1 b4035 2 +14GLUCANtexi iso1 b4036 3 +23CAMPtex iso1 b0241 3 +23CAMPtex iso2 b0929 3 +23CAMPtex iso3 b1377 3 +23CAMPtex iso4 b2215 3 +23CCMPtex iso1 b0241 3 +23CCMPtex iso2 b0929 3 +23CCMPtex iso3 b1377 3 +23CCMPtex iso4 b2215 3 +23CGMPtex iso1 b0241 3 +23CGMPtex iso2 b0929 3 +23CGMPtex iso3 b1377 3 +23CGMPtex iso4 b2215 3 +23CUMPtex iso1 b0241 3 +23CUMPtex iso2 b0929 3 +23CUMPtex iso3 b1377 3 +23CUMPtex iso4 b2215 3 +23DAPPAtex iso1 b0241 3 +23DAPPAtex iso2 b0929 3 +23DAPPAtex iso3 b1377 3 +23DAPPAtex iso4 b2215 3 +23DOGULNt4pp iso1 b3577 1 +23DOGULNt4pp iso1 b3578 1 +23DOGULNt4pp iso1 b3579 1 +23PDE2pp iso1 b4213 1 +23PDE4pp iso1 b4213 1 +23PDE7pp iso1 b4213 1 +23PDE9pp iso1 b4213 1 +26DAHtex iso1 b0241 3 +26DAHtex iso2 b0929 3 +26DAHtex iso3 b1377 3 +26DAHtex iso4 b2215 3 +2AGPA120tipp iso1 b2835 1 +2AGPA140tipp iso1 b2835 1 +2AGPA141tipp iso1 b2835 1 +2AGPA160tipp iso1 b2835 1 +2AGPA161tipp iso1 b2835 1 +2AGPA180tipp iso1 b2835 1 +2AGPA181tipp iso1 b2835 1 +2AGPE120tipp iso1 b2835 1 +2AGPE140tipp iso1 b2835 1 +2AGPE141tipp iso1 b2835 1 +2AGPE160tipp iso1 b2835 1 +2AGPE161tipp iso1 b2835 1 +2AGPE180tipp iso1 b2835 1 +2AGPE181tipp iso1 b2835 1 +2AGPEAT120 iso1 b2836 1 +2AGPEAT140 iso1 b2836 1 +2AGPEAT141 iso1 b2836 1 +2AGPEAT160 iso1 b2836 1 +2AGPEAT161 iso1 b2836 1 +2AGPEAT180 iso1 b2836 1 +2AGPEAT181 iso1 b2836 1 +2AGPG120tipp iso1 b2835 1 +2AGPG140tipp iso1 b2835 1 +2AGPG141tipp iso1 b2835 1 +2AGPG160tipp iso1 b2835 1 +2AGPG161tipp iso1 b2835 1 +2AGPG180tipp iso1 b2835 1 +2AGPG181tipp iso1 b2835 1 +2AGPGAT120 iso1 b2836 1 +2AGPGAT140 iso1 b2836 1 +2AGPGAT141 iso1 b2836 1 +2AGPGAT160 iso1 b2836 1 +2AGPGAT161 iso1 b2836 1 +2AGPGAT180 iso1 b2836 1 +2AGPGAT181 iso1 b2836 1 +2DDARAA iso1 b0268 1 +2DDARAA iso2 b4298 1 +2DGLCptspp iso1 b1817 1 +2DGLCptspp iso1 b1818 1 +2DGLCptspp iso1 b1819 1 +2DGLCptspp iso1 b2415 1 +2DGLCptspp iso1 b2416 1 +2DGLCtex iso1 b0241 3 +2DGLCtex iso2 b0929 3 +2DGLCtex iso3 b1377 3 +2DGLCtex iso4 b2215 3 +2DGULRGx iso1 b3553 2 +2DGULRGy iso1 b3553 2 +2DGULRx iso1 b3553 2 +2DGULRy iso1 b3553 2 +2DOXG6PP iso1 b0446 1 +2DOXG6PP iso2 b1727 1 +2DOXG6PP iso3 b2293 1 +2DOXG6PP iso4 b3826 1 +2HESR iso1 b2302 2 +2HESR iso2 b2989 2 +2HPTCOAT iso1 b1400 1 +2MAHMP iso1 b0446 1 +2MAHMP iso2 b1134 1 +34dhpactex iso1 b0241 3 +34dhpactex iso2 b0929 3 +34dhpactex iso3 b1377 3 +34dhpactex iso4 b2215 3 +3AMACHYD iso1 b1009 1 +3AMPtex iso1 b0241 3 +3AMPtex iso2 b0929 3 +3AMPtex iso3 b1377 3 +3AMPtex iso4 b2215 3 +3CMPtex iso1 b0241 3 +3CMPtex iso2 b0929 3 +3CMPtex iso3 b1377 3 +3CMPtex iso4 b2215 3 +3GMPtex iso1 b0241 3 +3GMPtex iso2 b0929 3 +3GMPtex iso3 b1377 3 +3GMPtex iso4 b2215 3 +3HAD100 iso1 b0180 1 +3HAD100 iso2 b0954 2 +3HAD120 iso1 b0180 1 +3HAD120 iso2 b0954 2 +3HAD121 iso1 b0180 1 +3HAD121 iso2 b0954 2 +3HAD140 iso1 b0180 1 +3HAD140 iso2 b0954 2 +3HAD141 iso1 b0180 1 +3HAD141 iso2 b0954 2 +3HAD160 iso1 b0180 1 +3HAD160 iso2 b0954 2 +3HAD161 iso1 b0180 1 +3HAD161 iso2 b0954 2 +3HAD180 iso1 b0180 1 +3HAD180 iso2 b0954 2 +3HAD181 iso1 b0180 1 +3HAD181 iso2 b0954 2 +3HAD40 iso1 b0180 1 +3HAD40 iso2 b0954 2 +3HAD60 iso1 b0180 1 +3HAD60 iso2 b0954 2 +3HAD80 iso1 b0180 1 +3HAD80 iso2 b0954 2 +3HBZCT iso1 b0597 4 +3HCINNMH iso1 b0347 1 +3HPADHi iso1 b1300 1 +3HPPPNH iso1 b0347 1 +3HPPtex iso1 b0241 3 +3HPPtex iso2 b0929 3 +3HPPtex iso3 b1377 3 +3HPPtex iso4 b2215 3 +3KGK iso1 b3580 2 +3NTD2pp iso1 b0383 1 +3NTD2pp iso2 b4213 1 +3NTD4pp iso1 b0383 1 +3NTD4pp iso2 b4213 1 +3NTD7pp iso1 b0383 1 +3NTD7pp iso2 b4213 1 +3NTD9pp iso1 b0383 1 +3NTD9pp iso2 b4213 1 +3OAR100 iso1 b1093 4 +3OAR120 iso1 b1093 4 +3OAR121 iso1 b1093 4 +3OAR140 iso1 b1093 4 +3OAR141 iso1 b1093 4 +3OAR160 iso1 b1093 4 +3OAR161 iso1 b1093 4 +3OAR180 iso1 b1093 4 +3OAR181 iso1 b1093 4 +3OAR40 iso1 b1093 4 +3OAR60 iso1 b1093 4 +3OAR80 iso1 b1093 4 +3OAS100 iso1 b1095 2 +3OAS100 iso2 b2323 2 +3OAS120 iso1 b1095 2 +3OAS120 iso2 b2323 2 +3OAS121 iso1 b2323 2 +3OAS140 iso1 b1095 2 +3OAS140 iso2 b2323 2 +3OAS141 iso1 b2323 2 +3OAS160 iso1 b1095 2 +3OAS160 iso2 b2323 2 +3OAS161 iso1 b2323 2 +3OAS180 iso1 b1095 2 +3OAS180 iso2 b2323 2 +3OAS181 iso1 b1095 2 +3OAS60 iso1 b1095 2 +3OAS60 iso2 b2323 2 +3OAS80 iso1 b1095 2 +3OAS80 iso2 b2323 2 +3OXCOAT iso1 b1397 1 +3PEPTabcpp iso1 b1243 1 +3PEPTabcpp iso1 b1244 1 +3PEPTabcpp iso1 b1245 1 +3PEPTabcpp iso1 b1246 1 +3PEPTabcpp iso1 b1247 1 +3PEPTabcpp iso2 b1244 1 +3PEPTabcpp iso2 b1245 1 +3PEPTabcpp iso2 b1246 1 +3PEPTabcpp iso2 b1247 1 +3PEPTabcpp iso2 b1329 1 +3PEPTabcpp iso3 b2177 1 +3PEPTabcpp iso3 b2178 1 +3PEPTabcpp iso3 b2179 1 +3PEPTabcpp iso3 b2180 2 +3PEPTtex iso1 b0241 3 +3PEPTtex iso2 b0929 3 +3PEPTtex iso3 b1377 3 +3PEPTtex iso4 b2215 3 +3SLAR iso1 b3882 4 +3UMPtex iso1 b0241 3 +3UMPtex iso2 b0929 3 +3UMPtex iso3 b1377 3 +3UMPtex iso4 b2215 3 +42A12BOOXpp iso1 b1386 2 +4ABZGLUH iso1 b1337 1 +4ABZGLUH iso1 b1338 1 +4ABZGLUtex iso1 b0241 3 +4ABZGLUtex iso2 b0929 3 +4ABZGLUtex iso3 b1377 3 +4ABZGLUtex iso4 b2215 3 +4ABZGLUtr iso1 b1336 1 +4HBZt3pp iso1 b3240 1 +4HBZt3pp iso1 b3241 1 +4HOXPACDtex iso1 b0241 3 +4HOXPACDtex iso2 b0929 3 +4HOXPACDtex iso3 b1377 3 +4HOXPACDtex iso4 b2215 3 +4HTHRA iso1 b0870 4 +4HTHRK iso1 b0003 1 +4PCP iso1 b1192 1 +4PCPpp iso1 b2175 1 +4PEPTabcpp iso1 b1243 1 +4PEPTabcpp iso1 b1244 1 +4PEPTabcpp iso1 b1245 1 +4PEPTabcpp iso1 b1246 1 +4PEPTabcpp iso1 b1247 1 +4PEPTabcpp iso2 b2177 1 +4PEPTabcpp iso2 b2178 1 +4PEPTabcpp iso2 b2179 1 +4PEPTabcpp iso2 b2180 2 +4PEPTtex iso1 b0241 3 +4PEPTtex iso2 b0929 3 +4PEPTtex iso3 b1377 3 +4PEPTtex iso4 b2215 3 +5DGLCNR iso1 b4266 1 +5DGLCNt2rpp iso1 b4265 1 +5DGLCNtex iso1 b0241 3 +5DGLCNtex iso2 b0929 3 +5DGLCNtex iso3 b1377 3 +5DGLCNtex iso4 b2215 3 +5DKGR iso1 b2842 4 +5DKGR iso2 b4266 1 +5DOAN iso1 b0159 2 +5MTRtex iso1 b0241 3 +5MTRtex iso2 b0929 3 +5MTRtex iso3 b1377 3 +5MTRtex iso4 b2215 3 +6D6SFK iso1 b3883 1 +6D6SPA iso1 b3881 1 +A5PISO iso1 b2708 4 +A5PISO iso2 b3197 4 +AACPS1 iso1 b1094 1 +AACPS1 iso1 b2836 1 +AACPS2 iso1 b1094 1 +AACPS2 iso1 b2836 1 +AACPS3 iso1 b1094 1 +AACPS3 iso1 b2836 1 +AACPS4 iso1 b1094 1 +AACPS4 iso1 b2836 1 +AACPS5 iso1 b1094 1 +AACPS5 iso1 b2836 1 +AACPS6 iso1 b1094 1 +AACPS6 iso1 b2836 1 +AACPS7 iso1 b1094 1 +AACPS7 iso1 b2836 1 +AACPS8 iso1 b1094 1 +AACPS8 iso1 b2836 1 +AACPS9 iso1 b1094 1 +AACPS9 iso1 b2836 1 +AADDGT iso1 b4481 1 +AAMYL iso1 b1927 1 +AAMYLpp iso1 b3571 1 +AB6PGH iso1 b2716 1 +AB6PGH iso2 b2901 4 +AB6PGH iso3 b3721 1 +ABTA iso1 b1302 1 +ABTA iso2 b2662 4 +ABUTD iso1 b1444 4 +ABUTt2pp iso1 b2663 1 +ABUTtex iso1 b0241 3 +ABUTtex iso2 b0929 3 +ABUTtex iso3 b1377 3 +ABUTtex iso4 b2215 3 +ACACCT iso1 b1694 4 +ACACCT iso2 b2221 1 +ACACCT iso2 b2222 1 +ACACT1r iso1 b2224 1 +ACACT1r iso2 b2342 1 +ACACT1r iso3 b3845 1 +ACACt2pp iso1 b2223 1 +ACACT2r iso1 b2342 1 +ACACT2r iso2 b3845 1 +ACACT3r iso1 b2342 1 +ACACT3r iso2 b3845 1 +ACACT4r iso1 b2342 1 +ACACT4r iso2 b3845 1 +ACACT5r iso1 b2342 1 +ACACT5r iso2 b3845 1 +ACACT6r iso1 b2342 1 +ACACT6r iso2 b3845 1 +ACACT7r iso1 b2342 1 +ACACT7r iso2 b3845 1 +ACACT8r iso1 b2342 1 +ACACT8r iso2 b3845 1 +ACACtex iso1 b0241 3 +ACACtex iso2 b0929 3 +ACACtex iso3 b1377 3 +ACACtex iso4 b2215 3 +ACALD iso1 b0351 1 +ACALD iso2 b1241 1 +ACALDtex iso1 b0241 3 +ACALDtex iso2 b0929 3 +ACALDtex iso3 b1377 3 +ACALDtex iso4 b2215 3 +ACALDtpp iso1 s0001 1 +ACANTHAT iso1 b1463 2 +ACBIPGT iso1 b1993 2 +ACCOAC iso1 b0185 2 +ACCOAC iso1 b2316 2 +ACCOAC iso1 b3255 4 +ACCOAC iso1 b3256 4 +ACCOAL iso1 b0335 1 +ACCOAL iso2 b4069 1 +ACGAL1Ptex iso1 b0241 3 +ACGAL1Ptex iso2 b0929 3 +ACGAL1Ptex iso3 b1377 3 +ACGAL1Ptex iso4 b2215 3 +ACGALtex iso1 b0241 3 +ACGALtex iso2 b0929 3 +ACGALtex iso3 b1377 3 +ACGALtex iso4 b2215 3 +ACGAM1Ptex iso1 b0241 3 +ACGAM1Ptex iso2 b0929 3 +ACGAM1Ptex iso3 b1377 3 +ACGAM1Ptex iso4 b2215 3 +ACGAMK iso1 b1119 1 +ACGAMT iso1 b3784 1 +ACGAptspp iso1 b0679 1 +ACGAptspp iso1 b2415 1 +ACGAptspp iso1 b2416 1 +ACGAptspp iso2 b1101 1 +ACGAptspp iso2 b2415 1 +ACGAptspp iso2 b2416 1 +ACGAptspp iso2 b2417 1 +ACGAtex iso1 b0241 3 +ACGAtex iso2 b0929 3 +ACGAtex iso3 b1377 3 +ACGAtex iso4 b2215 3 +ACGK iso1 b3959 2 +ACGS iso1 b2818 6 +ACHBS iso1 b0077 2 +ACHBS iso1 b0078 2 +ACHBS iso2 b3670 2 +ACHBS iso2 b3671 2 +ACKr iso1 b1849 2 +ACKr iso2 b2296 2 +ACKr iso3 b3115 2 +ACLS iso1 b0077 2 +ACLS iso1 b0078 2 +ACLS iso2 b3670 2 +ACLS iso2 b3671 2 +ACM6PH iso1 b2428 2 +ACMAMUT iso1 b3794 1 +ACMANAptspp iso1 b1817 1 +ACMANAptspp iso1 b1818 1 +ACMANAptspp iso1 b1819 1 +ACMANAptspp iso1 b2415 1 +ACMANAptspp iso1 b2416 1 +ACMANAtex iso1 b0241 3 +ACMANAtex iso2 b0929 3 +ACMANAtex iso3 b1377 3 +ACMANAtex iso4 b2215 3 +ACMUMptspp iso1 b2415 1 +ACMUMptspp iso1 b2416 1 +ACMUMptspp iso1 b2417 1 +ACMUMptspp iso1 b2429 1 +ACMUMtex iso1 b0241 3 +ACMUMtex iso2 b0929 3 +ACMUMtex iso3 b1377 3 +ACMUMtex iso4 b2215 3 +ACNAMt2pp iso1 b3224 1 +ACNAMtex iso1 b0929 3 +ACNAMtex iso2 b2215 3 +ACNAMtex iso3 b4311 1 +ACNML iso1 b3225 4 +ACOAD1f iso1 b0221 1 +ACOAD1fr iso1 b1695 1 +ACOAD2f iso1 b0221 1 +ACOAD3f iso1 b0221 1 +ACOAD4f iso1 b0221 1 +ACOAD5f iso1 b0221 1 +ACOAD6f iso1 b0221 1 +ACOAD7f iso1 b0221 1 +ACOAD8f iso1 b0221 1 +ACOATA iso1 b1091 1 +ACOATA iso1 b1094 1 +ACODA iso1 b3957 2 +ACOLIPAabctex iso1 b0054 1 +ACOLIPAabctex iso1 b0641 1 +ACOLIPAabctex iso1 b3199 1 +ACOLIPAabctex iso1 b3200 1 +ACOLIPAabctex iso1 b3201 1 +ACOLIPAabctex iso1 b4261 1 +ACOLIPAabctex iso1 b4262 1 +ACONIs iso1 s0001 1 +ACONMT iso1 b1519 1 +ACONTa iso1 b0118 1 +ACONTa iso2 b1276 1 +ACONTb iso1 b0118 1 +ACONTb iso2 b1276 1 +ACOTA iso1 b1302 1 +ACOTA iso2 b1748 1 +ACOTA iso3 b2662 4 +ACOTA iso4 b3359 2 +ACOXT iso1 b2371 2 +ACP1_FMN iso1 b0446 1 +ACP1_FMN iso2 b0844 1 +ACP1_FMN iso3 b3812 1 +ACP1p iso1 b0383 1 +ACPPAT120 iso1 b1090 1 +ACPPAT120 iso1 b1094 1 +ACPPAT140 iso1 b1090 1 +ACPPAT140 iso1 b1094 1 +ACPPAT141 iso1 b1090 1 +ACPPAT141 iso1 b1094 1 +ACPPAT160 iso1 b1090 1 +ACPPAT160 iso1 b1094 1 +ACPPAT161 iso1 b1090 1 +ACPPAT161 iso1 b1094 1 +ACPPAT180 iso1 b1090 1 +ACPPAT180 iso1 b1094 1 +ACPPAT181 iso1 b1090 1 +ACPPAT181 iso1 b1094 1 +ACPS1 iso1 b2563 2 +ACPS1 iso2 b3475 1 +ACSERtex iso1 b0241 3 +ACSERtex iso2 b0929 3 +ACSERtex iso3 b1377 3 +ACSERtex iso4 b2215 3 +ACSERtpp iso1 b1533 1 +ACSERtpp iso2 b2578 1 +ACS iso1 b4069 1 +ACt2rpp iso1 b0010 1 +ACt4pp iso1 b4067 1 +ACtex iso1 b0241 3 +ACtex iso2 b0929 3 +ACtex iso3 b1377 3 +ACtex iso4 b2215 3 +ADA iso1 b1623 1 +ADCL iso1 b1096 2 +ADCL iso2 b4039 1 +ADCS iso1 b1812 1 +ADCS iso1 b3360 1 +ADD iso1 b3665 2 +ADEt2rpp iso1 b3654 1 +ADEt2rpp iso2 b3664 1 +ADEt2rpp iso3 b3714 1 +ADEtex iso1 b0241 3 +ADEtex iso2 b0929 3 +ADEtex iso3 b1377 3 +ADEtex iso4 b2215 3 +ADK1 iso1 b0474 1 +ADK3 iso1 b0474 1 +ADK4 iso1 b0474 1 +ADMDC iso1 b0120 1 +ADNCYC iso1 b3806 1 +ADNK1 iso1 b0474 1 +ADNt2pp_copy1 iso1 b2393 1 +ADNt2pp_copy1 iso2 b2964 1 +ADNt2pp_copy2 iso1 b2406 1 +ADNtex iso1 b0411 1 +ADNUC iso1 b0030 1 +ADOCBIK iso1 b1993 2 +ADOCBLabcpp iso1 b0158 1 +ADOCBLabcpp iso1 b1709 2 +ADOCBLabcpp iso1 b1711 2 +ADOCBLS iso1 b1992 1 +ADOCBLtonex iso1 b1252 1 +ADOCBLtonex iso1 b3005 1 +ADOCBLtonex iso1 b3006 4 +ADOCBLtonex iso1 b3966 1 +ADPRDP iso1 b3034 2 +ADPRDP iso2 b3397 2 +ADPT iso1 b0469 2 +ADSK iso1 b2750 1 +ADSL1r iso1 b1131 4 +ADSL2r iso1 b1131 4 +ADSS iso1 b4177 2 +AGDC iso1 b0677 4 +AGM3PA iso1 b0110 1 +AGM3PApp iso1 b0867 1 +AGM3PApp iso2 b2435 1 +AGM3PApp iso3 b2817 1 +AGM3PApp iso4 b4169 1 +AGM3PH iso1 b1107 1 +AGM3Pt2pp iso1 b0433 1 +AGM4PA iso1 b0110 1 +AGM4PApp iso1 b0867 1 +AGM4PApp iso2 b2435 1 +AGM4PApp iso3 b2817 1 +AGM4PApp iso4 b4169 1 +AGM4PCP iso1 b1192 1 +AGM4PCPpp iso1 b2175 1 +AGM4PH iso1 b1107 1 +AGM4Pt2pp iso1 b0433 1 +AGMHE iso1 b3619 5 +AGMH iso1 b1107 1 +AGMt2pp iso1 b0433 1 +AGMtex iso1 b0241 3 +AGMtex iso2 b0929 3 +AGMtex iso3 b1377 3 +AGMtex iso4 b2215 3 +AGMT iso1 b2937 1 +AGPAT120 iso1 b3018 1 +AGPAT140 iso1 b3018 1 +AGPAT141 iso1 b3018 1 +AGPAT160 iso1 b3018 1 +AGPAT161 iso1 b3018 1 +AGPAT180 iso1 b3018 1 +AGPAT181 iso1 b3018 1 +AGPR iso1 b3958 1 +AGt3 iso1 b0572 3 +AGt3 iso1 b0573 1 +AGt3 iso1 b0574 6 +AGt3 iso1 b0575 3 +AHCYSNS iso1 b0159 2 +AHGDx iso1 b2913 4 +AI2abcpp iso1 b1513 2 +AI2abcpp iso1 b1514 1 +AI2abcpp iso1 b1515 1 +AI2abcpp iso1 b1516 1 +AI2K iso1 b1511 1 +AI2tex iso1 b0241 3 +AI2tex iso2 b0929 3 +AI2tex iso3 b1377 3 +AI2tex iso4 b2215 3 +AI2tpp iso1 b1601 1 +AICART iso1 b4006 1 +AIRC2 iso1 b0522 2 +AIRC3 iso1 b0523 8 +AKGDH iso1 b0116 2 +AKGDH iso1 b0726 12 +AKGDH iso1 b0727 24 +AKGt2rpp iso1 b2587 1 +AKGtex iso1 b0241 3 +AKGtex iso2 b0929 3 +AKGtex iso3 b1377 3 +AKGtex iso4 b2215 3 +ALAabcpp iso1 b3454 1 +ALAabcpp iso1 b3455 1 +ALAabcpp iso1 b3456 1 +ALAabcpp iso1 b3457 1 +ALAabcpp iso1 b3460 1 +ALAALAabcpp iso1 b1483 1 +ALAALAabcpp iso1 b1484 1 +ALAALAabcpp iso1 b1485 1 +ALAALAabcpp iso1 b1486 1 +ALAALAabcpp iso1 b1487 1 +ALAALAabcpp iso2 b3540 1 +ALAALAabcpp iso2 b3541 1 +ALAALAabcpp iso2 b3542 1 +ALAALAabcpp iso2 b3543 1 +ALAALAabcpp iso2 b3544 1 +ALAALAD iso1 b1488 1 +ALAALAr iso1 b0092 1 +ALAALAr iso2 b0381 1 +ALAALAtex iso1 b0241 3 +ALAALAtex iso2 b0929 3 +ALAALAtex iso3 b1377 3 +ALAALAtex iso4 b2215 3 +ALAGLUE iso1 b1325 1 +ALAR iso1 b1190 1 +ALAR iso2 b4053 2 +ALAt2pp iso1 b4130 1 +ALAt2pp iso2 b4208 1 +ALAt4pp iso1 b0007 1 +ALATA_D2 iso1 b0870 4 +ALATA_D2 iso2 b2551 2 +ALATA_L2 iso1 b0870 4 +ALATA_L2 iso2 b2551 2 +ALATA_L iso1 b2290 2 +ALATA_L iso2 b2379 2 +ALAtex iso1 b0241 3 +ALAtex iso2 b0929 3 +ALAtex iso3 b1377 3 +ALAtex iso4 b2215 3 +ALAtpp iso1 b2670 1 +ALCD19 iso1 b1241 1 +ALCD19 iso2 b1478 1 +ALCD2x iso1 b1241 1 +ALCD2x iso2 b1478 1 +ALDD19xr iso1 b1385 2 +ALDD2y iso1 b0493 1 +ALDD2y iso2 b3003 1 +ALDD2y iso3 b3011 2 +ALDD2y iso4 b3588 4 +ALDD2y iso5 b4269 1 +ALDD3y iso1 b3011 2 +ALDD3y iso2 b3588 4 +ALDD3y iso3 b4269 1 +ALKP iso1 b2690 1 +ALLabcpp iso1 b4086 2 +ALLabcpp iso1 b4087 2 +ALLabcpp iso1 b4088 1 +ALLK iso1 b4084 1 +ALLPI iso1 b4090 2 +ALLTAMH2 iso1 b0516 2 +ALLtex iso1 b0241 3 +ALLtex iso2 b0929 3 +ALLtex iso3 b1377 3 +ALLtex iso4 b2215 3 +ALLTN iso1 b0512 4 +ALLTNt2rpp iso1 b0511 1 +ALLTNtex iso1 b0241 3 +ALLTNtex iso2 b0929 3 +ALLTNtex iso3 b1377 3 +ALLTNtex iso4 b2215 3 +ALLULPE iso1 b4085 6 +ALPATE160pp iso1 b0657 1 +ALPATE160pp iso1 b1677 1 +ALPATG160pp iso1 b0657 1 +ALPATG160pp iso1 b1677 1 +ALR2 iso1 b0207 1 +ALR2 iso2 b1781 1 +ALR2 iso3 b3001 4 +ALR2 iso4 b3012 1 +ALR2x iso1 b1771 1 +ALR4x iso1 b3945 2 +ALTRH iso1 b3091 1 +AM3PA iso1 b0110 1 +AM4PA iso1 b0110 1 +AM4PCP iso1 b1192 1 +AMALT1 iso1 b3416 1 +AMALT2 iso1 b3416 1 +AMALT3 iso1 b3416 1 +AMALT4 iso1 b3416 1 +AMANAPEr iso1 b3223 1 +AMANK iso1 b3222 2 +AMAOTr iso1 b0774 2 +AMMQLT8 iso1 b3833 1 +AMPMS2 iso1 b3994 2 +AMPN iso1 b1982 6 +AMPNTAT iso1 b4093 2 +AMPTASECG iso1 b0237 1 +AMPTASECG iso2 b0932 1 +AMPTASECG iso3 b2523 6 +AMPTASECG iso4 b4260 6 +AMPTASEPG iso1 b0237 1 +AMPTASEPG iso2 b0932 1 +AMPTASEPG iso3 b2523 6 +AMPTASEPG iso4 b4260 6 +AMPtex iso1 b0241 3 +AMPtex iso2 b0929 3 +AMPtex iso3 b1377 3 +AMPtex iso4 b2215 3 +ANHGMtex iso1 b0241 3 +ANHGMtex iso2 b0929 3 +ANHGMtex iso3 b1377 3 +ANHGMtex iso4 b2215 3 +ANHMK iso1 b1640 1 +ANPRT iso1 b1263 1 +ANS iso1 b1263 2 +ANS iso1 b1264 2 +AOBUTDs iso1 s0001 1 +AOXSr2 iso1 b0776 2 +AP4AH iso1 b0049 1 +AP4AS iso1 b4129 2 +AP5AH iso1 b0049 1 +APCS iso1 b0121 2 +APG3PAT120 iso1 b3059 1 +APG3PAT140 iso1 b3059 1 +APG3PAT141 iso1 b3059 1 +APG3PAT160 iso1 b3059 1 +APG3PAT161 iso1 b3059 1 +APG3PAT180 iso1 b3059 1 +APG3PAT181 iso1 b3059 1 +APH120 iso1 b0968 1 +APH140 iso1 b0968 1 +APH141 iso1 b0968 1 +APH160 iso1 b0968 1 +APH161 iso1 b0968 1 +APH180 iso1 b0968 1 +APH181 iso1 b0968 1 +APPLDHr iso1 b3945 2 +APRAUR iso1 b0414 2 +ARABDI iso1 b2802 6 +ARAI iso1 b0062 6 +ARBabcpp iso1 b1900 2 +ARBabcpp iso1 b1901 1 +ARBabcpp iso1 b4460 2 +ARBt2rpp iso1 b2841 1 +ARBt3ipp iso1 b1528 1 +ARBtex iso1 b0241 3 +ARBtex iso2 b0929 3 +ARBtex iso3 b1377 3 +ARBtex iso4 b2215 3 +ARBTNabcpp iso1 b0151 2 +ARBTNabcpp iso1 b0152 1 +ARBTNabcpp iso1 b0153 2 +ARBTNexs iso1 s0001 1 +ARBTptspp iso1 b2415 1 +ARBTptspp iso1 b2416 1 +ARBTptspp iso1 b2715 1 +ARBTptspp iso2 b2415 1 +ARBTptspp iso2 b2416 1 +ARBTptspp iso2 b3722 1 +ARBTtex iso1 b0241 3 +ARBTtex iso2 b0929 3 +ARBTtex iso3 b1377 3 +ARBTtex iso4 b2215 3 +ARGabcpp iso2 b2306 2 +ARGabcpp iso2 b2307 1 +ARGabcpp iso2 b2308 1 +ARGabcpp iso2 b2310 1 +ARGAGMt7pp iso1 b4115 2 +ARGDC iso1 b4117 10 +ARGDCpp iso1 b2938 4 +ARGORNt7pp iso1 b1605 1 +ARGSL iso1 b3960 1 +ARGSS iso1 b3172 4 +ARGt3pp iso1 b2923 1 +ARGtex iso1 b0241 3 +ARGtex iso2 b0929 3 +ARGtex iso3 b1377 3 +ARGtex iso4 b2215 3 +ARHGDx iso1 b2913 4 +ARMEPNS iso1 b4096 1 +ARMEPNS iso1 b4099 1 +ARMEPNS iso1 b4100 1 +ARMEPNS iso1 b4101 1 +ASAD iso1 b3433 2 +ASCBPL iso1 b4192 1 +ASCBptspp iso1 b2415 1 +ASCBptspp iso1 b2416 1 +ASCBptspp iso1 b4193 1 +ASCBptspp iso1 b4194 1 +ASCBptspp iso1 b4195 1 +ASCBtex iso1 b0241 3 +ASCBtex iso2 b0929 3 +ASCBtex iso3 b1377 3 +ASCBtex iso4 b2215 3 +ASNN iso1 b0828 1 +ASNN iso2 b1767 4 +ASNNpp iso1 b2957 4 +ASNS1 iso1 b0674 2 +ASNS2 iso1 b0674 2 +ASNS2 iso2 b3744 2 +ASNt2rpp iso1 b1453 1 +ASNtex iso1 b0241 3 +ASNtex iso2 b0929 3 +ASNtex iso3 b1377 3 +ASNtex iso4 b2215 3 +ASO3t8pp iso1 b3502 1 +ASO3tex iso1 b0241 3 +ASO3tex iso2 b0929 3 +ASO3tex iso3 b1377 3 +ASO3tex iso4 b2215 3 +ASP1DC iso1 b0131 1 +ASPabcpp iso1 b0652 2 +ASPabcpp iso1 b0653 1 +ASPabcpp iso1 b0654 1 +ASPabcpp iso1 b0655 1 +ASPCT iso1 b4244 6 +ASPCT iso1 b4245 6 +ASPCT iso2 b4245 1 +ASPK iso1 b0002 4 +ASPK iso2 b3940 4 +ASPK iso3 b4024 2 +ASPO3 iso1 b2574 1 +ASPO4 iso1 b2574 1 +ASPO5 iso1 b2574 1 +ASPO6 iso1 b2574 1 +ASPt2_2pp iso1 b3528 1 +ASPt2_3pp iso1 b4123 1 +ASPt2_3pp iso2 b4138 1 +ASPt2pp iso1 b4077 1 +ASPTA iso1 b0928 2 +ASPTA iso2 b4054 2 +ASPtex iso1 b0241 3 +ASPtex iso2 b0929 3 +ASPtex iso3 b1377 3 +ASPtex iso4 b2215 3 +ASPT iso1 b4139 4 +ASPtpp iso1 b1206 1 +ASR iso1 b1064 1 +ASR iso1 b3503 1 +AST iso1 b1747 1 +ATHRDHr iso1 b1539 4 +ATPHs iso1 s0001 1 +ATPPRT iso1 b2019 1 +ATPS4rpp iso1 b3731 1 +ATPS4rpp iso1 b3732 3 +ATPS4rpp iso1 b3733 1 +ATPS4rpp iso1 b3734 3 +ATPS4rpp iso1 b3735 1 +ATPS4rpp iso1 b3736 2 +ATPS4rpp iso1 b3737 10 +ATPS4rpp iso1 b3738 1 +BALAt2pp iso1 b4208 1 +BALAtex iso1 b0241 3 +BALAtex iso2 b0929 3 +BALAtex iso3 b1377 3 +BALAtex iso4 b2215 3 +BETALDHx iso1 b0312 1 +BETALDHy iso1 b0312 1 +BGLA1 iso1 b1734 4 +BGLA1 iso2 b2716 1 +BGLA1 iso3 b3721 1 +BMOCOS iso1 b0827 2 +BMOGDS1 iso1 b3856 1 +BMOGDS1 iso1 b3857 1 +BMOGDS1 iso2 b3857 1 +BMOGDS2 iso1 b3856 1 +BMOGDS2 iso1 b3857 1 +BMOGDS2 iso2 b3857 1 +BPNT iso1 b4214 1 +BSORx iso1 b3551 1 +BSORy iso1 b3551 1 +BTNtex iso1 b0241 3 +BTNtex iso2 b0929 3 +BTNtex iso3 b1377 3 +BTNtex iso4 b2215 3 +BTS5 iso1 b0775 2 +BUTCT iso1 b2221 1 +BUTCT iso1 b2222 1 +BUTSO3abcpp iso1 b0365 1 +BUTSO3abcpp iso1 b0366 2 +BUTSO3abcpp iso1 b0367 2 +BUTSO3abcpp iso2 b0933 2 +BUTSO3abcpp iso2 b0934 2 +BUTSO3abcpp iso2 b0936 1 +BUTSO3tex iso1 b0241 3 +BUTSO3tex iso2 b0929 3 +BUTSO3tex iso3 b1377 3 +BUTSO3tex iso4 b2215 3 +BUTt2rpp iso1 b2223 1 +BUTtex iso1 b0241 3 +BUTtex iso2 b0929 3 +BUTtex iso3 b1377 3 +BUTtex iso4 b2215 3 +BWCOGDS1 iso1 b3856 1 +BWCOGDS1 iso1 b3857 1 +BWCOGDS1 iso2 b3857 1 +BWCOGDS2 iso1 b3856 1 +BWCOGDS2 iso1 b3857 1 +BWCOGDS2 iso2 b3857 1 +BWCOS iso1 b0827 2 +CA2t3pp iso1 b1216 1 +CA2tex iso1 b0241 3 +CA2tex iso2 b0929 3 +CA2tex iso3 b1377 3 +CA2tex iso4 b2215 3 +CADVtpp iso1 b4132 1 +CAt6pp iso1 b3196 1 +CAT iso1 b1732 4 +CAT iso2 b3942 4 +CBIAT iso1 b1270 1 +CBItonex iso1 b1252 1 +CBItonex iso1 b3005 1 +CBItonex iso1 b3006 4 +CBItonex iso1 b3966 1 +CBIuabcpp iso1 b0158 1 +CBIuabcpp iso1 b1709 2 +CBIuabcpp iso1 b1711 2 +CBL1abcpp iso1 b0158 1 +CBL1abcpp iso1 b1709 2 +CBL1abcpp iso1 b1711 2 +CBL1tonex iso1 b1252 1 +CBL1tonex iso1 b3005 1 +CBL1tonex iso1 b3006 4 +CBL1tonex iso1 b3966 1 +CBLAT iso1 b1270 1 +CBMD iso1 s0001 1 +CBMKr iso1 b0521 2 +CBPS iso1 b0032 4 +CBPS iso1 b0033 4 +CCGS iso1 b0444 1 +CD2abcpp iso1 b3469 1 +CD2t3pp iso1 b0752 1 +CD2t3pp iso2 b3915 2 +CD2tex iso1 b0241 3 +CD2tex iso2 b0929 3 +CD2tex iso3 b1377 3 +CD2tex iso4 b2215 3 +CD2tpp iso1 b3040 1 +CDAPPA120 iso1 b3918 1 +CDAPPA140 iso1 b3918 1 +CDAPPA141 iso1 b3918 1 +CDAPPA160 iso1 b3918 1 +CDAPPA161 iso1 b3918 1 +CDAPPA180 iso1 b3918 1 +CDAPPA181 iso1 b3918 1 +CDGR iso1 b2794 2 +CDGUNPD iso1 b0315 1 +CDGUNPD iso2 b1285 1 +CDGUNPD iso3 b1489 2 +CDGUNPD iso4 b2503 1 +CDGUNPD iso5 b3525 1 +CDPMEK iso1 b1208 2 +CDPPH iso1 b3614 1 +CELBpts iso1 b1736 1 +CELBpts iso1 b1737 1 +CELBpts iso1 b1738 1 +CELBpts iso1 b2415 1 +CELBpts iso1 b2416 1 +CELBpts iso2 b2415 1 +CELBpts iso2 b2416 1 +CELBpts iso2 b2715 1 +CFAS160E iso1 b1661 2 +CFAS160G iso1 b1661 2 +CFAS180E iso1 b1661 2 +CFAS180G iso1 b1661 2 +CGLYabcpp iso1 b3540 1 +CGLYabcpp iso1 b3541 1 +CGLYabcpp iso1 b3542 1 +CGLYabcpp iso1 b3543 1 +CGLYabcpp iso1 b3544 1 +CGLYtex iso1 b0241 3 +CGLYtex iso2 b0929 3 +CGLYtex iso3 b1377 3 +CGLYtex iso4 b2215 3 +CHLabcpp iso1 b2128 1 +CHLabcpp iso1 b2129 2 +CHLabcpp iso1 b2130 1 +CHLabcpp iso1 b2131 1 +CHLt2pp iso1 b0314 1 +CHLt2pp iso2 b1801 1 +CHLt3pp iso1 b0543 2 +CHLtex iso1 b0241 3 +CHLtex iso2 b0929 3 +CHLtex iso3 b1377 3 +CHLtex iso4 b2215 3 +CHOLATEtpp iso1 b4337 1 +CHOLD iso1 b0311 1 +CHOLID iso1 b1619 4 +CHORM iso1 b2599 2 +CHORM iso2 b2600 1 +CHORS iso1 b2329 4 +CHRPL iso1 b1096 2 +CHRPL iso2 b4039 1 +CHTBSptspp iso1 b1736 1 +CHTBSptspp iso1 b1737 1 +CHTBSptspp iso1 b1738 1 +CHTBSptspp iso1 b2415 1 +CHTBSptspp iso1 b2416 1 +CHTBStex iso1 b0241 3 +CHTBStex iso2 b0681 1 +CHTBStex iso3 b0929 3 +CHTBStex iso4 b1377 3 +CHTBStex iso5 b2215 3 +CINNDO iso1 b2538 1 +CINNDO iso1 b2539 1 +CINNDO iso1 b2540 1 +CINNDO iso1 b2542 1 +CITL iso1 b0614 1 +CITL iso1 b0615 1 +CITL iso1 b0616 1 +CITL iso1 b0617 1 +CITt7pp iso1 b0612 1 +CITtex iso1 b0241 3 +CITtex iso2 b0929 3 +CITtex iso3 b1377 3 +CITtex iso4 b2215 3 +CLBtex iso1 b0241 3 +CLBtex iso2 b0929 3 +CLBtex iso3 b1377 3 +CLBtex iso4 b2215 3 +CLIPAabctex iso1 b0054 1 +CLIPAabctex iso1 b0641 1 +CLIPAabctex iso1 b3199 1 +CLIPAabctex iso1 b3200 1 +CLIPAabctex iso1 b3201 1 +CLIPAabctex iso1 b4261 1 +CLIPAabctex iso1 b4262 1 +CLPNS120pp iso1 b0789 1 +CLPNS120pp iso2 b1249 1 +CLPNS140pp iso1 b0789 1 +CLPNS140pp iso2 b1249 1 +CLPNS141pp iso1 b0789 1 +CLPNS141pp iso2 b1249 1 +CLPNS160pp iso1 b0789 1 +CLPNS160pp iso2 b1249 1 +CLPNS161pp iso1 b0789 1 +CLPNS161pp iso2 b1249 1 +CLPNS180pp iso1 b0789 1 +CLPNS180pp iso2 b1249 1 +CLPNS181pp iso1 b0789 1 +CLPNS181pp iso2 b1249 1 +CLt3_2pp iso1 b0155 2 +CLtex iso1 b0241 3 +CLtex iso2 b0929 3 +CLtex iso3 b1377 3 +CLtex iso4 b2215 3 +CLtipp iso1 b1592 1 +CMPtex iso1 b0241 3 +CMPtex iso2 b0929 3 +CMPtex iso3 b1377 3 +CMPtex iso4 b2215 3 +CMtex iso1 b0241 3 +CMtex iso2 b0929 3 +CMtex iso3 b1377 3 +CMtex iso4 b2215 3 +CMtpp iso1 b0462 3 +CMtpp iso1 b0463 6 +CMtpp iso1 b3035 3 +CMtpp iso2 b0463 6 +CMtpp iso2 b2470 3 +CMtpp iso2 b3035 3 +CO2tex iso1 b0241 3 +CO2tex iso2 b0929 3 +CO2tex iso3 b1377 3 +CO2tex iso4 b2215 3 +CO2tpp iso1 s0001 1 +COBALT2abcpp iso1 b3469 1 +COBALT2t3pp iso1 b0752 1 +COBALT2t3pp iso2 b3915 2 +COBALT2tex iso1 b0241 3 +COBALT2tex iso2 b0929 3 +COBALT2tex iso3 b1377 3 +COBALT2tex iso4 b2215 3 +COBALT2tpp iso1 b3040 1 +COBALT2tpp iso2 b3816 5 +COLIPAabcpp iso1 b0914 2 +COLIPAabctex iso1 b0054 1 +COLIPAabctex iso1 b0641 1 +COLIPAabctex iso1 b3199 1 +COLIPAabctex iso1 b3200 1 +COLIPAabctex iso1 b3201 1 +COLIPAabctex iso1 b4261 1 +COLIPAabctex iso1 b4262 1 +COLIPAKpp iso1 b2174 1 +COLIPAPabctex iso1 b0054 1 +COLIPAPabctex iso1 b0641 1 +COLIPAPabctex iso1 b3199 1 +COLIPAPabctex iso1 b3200 1 +COLIPAPabctex iso1 b3201 1 +COLIPAPabctex iso1 b4261 1 +COLIPAPabctex iso1 b4262 1 +CPGNabcpp iso1 b0151 2 +CPGNabcpp iso1 b0152 1 +CPGNabcpp iso1 b0153 2 +CPGNexs iso1 s0001 1 +CPGNtonex iso1 b1102 1 +CPGNtonex iso1 b1252 1 +CPGNtonex iso1 b3005 3 +CPGNtonex iso1 b3006 6 +CPH4S iso1 b2765 1 +CPL iso1 b4098 1 +CPMPS iso1 b0781 1 +CPMPS iso1 b0783 1 +CPPPGO2 iso1 b3867 1 +CPPPGO iso1 b2436 2 +CRNabcpp iso1 b2677 2 +CRNabcpp iso1 b2678 2 +CRNabcpp iso1 b2679 1 +CRNBTCT iso1 b0038 2 +CRNCAL2 iso1 b0037 1 +CRNCAR iso1 b0036 3 +CRNCBCT iso1 b0038 2 +CRNCDH iso1 b0036 3 +CRNDabcpp iso1 b2677 2 +CRNDabcpp iso1 b2678 2 +CRNDabcpp iso1 b2679 1 +CRNDCAL2 iso1 b0037 1 +CRNDt2rpp iso1 b4111 1 +CRNDtex iso1 b0241 3 +CRNDtex iso2 b0929 3 +CRNDtex iso3 b1377 3 +CRNDtex iso4 b2215 3 +CRNt2rpp iso1 b4111 1 +CRNt7pp iso1 b0040 1 +CRNt8pp iso1 b0040 1 +CRNtex iso1 b0241 3 +CRNtex iso2 b0929 3 +CRNtex iso3 b1377 3 +CRNtex iso4 b2215 3 +CS1tex iso1 b0241 3 +CS1tex iso2 b0929 3 +CS1tex iso3 b1377 3 +CS1tex iso4 b2215 3 +CS iso1 b0720 6 +CSND iso1 b0337 6 +CSNt2pp iso1 b0336 1 +CSNtex iso1 b0241 3 +CSNtex iso2 b0929 3 +CSNtex iso3 b1377 3 +CSNtex iso4 b2215 3 +CTBTabcpp iso1 b2677 2 +CTBTabcpp iso1 b2678 2 +CTBTabcpp iso1 b2679 1 +CTBTCAL2 iso1 b0037 1 +CTBTt2rpp iso1 b4111 1 +CTECOAI6 iso1 b3846 1 +CTECOAI7 iso1 b3846 1 +CTECOAI8 iso1 b3846 1 +CTPS2 iso1 b2780 2 +CU1abcpp iso1 b0484 1 +CU1Opp iso1 b0123 1 +CU2abcpp iso1 b3469 1 +CU2tex iso1 b0241 3 +CU2tex iso2 b0929 3 +CU2tex iso3 b1377 3 +CU2tex iso4 b2215 3 +CU2tpp iso1 b3040 1 +CURR iso1 b1449 2 +CUt2pp iso1 b0465 1 +CUt2pp iso2 b0577 7 +CUt2pp iso3 b0808 7 +CUt2pp iso4 b1330 7 +CUt2pp iso5 b2924 7 +CUt2pp iso6 b3291 5 +CUt2pp iso7 b4159 7 +CUt3 iso1 b0572 3 +CUt3 iso1 b0573 1 +CUt3 iso1 b0574 6 +CUt3 iso1 b0575 3 +CUtex iso1 b0241 3 +CUtex iso2 b0929 3 +CUtex iso3 b1377 3 +CUtex iso4 b2215 3 +CXSAMS iso1 b1870 2 +CYANST iso1 b2521 1 +CYANST iso2 b2668 1 +CYANST iso3 b3425 2 +CYANSTpp iso1 b1308 1 +CYANtex iso1 b0241 3 +CYANtex iso2 b0929 3 +CYANtex iso3 b1377 3 +CYANtex iso4 b2215 3 +CYNTAH iso1 b0340 10 +CYNTt2pp iso1 b0341 1 +CYNTtex iso1 b0241 3 +CYNTtex iso2 b0929 3 +CYNTtex iso3 b1377 3 +CYNTtex iso4 b2215 3 +CYSabc2pp iso1 b0886 1 +CYSabc2pp iso1 b0887 1 +CYSabcpp iso1 b1917 2 +CYSabcpp iso1 b1918 2 +CYSabcpp iso1 b1920 1 +CYSDDS iso1 b1919 2 +CYSDS iso1 b3008 4 +CYSDS iso2 b3708 4 +CYSDtex iso1 b0241 3 +CYSDtex iso2 b0929 3 +CYSDtex iso3 b1377 3 +CYSDtex iso4 b2215 3 +CYSItex iso1 b0241 3 +CYSItex iso2 b0929 3 +CYSItex iso3 b1377 3 +CYSItex iso4 b2215 3 +CYSItpp iso1 b3943 1 +CYSSADS iso1 b1680 2 +CYSSADS iso2 b2810 2 +CYSS iso1 b2414 2 +CYSS iso2 b2421 2 +CYSTA iso1 b0928 2 +CYStex iso1 b0241 3 +CYStex iso2 b0929 3 +CYStex iso3 b1377 3 +CYStex iso4 b2215 3 +CYSTL iso1 b1622 2 +CYSTL iso2 b3008 4 +CYStpp iso1 b1533 1 +CYStpp iso2 b2578 1 +CYTBD2pp iso1 b0978 1 +CYTBD2pp iso1 b0979 1 +CYTBDpp iso1 b0733 1 +CYTBDpp iso1 b0734 1 +CYTBDpp iso1 b4515 1 +CYTBDpp iso2 b0978 1 +CYTBDpp iso2 b0979 1 +CYTBO3_4pp iso1 b0429 1 +CYTBO3_4pp iso1 b0430 1 +CYTBO3_4pp iso1 b0431 1 +CYTBO3_4pp iso1 b0432 1 +CYTDH iso1 b0030 1 +CYTDH iso2 b0651 1 +CYTDH iso3 b2162 4 +CYTD iso1 b2143 2 +CYTDK1 iso1 b2066 4 +CYTDK2 iso1 b2066 4 +CYTDt2pp_copy1 iso1 b2393 1 +CYTDt2pp_copy1 iso2 b2964 1 +CYTDt2pp_copy2 iso1 b2406 1 +CYTDtex iso1 b0241 3 +CYTDtex iso2 b0929 3 +CYTDtex iso3 b1377 3 +CYTDtex iso4 b2215 3 +CYTK1 iso1 b0910 1 +CYTK2 iso1 b0910 1 +DAAD iso1 b1189 1 +DADA iso1 b1623 1 +DADK iso1 b0474 1 +DADNt2pp iso1 b2393 1 +DADNt2pp iso2 b2964 1 +DADNtex iso1 b0411 1 +DAGK120 iso1 b4042 3 +DAGK140 iso1 b4042 3 +DAGK141 iso1 b4042 3 +DAGK160 iso1 b4042 3 +DAGK161 iso1 b4042 3 +DAGK180 iso1 b4042 3 +DAGK181 iso1 b4042 3 +DALAt2pp iso1 b4208 1 +DALAtex iso1 b0241 3 +DALAtex iso2 b0929 3 +DALAtex iso3 b1377 3 +DALAtex iso4 b2215 3 +DAMPtex iso1 b0241 3 +DAMPtex iso2 b0929 3 +DAMPtex iso3 b1377 3 +DAMPtex iso4 b2215 3 +DAPAL iso1 b2871 2 +DAPDC iso1 b2838 1 +DAPE iso1 b3809 2 +DAPtex iso1 b0241 3 +DAPtex iso2 b0929 3 +DAPtex iso3 b1377 3 +DAPtex iso4 b2215 3 +DASYN120 iso1 b0175 1 +DASYN140 iso1 b0175 1 +DASYN141 iso1 b0175 1 +DASYN160 iso1 b0175 1 +DASYN161 iso1 b0175 1 +DASYN180 iso1 b0175 1 +DASYN181 iso1 b0175 1 +DATPHs iso1 s0001 1 +DB4PS iso1 b3041 2 +DBTS iso1 b0778 2 +DC6PDA iso1 b1733 2 +DCAtex iso1 b0241 3 +DCAtex iso2 b0929 3 +DCAtex iso3 b1377 3 +DCAtex iso4 b2215 3 +DCMPtex iso1 b0241 3 +DCMPtex iso2 b0929 3 +DCMPtex iso3 b1377 3 +DCMPtex iso4 b2215 3 +DCTPD iso1 b2065 3 +DCYTD iso1 b2143 2 +DCYTt2pp iso1 b2393 1 +DCYTt2pp iso2 b2964 1 +DCYTtex iso1 b0411 1 +DDCAtexi iso1 b2344 1 +DDGALK iso1 b3693 1 +DDGLCNt2rpp iso1 b3909 1 +DDGLCNtex iso1 b0241 3 +DDGLCNtex iso2 b0929 3 +DDGLCNtex iso3 b1377 3 +DDGLCNtex iso4 b2215 3 +DDGLK iso1 b3526 1 +DDPA iso1 b0754 4 +DDPA iso2 b1704 1 +DDPA iso3 b2601 1 +DDPGALA iso1 b4477 3 +DGK1 iso1 b3648 4 +DGMPtex iso1 b0241 3 +DGMPtex iso2 b0929 3 +DGMPtex iso3 b1377 3 +DGMPtex iso4 b2215 3 +DGSNt2pp iso1 b2964 1 +DGSNtex iso1 b0241 3 +DGSNtex iso2 b0929 3 +DGSNtex iso3 b1377 3 +DGSNtex iso4 b2215 3 +DGUNC iso1 b1025 2 +DGUNC iso2 b1341 1 +DGUNC iso3 b1490 1 +DGUNC iso4 b1535 2 +DGUNC iso5 b1794 2 +DHACOAH iso1 b1393 1 +DHAD1 iso1 b3771 2 +DHAD2 iso1 b3771 2 +DHAPT iso1 b1198 1 +DHAPT iso1 b1199 1 +DHAPT iso1 b1200 1 +DHAPT iso1 b2415 1 +DHAPT iso1 b2416 1 +DHAtex iso1 b0241 3 +DHAtex iso2 b0929 3 +DHAtex iso3 b1377 3 +DHAtex iso4 b2215 3 +DHBD iso1 b0596 4 +DHBS iso1 b0594 1 +DHBSZ3FEabcpp iso1 b0588 2 +DHBSZ3FEabcpp iso1 b0589 1 +DHBSZ3FEabcpp iso1 b0590 1 +DHBSZ3FEabcpp iso1 b0592 1 +DHCIND iso1 b2541 1 +DHCINDO iso1 b0348 4 +DHCURR iso1 b1449 2 +DHDPRy iso1 b0031 4 +DHDPS iso1 b2478 4 +DHFR iso1 b0048 1 +DHFR iso2 b1606 1 +DHFS iso1 b2315 1 +DHGLYH iso1 s0001 1 +DHMPTR iso1 b1606 1 +DHNAOT4 iso1 b3930 1 +DHNCOAS iso1 b2262 6 +DHNCOAT iso1 b1686 4 +DHNPA2r iso1 b3058 8 +DHNPTE iso1 b3058 8 +DHORD2 iso1 b0945 1 +DHORD5 iso1 b0945 1 +DHORTS iso1 b1062 2 +DHPPDA2 iso1 b0414 2 +DHPPD iso1 b2541 1 +DHPS2 iso1 b3177 2 +DHPStex iso1 b3875 1 +DHPStr iso1 b3877 1 +DHPTDCs2 iso1 s0001 1 +DHPTDNR iso1 b0578 2 +DHPTDNRN iso1 b0578 2 +DHPTPE iso1 b2303 8 +DHQS iso1 b3389 1 +DHQTi iso1 b1693 2 +DIMPtex iso1 b0241 3 +DIMPtex iso2 b0929 3 +DIMPtex iso3 b1377 3 +DIMPtex iso4 b2215 3 +DINSt2pp iso1 b2964 1 +DINStex iso1 b0241 3 +DINStex iso2 b0929 3 +DINStex iso3 b1377 3 +DINStex iso4 b2215 3 +DKGLCNR1 iso1 b0207 1 +DKGLCNR1 iso2 b3012 1 +DKGLCNR2x iso1 b3553 2 +DKGLCNR2y iso1 b3553 2 +D_LACt2pp iso1 b2975 1 +D_LACt2pp iso2 b3603 1 +D_LACtex iso1 b0241 3 +D_LACtex iso2 b0929 3 +D_LACtex iso3 b1377 3 +D_LACtex iso4 b2215 3 +DMATT iso1 b0421 1 +DMPPS iso1 b0029 2 +DMQMT iso1 b2232 2 +DMSOR1 iso1 b0894 1 +DMSOR1 iso1 b0895 1 +DMSOR1 iso1 b0896 1 +DMSOR1pp iso1 b1872 1 +DMSOR1pp iso1 b1873 1 +DMSOR2 iso1 b0894 1 +DMSOR2 iso1 b0895 1 +DMSOR2 iso1 b0896 1 +DMSOR2pp iso1 b1872 1 +DMSOR2pp iso1 b1873 1 +DMSOtex iso1 b0241 3 +DMSOtex iso2 b0929 3 +DMSOtex iso3 b1377 3 +DMSOtex iso4 b2215 3 +DMSOtpp iso1 s0001 1 +DMStex iso1 b0241 3 +DMStex iso2 b0929 3 +DMStex iso3 b1377 3 +DMStex iso4 b2215 3 +DNTPPA iso1 b0099 1 +DNTPPA iso2 b1865 1 +DOGULNR iso1 b3575 2 +DOPAtex iso1 b0241 3 +DOPAtex iso2 b0929 3 +DOPAtex iso3 b1377 3 +DOPAtex iso4 b2215 3 +DOXRBCNtex iso1 b0241 3 +DOXRBCNtex iso2 b0929 3 +DOXRBCNtex iso3 b1377 3 +DOXRBCNtex iso4 b2215 3 +DOXRBCNtpp iso1 b0462 3 +DOXRBCNtpp iso1 b0463 6 +DOXRBCNtpp iso1 b3035 3 +DOXRBCNtpp iso2 b0463 6 +DOXRBCNtpp iso2 b2470 3 +DOXRBCNtpp iso2 b3035 3 +DPCOAK iso1 b0103 1 +DPR iso1 b0425 1 +DPR iso2 b3774 4 +DRPA iso1 b4381 1 +DSBAO1 iso1 b1185 1 +DSBAO1 iso1 b3860 1 +DSBAO2 iso1 b1185 1 +DSBAO2 iso1 b3860 1 +DSBCGT iso1 b2893 2 +DSBDR iso1 b2582 1 +DSBDR iso1 b4136 1 +DSBDR iso2 b3781 1 +DSBDR iso2 b4136 1 +DSBGGT iso1 b0604 2 +DSERDHr iso1 b1539 4 +DSERt2pp iso1 b4208 1 +DSERtex iso1 b0241 3 +DSERtex iso2 b0929 3 +DSERtex iso3 b1377 3 +DSERtex iso4 b2215 3 +DTARTD iso1 b4122 2 +DTMPK iso1 b1098 2 +DTMPtex iso1 b0241 3 +DTMPtex iso2 b0929 3 +DTMPtex iso3 b1377 3 +DTMPtex iso4 b2215 3 +DUMPtex iso1 b0241 3 +DUMPtex iso2 b0929 3 +DUMPtex iso3 b1377 3 +DUMPtex iso4 b2215 3 +DURADx iso1 b2146 2 +DURADx iso1 b2147 2 +DURIK1 iso1 b1238 4 +DURIPP iso1 b4382 2 +DURIPP iso2 b4384 6 +DURIt2pp iso1 b2393 1 +DURIt2pp iso2 b2964 1 +DURItex iso1 b0411 1 +DUTPDP iso1 b2251 1 +DUTPDP iso2 b3640 3 +DXPRIi iso1 b0173 2 +DXPS iso1 b0420 2 +DXYLK iso1 b3564 2 +DXYLONtex iso1 b0929 3 +DXYLONtex iso2 b1377 3 +DXYLONtex iso3 b2215 3 +DXYLTD iso1 b0269 1 +DXYLTD iso2 b4297 1 +E4PD iso1 b1779 4 +E4PD iso2 b2927 4 +E4PP iso1 b0822 2 +E4PP iso2 b1727 1 +E4PP iso3 b2293 1 +E4PP iso4 b2690 1 +E4PP iso5 b3826 1 +EAR100x iso1 b1288 4 +EAR100y iso1 b1288 4 +EAR120x iso1 b1288 4 +EAR120y iso1 b1288 4 +EAR121x iso1 b1288 4 +EAR121y iso1 b1288 4 +EAR140x iso1 b1288 4 +EAR140y iso1 b1288 4 +EAR141x iso1 b1288 4 +EAR141y iso1 b1288 4 +EAR160x iso1 b1288 4 +EAR160y iso1 b1288 4 +EAR161x iso1 b1288 4 +EAR161y iso1 b1288 4 +EAR180x iso1 b1288 4 +EAR180y iso1 b1288 4 +EAR181x iso1 b1288 4 +EAR181y iso1 b1288 4 +EAR40x iso1 b1288 4 +EAR40y iso1 b1288 4 +EAR60x iso1 b1288 4 +EAR60y iso1 b1288 4 +EAR80x iso1 b1288 4 +EAR80y iso1 b1288 4 +ECA4COLIPAabctex iso1 b0054 1 +ECA4COLIPAabctex iso1 b0641 1 +ECA4COLIPAabctex iso1 b3199 1 +ECA4COLIPAabctex iso1 b3200 1 +ECA4COLIPAabctex iso1 b3201 1 +ECA4COLIPAabctex iso1 b4261 1 +ECA4COLIPAabctex iso1 b4262 1 +ECA4OALpp iso1 b3622 1 +ECAP1pp iso1 b3785 1 +ECAP1pp iso1 b3793 1 +ECAP2pp iso1 b3785 1 +ECAP2pp iso1 b3793 1 +ECAP3pp iso1 b3785 1 +ECAP3pp iso1 b3793 1 +ECAtpp iso1 b3792 1 +ECOAH1 iso1 b2341 1 +ECOAH1 iso2 b3846 1 +ECOAH2 iso1 b2341 1 +ECOAH2 iso2 b3846 1 +ECOAH3 iso1 b2341 1 +ECOAH3 iso2 b3846 1 +ECOAH4 iso1 b2341 1 +ECOAH4 iso2 b3846 1 +ECOAH5 iso1 b2341 1 +ECOAH5 iso2 b3846 1 +ECOAH6 iso1 b2341 1 +ECOAH6 iso2 b3846 1 +ECOAH7 iso1 b2341 1 +ECOAH7 iso2 b3846 1 +ECOAH8 iso1 b2341 1 +ECOAH8 iso2 b3846 1 +EDA iso1 b1850 3 +EDD iso1 b1851 1 +EDTXS1 iso1 b1054 1 +EDTXS2 iso1 b1855 1 +EDTXS3 iso1 b2378 1 +EDTXS4 iso1 b1855 1 +EGMEACPR iso1 b1288 4 +ENLIPAabctex iso1 b0054 1 +ENLIPAabctex iso1 b0641 1 +ENLIPAabctex iso1 b3199 1 +ENLIPAabctex iso1 b3200 1 +ENLIPAabctex iso1 b3201 1 +ENLIPAabctex iso1 b4261 1 +ENLIPAabctex iso1 b4262 1 +ENO iso1 b2779 1 +ENTCS iso1 b0583 1 +ENTERES iso1 b0585 1 +EPMEACPR iso1 b1288 4 +ETHAAL iso1 b2440 6 +ETHAAL iso1 b2441 6 +ETHAtex iso1 b0241 3 +ETHAtex iso2 b0929 3 +ETHAtex iso3 b1377 3 +ETHAtex iso4 b2215 3 +ETHSO3abcpp iso1 b0933 2 +ETHSO3abcpp iso1 b0934 2 +ETHSO3abcpp iso1 b0936 1 +ETHSO3tex iso1 b0241 3 +ETHSO3tex iso2 b0929 3 +ETHSO3tex iso3 b1377 3 +ETHSO3tex iso4 b2215 3 +ETOHtex iso1 b0241 3 +ETOHtex iso2 b0929 3 +ETOHtex iso3 b1377 3 +ETOHtex iso4 b2215 3 +ETOHtrpp iso1 s0001 1 +F1PP iso1 b0822 2 +F1PP iso2 b2293 1 +F1PP iso3 b2690 1 +F1PP iso4 b3697 2 +F6PA iso1 b0825 10 +F6PA iso2 b3946 10 +F6PP iso1 b0822 2 +F6PP iso2 b2293 1 +F6PP iso3 b2690 1 +F6PP iso4 b3697 2 +F6PP iso5 b3826 1 +F6Pt6_2pp iso1 b3666 1 +F6Ptex iso1 b0241 3 +F6Ptex iso2 b0929 3 +F6Ptex iso3 b1377 3 +F6Ptex iso4 b2215 3 +FA100ACPHi iso1 b0404 1 +FA120ACPHi iso1 b0404 1 +FA140ACPHi iso1 b0404 1 +FA141ACPHi iso1 b0404 1 +FA160ACPHi iso1 b0404 1 +FA161ACPHi iso1 b0404 1 +FA80ACPHi iso1 b0404 1 +FACOAE100 iso1 b0452 4 +FACOAE120 iso1 b0452 4 +FACOAE140 iso1 b0452 4 +FACOAE141 iso1 b0452 4 +FACOAE160 iso1 b0452 4 +FACOAE161 iso1 b0452 4 +FACOAE180 iso1 b0452 4 +FACOAE181 iso1 b0452 4 +FACOAE60 iso1 b0452 4 +FACOAE80 iso1 b0452 4 +FACOAL100t2pp iso1 b1701 2 +FACOAL100t2pp iso2 b1805 2 +FACOAL120t2pp iso1 b1701 2 +FACOAL120t2pp iso2 b1805 2 +FACOAL140t2pp iso1 b1701 2 +FACOAL140t2pp iso2 b1805 2 +FACOAL141t2pp iso1 b1701 2 +FACOAL141t2pp iso2 b1805 2 +FACOAL160t2pp iso1 b1701 2 +FACOAL160t2pp iso2 b1805 2 +FACOAL161t2pp iso1 b1701 2 +FACOAL161t2pp iso2 b1805 2 +FACOAL180t2pp iso1 b1701 2 +FACOAL180t2pp iso2 b1805 2 +FACOAL181t2pp iso1 b1701 2 +FACOAL181t2pp iso2 b1805 2 +FACOAL60t2pp iso1 b1701 2 +FACOAL60t2pp iso2 b1805 2 +FACOAL80t2pp iso1 b1701 2 +FACOAL80t2pp iso2 b1805 2 +FADRx2 iso1 b2763 4 +FADRx2 iso1 b2764 8 +FADRx iso1 b3844 1 +FADtex iso1 b0241 3 +FADtex iso2 b0929 3 +FADtex iso3 b1377 3 +FADtex iso4 b2215 3 +FADt iso1 b1985 1 +FALDH2 iso1 b0356 2 +FALDtex iso1 b0241 3 +FALDtex iso2 b0929 3 +FALDtex iso3 b1377 3 +FALDtex iso4 b2215 3 +FALDtpp iso1 s0001 1 +FALGTHLs iso1 s0001 1 +FBA3 iso1 b2925 2 +FBA iso1 b2097 8 +FBA iso2 b2925 2 +FBP iso1 b2930 2 +FBP iso2 b3697 2 +FBP iso3 b3925 2 +FBP iso4 b4232 4 +FCI iso1 b2802 6 +FCLK iso1 b2803 1 +FCLPA iso1 b2738 1 +FCLPA iso2 b2800 4 +FCLT iso1 b0475 1 +FCLT iso2 b1019 2 +FCLT iso3 b2431 1 +FDH4pp iso1 b1474 3 +FDH4pp iso1 b1475 3 +FDH4pp iso1 b1476 3 +FDH4pp iso2 b3892 3 +FDH4pp iso2 b3893 3 +FDH4pp iso2 b3894 3 +FDH5pp iso1 b1474 3 +FDH5pp iso1 b1475 3 +FDH5pp iso1 b1476 3 +FDH5pp iso2 b3892 3 +FDH5pp iso2 b3893 3 +FDH5pp iso2 b3894 3 +FDMO2 iso1 b0935 4 +FDMO3 iso1 b0935 4 +FDMO4 iso1 b0935 4 +FDMO6 iso1 b0935 4 +FDMO iso1 b0935 4 +FE2abcpp iso1 b3409 1 +FE2t2pp iso1 b2392 1 +FE2t3pp iso1 b3915 2 +FE2tex iso1 b0241 3 +FE2tex iso2 b0929 3 +FE2tex iso3 b1377 3 +FE2tex iso4 b2215 3 +FE2tpp iso1 b3040 1 +FE3DCITabcpp iso1 b4287 2 +FE3DCITabcpp iso1 b4288 1 +FE3DCITabcpp iso1 b4289 1 +FE3DCITabcpp iso1 b4290 1 +FE3DCITexs iso1 s0001 1 +FE3DCITR5 iso1 b3070 1 +FE3DCITtonex iso1 b1252 1 +FE3DCITtonex iso1 b3005 3 +FE3DCITtonex iso1 b3006 6 +FE3DCITtonex iso1 b4291 1 +FE3DHBZS3R iso1 b3070 1 +FE3DHBZStonex iso1 b0805 1 +FE3DHBZStonex iso1 b1252 1 +FE3DHBZStonex iso1 b3005 6 +FE3DHBZStonex iso1 b3006 3 +FE3DHBZStonex iso2 b1252 1 +FE3DHBZStonex iso2 b2155 1 +FE3DHBZStonex iso2 b3005 3 +FE3DHBZStonex iso2 b3006 6 +FE3HOXabcpp iso1 b0151 2 +FE3HOXabcpp iso1 b0152 1 +FE3HOXabcpp iso1 b0153 2 +FE3HOXexs iso1 s0001 1 +FE3HOXtonex iso1 b0150 1 +FE3HOXtonex iso1 b1252 1 +FE3HOXtonex iso1 b3005 3 +FE3HOXtonex iso1 b3006 6 +FE3Ri iso1 b3844 1 +FE3tex iso1 b0241 3 +FE3tex iso2 b0929 3 +FE3tex iso3 b1377 3 +FE3tex iso4 b2215 3 +FECRMabcpp iso1 b0151 2 +FECRMabcpp iso1 b0152 1 +FECRMabcpp iso1 b0153 2 +FECRMexs iso1 s0001 1 +FECRMtonex iso1 b0150 1 +FECRMtonex iso1 b1252 1 +FECRMtonex iso1 b3005 3 +FECRMtonex iso1 b3006 6 +FEENTERabcpp iso1 b0588 2 +FEENTERabcpp iso1 b0589 1 +FEENTERabcpp iso1 b0590 1 +FEENTERabcpp iso1 b0592 1 +FEENTERES iso1 b0585 1 +FEENTERexs iso1 s0001 1 +FEENTERR4 iso1 b3070 1 +FEENTERtex iso1 b3035 3 +FEENTERtonex iso1 b0584 1 +FEENTERtonex iso1 b1252 1 +FEENTERtonex iso1 b3005 3 +FEENTERtonex iso1 b3006 6 +FEENTERtpp iso1 b0591 1 +FEOXAMabcpp iso1 b0151 2 +FEOXAMabcpp iso1 b0152 1 +FEOXAMabcpp iso1 b0153 2 +FEOXAMexs iso1 s0001 1 +FEOXAMR1 iso1 b4367 1 +FEOXAMR2 iso1 b4367 1 +FEOXAMR3 iso1 b4367 1 +FEOXAMtonex iso1 b0150 1 +FEOXAMtonex iso1 b1252 1 +FEOXAMtonex iso1 b3005 3 +FEOXAMtonex iso1 b3006 6 +FEROpp iso1 b0123 1 +FEROpp iso2 b3336 1 +FESD1s iso1 s0001 1 +FESD2s iso1 s0001 1 +FESR iso1 b4209 2 +FHL iso2 b2719 1 +FHL iso2 b2720 1 +FHL iso2 b2721 1 +FHL iso2 b2722 1 +FHL iso2 b2723 1 +FHL iso2 b2724 1 +FHL iso2 b4079 1 +FLDR2 iso1 b0684 1 +FLDR2 iso1 b3924 1 +FLDR2 iso2 b2895 1 +FLDR2 iso2 b3924 1 +FLVR iso1 b2763 4 +FLVR iso1 b2764 8 +FLVR iso2 b3844 1 +FLVRx iso1 b3844 1 +FMNAT iso1 b0025 1 +FMNRx2 iso1 b0937 2 +FMNRx2 iso2 b2763 4 +FMNRx2 iso2 b2764 8 +FMNRx2 iso3 b3844 1 +FMNRx iso1 b0937 2 +FMNRx iso2 b3844 1 +FMNtex iso1 b0241 3 +FMNtex iso2 b0929 3 +FMNtex iso3 b1377 3 +FMNtex iso4 b2215 3 +FMNt iso1 b1985 1 +FOMETRi iso1 b2912 1 +FORCT iso1 b2374 2 +FORt2pp iso1 b0904 1 +FORt2pp iso2 b2492 1 +FORtex iso1 b0241 3 +FORtex iso2 b0929 3 +FORtex iso3 b1377 3 +FORtex iso4 b2215 3 +FORtppi iso1 b0904 1 +FORtppi iso2 b2492 1 +FRD2 iso1 b4151 1 +FRD2 iso1 b4152 1 +FRD2 iso1 b4153 1 +FRD2 iso1 b4154 1 +FRD3 iso1 b4151 1 +FRD3 iso1 b4152 1 +FRD3 iso1 b4153 1 +FRD3 iso1 b4154 1 +FRUK iso1 b2168 2 +FRULYSDG iso1 b3371 12 +FRULYSE iso1 b4474 8 +FRULYSK iso1 b3374 1 +FRULYSt2pp iso1 b3370 1 +FRULYStex iso1 b0241 3 +FRULYStex iso2 b0929 3 +FRULYStex iso3 b1377 3 +FRULYStex iso4 b2215 3 +FRUpts2pp iso1 b1817 1 +FRUpts2pp iso1 b1818 1 +FRUpts2pp iso1 b1819 1 +FRUpts2pp iso1 b2415 1 +FRUpts2pp iso1 b2416 1 +FRUptspp iso1 b2167 1 +FRUptspp iso1 b2169 1 +FRUptspp iso1 b2415 1 +FRUptspp iso1 b2416 1 +FRUtex iso1 b0241 3 +FRUtex iso2 b0929 3 +FRUtex iso3 b1377 3 +FRUtex iso4 b2215 3 +FRUURt2rpp iso1 b4321 1 +FRUURtex iso1 b0241 3 +FRUURtex iso2 b0929 3 +FRUURtex iso3 b1377 3 +FRUURtex iso4 b2215 3 +Ftex iso1 b0241 3 +Ftex iso2 b0929 3 +Ftex iso3 b1377 3 +Ftex iso4 b2215 3 +FTHFD iso1 b1232 6 +Ftpp iso1 b0624 1 +FUCtex iso1 b0241 3 +FUCtex iso2 b0929 3 +FUCtex iso3 b1377 3 +FUCtex iso4 b2215 3 +FUCtpp iso1 b2801 1 +FUM iso1 b1611 4 +FUM iso2 b1612 2 +FUM iso3 b4122 2 +FUMt1pp iso1 b1206 1 +FUMt2_2pp iso1 b3528 1 +FUMt2_3pp iso1 b0621 1 +FUMt2_3pp iso2 b4123 1 +FUMt2_3pp iso3 b4138 1 +FUMtex iso1 b0241 3 +FUMtex iso2 b0929 3 +FUMtex iso3 b1377 3 +FUMtex iso4 b2215 3 +FUSAtex iso1 b0241 3 +FUSAtex iso2 b0929 3 +FUSAtex iso3 b1377 3 +FUSAtex iso4 b2215 3 +FUSAtpp iso1 b0462 3 +FUSAtpp iso1 b0463 6 +FUSAtpp iso1 b3035 3 +FUSAtpp iso2 b0463 6 +FUSAtpp iso2 b2470 3 +FUSAtpp iso2 b3035 3 +G1PACT iso1 b3730 3 +G1PP iso1 b2293 1 +G1PP iso2 b3697 2 +G1PP iso3 b3885 1 +G1PPpp iso1 b0383 1 +G1PPpp iso2 b1002 2 +G1Ptex iso1 b0241 3 +G1Ptex iso2 b0929 3 +G1Ptex iso3 b1377 3 +G1Ptex iso4 b2215 3 +G1PTT iso1 b2039 4 +G1PTT iso2 b3789 4 +G1SAT iso1 b0154 2 +G2PP iso1 b2533 1 +G2PPpp iso1 b0383 1 +G2PPpp iso2 b4055 4 +G3PAT120 iso1 b1094 1 +G3PAT120 iso1 b4041 1 +G3PAT140 iso1 b1094 1 +G3PAT140 iso1 b4041 1 +G3PAT141 iso1 b1094 1 +G3PAT141 iso1 b4041 1 +G3PAT160 iso1 b1094 1 +G3PAT160 iso1 b4041 1 +G3PAT161 iso1 b1094 1 +G3PAT161 iso1 b4041 1 +G3PAT180 iso1 b1094 1 +G3PAT180 iso1 b4041 1 +G3PAT181 iso1 b1094 1 +G3PAT181 iso1 b4041 1 +G3PCabcpp iso1 b3450 2 +G3PCabcpp iso1 b3451 1 +G3PCabcpp iso1 b3452 1 +G3PCabcpp iso1 b3453 1 +G3PCtex iso1 b0241 3 +G3PCtex iso2 b0929 3 +G3PCtex iso3 b1377 3 +G3PCtex iso4 b2215 3 +G3PD2 iso1 b3608 1 +G3PD5 iso1 b2241 1 +G3PD5 iso1 b2242 1 +G3PD5 iso1 b2243 1 +G3PD5 iso2 b3426 1 +G3PD6 iso1 b2241 1 +G3PD6 iso1 b2242 1 +G3PD6 iso1 b2243 1 +G3PD7 iso1 b2241 1 +G3PD7 iso1 b2242 1 +G3PD7 iso1 b2243 1 +G3PEabcpp iso1 b3450 2 +G3PEabcpp iso1 b3451 1 +G3PEabcpp iso1 b3452 1 +G3PEabcpp iso1 b3453 1 +G3PEtex iso1 b0241 3 +G3PEtex iso2 b0929 3 +G3PEtex iso3 b1377 3 +G3PEtex iso4 b2215 3 +G3PGabcpp iso1 b3450 2 +G3PGabcpp iso1 b3451 1 +G3PGabcpp iso1 b3452 1 +G3PGabcpp iso1 b3453 1 +G3PGtex iso1 b0241 3 +G3PGtex iso2 b0929 3 +G3PGtex iso3 b1377 3 +G3PGtex iso4 b2215 3 +G3PIabcpp iso1 b3450 2 +G3PIabcpp iso1 b3451 1 +G3PIabcpp iso1 b3452 1 +G3PIabcpp iso1 b3453 1 +G3PItex iso1 b0241 3 +G3PItex iso2 b0929 3 +G3PItex iso3 b1377 3 +G3PItex iso4 b2215 3 +G3PSabcpp iso1 b3450 2 +G3PSabcpp iso1 b3451 1 +G3PSabcpp iso1 b3452 1 +G3PSabcpp iso1 b3453 1 +G3PStex iso1 b0241 3 +G3PStex iso2 b0929 3 +G3PStex iso3 b1377 3 +G3PStex iso4 b2215 3 +G3PT iso1 b0675 1 +G3PT iso2 b0822 2 +G5SADs iso1 s0001 1 +G5SD iso1 b0243 2 +G6PDA iso1 b0678 6 +G6PDH2r iso1 b1852 1 +G6PP iso1 b0822 2 +G6PP iso2 b2293 1 +G6PP iso3 b3826 1 +G6Pt6_2pp iso1 b3666 1 +G6Ptex iso1 b0241 3 +G6Ptex iso2 b0929 3 +G6Ptex iso3 b1377 3 +G6Ptex iso4 b2215 3 +GAL1PPpp iso1 b1002 2 +GAL1Ptex iso1 b0241 3 +GAL1Ptex iso2 b0929 3 +GAL1Ptex iso3 b1377 3 +GAL1Ptex iso4 b2215 3 +GALabcpp iso1 b2148 2 +GALabcpp iso1 b2149 2 +GALabcpp iso1 b2150 1 +GALabcpp iso2 b4227 1 +GALabcpp iso2 b4230 1 +GALabcpp iso2 b4231 1 +GALabcpp iso2 b4485 2 +GALBDtex iso1 b0241 3 +GALBDtex iso2 b0929 3 +GALBDtex iso3 b1377 3 +GALBDtex iso4 b2215 3 +GALCTD iso1 b3128 2 +GALCTLO iso1 b4358 1 +GALCTND iso1 b4478 1 +GALCTNLt2pp iso1 b4356 1 +GALCTNLtex iso1 b0241 3 +GALCTNLtex iso2 b0929 3 +GALCTNLtex iso3 b1377 3 +GALCTNLtex iso4 b2215 3 +GALCTNt2pp iso1 b3691 1 +GALCTNtex iso1 b0241 3 +GALCTNtex iso2 b0929 3 +GALCTNtex iso3 b1377 3 +GALCTNtex iso4 b2215 3 +GALCTt2rpp iso1 b2789 1 +GALCTt2rpp iso2 b3127 1 +GALCTtex iso1 b0241 3 +GALCTtex iso2 b0929 3 +GALCTtex iso3 b1377 3 +GALCTtex iso4 b2215 3 +GALKr iso1 b0757 1 +GALM2pp iso1 b0756 1 +GALS3 iso1 b4119 2 +GALT1 iso1 b3628 1 +GALt2pp iso1 b2943 1 +GALtex iso1 b0241 3 +GALtex iso2 b0929 3 +GALtex iso3 b1377 3 +GALtex iso4 b2215 3 +GALTptspp iso1 b2092 1 +GALTptspp iso1 b2093 1 +GALTptspp iso1 b2094 1 +GALTptspp iso1 b2415 1 +GALTptspp iso1 b2416 1 +GALTtex iso1 b0241 3 +GALTtex iso2 b0929 3 +GALTtex iso3 b1377 3 +GALTtex iso4 b2215 3 +GALUi iso1 b1236 4 +GALURt2rpp iso1 b3093 1 +GALURtex iso1 b0241 3 +GALURtex iso2 b0929 3 +GALURtex iso3 b1377 3 +GALURtex iso4 b2215 3 +GAM6Pt6_2pp iso1 b3666 1 +GAMAN6Ptex iso1 b0241 3 +GAMAN6Ptex iso2 b0929 3 +GAMAN6Ptex iso3 b1377 3 +GAMAN6Ptex iso4 b2215 3 +GAMptspp iso1 b1817 1 +GAMptspp iso1 b1818 1 +GAMptspp iso1 b1819 1 +GAMptspp iso1 b2415 1 +GAMptspp iso1 b2416 1 +GAMtex iso1 b0241 3 +GAMtex iso2 b0929 3 +GAMtex iso3 b1377 3 +GAMtex iso4 b2215 3 +GAPD iso1 b1779 4 +GAPP iso1 b1727 1 +GARFT iso1 b2500 1 +GART iso1 b1849 2 +GBBTNtex iso1 b0241 3 +GBBTNtex iso2 b0929 3 +GBBTNtex iso3 b1377 3 +GBBTNtex iso4 b2215 3 +GCALDD iso1 b1415 4 +GDMANE iso1 b2052 2 +GDPDPK iso1 b2784 1 +GDPDPK iso2 b3650 1 +GDPMNH iso1 b2051 2 +GDPMNP iso1 b2467 2 +GDPtex iso1 b0241 3 +GDPtex iso2 b0929 3 +GDPtex iso3 b1377 3 +GDPtex iso4 b2215 3 +GDPTPDP iso1 b3650 1 +GF6PTA iso1 b3729 2 +GGGABADr iso1 b1300 1 +GGGABAH iso1 b1298 2 +GGPTRCO iso1 b1301 1 +GGPTRCS iso1 b1297 1 +GHBDHx iso1 b3882 4 +GHMT2r iso1 b2551 2 +GK1 iso1 b3648 4 +GLBRAN2 iso1 b3432 1 +GLCabcpp iso1 b2148 2 +GLCabcpp iso1 b2149 2 +GLCabcpp iso1 b2150 1 +GLCATr iso1 b0459 2 +GLCDpp iso1 b0124 1 +GLCDpp iso2 b0837 1 +GLCNt2rpp iso1 b3415 1 +GLCNt2rpp iso2 b4265 1 +GLCNt2rpp iso3 b4321 1 +GLCNt2rpp iso4 b4476 1 +GLCNtex iso1 b0241 3 +GLCNtex iso2 b0929 3 +GLCNtex iso3 b1377 3 +GLCNtex iso4 b2215 3 +GLCP2 iso1 b3417 2 +GLCP2 iso2 b3428 1 +GLCP iso1 b3417 2 +GLCP iso2 b3428 1 +GLCptspp iso1 b1101 1 +GLCptspp iso1 b2415 1 +GLCptspp iso1 b2416 1 +GLCptspp iso1 b2417 1 +GLCptspp iso2 b1621 1 +GLCptspp iso2 b2415 1 +GLCptspp iso2 b2416 1 +GLCptspp iso2 b2417 1 +GLCptspp iso3 b1817 1 +GLCptspp iso3 b1818 1 +GLCptspp iso3 b1819 1 +GLCptspp iso3 b2415 1 +GLCptspp iso3 b2416 1 +GLCRAL iso1 b3126 6 +GLCRD iso1 b2787 2 +GLCRD iso2 b2788 1 +GLCRt2rpp iso1 b2789 1 +GLCRt2rpp iso2 b3127 1 +GLCRtex iso1 b0241 3 +GLCRtex iso2 b0929 3 +GLCRtex iso3 b1377 3 +GLCRtex iso4 b2215 3 +GLCS1 iso1 b3429 1 +GLCt2pp iso1 b2943 1 +GLCtex_copy1 iso1 b4036 3 +GLCtex_copy2 iso1 b0241 3 +GLCtex_copy2 iso2 b0929 3 +GLCtex_copy2 iso3 b1377 3 +GLCtex_copy2 iso4 b2215 3 +GLCTR1 iso1 b3631 1 +GLCTR2 iso1 b3627 1 +GLCTR3 iso1 b3626 1 +GLCUR1Ptex iso1 b0241 3 +GLCUR1Ptex iso2 b0929 3 +GLCUR1Ptex iso3 b1377 3 +GLCUR1Ptex iso4 b2215 3 +GLCURt2rpp iso1 b3093 1 +GLCURt2rpp iso2 b3909 1 +GLCURtex iso1 b0241 3 +GLCURtex iso2 b0929 3 +GLCURtex iso3 b1377 3 +GLCURtex iso4 b2215 3 +GLDBRAN2 iso1 b3431 1 +GLGC iso1 b3430 4 +GLNabcpp iso1 b0809 2 +GLNabcpp iso1 b0810 2 +GLNabcpp iso1 b0811 1 +GLNS iso1 b3870 1 +GLNtex iso1 b0241 3 +GLNtex iso2 b0929 3 +GLNtex iso3 b1377 3 +GLNtex iso4 b2215 3 +GLTPD iso1 b2091 1 +GLU5K iso1 b0242 4 +GLUabcpp iso1 b0652 2 +GLUabcpp iso1 b0653 1 +GLUabcpp iso1 b0654 1 +GLUabcpp iso1 b0655 1 +GLUABUTt7pp iso1 b1492 1 +GLUCYS iso1 b2688 1 +GLUDC iso1 b1493 6 +GLUDC iso2 b3517 6 +GLUDy iso1 b1761 6 +GLUDy iso2 b3212 1 +GLUDy iso2 b3213 1 +GLUN iso1 b0485 4 +GLUN iso2 b1524 4 +GLUNpp iso1 b2957 4 +GLUPRT iso1 b2312 4 +GLUR iso1 b3967 1 +GLUSy iso1 b3212 1 +GLUSy iso1 b3213 1 +GLUt2rpp iso1 b4077 1 +GLUt4pp iso1 b3653 1 +GLUtex iso1 b0241 3 +GLUtex iso2 b0929 3 +GLUtex iso3 b1377 3 +GLUtex iso4 b2215 3 +GLUTRR iso1 b1210 2 +GLUTRS iso1 b2400 1 +GLXCL iso1 b0507 4 +GLYALDtex iso1 b0241 3 +GLYALDtex iso2 b0929 3 +GLYALDtex iso3 b1377 3 +GLYALDtex iso4 b2215 3 +GLYALDtpp iso1 b3927 4 +GLYAT iso1 b3617 2 +GLYBabcpp iso1 b2128 1 +GLYBabcpp iso1 b2129 2 +GLYBabcpp iso1 b2130 1 +GLYBabcpp iso1 b2131 1 +GLYBabcpp iso2 b2677 2 +GLYBabcpp iso2 b2678 2 +GLYBabcpp iso2 b2679 1 +GLYBt2pp iso1 b1801 1 +GLYBt2pp iso2 b4111 1 +GLYBt3pp iso1 b0543 2 +GLYBtex iso1 b0241 3 +GLYBtex iso2 b0929 3 +GLYBtex iso3 b1377 3 +GLYBtex iso4 b2215 3 +GLYC2Pabcpp iso1 b3450 2 +GLYC2Pabcpp iso1 b3451 1 +GLYC2Pabcpp iso1 b3452 1 +GLYC2Pabcpp iso1 b3453 1 +GLYC2Ptex iso1 b0241 3 +GLYC2Ptex iso2 b0929 3 +GLYC2Ptex iso3 b1377 3 +GLYC2Ptex iso4 b2215 3 +GLYC3Pabcpp iso1 b3450 2 +GLYC3Pabcpp iso1 b3451 1 +GLYC3Pabcpp iso1 b3452 1 +GLYC3Pabcpp iso1 b3453 1 +GLYC3Pt6pp iso1 b2240 1 +GLYC3Ptex iso1 b0241 3 +GLYC3Ptex iso2 b0929 3 +GLYC3Ptex iso3 b1377 3 +GLYC3Ptex iso4 b2215 3 +GLYCAt2rpp iso1 b2789 1 +GLYCAt2rpp iso2 b3127 1 +GLYCAtex iso1 b0241 3 +GLYCAtex iso2 b0929 3 +GLYCAtex iso3 b1377 3 +GLYCAtex iso4 b2215 3 +GLYCDx iso1 b3945 2 +GLYCK2 iso1 b3124 1 +GLYCK iso1 b0514 1 +GLYCL iso1 b0116 1 +GLYCL iso1 b2903 1 +GLYCL iso1 b2904 1 +GLYCL iso1 b2905 1 +GLYCLTDx iso1 b1033 1 +GLYCLTDx iso2 b3553 2 +GLYCLTDy iso1 b1033 1 +GLYCLTDy iso2 b3553 2 +GLYCLTt2rpp iso1 b2975 1 +GLYCLTt2rpp iso2 b3603 1 +GLYCLTt4pp iso1 b4067 1 +GLYCLTtex iso1 b0241 3 +GLYCLTtex iso2 b0929 3 +GLYCLTtex iso3 b1377 3 +GLYCLTtex iso4 b2215 3 +GLYCtex iso1 b0241 3 +GLYCtex iso2 b0929 3 +GLYCtex iso3 b1377 3 +GLYCtex iso4 b2215 3 +GLYCTO2 iso1 b2979 1 +GLYCTO2 iso1 b4467 1 +GLYCTO2 iso1 b4468 1 +GLYCTO3 iso1 b2979 1 +GLYCTO3 iso1 b4467 1 +GLYCTO3 iso1 b4468 1 +GLYCTO4 iso1 b2979 1 +GLYCTO4 iso1 b4467 1 +GLYCTO4 iso1 b4468 1 +GLYCtpp iso1 b3927 4 +GLYCtpp iso2 s0001 1 +GLYK iso1 b3926 4 +GLYOX3 iso1 b1967 2 +GLYOX iso1 b0212 1 +GLYt2pp iso1 b1801 1 +GLYt2pp iso2 b4208 1 +GLYt4pp iso1 b0007 1 +GLYtex iso1 b0241 3 +GLYtex iso2 b0929 3 +GLYtex iso3 b1377 3 +GLYtex iso4 b2215 3 +GLYtpp iso1 b3927 4 +GMAND iso1 b2053 2 +GMHEPAT iso1 b3052 2 +GMHEPK iso1 b3052 2 +GMHEPPA iso1 b0200 1 +GMPR iso1 b0104 4 +GMPS2 iso1 b2507 2 +GMPS iso1 b2507 2 +GMPtex iso1 b0241 3 +GMPtex iso2 b0929 3 +GMPtex iso3 b1377 3 +GMPtex iso4 b2215 3 +GND iso1 b2029 2 +GNK iso1 b3437 1 +GNK iso2 b4268 1 +GNP iso1 b2690 1 +GNP iso2 b3715 1 +GOFUCR iso1 b2052 2 +GP4GH iso1 b0049 1 +GPDDA1 iso1 b3449 1 +GPDDA1pp iso1 b2239 2 +GPDDA2 iso1 b3449 1 +GPDDA2pp iso1 b2239 2 +GPDDA3 iso1 b3449 1 +GPDDA3pp iso1 b2239 2 +GPDDA4 iso1 b3449 1 +GPDDA4pp iso1 b2239 2 +GPDDA5 iso1 b3449 1 +GPDDA5pp iso1 b2239 2 +GRTT iso1 b0421 1 +GRXR iso1 b0849 1 +GRXR iso2 b1064 1 +GRXR iso3 b1654 2 +GRXR iso4 b3610 1 +GSNK iso1 b0477 2 +GSNt2pp iso1 b2964 1 +GSNt3pp iso1 b3662 1 +GSNtex iso1 b0241 3 +GSNtex iso2 b0929 3 +GSNtex iso3 b1377 3 +GSNtex iso4 b2215 3 +GSPMDA iso1 b2988 2 +GSPMDS iso1 b2988 2 +GTHOr iso1 b3500 2 +GTHOXtex iso1 b0241 3 +GTHOXtex iso2 b0929 3 +GTHOXtex iso3 b1377 3 +GTHOXtex iso4 b2215 3 +GTHPi iso1 b1710 1 +GTHRDabc2pp iso1 b0886 1 +GTHRDabc2pp iso1 b0887 1 +GTHRDabcpp iso1 b0829 2 +GTHRDabcpp iso1 b0830 1 +GTHRDabcpp iso1 b0831 1 +GTHRDabcpp iso1 b0832 1 +GTHRDHpp iso1 b3447 1 +GTHRDtex iso1 b0241 3 +GTHRDtex iso2 b0929 3 +GTHRDtex iso3 b1377 3 +GTHRDtex iso4 b2215 3 +GTHS iso1 b2947 4 +GTPCII2 iso1 b1277 2 +GTPCI iso1 b2153 1 +GTPDPDP iso1 b3779 1 +GTPDPK iso1 b2784 1 +GTPHs iso1 s0001 1 +GTPtex iso1 b0241 3 +GTPtex iso2 b0929 3 +GTPtex iso3 b1377 3 +GTPtex iso4 b2215 3 +GUAD iso1 b2883 1 +GUAPRT iso1 b0125 4 +GUAPRT iso2 b0238 4 +GUAt2pp iso1 b3654 1 +GUAtex iso1 b0411 1 +GUAtpp iso1 b4064 1 +GUAtpp iso2 b4464 1 +GUI1 iso1 b3092 1 +GUI2 iso1 b3092 1 +H2O2tex iso1 b0241 3 +H2O2tex iso2 b0929 3 +H2O2tex iso3 b1377 3 +H2O2tex iso4 b2215 3 +H2Otex iso1 b0241 3 +H2Otex iso2 b0929 3 +H2Otex iso3 b0957 1 +H2Otex iso4 b1319 1 +H2Otex iso5 b1377 3 +H2Otex iso6 b2215 3 +H2Otex iso7 b3875 1 +H2Otex iso8 s0001 1 +H2Otpp iso1 b0875 4 +H2Otpp iso2 s0001 1 +H2St1pp iso1 s0001 1 +H2Stex iso1 b0241 3 +H2Stex iso2 b0929 3 +H2Stex iso3 b1377 3 +H2Stex iso4 b2215 3 +H2tex iso1 b0241 3 +H2tex iso2 b0929 3 +H2tex iso3 b1377 3 +H2tex iso4 b2215 3 +H2tpp iso1 s0001 1 +HACD1 iso1 b2341 1 +HACD1 iso2 b3846 1 +HACD2 iso1 b2341 1 +HACD2 iso2 b3846 1 +HACD3 iso1 b2341 1 +HACD3 iso2 b3846 1 +HACD4 iso1 b2341 1 +HACD4 iso2 b3846 1 +HACD5 iso1 b2341 1 +HACD5 iso2 b3846 1 +HACD6 iso1 b2341 1 +HACD6 iso2 b3846 1 +HACD7 iso1 b2341 1 +HACD7 iso2 b3846 1 +HACD8 iso1 b2341 1 +HACD8 iso2 b3846 1 +HADPCOADH3 iso1 b1395 3 +HBZOPT iso1 b4040 1 +HCINNMt2rpp iso1 b0353 1 +HCINNMtex iso1 b0241 3 +HCINNMtex iso2 b0929 3 +HCINNMtex iso3 b1377 3 +HCINNMtex iso4 b2215 3 +HCO3E iso1 b0126 2 +HCO3E iso2 b0339 1 +HCYSMT2 iso1 b0261 1 +HCYSMT iso1 b0261 1 +HDCAtexi iso1 b2344 1 +HDCEAtexi iso1 b2344 1 +HEMEOS iso1 b0428 1 +HEPK1 iso1 b3630 1 +HEPK2 iso1 b3625 1 +HEPT1 iso1 b3621 1 +HEPT2 iso1 b3620 1 +HEPT3 iso1 b3632 1 +HEPT4 iso1 b3623 1 +HETZK iso1 b2104 1 +HEX1 iso1 b2388 1 +HEX7 iso1 b0394 1 +HEXt2rpp iso1 b2223 1 +HG2abcpp iso1 b3469 1 +HG2t3pp iso1 b3915 2 +HG2tex iso1 b0241 3 +HG2tex iso2 b0929 3 +HG2tex iso3 b1377 3 +HG2tex iso4 b2215 3 +HISabcpp iso1 b2306 2 +HISabcpp iso1 b2307 1 +HISabcpp iso1 b2308 1 +HISabcpp iso1 b2309 1 +HISt2rpp iso1 b0112 1 +HISTD iso1 b2020 2 +HIStex iso1 b0241 3 +HIStex iso2 b0929 3 +HIStex iso3 b1377 3 +HIStex iso4 b2215 3 +HISTP iso1 b2022 1 +HKNDDH iso1 b0349 2 +HKNTDH iso1 b0349 2 +HMBS iso1 b3805 1 +HMPK1 iso1 b2103 1 +HMPK1 iso2 b2418 2 +HOMt2pp iso1 b0813 1 +HOMt2pp iso2 b3824 1 +HOMtex iso1 b0241 3 +HOMtex iso2 b0929 3 +HOMtex iso3 b1377 3 +HOMtex iso4 b2215 3 +HOPNTAL iso1 b0352 1 +HPACOAT iso1 b1396 4 +HPPK2 iso1 b0142 1 +HPPPNDO iso1 b0348 4 +HPPPNt2rpp iso1 b0353 1 +HPPPNtex iso1 b0241 3 +HPPPNtex iso2 b0929 3 +HPPPNtex iso3 b1377 3 +HPPPNtex iso4 b2215 3 +HPYRI iso1 b0508 2 +HPYRP iso1 b1813 1 +HPYRRx iso1 b1033 1 +HPYRRx iso2 b3553 2 +HPYRRy iso1 b1033 1 +HPYRRy iso2 b3553 2 +HSDy iso1 b0002 4 +HSDy iso2 b3940 4 +HSK iso1 b0003 1 +HSST iso1 b4013 2 +HSTPT iso1 b2021 2 +Htex iso1 b0241 3 +Htex iso2 b0929 3 +Htex iso3 b1377 3 +Htex iso4 b2215 3 +HXAND iso1 b2866 1 +HXAND iso1 b2867 1 +HXAND iso1 b2868 1 +HXAtex iso1 b0241 3 +HXAtex iso2 b0929 3 +HXAtex iso3 b1377 3 +HXAtex iso4 b2215 3 +HXCT iso1 b2221 1 +HXCT iso1 b2222 1 +HXPRT iso1 b0125 4 +HXPRT iso2 b0238 4 +HYD1pp iso1 b0972 2 +HYD1pp iso1 b0973 2 +HYD1pp iso1 b0974 1 +HYD1pp iso3 b2994 1 +HYD1pp iso3 b2995 1 +HYD1pp iso3 b2996 1 +HYD1pp iso3 b2997 1 +HYD2pp iso1 b0972 2 +HYD2pp iso1 b0973 2 +HYD2pp iso1 b0974 1 +HYD2pp iso2 b2994 1 +HYD2pp iso2 b2995 1 +HYD2pp iso2 b2996 1 +HYD2pp iso2 b2997 1 +HYD3pp iso1 b0972 2 +HYD3pp iso1 b0973 2 +HYD3pp iso1 b0974 1 +HYD3pp iso2 b2994 1 +HYD3pp iso2 b2995 1 +HYD3pp iso2 b2996 1 +HYD3pp iso2 b2997 1 +HYXNtex iso1 b0241 3 +HYXNtex iso2 b0929 3 +HYXNtex iso3 b1377 3 +HYXNtex iso4 b2215 3 +HYXNtpp iso1 b4064 1 +HYXNtpp iso2 b4464 1 +I2FE2SR iso1 b2529 2 +I2FE2SR iso1 b2530 2 +I2FE2SS2 iso1 b2529 2 +I2FE2SS2 iso1 b2530 2 +I2FE2SS iso1 b2529 2 +I2FE2SS iso1 b2530 2 +I2FE2ST iso1 b2528 1 +I2FE2ST iso1 b2529 1 +I4FE4SR iso1 b2529 2 +I4FE4ST iso1 b2528 1 +I4FE4ST iso1 b2529 1 +ICDHyr iso1 b1136 2 +ICHORS_copy1 iso1 b0593 1 +ICHORS_copy2 iso1 b2265 2 +ICHORT iso1 b0595 1 +ICL iso1 b4015 4 +ICYSDS iso1 b2530 2 +IDOND2 iso1 b4267 1 +IDOND iso1 b4267 1 +IDONt2rpp iso1 b4265 1 +IDONtex iso1 b0241 3 +IDONtex iso2 b0929 3 +IDONtex iso3 b1377 3 +IDONtex iso4 b2215 3 +IG3PS iso1 b2023 1 +IG3PS iso1 b2025 1 +IGPDH iso1 b2022 1 +IGPS iso1 b1262 1 +ILEabcpp iso1 b3454 1 +ILEabcpp iso1 b3455 1 +ILEabcpp iso1 b3456 1 +ILEabcpp iso1 b3457 1 +ILEabcpp iso1 b3460 1 +ILEt2rpp iso1 b0401 1 +ILEt3pp iso1 b4141 1 +ILETA iso1 b3770 6 +ILEtex iso1 b0241 3 +ILEtex iso2 b0929 3 +ILEtex iso3 b1377 3 +ILEtex iso4 b2215 3 +IMPC iso1 b4006 1 +IMPD iso1 b2508 4 +IMPtex iso1 b0241 3 +IMPtex iso2 b0929 3 +IMPtex iso3 b1377 3 +IMPtex iso4 b2215 3 +INDOLEt2pp iso1 b3035 3 +INDOLEt2pp iso1 b3265 1 +INDOLEt2pp iso1 b3266 1 +INDOLEt2rpp iso1 b3161 1 +INDOLEtex iso1 b0241 3 +INDOLEtex iso2 b0929 3 +INDOLEtex iso3 b1377 3 +INDOLEtex iso4 b2215 3 +INOSTO iso1 b3488 1 +INOSTt4pp iso1 b3679 1 +INSH iso1 b0030 1 +INSK iso1 b0477 2 +INSt2pp iso1 b2393 1 +INSt2pp iso2 b2406 1 +INSt2pp iso3 b2964 1 +INSt3pp iso1 b3662 1 +INStex iso1 b0411 1 +INSTtex iso1 b0241 3 +INSTtex iso2 b0929 3 +INSTtex iso3 b1377 3 +INSTtex iso4 b2215 3 +IPDDI iso1 b2889 2 +IPDPS iso1 b0029 2 +IPMD iso1 b0073 2 +IPMD iso2 b1800 1 +IPPMIa iso1 b0071 1 +IPPMIa iso1 b0072 1 +IPPMIb iso1 b0071 1 +IPPMIb iso1 b0072 1 +IPPS iso1 b0074 4 +ISETACabcpp iso1 b0365 1 +ISETACabcpp iso1 b0366 2 +ISETACabcpp iso1 b0367 2 +ISETACabcpp iso2 b0933 2 +ISETACabcpp iso2 b0934 2 +ISETACabcpp iso2 b0936 1 +ISETACtex iso1 b0241 3 +ISETACtex iso2 b0929 3 +ISETACtex iso3 b1377 3 +ISETACtex iso4 b2215 3 +K2L4Aabcpp iso1 b0914 2 +K2L4Aabctex iso1 b0054 1 +K2L4Aabctex iso1 b0641 1 +K2L4Aabctex iso1 b3199 1 +K2L4Aabctex iso1 b3200 1 +K2L4Aabctex iso1 b3201 1 +K2L4Aabctex iso1 b4261 1 +K2L4Aabctex iso1 b4262 1 +Kabcpp iso2 b0696 1 +Kabcpp iso2 b0697 1 +Kabcpp iso2 b0698 1 +Kabcpp iso2 b4513 1 +KARA1 iso1 b3774 4 +KARA2 iso1 b3774 4 +KAS14 iso1 b1095 2 +KAS14 iso2 b2323 2 +KAS15 iso1 b1091 2 +KDOCT2 iso1 b0918 1 +KDOPP iso1 b3198 4 +KDOPS iso1 b1215 3 +KDUI iso1 b2843 6 +KG6PDC iso1 b3581 2 +KG6PDC iso2 b4196 2 +Kt2pp iso1 b1250 1 +Kt2pp iso2 b1291 1 +Kt2pp iso2 b1363 1 +Kt2pp iso2 b3290 1 +Kt2pp iso3 b1291 1 +Kt2pp iso3 b3290 1 +Kt2pp iso3 b3849 1 +Kt2pp iso4 b3747 1 +Kt3pp iso1 b0047 2 +Kt3pp iso2 b0842 1 +Kt3pp iso3 b1216 1 +Kt3pp iso4 b3350 1 +Ktex iso1 b0241 3 +Ktex iso2 b0929 3 +Ktex iso3 b1377 3 +Ktex iso4 b2215 3 +LA4NTpp iso1 b2257 1 +LACZ iso1 b0344 4 +LACZpp iso1 b2132 1 +LADGMDH iso1 b1326 2 +LALADGLUtex iso1 b0241 3 +LALADGLUtex iso2 b0929 3 +LALADGLUtex iso3 b1377 3 +LALADGLUtex iso4 b2215 3 +LALADGLUtpp iso1 b0709 1 +LALADGLUtpp iso2 b1634 1 +LALADGLUtpp iso3 b3496 1 +LALADGLUtpp iso4 b4130 1 +LALALGLUtex iso1 b0241 3 +LALALGLUtex iso2 b0929 3 +LALALGLUtex iso3 b1377 3 +LALALGLUtex iso4 b2215 3 +LALALGLUtpp iso1 b0709 1 +LALALGLUtpp iso2 b1634 1 +LALALGLUtpp iso3 b3496 1 +LALALGLUtpp iso4 b4130 1 +LALDO2x iso1 b3945 2 +LALGP iso1 b0237 1 +LCADi iso1 b1415 4 +LCARS iso1 b2799 2 +LCARSyi iso1 b0325 1 +LCTSt3ipp iso1 b0070 1 +LCTSt3ipp iso2 b1528 1 +LCTSt3ipp iso3 b2170 1 +LCTStex iso1 b0241 3 +LCTStex iso2 b0929 3 +LCTStex iso3 b1377 3 +LCTStex iso4 b2215 3 +LCTStpp iso1 b0343 1 +LDGUNPD iso1 b1285 1 +LDH_D2 iso1 b2133 1 +LDH_D iso1 b1380 1 +LEUabcpp iso1 b3454 1 +LEUabcpp iso1 b3455 1 +LEUabcpp iso1 b3456 1 +LEUabcpp iso1 b3457 1 +LEUabcpp iso1 b3458 1 +LEUabcpp iso2 b3454 1 +LEUabcpp iso2 b3455 1 +LEUabcpp iso2 b3456 1 +LEUabcpp iso2 b3457 1 +LEUabcpp iso2 b3460 1 +LEUt2rpp iso1 b0401 1 +LEUt3pp iso1 b1798 1 +LEUt3pp iso2 b4141 1 +LEUTAi iso1 b3770 6 +LEUTAi iso2 b4054 2 +LEUtex iso1 b0241 3 +LEUtex iso2 b0929 3 +LEUtex iso3 b1377 3 +LEUtex iso4 b2215 3 +LGTHL iso1 b1651 2 +LIPAabcpp iso1 b0914 2 +LIPAabctex iso1 b0054 1 +LIPAabctex iso1 b0641 1 +LIPAabctex iso1 b3199 1 +LIPAabctex iso1 b3200 1 +LIPAabctex iso1 b3201 1 +LIPAabctex iso1 b4261 1 +LIPAabctex iso1 b4262 1 +LIPACabcpp iso1 b0914 2 +LIPAHT2ex iso1 b0622 2 +LIPAHTex iso1 b0622 2 +LIPAMPL iso1 b4386 1 +LIPATPT iso1 b4386 1 +LIPOCT iso1 b0630 1 +LIPOS iso1 b0628 1 +LIPOtex iso1 b0241 3 +LIPOtex iso2 b0929 3 +LIPOtex iso3 b1377 3 +LIPOtex iso4 b2215 3 +LKDRA iso1 b2245 6 +L_LACD2 iso1 b0306 1 +L_LACD2 iso1 b0307 1 +L_LACD2 iso1 b0308 1 +L_LACD2 iso2 b3605 1 +L_LACD3 iso1 b0306 1 +L_LACD3 iso1 b0307 1 +L_LACD3 iso1 b0308 1 +L_LACD3 iso2 b3605 1 +L_LACt2rpp iso1 b2975 1 +L_LACt2rpp iso2 b3603 1 +L_LACtex iso1 b0241 3 +L_LACtex iso2 b0929 3 +L_LACtex iso3 b1377 3 +L_LACtex iso4 b2215 3 +LPADSS iso1 b0182 1 +LPLIPAL1A120pp iso1 b0494 1 +LPLIPAL1A140pp iso1 b0494 1 +LPLIPAL1A141pp iso1 b0494 1 +LPLIPAL1A160pp iso1 b0494 1 +LPLIPAL1A161pp iso1 b0494 1 +LPLIPAL1A180pp iso1 b0494 1 +LPLIPAL1A181pp iso1 b0494 1 +LPLIPAL1E120pp iso1 b0494 1 +LPLIPAL1E140pp iso1 b0494 1 +LPLIPAL1E141pp iso1 b0494 1 +LPLIPAL1E160pp iso1 b0494 1 +LPLIPAL1E161pp iso1 b0494 1 +LPLIPAL1E180pp iso1 b0494 1 +LPLIPAL1E181pp iso1 b0494 1 +LPLIPAL1G120pp iso1 b0494 1 +LPLIPAL1G140pp iso1 b0494 1 +LPLIPAL1G141pp iso1 b0494 1 +LPLIPAL1G160pp iso1 b0494 1 +LPLIPAL1G161pp iso1 b0494 1 +LPLIPAL1G180pp iso1 b0494 1 +LPLIPAL1G181pp iso1 b0494 1 +LPLIPAL2A120 iso1 b3825 1 +LPLIPAL2A140 iso1 b3825 1 +LPLIPAL2A141 iso1 b3825 1 +LPLIPAL2A160 iso1 b3825 1 +LPLIPAL2A161 iso1 b3825 1 +LPLIPAL2A180 iso1 b3825 1 +LPLIPAL2A181 iso1 b3825 1 +LPLIPAL2ATE120 iso1 b3825 1 +LPLIPAL2ATE140 iso1 b3825 1 +LPLIPAL2ATE141 iso1 b3825 1 +LPLIPAL2ATE160 iso1 b3825 1 +LPLIPAL2ATE161 iso1 b3825 1 +LPLIPAL2ATE180 iso1 b3825 1 +LPLIPAL2ATE181 iso1 b3825 1 +LPLIPAL2ATG120 iso1 b3825 1 +LPLIPAL2ATG140 iso1 b3825 1 +LPLIPAL2ATG141 iso1 b3825 1 +LPLIPAL2ATG160 iso1 b3825 1 +LPLIPAL2ATG161 iso1 b3825 1 +LPLIPAL2ATG180 iso1 b3825 1 +LPLIPAL2ATG181 iso1 b3825 1 +LPLIPAL2E120 iso1 b3825 1 +LPLIPAL2E140 iso1 b3825 1 +LPLIPAL2E141 iso1 b3825 1 +LPLIPAL2E160 iso1 b3825 1 +LPLIPAL2E161 iso1 b3825 1 +LPLIPAL2E180 iso1 b3825 1 +LPLIPAL2E181 iso1 b3825 1 +LPLIPAL2G120 iso1 b3825 1 +LPLIPAL2G140 iso1 b3825 1 +LPLIPAL2G141 iso1 b3825 1 +LPLIPAL2G160 iso1 b3825 1 +LPLIPAL2G161 iso1 b3825 1 +LPLIPAL2G180 iso1 b3825 1 +LPLIPAL2G181 iso1 b3825 1 +LSERDHr iso1 b1539 4 +LYSabcpp iso1 b2306 2 +LYSabcpp iso1 b2307 1 +LYSabcpp iso1 b2308 1 +LYSabcpp iso1 b2310 1 +LYSAM iso1 b4146 1 +LYSDC iso1 b0186 10 +LYSDC iso2 b4131 10 +LYSt2pp iso1 b2156 1 +LYSt3pp iso1 b0874 1 +LYSt3pp iso2 b2923 1 +LYStex iso1 b0241 3 +LYStex iso2 b0929 3 +LYStex iso3 b1377 3 +LYStex iso4 b2215 3 +LYXI iso1 b3903 4 +LYXt2pp iso1 b3907 1 +LYXtex iso1 b0241 3 +LYXtex iso2 b0929 3 +LYXtex iso3 b1377 3 +LYXtex iso4 b2215 3 +M1PD iso1 b3600 1 +MACPD iso1 b2323 2 +MALCOAMT iso1 b0777 1 +MALDDH iso1 b1800 1 +MALDt2_2pp iso1 b3528 1 +MALDtex iso1 b0241 3 +MALDtex iso2 b0929 3 +MALDtex iso3 b1377 3 +MALDtex iso4 b2215 3 +MALS iso1 b2976 1 +MALS iso2 b4014 1 +MALt2_2pp iso1 b3528 1 +MALt2_3pp iso1 b4123 1 +MALt2_3pp iso2 b4138 1 +MALTabcpp iso1 b4032 1 +MALTabcpp iso1 b4033 1 +MALTabcpp iso1 b4034 1 +MALTabcpp iso1 b4035 2 +MALTATr iso1 b0459 2 +MALtex iso1 b0241 3 +MALtex iso2 b0929 3 +MALtex iso3 b1377 3 +MALtex iso4 b2215 3 +MALTHXabcpp iso1 b4032 1 +MALTHXabcpp iso1 b4033 1 +MALTHXabcpp iso1 b4034 1 +MALTHXabcpp iso1 b4035 2 +MALTHXtexi iso1 b4036 3 +MALTPTabcpp iso1 b4032 1 +MALTPTabcpp iso1 b4033 1 +MALTPTabcpp iso1 b4034 1 +MALTPTabcpp iso1 b4035 2 +MALTptspp iso1 b1621 1 +MALTptspp iso1 b2415 1 +MALTptspp iso1 b2416 1 +MALTptspp iso1 b2417 1 +MALTPTtexi iso1 b4036 3 +MALTtexi iso1 b4036 3 +MALTTRabcpp iso1 b4032 1 +MALTTRabcpp iso1 b4033 1 +MALTTRabcpp iso1 b4034 1 +MALTTRabcpp iso1 b4035 2 +MALTTRtexi iso1 b4036 3 +MALTTTRabcpp iso1 b4032 1 +MALTTTRabcpp iso1 b4033 1 +MALTTTRabcpp iso1 b4034 1 +MALTTTRabcpp iso1 b4035 2 +MALTTTRtexi iso1 b4036 3 +MAN1PT2 iso1 b2049 1 +MAN6PI iso1 b1613 1 +MAN6Pt6_2pp iso1 b3666 1 +MAN6Ptex iso1 b0241 3 +MAN6Ptex iso2 b0929 3 +MAN6Ptex iso3 b1377 3 +MAN6Ptex iso4 b2215 3 +MANAO iso1 b4323 1 +MANGLYCptspp iso1 b0731 1 +MANGLYCptspp iso1 b2415 1 +MANGLYCptspp iso1 b2416 1 +MANGLYCtex iso1 b0241 3 +MANGLYCtex iso2 b0929 3 +MANGLYCtex iso3 b1377 3 +MANGLYCtex iso4 b2215 3 +MANPGH iso1 b0732 1 +MANptspp iso1 b1817 1 +MANptspp iso1 b1818 1 +MANptspp iso1 b1819 1 +MANptspp iso1 b2415 1 +MANptspp iso1 b2416 1 +MANtex iso1 b0241 3 +MANtex iso2 b0929 3 +MANtex iso3 b1377 3 +MANtex iso4 b2215 3 +MC6PH iso1 b1734 4 +MCITD iso1 b0334 1 +MCITL2 iso1 b0331 4 +MCITS iso1 b0333 2 +MCOATA iso1 b1092 1 +MCOATA iso1 b1094 1 +MCPST iso1 b2521 1 +MCTP1App iso1 b0084 1 +MCTP1App iso1 b0149 1 +MCTP1App iso1 b0635 1 +MCTP1App iso2 b0084 1 +MCTP1App iso2 b0635 1 +MCTP1App iso2 b3396 1 +MCTP1Bpp iso1 b0925 1 +MCTP1Bpp iso2 b1678 1 +MCTP2App iso1 b0084 1 +MCTP2App iso1 b0149 1 +MCTP2App iso1 b0635 1 +MCTP2App iso2 b0084 1 +MCTP2App iso2 b0635 1 +MCTP2App iso2 b3396 1 +MDDCP1pp iso1 b0376 1 +MDDCP1pp iso2 b0632 1 +MDDCP1pp iso3 b0839 1 +MDDCP1pp iso4 b2010 1 +MDDCP1pp iso5 b2430 1 +MDDCP1pp iso6 b3182 1 +MDDCP2pp iso1 b0376 1 +MDDCP2pp iso2 b0632 1 +MDDCP2pp iso3 b0839 1 +MDDCP2pp iso4 b2010 1 +MDDCP2pp iso5 b2430 1 +MDDCP2pp iso6 b3182 1 +MDDCP3pp iso1 b0376 1 +MDDCP3pp iso2 b0632 1 +MDDCP3pp iso3 b0839 1 +MDDCP3pp iso4 b2010 1 +MDDCP3pp iso5 b2430 1 +MDDCP3pp iso6 b3182 1 +MDDCP4pp iso1 b0376 1 +MDDCP4pp iso2 b0632 1 +MDDCP4pp iso3 b0839 1 +MDDCP4pp iso4 b2010 1 +MDDCP4pp iso5 b2430 1 +MDDCP4pp iso6 b3182 1 +MDDCP5pp iso1 b0376 1 +MDDCP5pp iso2 b0632 1 +MDDCP5pp iso3 b0839 1 +MDDCP5pp iso4 b2010 1 +MDDCP5pp iso5 b2430 1 +MDDCP5pp iso6 b3182 1 +MDDEP1pp iso1 b0376 1 +MDDEP1pp iso2 b1655 1 +MDDEP1pp iso3 b1856 1 +MDDEP1pp iso4 b2134 1 +MDDEP1pp iso5 b2175 1 +MDDEP1pp iso6 b2328 1 +MDDEP1pp iso7 b3182 1 +MDDEP2pp iso1 b0376 1 +MDDEP2pp iso2 b1655 1 +MDDEP2pp iso3 b1856 1 +MDDEP2pp iso4 b2134 1 +MDDEP2pp iso5 b2175 1 +MDDEP2pp iso6 b2328 1 +MDDEP2pp iso7 b3182 1 +MDDEP3pp iso1 b0376 1 +MDDEP3pp iso2 b1655 1 +MDDEP3pp iso3 b1856 1 +MDDEP3pp iso4 b2134 1 +MDDEP3pp iso5 b2175 1 +MDDEP3pp iso6 b2328 1 +MDDEP3pp iso7 b3182 1 +MDDEP4pp iso1 b0376 1 +MDDEP4pp iso2 b1655 1 +MDDEP4pp iso3 b1856 1 +MDDEP4pp iso4 b2134 1 +MDDEP4pp iso5 b2175 1 +MDDEP4pp iso6 b2328 1 +MDDEP4pp iso7 b3182 1 +MDH2 iso1 b2210 1 +MDH3 iso1 b2210 1 +MDH iso1 b3236 2 +ME1 iso1 b1479 4 +ME2 iso1 b2463 1 +MECDPDH5 iso1 b0684 1 +MECDPDH5 iso1 b2515 1 +MECDPDH5 iso2 b2515 1 +MECDPDH5 iso2 b2895 1 +MECDPS iso1 b2746 3 +MELIBt2pp iso1 b0343 1 +MELIBt2pp iso2 b4120 1 +MELIBt3ipp iso1 b1528 1 +MELIBtex iso1 b0241 3 +MELIBtex iso2 b0929 3 +MELIBtex iso3 b1377 3 +MELIBtex iso4 b2215 3 +MEOHtex iso1 b0241 3 +MEOHtex iso2 b0929 3 +MEOHtex iso3 b1377 3 +MEOHtex iso4 b2215 3 +MEOHtrpp iso1 s0001 1 +MEPCT iso1 b2747 2 +MEPNabcpp iso1 b4104 1 +MEPNabcpp iso1 b4105 1 +MEPNabcpp iso1 b4106 1 +MEPNtex iso1 b0241 3 +MEPNtex iso2 b0929 3 +MEPNtex iso3 b1377 3 +MEPNtex iso4 b2215 3 +METabcpp iso1 b0197 1 +METabcpp iso1 b0198 2 +METabcpp iso1 b0199 2 +METAT iso1 b2942 4 +METDabcpp iso1 b0197 1 +METDabcpp iso1 b0198 2 +METDabcpp iso1 b0199 2 +METDtex iso1 b0241 3 +METDtex iso2 b0929 3 +METDtex iso3 b1377 3 +METDtex iso4 b2215 3 +METGLCUR iso1 b1617 4 +METGLCURt2pp iso1 b1616 1 +METGLCURtex iso1 b0241 3 +METGLCURtex iso2 b0929 3 +METGLCURtex iso3 b1377 3 +METGLCURtex iso4 b2215 3 +METNA iso1 b1448 1 +METOX1s iso1 s0001 1 +METOX2s iso1 s0001 1 +METS iso1 b3829 1 +METS iso2 b4019 1 +METSOX1tex iso1 b0241 3 +METSOX1tex iso2 b0929 3 +METSOX1tex iso3 b1377 3 +METSOX1tex iso4 b2215 3 +METSOX2tex iso1 b0241 3 +METSOX2tex iso2 b0929 3 +METSOX2tex iso3 b1377 3 +METSOX2tex iso4 b2215 3 +METSOXR1 iso1 b2582 1 +METSOXR1 iso1 b3551 1 +METSOXR1 iso2 b2582 1 +METSOXR1 iso2 b4219 1 +METSOXR1 iso3 b3551 1 +METSOXR1 iso3 b3781 1 +METSOXR1 iso4 b3781 1 +METSOXR1 iso4 b4219 1 +METSOXR2 iso1 b1778 1 +METSOXR2 iso1 b2582 1 +METSOXR2 iso2 b1778 1 +METSOXR2 iso2 b3781 1 +METSOXR2 iso3 b1832 1 +METSOXR2 iso3 b2582 1 +METSOXR2 iso4 b1832 1 +METSOXR2 iso4 b3781 1 +METt3pp iso1 b1798 1 +METt3pp iso2 b4141 1 +METtex iso1 b0241 3 +METtex iso2 b0929 3 +METtex iso3 b1377 3 +METtex iso4 b2215 3 +MG2tex iso1 b0241 3 +MG2tex iso2 b0929 3 +MG2tex iso3 b1377 3 +MG2tex iso4 b2215 3 +MG2tpp iso1 b3816 5 +MG2uabcpp iso1 b4242 1 +MGSA iso1 b0963 6 +MI1PP iso1 b2533 1 +MICITDr iso1 b0118 1 +MINCYCtex iso1 b0241 3 +MINCYCtex iso2 b0929 3 +MINCYCtex iso3 b1377 3 +MINCYCtex iso4 b2215 3 +MINCYCtpp iso1 b0462 3 +MINCYCtpp iso1 b0463 6 +MINCYCtpp iso1 b3035 3 +MINCYCtpp iso2 b0463 6 +MINCYCtpp iso2 b2470 3 +MINCYCtpp iso2 b3035 3 +MLDCP1App iso1 b0819 1 +MLDCP1App iso2 b0925 1 +MLDCP1App iso3 b1113 1 +MLDCP1App iso4 b1678 1 +MLDCP1App iso5 b1990 1 +MLDCP1Bpp iso1 b0819 1 +MLDCP1Bpp iso2 b0925 1 +MLDCP1Bpp iso3 b1113 1 +MLDCP1Bpp iso4 b1678 1 +MLDCP1Bpp iso5 b1990 1 +MLDCP2App iso1 b0819 1 +MLDCP2App iso2 b0925 1 +MLDCP2App iso3 b1113 1 +MLDCP2App iso4 b1678 1 +MLDCP2App iso5 b1990 1 +MLDCP2Bpp iso1 b0819 1 +MLDCP2Bpp iso2 b0925 1 +MLDCP2Bpp iso3 b1113 1 +MLDCP2Bpp iso4 b1678 1 +MLDCP2Bpp iso5 b1990 1 +MLDCP3App iso1 b0819 1 +MLDCP3App iso2 b0925 1 +MLDCP3App iso3 b1113 1 +MLDCP3App iso4 b1678 1 +MLDCP3App iso5 b1990 1 +MLDEP1pp iso1 b2328 1 +MLDEP2pp iso1 b2328 1 +MLTG1 iso1 b0403 1 +MLTG2 iso1 b0403 1 +MLTG3 iso1 b0403 1 +MLTG4 iso1 b0403 1 +MLTG5 iso1 b0403 1 +MLTGY1pp iso1 b0211 1 +MLTGY1pp iso2 b1097 2 +MLTGY1pp iso3 b1193 1 +MLTGY1pp iso4 b2558 1 +MLTGY1pp iso5 b2701 1 +MLTGY1pp iso6 b2813 1 +MLTGY1pp iso7 b2963 1 +MLTGY1pp iso8 b4392 1 +MLTGY2pp iso1 b0211 1 +MLTGY2pp iso2 b1097 2 +MLTGY2pp iso3 b1193 1 +MLTGY2pp iso4 b2558 1 +MLTGY2pp iso5 b2701 1 +MLTGY2pp iso6 b2813 1 +MLTGY2pp iso7 b2963 1 +MLTGY2pp iso8 b4392 1 +MLTGY3pp iso1 b0211 1 +MLTGY3pp iso2 b1097 2 +MLTGY3pp iso3 b1193 1 +MLTGY3pp iso4 b2558 1 +MLTGY3pp iso5 b2701 1 +MLTGY3pp iso6 b2813 1 +MLTGY3pp iso7 b2963 1 +MLTGY3pp iso8 b4392 1 +MLTGY4pp iso1 b0211 1 +MLTGY4pp iso2 b1097 2 +MLTGY4pp iso3 b1193 1 +MLTGY4pp iso4 b2558 1 +MLTGY4pp iso5 b2701 1 +MLTGY4pp iso6 b2813 1 +MLTGY4pp iso7 b2963 1 +MLTGY4pp iso8 b4392 1 +MLTP1 iso1 b3417 2 +MLTP2 iso1 b3417 2 +MLTP3 iso1 b3417 2 +MMCD iso1 b2919 1 +MMETt2pp iso1 b0260 1 +MMETtex iso1 b0241 3 +MMETtex iso2 b0929 3 +MMETtex iso3 b1377 3 +MMETtex iso4 b2215 3 +MMM iso1 b2917 2 +MN2t3pp iso1 b0752 1 +MN2t3pp iso2 b3915 2 +MN2tipp iso1 b1821 1 +MN2tpp iso1 b3040 1 +MN6PP iso1 b0822 2 +MN6PP iso2 b1727 1 +MN6PP iso3 b3697 2 +MN6PP iso4 b3826 1 +MNLptspp iso1 b2415 1 +MNLptspp iso1 b2416 1 +MNLptspp iso1 b2702 1 +MNLptspp iso1 b2703 1 +MNLptspp iso1 b2704 1 +MNLptspp iso2 b2415 1 +MNLptspp iso2 b2416 1 +MNLptspp iso2 b2933 1 +MNLptspp iso2 b2934 1 +MNLptspp iso3 b2415 1 +MNLptspp iso3 b2416 1 +MNLptspp iso3 b3599 1 +MNLtex iso1 b0241 3 +MNLtex iso2 b0929 3 +MNLtex iso3 b1377 3 +MNLtex iso4 b2215 3 +MNNH iso1 b4322 1 +MNt2pp iso1 b2392 1 +MNtex iso1 b0241 3 +MNtex iso2 b0929 3 +MNtex iso3 b1377 3 +MNtex iso4 b2215 3 +MOADSUx iso1 b0784 1 +MOADSUx iso1 b2530 1 +MOAT2 iso1 b3633 1 +MOAT3C iso1 b3624 1 +MOAT iso1 b3633 1 +MOBDabcpp iso1 b0763 1 +MOBDabcpp iso1 b0764 2 +MOBDabcpp iso1 b0765 2 +MOBDabcpp iso2 b2422 2 +MOBDabcpp iso2 b2423 1 +MOBDabcpp iso2 b2424 1 +MOBDabcpp iso2 b2425 1 +MOBDabcpp iso3 b2422 2 +MOBDabcpp iso3 b2423 1 +MOBDabcpp iso3 b2424 1 +MOBDabcpp iso3 b3917 1 +MOBDtex iso1 b0241 3 +MOBDtex iso2 b0929 3 +MOBDtex iso3 b1377 3 +MOBDtex iso4 b2215 3 +MOCDS iso1 b2877 1 +MOCOS iso1 b0827 2 +MOGDS iso1 b3856 1 +MOGDS iso1 b3857 1 +MOGDS iso2 b3857 1 +MOHMT iso1 b0134 10 +MPTAT iso1 b0009 3 +MPTG2 iso1 b0089 1 +MPTG2 iso1 b0149 1 +MPTG2 iso1 b1069 1 +MPTG2 iso2 b0089 1 +MPTG2 iso2 b1069 1 +MPTG2 iso2 b2519 1 +MPTG2 iso3 b0089 1 +MPTG2 iso3 b1069 1 +MPTG2 iso3 b3208 1 +MPTG2 iso4 b0089 1 +MPTG2 iso4 b1069 1 +MPTG2 iso4 b3396 1 +MPTG iso1 b0089 1 +MPTG iso1 b0149 1 +MPTG iso1 b1069 1 +MPTG iso2 b0089 1 +MPTG iso2 b1069 1 +MPTG iso2 b2519 1 +MPTG iso3 b0089 1 +MPTG iso3 b1069 1 +MPTG iso3 b3208 1 +MPTG iso4 b0089 1 +MPTG iso4 b1069 1 +MPTG iso4 b3396 1 +MPTS iso1 b0784 2 +MPTS iso1 b0785 2 +MPTSS iso1 b0826 2 +MSAR iso1 b1008 1 +MSAR iso2 b1539 4 +MSO3abcpp iso1 b0933 2 +MSO3abcpp iso1 b0934 2 +MSO3abcpp iso1 b0936 1 +MSO3tex iso1 b0241 3 +MSO3tex iso2 b0929 3 +MSO3tex iso3 b1377 3 +MSO3tex iso4 b2215 3 +MTAN iso1 b0159 2 +MTHFC iso1 b0529 2 +MTHFD iso1 b0529 2 +MTHFR2 iso1 b3941 4 +MTHTHFSs iso1 s0001 1 +MTRPOX iso1 b1059 1 +N2Otex iso1 b0241 3 +N2Otex iso2 b0929 3 +N2Otex iso3 b1377 3 +N2Otex iso4 b2215 3 +N2Otpp iso1 s0001 1 +NACtex iso1 b0241 3 +NACtex iso2 b0929 3 +NACtex iso3 b1377 3 +NACtex iso4 b2215 3 +NADDP iso1 b2411 1 +NADDP iso2 b3996 2 +NADH10 iso1 b0046 2 +NADH10 iso2 b1004 2 +NADH10 iso3 b1109 1 +NADH10 iso4 b3713 4 +NADH16pp iso1 b2276 1 +NADH16pp iso1 b2277 1 +NADH16pp iso1 b2278 1 +NADH16pp iso1 b2279 1 +NADH16pp iso1 b2280 1 +NADH16pp iso1 b2281 1 +NADH16pp iso1 b2282 1 +NADH16pp iso1 b2283 1 +NADH16pp iso1 b2284 1 +NADH16pp iso1 b2285 1 +NADH16pp iso1 b2286 1 +NADH16pp iso1 b2287 1 +NADH16pp iso1 b2288 1 +NADH17pp iso1 b2276 1 +NADH17pp iso1 b2277 1 +NADH17pp iso1 b2278 1 +NADH17pp iso1 b2279 1 +NADH17pp iso1 b2280 1 +NADH17pp iso1 b2281 1 +NADH17pp iso1 b2282 1 +NADH17pp iso1 b2283 1 +NADH17pp iso1 b2284 1 +NADH17pp iso1 b2285 1 +NADH17pp iso1 b2286 1 +NADH17pp iso1 b2287 1 +NADH17pp iso1 b2288 1 +NADH18pp iso1 b2276 1 +NADH18pp iso1 b2277 1 +NADH18pp iso1 b2278 1 +NADH18pp iso1 b2279 1 +NADH18pp iso1 b2280 1 +NADH18pp iso1 b2281 1 +NADH18pp iso1 b2282 1 +NADH18pp iso1 b2283 1 +NADH18pp iso1 b2284 1 +NADH18pp iso1 b2285 1 +NADH18pp iso1 b2286 1 +NADH18pp iso1 b2287 1 +NADH18pp iso1 b2288 1 +NADH5 iso1 b0046 2 +NADH5 iso2 b1004 2 +NADH5 iso3 b1109 1 +NADH5 iso4 b3713 4 +NADH9 iso1 b0046 2 +NADH9 iso2 b1004 2 +NADH9 iso3 b1109 1 +NADH9 iso4 b3713 4 +NADHHR iso1 b1779 4 +NADHHR iso2 s0001 1 +NADHHS iso1 b1779 4 +NADHHS iso2 s0001 1 +NADHPO iso1 b0605 10 +NADHPO iso1 b0606 2 +NADHXD iso1 b4167 1 +NADHXE iso1 b4167 1 +NADK iso1 b2615 6 +NADPHHR iso1 b1779 4 +NADPHHR iso2 s0001 1 +NADPHHS iso1 b1779 4 +NADPHHS iso2 s0001 1 +NADPHQR2 iso1 b3028 2 +NADPHQR3 iso1 b3028 2 +NADPHQR4 iso1 b3028 2 +NADPHXD iso1 b4167 1 +NADPHXE iso1 b4167 1 +NADS1 iso1 b1740 2 +NADTRHD iso1 b3962 1 +NAMNPP iso1 b0931 1 +NAt3_1p5pp iso1 b1186 1 +NAt3_2pp iso1 b0019 1 +NAt3pp iso1 b0842 1 +NAt3pp iso2 b1216 1 +NAtex iso1 b0241 3 +NAtex iso2 b0929 3 +NAtex iso3 b1377 3 +NAtex iso4 b2215 3 +NDP3 iso1 b1134 1 +NDP3 iso2 b3614 1 +NDP7 iso1 b3614 1 +NDPK1 iso1 b0474 1 +NDPK1 iso2 b2518 4 +NDPK2 iso1 b0474 1 +NDPK2 iso2 b2518 4 +NDPK3 iso1 b0474 1 +NDPK3 iso2 b2518 4 +NDPK4 iso1 b0474 1 +NDPK4 iso2 b2518 4 +NDPK5 iso1 b0474 1 +NDPK5 iso2 b2518 4 +NDPK6 iso1 b0474 1 +NDPK6 iso2 b2518 4 +NDPK7 iso1 b0474 1 +NDPK7 iso2 b2518 4 +NDPK8 iso1 b0474 1 +NDPK8 iso2 b2518 4 +NH4tex iso1 b0241 3 +NH4tex iso2 b0929 3 +NH4tex iso3 b1377 3 +NH4tex iso4 b2215 3 +NH4tpp iso1 b0451 3 +NH4tpp iso2 s0001 1 +NHFRBO iso1 b2710 1 +NHFRBO iso1 b2711 1 +NI2abcpp iso1 b3469 1 +NI2t3pp iso1 b0752 1 +NI2t3pp iso2 b3915 2 +NI2tex iso1 b0241 3 +NI2tex iso2 b0929 3 +NI2tex iso3 b1377 3 +NI2tex iso4 b2215 3 +NI2tpp iso1 b3816 5 +NI2uabcpp iso1 b3476 1 +NI2uabcpp iso1 b3477 1 +NI2uabcpp iso1 b3478 1 +NI2uabcpp iso1 b3479 1 +NI2uabcpp iso1 b3480 1 +NI2uabcpp iso2 b4242 1 +NMNAT iso1 b0639 1 +NMNAT iso2 b4390 4 +NMNDA iso1 b2700 2 +NMNPtpp iso1 b0751 1 +NMNtex iso1 b0241 3 +NMNtex iso2 b0929 3 +NMNtex iso3 b1377 3 +NMNtex iso4 b2215 3 +NNAM iso1 b1768 1 +NNATr iso1 b0639 1 +NNDMBRT iso1 b1991 2 +NNDPR iso1 b0109 2 +NO2t2rpp iso1 b1223 1 +NO2t2rpp iso2 b3367 1 +NO2tex iso1 b0241 3 +NO2tex iso2 b0929 3 +NO2tex iso3 b1377 3 +NO2tex iso4 b2215 3 +NO3R1bpp iso1 b2202 1 +NO3R1bpp iso1 b2203 1 +NO3R1bpp iso1 b2204 1 +NO3R1bpp iso1 b2205 1 +NO3R1bpp iso1 b2206 1 +NO3R1pp iso1 b1224 1 +NO3R1pp iso1 b1225 1 +NO3R1pp iso1 b1226 1 +NO3R1pp iso1 b1227 1 +NO3R1pp iso2 b1465 1 +NO3R1pp iso2 b1466 1 +NO3R1pp iso2 b1467 1 +NO3R1pp iso2 b1468 1 +NO3R2bpp iso1 b2202 1 +NO3R2bpp iso1 b2203 1 +NO3R2bpp iso1 b2206 1 +NO3R2pp iso1 b1224 1 +NO3R2pp iso1 b1225 1 +NO3R2pp iso1 b1226 1 +NO3R2pp iso1 b1227 1 +NO3R2pp iso2 b1465 1 +NO3R2pp iso2 b1466 1 +NO3R2pp iso2 b1467 1 +NO3R2pp iso2 b1468 1 +NO3t7pp iso1 b1223 1 +NO3t7pp iso2 b1469 1 +NO3tex iso1 b0241 3 +NO3tex iso2 b0929 3 +NO3tex iso3 b1377 3 +NO3tex iso4 b2215 3 +NODOx iso1 b2552 1 +NODOy iso1 b2552 1 +NOtex iso1 b0241 3 +NOtex iso2 b0929 3 +NOtex iso3 b1377 3 +NOtex iso4 b2215 3 +NOtpp iso1 s0001 1 +NOVBCNtex iso1 s0001 1 +NOVBCNtpp iso1 b0462 3 +NOVBCNtpp iso1 b0463 6 +NOVBCNtpp iso1 b3035 3 +NOVBCNtpp iso2 b0463 6 +NOVBCNtpp iso2 b2470 3 +NOVBCNtpp iso2 b3035 3 +NTD10 iso1 b2744 1 +NTD10pp iso1 b0480 1 +NTD10pp iso2 b4055 4 +NTD11 iso1 b2744 1 +NTD11 iso2 b3399 1 +NTD11pp iso1 b0480 1 +NTD11pp iso2 b4055 4 +NTD12 iso1 b2291 2 +NTD12 iso2 b2361 1 +NTD12 iso3 b2744 1 +NTD12 iso4 b3399 1 +NTD12pp iso1 b0480 1 +NTD12pp iso2 b4055 4 +NTD1 iso1 b2291 2 +NTD1 iso2 b2361 1 +NTD1 iso3 b2744 1 +NTD1 iso4 b4374 1 +NTD1pp iso1 b0480 1 +NTD1pp iso2 b4055 4 +NTD2 iso1 b0675 1 +NTD2 iso2 b2744 1 +NTD2 iso3 b4374 1 +NTD2pp iso1 b0383 1 +NTD2pp iso2 b0480 1 +NTD2pp iso3 b4055 4 +NTD3 iso1 b2291 2 +NTD3 iso2 b2361 1 +NTD3 iso3 b2744 1 +NTD3pp iso1 b0480 1 +NTD3pp iso2 b4055 4 +NTD4 iso1 b0675 1 +NTD4 iso2 b2744 1 +NTD4pp iso1 b0383 1 +NTD4pp iso2 b0480 1 +NTD4pp iso3 b4055 4 +NTD5 iso1 b2291 2 +NTD5 iso2 b2361 1 +NTD5 iso3 b2744 1 +NTD5 iso4 b4374 1 +NTD5pp iso1 b0480 1 +NTD5pp iso2 b4055 4 +NTD6 iso1 b2291 2 +NTD6 iso2 b2361 1 +NTD6 iso3 b2744 1 +NTD6pp iso1 b0480 1 +NTD6pp iso2 b4055 4 +NTD7 iso1 b0675 1 +NTD7 iso2 b2361 1 +NTD7 iso3 b2744 1 +NTD7 iso4 b3399 1 +NTD7pp iso1 b0383 1 +NTD7pp iso2 b0480 1 +NTD7pp iso3 b4055 4 +NTD8 iso1 b2291 2 +NTD8 iso2 b2361 1 +NTD8 iso3 b2744 1 +NTD8 iso4 b3399 1 +NTD8pp iso1 b0480 1 +NTD8pp iso2 b4055 4 +NTD9 iso1 b0675 1 +NTD9 iso2 b2361 1 +NTD9 iso3 b2744 1 +NTD9 iso4 b3399 1 +NTD9pp iso1 b0383 1 +NTD9pp iso2 b0480 1 +NTD9pp iso3 b4055 4 +NTP10 iso1 b4161 1 +NTP10 iso2 b4394 2 +NTP11 iso1 b4394 2 +NTP12 iso1 b4394 2 +NTP1 iso1 b0650 1 +NTP1 iso2 b4161 1 +NTP3 iso1 b2173 1 +NTP3 iso2 b2727 1 +NTP3 iso3 b2918 1 +NTP3 iso4 b3590 1 +NTP3 iso5 b4161 1 +NTP3 iso6 b4173 1 +NTP3 iso7 b4352 1 +NTP3pp iso1 b0980 1 +NTP5 iso1 b4161 1 +NTPP10 iso1 b2954 2 +NTPP11 iso1 b2954 2 +NTPP1 iso1 b0099 1 +NTPP1 iso2 b2781 2 +NTPP2 iso1 b0099 1 +NTPP2 iso2 b2781 2 +NTPP3 iso1 b1759 1 +NTPP3 iso2 b2251 1 +NTPP3 iso3 b2781 2 +NTPP4 iso1 b1759 1 +NTPP4 iso2 b2781 2 +NTPP5 iso1 b1865 1 +NTPP5 iso2 b2781 2 +NTPP6 iso1 b0905 1 +NTPP6 iso2 b2781 2 +NTPP7 iso1 b2251 1 +NTPP7 iso2 b2781 2 +NTPP7 iso3 b3248 2 +NTPP8 iso1 b2781 2 +NTPP8 iso2 b3248 2 +NTPP9 iso1 b2954 2 +NTPTP1 iso1 b0160 4 +NTPTP2 iso1 b0160 4 +NTRIR2x iso1 b3365 1 +NTRIR2x iso1 b3366 1 +NTRIR3pp iso1 b4070 1 +NTRIR3pp iso1 b4071 1 +NTRIR3pp iso1 b4072 1 +NTRIR3pp iso1 b4073 1 +NTRIR4pp iso1 b4070 1 +NTRIR4pp iso1 b4071 1 +NTRIR4pp iso1 b4072 1 +NTRIR4pp iso1 b4073 1 +O16A4COLIPAabctex iso1 b0054 1 +O16A4COLIPAabctex iso1 b0641 1 +O16A4COLIPAabctex iso1 b3199 1 +O16A4COLIPAabctex iso1 b3200 1 +O16A4COLIPAabctex iso1 b3201 1 +O16A4COLIPAabctex iso1 b4261 1 +O16A4COLIPAabctex iso1 b4262 1 +O16A4Lpp iso1 b3622 1 +O16AP1pp iso1 b2027 1 +O16AP1pp iso1 b2035 1 +O16AP2pp iso1 b2027 1 +O16AP2pp iso1 b2035 1 +O16AP3pp iso1 b2027 1 +O16AP3pp iso1 b2035 1 +O16AT iso1 b2033 1 +O16AUNDtpp iso1 b2037 1 +O16GALFT iso1 b2034 1 +O16GLCT1 iso1 b2032 1 +O2Stex iso1 b0241 3 +O2Stex iso2 b0929 3 +O2Stex iso3 b1377 3 +O2Stex iso4 b2215 3 +O2tex iso1 b0241 3 +O2tex iso2 b0929 3 +O2tex iso3 b1377 3 +O2tex iso4 b2215 3 +O2tpp iso1 s0001 1 +OAADC iso1 b1850 3 +OBTFL iso1 b0902 1 +OBTFL iso1 b0903 1 +OBTFL iso2 b0902 1 +OBTFL iso2 b0903 1 +OBTFL iso2 b2579 1 +OBTFL iso3 b0902 1 +OBTFL iso3 b3114 1 +OCBT iso1 b0273 1 +OCBT iso2 b4254 1 +OCDCAtexi iso1 b2344 1 +OCDCEAtexi iso1 b2344 1 +OCTAtex iso1 b0241 3 +OCTAtex iso2 b0929 3 +OCTAtex iso3 b1377 3 +OCTAtex iso4 b2215 3 +OCTDPS iso1 b3187 1 +OCTNLL iso1 b4386 1 +OGMEACPD iso1 b0180 1 +OGMEACPR iso1 b1093 4 +OGMEACPS iso1 b1091 2 +OHPBAT iso1 b0907 2 +OHPHM iso1 b2232 2 +OMBZLM iso1 b3833 1 +OMCDC iso1 s0001 1 +OMMBLHXy iso1 b0662 1 +OMPDC iso1 b1281 2 +OMPHHXy iso1 b2907 1 +OP4ENH iso1 b0350 1 +OPHBDC iso1 b3843 6 +OPHHXy iso1 b2906 4 +OPMEACPD iso1 b0180 1 +OPMEACPR iso1 b1093 4 +OPMEACPS iso1 b2323 2 +ORNabcpp iso1 b2306 2 +ORNabcpp iso1 b2307 1 +ORNabcpp iso1 b2308 1 +ORNabcpp iso1 b2310 1 +ORNDC iso1 b0693 1 +ORNDC iso2 b2965 1 +ORNtex iso1 b0241 3 +ORNtex iso2 b0929 3 +ORNtex iso3 b1377 3 +ORNtex iso4 b2215 3 +OROTt2_2pp iso1 b3528 1 +OROTtex iso1 b0241 3 +OROTtex iso2 b0929 3 +OROTtex iso3 b1377 3 +OROTtex iso4 b2215 3 +ORPT iso1 b3642 2 +OXCDC iso1 b2373 4 +OXCOAHDH iso1 b1387 1 +OXDHCOAT iso1 b1394 1 +OXDHCOAT iso1 b1397 1 +P5CD iso1 b1014 2 +P5CR iso1 b0386 1 +PA120abcpp iso1 b0914 2 +PA140abcpp iso1 b0914 2 +PA141abcpp iso1 b0914 2 +PA160abcpp iso1 b0914 2 +PA161abcpp iso1 b0914 2 +PA180abcpp iso1 b0914 2 +PA181abcpp iso1 b0914 2 +PACALDtex iso1 b0241 3 +PACALDtex iso2 b0929 3 +PACALDtex iso3 b1377 3 +PACALDtex iso4 b2215 3 +PACCOAE iso1 b1388 1 +PACCOAE iso1 b1389 1 +PACCOAE iso1 b1390 1 +PACCOAE iso1 b1391 1 +PACCOAE iso1 b1392 1 +PACCOAL iso1 b1398 1 +PACOAT iso1 b1396 4 +PAI2I iso1 b1518 2 +PAI2T iso1 b1517 10 +PANTS iso1 b0133 2 +PAPA120 iso1 b1278 1 +PAPA120pp iso1 b1278 1 +PAPA140 iso1 b1278 1 +PAPA140pp iso1 b1278 1 +PAPA141 iso1 b1278 1 +PAPA141pp iso1 b1278 1 +PAPA160 iso1 b1278 1 +PAPA160pp iso1 b1278 1 +PAPA161 iso1 b1278 1 +PAPA161pp iso1 b1278 1 +PAPA180 iso1 b1278 1 +PAPA180pp iso1 b1278 1 +PAPA181 iso1 b1278 1 +PAPA181pp iso1 b1278 1 +PAPPT3 iso1 b0087 1 +PAPSR2 iso1 b0849 1 +PAPSR2 iso1 b2762 1 +PAPSR2 iso2 b1064 1 +PAPSR2 iso2 b2762 1 +PAPSR2 iso3 b1654 1 +PAPSR2 iso3 b2762 1 +PAPSR2 iso4 b2762 1 +PAPSR2 iso4 b3610 1 +PAPSR iso1 b2582 1 +PAPSR iso1 b2762 1 +PAPSR iso2 b2762 1 +PAPSR iso2 b3781 1 +PCNO iso1 b3253 2 +PDE1 iso1 b1489 2 +PDE1 iso2 b3032 1 +PDE4 iso1 b1489 2 +PDH iso1 b0114 24 +PDH iso1 b0115 24 +PDH iso1 b0116 12 +PDX5POi iso1 b1638 2 +PDX5PS iso1 b0052 1 +PDX5PS iso1 b2564 1 +PDXPP iso1 b0766 1 +PE120abcpp iso1 b0914 2 +PE140abcpp iso1 b0914 2 +PE141abcpp iso1 b0914 2 +PE160abcpp iso1 b0914 2 +PE161abcpp iso1 b0914 2 +PE180abcpp iso1 b0914 2 +PE181abcpp iso1 b0914 2 +PEAMNOpp iso1 b1386 2 +PEAMNtex iso1 b0241 3 +PEAMNtex iso2 b0929 3 +PEAMNtex iso3 b1377 3 +PEAMNtex iso4 b2215 3 +PERD iso1 b2320 2 +PETNT161pp iso1 b3546 1 +PETNT181pp iso1 b3546 1 +PFK_2 iso1 b3916 4 +PFK_3 iso1 b3916 4 +PFK iso1 b1723 2 +PFK iso2 b3916 4 +PFL iso1 b0902 1 +PFL iso1 b0903 1 +PFL iso2 b0902 1 +PFL iso2 b0903 1 +PFL iso2 b2579 1 +PFL iso3 b0902 1 +PFL iso3 b3114 1 +PFL iso4 b3951 1 +PFL iso4 b3952 1 +PG120abcpp iso1 b0914 2 +PG140abcpp iso1 b0914 2 +PG141abcpp iso1 b0914 2 +PG160abcpp iso1 b0914 2 +PG161abcpp iso1 b0914 2 +PG180abcpp iso1 b0914 2 +PG181abcpp iso1 b0914 2 +PGAMT iso1 b3176 1 +PGCD iso1 b2913 4 +PGI iso1 b4025 2 +PGK iso1 b2926 1 +PGL iso1 b0767 1 +PGLYCP iso1 b3385 1 +PGM iso1 b0755 2 +PGM iso2 b3612 1 +PGMT iso1 b0688 1 +PGMT iso2 b1317 1 +PGMT iso3 b2690 1 +PGP120abcpp iso1 b0914 2 +PGP140abcpp iso1 b0914 2 +PGP141abcpp iso1 b0914 2 +PGP160abcpp iso1 b0914 2 +PGP161abcpp iso1 b0914 2 +PGP180abcpp iso1 b0914 2 +PGP181abcpp iso1 b0914 2 +PGPP120 iso1 b0418 1 +PGPP120 iso2 b1278 1 +PGPP120pp iso1 b0418 1 +PGPP120pp iso2 b1278 1 +PGPP140 iso1 b0418 1 +PGPP140 iso2 b1278 1 +PGPP140pp iso1 b0418 1 +PGPP140pp iso2 b1278 1 +PGPP141 iso1 b0418 1 +PGPP141 iso2 b1278 1 +PGPP141pp iso1 b0418 1 +PGPP141pp iso2 b1278 1 +PGPP160 iso1 b0418 1 +PGPP160 iso2 b1278 1 +PGPP160pp iso1 b0418 1 +PGPP160pp iso2 b1278 1 +PGPP161 iso1 b0418 1 +PGPP161 iso2 b1278 1 +PGPP161pp iso1 b0418 1 +PGPP161pp iso2 b1278 1 +PGPP180 iso1 b0418 1 +PGPP180 iso2 b1278 1 +PGPP180pp iso1 b0418 1 +PGPP180pp iso2 b1278 1 +PGPP181 iso1 b0418 1 +PGPP181 iso2 b1278 1 +PGPP181pp iso1 b0418 1 +PGPP181pp iso2 b1278 1 +PGSA120 iso1 b1912 1 +PGSA140 iso1 b1912 1 +PGSA141 iso1 b1912 1 +PGSA160 iso1 b1912 1 +PGSA161 iso1 b1912 1 +PGSA180 iso1 b1912 1 +PGSA181 iso1 b1912 1 +PHDA iso1 b2873 4 +PHEMEabcpp iso1 b2197 1 +PHEMEabcpp iso1 b2198 1 +PHEMEabcpp iso1 b2199 1 +PHEMEabcpp iso1 b2200 1 +PHEMEabcpp iso1 b2201 2 +PHEt2rpp iso1 b0112 1 +PHEt2rpp iso2 b0576 1 +PHETA1 iso1 b0928 2 +PHETA1 iso2 b3770 6 +PHETA1 iso3 b4054 2 +PHEtex iso1 b0241 3 +PHEtex iso2 b0929 3 +PHEtex iso3 b1377 3 +PHEtex iso4 b2215 3 +PHEtipp iso1 b1473 1 +PHYTSpp iso1 b0980 1 +PIt2rpp iso1 b2987 1 +PIt2rpp iso2 b3493 1 +PItex iso1 b0241 3 +PItex iso2 b0929 3 +PItex iso3 b1377 3 +PItex iso4 b2215 3 +PItpp iso1 b4020 1 +PIuabcpp iso1 b3725 2 +PIuabcpp iso1 b3726 1 +PIuabcpp iso1 b3727 1 +PIuabcpp iso1 b3728 1 +PLIPA1A120pp iso1 b3821 2 +PLIPA1A140pp iso1 b3821 2 +PLIPA1A141pp iso1 b3821 2 +PLIPA1A160pp iso1 b3821 2 +PLIPA1A161pp iso1 b3821 2 +PLIPA1A180pp iso1 b3821 2 +PLIPA1A181pp iso1 b3821 2 +PLIPA1E120pp iso1 b3821 2 +PLIPA1E140pp iso1 b3821 2 +PLIPA1E141pp iso1 b3821 2 +PLIPA1E160pp iso1 b3821 2 +PLIPA1E161pp iso1 b3821 2 +PLIPA1E180pp iso1 b3821 2 +PLIPA1E181pp iso1 b3821 2 +PLIPA1G120pp iso1 b3821 2 +PLIPA1G140pp iso1 b3821 2 +PLIPA1G141pp iso1 b3821 2 +PLIPA1G160pp iso1 b3821 2 +PLIPA1G161pp iso1 b3821 2 +PLIPA1G180pp iso1 b3821 2 +PLIPA1G181pp iso1 b3821 2 +PLIPA2A120pp iso1 b3821 2 +PLIPA2A140pp iso1 b3821 2 +PLIPA2A141pp iso1 b3821 2 +PLIPA2A160pp iso1 b3821 2 +PLIPA2A161pp iso1 b3821 2 +PLIPA2A180pp iso1 b3821 2 +PLIPA2A181pp iso1 b3821 2 +PLIPA2E120pp iso1 b3821 2 +PLIPA2E140pp iso1 b3821 2 +PLIPA2E141pp iso1 b3821 2 +PLIPA2E160pp iso1 b3821 2 +PLIPA2E161pp iso1 b3821 2 +PLIPA2E180pp iso1 b3821 2 +PLIPA2E181pp iso1 b3821 2 +PLIPA2G120pp iso1 b3821 2 +PLIPA2G140pp iso1 b3821 2 +PLIPA2G141pp iso1 b3821 2 +PLIPA2G160pp iso1 b3821 2 +PLIPA2G161pp iso1 b3821 2 +PLIPA2G180pp iso1 b3821 2 +PLIPA2G181pp iso1 b3821 2 +PMANM iso1 b2048 1 +PMDPHT iso1 b0844 1 +PMDPHT iso2 b3812 1 +PMEACPE iso1 b3412 1 +PMPK iso1 b2103 1 +PNSPA iso1 b1103 2 +PNTK iso1 b3974 1 +PNTOt4pp iso1 b3258 1 +PNTOtex iso1 b0241 3 +PNTOtex iso2 b0929 3 +PNTOtex iso3 b1377 3 +PNTOtex iso4 b2215 3 +POAACR iso1 b1010 3 +POR5 iso1 b0684 1 +POR5 iso1 b1378 1 +POR5 iso2 b1378 1 +POR5 iso2 b2895 1 +POX iso1 b0871 4 +PPA2 iso1 b2502 2 +PPA2 iso2 b2744 1 +PPA iso1 b2502 2 +PPA iso2 b2744 1 +PPA iso3 b4226 6 +PPAKr iso1 b3115 2 +PPALtex iso1 b0241 3 +PPALtex iso2 b0929 3 +PPALtex iso3 b1377 3 +PPALtex iso4 b2215 3 +PPAt4pp iso1 b1015 1 +PPAtex iso1 b0241 3 +PPAtex iso2 b0929 3 +PPAtex iso3 b1377 3 +PPAtex iso4 b2215 3 +PPBNGS iso1 b0369 8 +PPCDC iso1 b3639 12 +PPC iso1 b3956 4 +PPCK iso1 b3403 1 +PPCSCT iso1 b2920 1 +PPDOy iso1 b0325 1 +PPGPPDP iso1 b3650 1 +PPK2 iso1 b2501 4 +PPK iso1 b2501 4 +PPM2 iso1 b4383 1 +PPM iso1 b4383 1 +PPNCL2 iso1 b3639 12 +PPNDH iso1 b2599 2 +PPND iso1 b2600 1 +PPPGO3 iso1 b3850 4 +PPPGO iso1 b3850 4 +PPPNDO iso1 b2538 1 +PPPNDO iso1 b2539 1 +PPPNDO iso1 b2540 1 +PPPNDO iso1 b2542 1 +PPPNt2rpp iso1 b2536 1 +PPPNtex iso1 b0241 3 +PPPNtex iso2 b0929 3 +PPPNtex iso3 b1377 3 +PPPNtex iso4 b2215 3 +PPS iso1 b1702 2 +PPTHpp iso1 b0383 1 +PPTtex iso1 b0241 3 +PPTtex iso2 b0929 3 +PPTtex iso3 b1377 3 +PPTtex iso4 b2215 3 +PRAGSr iso1 b4005 1 +PRAIi iso1 b1262 1 +PRAIS iso1 b2499 2 +PRAMPC iso1 b2026 1 +PRASCSi iso1 b2476 3 +PRATPP iso1 b2026 1 +PRCPD iso1 b4092 2 +PRFGS iso1 b2557 1 +PRMICI iso1 b2024 1 +PROabcpp iso1 b2677 2 +PROabcpp iso1 b2678 2 +PROabcpp iso1 b2679 1 +PROD3 iso1 b1014 2 +PROGLYabcpp iso1 b3540 1 +PROGLYabcpp iso1 b3541 1 +PROGLYabcpp iso1 b3542 1 +PROGLYabcpp iso1 b3543 1 +PROGLYabcpp iso1 b3544 1 +PROGLYtex iso1 b0241 3 +PROGLYtex iso2 b0929 3 +PROGLYtex iso3 b1377 3 +PROGLYtex iso4 b2215 3 +PROt2rpp iso1 b0402 1 +PROt2rpp iso2 b4111 1 +PROt4pp iso1 b1015 1 +PROtex iso1 b0241 3 +PROtex iso2 b0929 3 +PROtex iso3 b1377 3 +PROtex iso4 b2215 3 +PRPPS iso1 b1207 6 +PSCLYSt2pp iso1 b3370 1 +PSCLYStex iso1 b0241 3 +PSCLYStex iso2 b0929 3 +PSCLYStex iso3 b1377 3 +PSCLYStex iso4 b2215 3 +PSCVT iso1 b0908 1 +PSD120 iso1 b4160 1 +PSD140 iso1 b4160 1 +PSD141 iso1 b4160 1 +PSD160 iso1 b4160 1 +PSD161 iso1 b4160 1 +PSD180 iso1 b4160 1 +PSD181 iso1 b4160 1 +PSERtex iso1 b0241 3 +PSERtex iso2 b0929 3 +PSERtex iso3 b1377 3 +PSERtex iso4 b2215 3 +PSERT iso1 b0907 2 +PSP_L iso1 b4388 1 +PSP_Lpp iso1 b0383 1 +PSP_Lpp iso2 b4055 4 +PSSA120 iso1 b2585 1 +PSSA140 iso1 b2585 1 +PSSA141 iso1 b2585 1 +PSSA160 iso1 b2585 1 +PSSA161 iso1 b2585 1 +PSSA180 iso1 b2585 1 +PSSA181 iso1 b2585 1 +PSURIK iso1 b2166 1 +PSURItex iso1 b0241 3 +PSURItex iso2 b0929 3 +PSURItex iso3 b1377 3 +PSURItex iso4 b2215 3 +PSURItpp iso1 b2164 1 +PTA2 iso1 b2297 6 +PTAr iso1 b2297 6 +PTAr iso2 b2458 2 +PTHRpp iso1 b0383 1 +PTHRpp iso2 b4055 4 +PTPATi iso1 b3634 6 +PTRCabcpp iso1 b0854 1 +PTRCabcpp iso1 b0855 2 +PTRCabcpp iso1 b0856 1 +PTRCabcpp iso1 b0857 1 +PTRCabcpp iso2 b1123 1 +PTRCabcpp iso2 b1124 1 +PTRCabcpp iso2 b1125 1 +PTRCabcpp iso2 b1126 2 +PTRCabcpp iso3 b1440 1 +PTRCabcpp iso3 b1441 2 +PTRCabcpp iso3 b1442 1 +PTRCabcpp iso3 b1443 1 +PTRCORNt7pp iso1 b0692 1 +PTRCt2pp iso1 b0692 1 +PTRCt2pp iso2 b1296 1 +PTRCt2pp iso3 b2014 1 +PTRCTA iso1 b3073 2 +PTRCtex iso1 b0241 3 +PTRCtex iso2 b0929 3 +PTRCtex iso3 b1377 3 +PTRCtex iso4 b2215 3 +PUACGAMS iso1 b1021 1 +PUACGAMS iso1 b1022 1 +PUACGAMtr iso1 b1021 1 +PUACGAMtr iso1 b1022 1 +PUNP1 iso1 b4384 6 +PUNP2 iso1 b4384 6 +PUNP3 iso1 b2407 1 +PUNP3 iso2 b4384 6 +PUNP4 iso1 b2407 1 +PUNP4 iso2 b4384 6 +PUNP5 iso1 b2407 1 +PUNP5 iso2 b4384 6 +PUNP6 iso1 b2407 1 +PUNP6 iso2 b4384 6 +PUNP7 iso1 b2407 1 +PYAM5PO iso1 b1638 2 +PYDAMK iso1 b2418 2 +PYDAMtex iso1 b0241 3 +PYDAMtex iso2 b0929 3 +PYDAMtex iso3 b1377 3 +PYDAMtex iso4 b2215 3 +PYDXK iso1 b1636 2 +PYDXK iso2 b2418 2 +PYDXNK iso1 b2418 2 +PYDXNtex iso1 b0241 3 +PYDXNtex iso2 b0929 3 +PYDXNtex iso3 b1377 3 +PYDXNtex iso4 b2215 3 +PYDXPP iso1 b0446 1 +PYDXPP iso2 b0675 1 +PYDXPP iso3 b0766 1 +PYDXPP iso4 b3826 1 +PYDXtex iso1 b0241 3 +PYDXtex iso2 b0929 3 +PYDXtex iso3 b1377 3 +PYDXtex iso4 b2215 3 +PYK2 iso1 b1854 4 +PYK3 iso1 b1854 4 +PYK4 iso1 b1854 4 +PYK6 iso1 b1854 4 +PYK iso1 b1676 4 +PYK iso2 b1854 4 +PYNP2r iso1 b3831 6 +PYROX iso1 b1007 1 +PYROX iso1 b1012 1 +PYRtex iso1 b0241 3 +PYRtex iso2 b0929 3 +PYRtex iso3 b1377 3 +PYRtex iso4 b2215 3 +QMO2 iso1 b3029 2 +QMO3 iso1 b3029 2 +QUIN2tex iso1 b0241 3 +QUIN2tex iso2 b0929 3 +QUIN2tex iso3 b1377 3 +QUIN2tex iso4 b2215 3 +QUINDH iso1 b1692 1 +QUINDHyi iso1 b1692 1 +QULNS iso1 b0750 1 +R15BPK iso1 b4094 1 +R5PP iso1 b0675 1 +R5PP iso2 b0822 2 +R5PP iso3 b2293 1 +R5PP iso4 b2690 1 +R5PP iso5 b3697 2 +R5PPpp iso1 b0383 1 +R5PPpp iso2 b4055 4 +R5Ptex iso1 b0241 3 +R5Ptex iso2 b0929 3 +R5Ptex iso3 b1377 3 +R5Ptex iso4 b2215 3 +RBFK iso1 b0025 1 +RBFSa iso1 b0415 1 +RBFSb iso1 b1662 3 +RBK iso1 b3752 2 +RBK_L1 iso1 b0063 1 +RBP4E iso1 b0061 4 +RBP4E iso2 b3583 1 +RBP4E iso3 b4198 1 +REPHACCOAI iso1 b1394 1 +RFAMPtex iso1 s0001 1 +RFAMPtpp iso1 b0462 3 +RFAMPtpp iso1 b0463 6 +RFAMPtpp iso1 b3035 3 +RFAMPtpp iso2 b0463 6 +RFAMPtpp iso2 b2470 3 +RFAMPtpp iso2 b3035 3 +RHAT1 iso1 b3629 1 +RHCCE iso1 b2687 2 +RHMND iso1 b2247 8 +RIBabcpp iso2 b4086 2 +RIBabcpp iso2 b4087 2 +RIBabcpp iso2 b4088 1 +RIBabcpp iso3 b4227 1 +RIBabcpp iso3 b4230 1 +RIBabcpp iso3 b4231 1 +RIBabcpp iso3 b4485 2 +RIBtex iso1 b0241 3 +RIBtex iso2 b0929 3 +RIBtex iso3 b1377 3 +RIBtex iso4 b2215 3 +RMI iso1 b3903 4 +RMK iso1 b3904 1 +RMNtex iso1 b0241 3 +RMNtex iso2 b0929 3 +RMNtex iso3 b1377 3 +RMNtex iso4 b2215 3 +RMNtpp iso1 b3907 1 +RMPA iso1 b3902 4 +RNDR1b iso1 b0849 1 +RNDR1b iso1 b2675 1 +RNDR1b iso1 b2676 1 +RNDR1b iso2 b1064 1 +RNDR1b iso2 b2675 1 +RNDR1b iso2 b2676 1 +RNDR1b iso3 b1654 1 +RNDR1b iso3 b2675 1 +RNDR1b iso3 b2676 1 +RNDR1b iso4 b2675 1 +RNDR1b iso4 b2676 1 +RNDR1b iso4 b3610 1 +RNDR1 iso1 b2234 1 +RNDR1 iso1 b2235 1 +RNDR1 iso1 b2582 1 +RNDR1 iso2 b2234 1 +RNDR1 iso2 b2235 1 +RNDR1 iso2 b3781 1 +RNDR2b iso1 b0849 1 +RNDR2b iso1 b2675 1 +RNDR2b iso1 b2676 1 +RNDR2b iso2 b1064 1 +RNDR2b iso2 b2675 1 +RNDR2b iso2 b2676 1 +RNDR2b iso3 b1654 1 +RNDR2b iso3 b2675 1 +RNDR2b iso3 b2676 1 +RNDR2b iso4 b2675 1 +RNDR2b iso4 b2676 1 +RNDR2b iso4 b3610 1 +RNDR2 iso1 b2234 1 +RNDR2 iso1 b2235 1 +RNDR2 iso1 b2582 1 +RNDR2 iso2 b2234 1 +RNDR2 iso2 b2235 1 +RNDR2 iso2 b3781 1 +RNDR3b iso1 b0849 1 +RNDR3b iso1 b2675 1 +RNDR3b iso1 b2676 1 +RNDR3b iso2 b1064 1 +RNDR3b iso2 b2675 1 +RNDR3b iso2 b2676 1 +RNDR3b iso3 b1654 1 +RNDR3b iso3 b2675 1 +RNDR3b iso3 b2676 1 +RNDR3b iso4 b2675 1 +RNDR3b iso4 b2676 1 +RNDR3b iso4 b3610 1 +RNDR3 iso1 b2234 1 +RNDR3 iso1 b2235 1 +RNDR3 iso1 b2582 1 +RNDR3 iso2 b2234 1 +RNDR3 iso2 b2235 1 +RNDR3 iso2 b3781 1 +RNDR4b iso1 b0849 1 +RNDR4b iso1 b2675 1 +RNDR4b iso1 b2676 1 +RNDR4b iso2 b1064 1 +RNDR4b iso2 b2675 1 +RNDR4b iso2 b2676 1 +RNDR4b iso3 b1654 1 +RNDR4b iso3 b2675 1 +RNDR4b iso3 b2676 1 +RNDR4b iso4 b2675 1 +RNDR4b iso4 b2676 1 +RNDR4b iso4 b3610 1 +RNDR4 iso1 b2234 1 +RNDR4 iso1 b2235 1 +RNDR4 iso1 b2582 1 +RNDR4 iso2 b2234 1 +RNDR4 iso2 b2235 1 +RNDR4 iso2 b3781 1 +RNTR1c2 iso1 b0684 1 +RNTR1c2 iso1 b3924 1 +RNTR1c2 iso1 b4237 1 +RNTR1c2 iso1 b4238 1 +RNTR1c2 iso2 b0684 1 +RNTR1c2 iso2 b4238 1 +RNTR1c2 iso3 b2895 1 +RNTR1c2 iso3 b3924 1 +RNTR1c2 iso3 b4237 1 +RNTR1c2 iso3 b4238 1 +RNTR1c2 iso4 b2895 1 +RNTR1c2 iso4 b4238 1 +RNTR2c2 iso1 b0684 1 +RNTR2c2 iso1 b3924 1 +RNTR2c2 iso1 b4237 1 +RNTR2c2 iso1 b4238 1 +RNTR2c2 iso2 b0684 1 +RNTR2c2 iso2 b4238 1 +RNTR2c2 iso3 b2895 1 +RNTR2c2 iso3 b3924 1 +RNTR2c2 iso3 b4237 1 +RNTR2c2 iso3 b4238 1 +RNTR2c2 iso4 b2895 1 +RNTR2c2 iso4 b4238 1 +RNTR3c2 iso1 b0684 1 +RNTR3c2 iso1 b3924 1 +RNTR3c2 iso1 b4237 1 +RNTR3c2 iso1 b4238 1 +RNTR3c2 iso2 b0684 1 +RNTR3c2 iso2 b4238 1 +RNTR3c2 iso3 b2895 1 +RNTR3c2 iso3 b3924 1 +RNTR3c2 iso3 b4237 1 +RNTR3c2 iso3 b4238 1 +RNTR3c2 iso4 b2895 1 +RNTR3c2 iso4 b4238 1 +RNTR4c2 iso1 b0684 1 +RNTR4c2 iso1 b3924 1 +RNTR4c2 iso1 b4237 1 +RNTR4c2 iso1 b4238 1 +RNTR4c2 iso2 b0684 1 +RNTR4c2 iso2 b4238 1 +RNTR4c2 iso3 b2895 1 +RNTR4c2 iso3 b3924 1 +RNTR4c2 iso3 b4237 1 +RNTR4c2 iso3 b4238 1 +RNTR4c2 iso4 b2895 1 +RNTR4c2 iso4 b4238 1 +RPE iso1 b3386 1 +RPI iso1 b2914 2 +RPI iso2 b4090 2 +RPNTPH iso1 b4095 1 +RU5PP iso1 b2293 1 +RZ5PP iso1 b0638 1 +S2FE2SR iso1 b1679 1 +S2FE2SR iso1 b1680 1 +S2FE2SR iso1 b1681 1 +S2FE2SR iso1 b1682 1 +S2FE2SR iso1 b1683 1 +S2FE2SS2 iso1 b1679 1 +S2FE2SS2 iso1 b1680 1 +S2FE2SS2 iso1 b1681 1 +S2FE2SS2 iso1 b1682 1 +S2FE2SS2 iso1 b1683 1 +S2FE2SS iso1 b1679 1 +S2FE2SS iso1 b1680 1 +S2FE2SS iso1 b1681 1 +S2FE2SS iso1 b1682 1 +S2FE2SS iso1 b1683 1 +S2FE2ST iso1 b1681 1 +S2FE2ST iso1 b1682 1 +S2FE2ST iso1 b1683 1 +S2FE2ST iso1 b1684 1 +S4FE4SR iso1 b1681 1 +S4FE4SR iso1 b1682 2 +S4FE4SR iso1 b1683 1 +S4FE4ST iso1 b1681 1 +S4FE4ST iso1 b1682 1 +S4FE4ST iso1 b1683 1 +S4FE4ST iso1 b1684 1 +S7PI iso1 b0222 4 +SADH iso1 b1745 2 +SADT2 iso1 b2751 1 +SADT2 iso1 b2752 1 +SARCOX iso1 b1059 1 +SBTPD iso1 b2705 4 +SBTptspp iso1 b2415 1 +SBTptspp iso1 b2416 1 +SBTptspp iso1 b2702 1 +SBTptspp iso1 b2703 1 +SBTptspp iso1 b2704 1 +SBTtex iso1 b0241 3 +SBTtex iso2 b0929 3 +SBTtex iso3 b1377 3 +SBTtex iso4 b2215 3 +SCYSDS iso1 b1679 1 +SCYSDS iso1 b1680 1 +SDPDS iso1 b2472 2 +SDPTA iso1 b0907 2 +SDPTA iso2 b1302 1 +SDPTA iso3 b1748 1 +SDPTA iso4 b2662 4 +SDPTA iso5 b3359 2 +SELabcpp iso1 b2422 2 +SELabcpp iso1 b2423 1 +SELabcpp iso1 b2424 1 +SELabcpp iso1 b2425 1 +SELabcpp iso2 b2422 2 +SELabcpp iso2 b2423 1 +SELabcpp iso2 b2424 1 +SELabcpp iso2 b3917 1 +SELNPS iso1 b1764 2 +SELR iso1 b1587 1 +SELR iso1 b1588 1 +SELR iso1 b1589 1 +SELR iso1 b1590 1 +SELtex iso1 b0241 3 +SELtex iso2 b0929 3 +SELtex iso3 b1377 3 +SELtex iso4 b2215 3 +SEPHCHCS iso1 b2264 2 +SERASr iso1 b0586 1 +SERAT iso1 b3607 6 +SERD_D iso1 b2366 1 +SERD_L iso1 b1814 1 +SERD_L iso2 b2797 1 +SERD_L iso3 b3117 1 +SERD_L iso4 b3708 4 +SERD_L iso5 b4471 1 +SERt2rpp iso1 b2796 1 +SERt2rpp iso2 b3116 1 +SERt4pp iso1 b3089 1 +SERtex iso1 b0241 3 +SERtex iso2 b0929 3 +SERtex iso3 b1377 3 +SERtex iso4 b2215 3 +SERtpp iso1 b1533 1 +SFGTHi iso1 b0355 1 +SFGTHi iso2 b2154 4 +SGDS iso1 b1744 1 +SGSAD iso1 b1746 1 +SHCHCS3 iso1 b2263 1 +SHCHD2 iso1 b3368 1 +SHCHF iso1 b3368 1 +SHGO iso1 b2660 1 +SHK3Dr iso1 b1692 1 +SHK3Dr iso2 b3281 1 +SHKK iso1 b0388 1 +SHKK iso2 b3390 1 +SHSL1 iso1 b3939 4 +SKMt2pp iso1 b1981 1 +SKMtex iso1 b0241 3 +SKMtex iso2 b0929 3 +SKMtex iso3 b1377 3 +SKMtex iso4 b2215 3 +SLNTabcpp iso1 b2422 2 +SLNTabcpp iso1 b2423 1 +SLNTabcpp iso1 b2424 1 +SLNTabcpp iso1 b2425 1 +SLNTabcpp iso2 b2422 2 +SLNTabcpp iso2 b2423 1 +SLNTabcpp iso2 b2424 1 +SLNTabcpp iso2 b3917 1 +SLNTtex iso1 b0241 3 +SLNTtex iso2 b0929 3 +SLNTtex iso3 b1377 3 +SLNTtex iso4 b2215 3 +SO2tex iso1 b0241 3 +SO2tex iso2 b0929 3 +SO2tex iso3 b1377 3 +SO2tex iso4 b2215 3 +SO2tpp iso1 s0001 1 +SO3tex iso1 b0241 3 +SO3tex iso2 b0929 3 +SO3tex iso3 b1377 3 +SO3tex iso4 b2215 3 +SO4t2pp iso1 b2413 1 +SO4tex iso1 b0241 3 +SO4tex iso2 b0929 3 +SO4tex iso3 b1377 3 +SO4tex iso4 b2215 3 +SOTA iso1 b1748 1 +SPMDabcpp iso1 b1123 1 +SPMDabcpp iso1 b1124 1 +SPMDabcpp iso1 b1125 1 +SPMDabcpp iso1 b1126 2 +SPMDabcpp iso2 b1440 1 +SPMDabcpp iso2 b1441 2 +SPMDabcpp iso2 b1442 1 +SPMDabcpp iso2 b1443 1 +SPMDAT1 iso1 b1584 12 +SPMDAT2 iso1 b1584 12 +SPMDt3pp iso1 b1599 1 +SPMDt3pp iso1 b1600 1 +SPMDtex iso1 b0241 3 +SPMDtex iso2 b0929 3 +SPMDtex iso3 b1377 3 +SPMDtex iso4 b2215 3 +SPMS iso1 b0121 2 +SPODM iso1 b1656 2 +SPODM iso2 b3908 2 +SPODMpp iso1 b1646 1 +SQGH iso1 b3878 1 +SQtex iso1 b3875 1 +SQtr iso1 b3876 1 +SQVOSI iso1 b3880 6 +SSALx iso1 b1525 2 +SSALy iso1 b1525 2 +SSALy iso2 b2661 4 +SUCASPtpp iso1 b0621 1 +SUCASPtpp iso2 b4123 1 +SUCASPtpp iso3 b4138 1 +SUCBZL iso1 b2260 1 +SUCBZS iso1 b2261 1 +SUCCt1pp iso1 b1206 1 +SUCCt2_2pp iso1 b0010 1 +SUCCt2_2pp iso2 b3528 1 +SUCCt2_3pp iso1 b4123 1 +SUCCt2_3pp iso2 b4138 1 +SUCCtex iso1 b0241 3 +SUCCtex iso2 b0929 3 +SUCCtex iso3 b1377 3 +SUCCtex iso4 b2215 3 +SUCDi iso1 b0721 3 +SUCDi iso1 b0722 3 +SUCDi iso1 b0723 3 +SUCDi iso1 b0724 3 +SUCFUMtpp iso1 b0621 1 +SUCFUMtpp iso2 b4123 1 +SUCFUMtpp iso3 b4138 1 +SUCMALtpp iso1 b0621 1 +SUCMALtpp iso2 b4123 1 +SUCMALtpp iso3 b4138 1 +SUCOAS iso1 b0728 2 +SUCOAS iso1 b0729 2 +SUCptspp iso1 b2415 1 +SUCptspp iso1 b2416 1 +SUCptspp iso1 b2417 1 +SUCptspp iso1 b2429 1 +SUCRtex iso1 b0241 3 +SUCRtex iso2 b0929 3 +SUCRtex iso3 b1377 3 +SUCRtex iso4 b2215 3 +SUCTARTtpp iso1 b4123 1 +SULabcpp iso1 b0763 1 +SULabcpp iso1 b0764 2 +SULabcpp iso1 b0765 2 +SULabcpp iso2 b2422 2 +SULabcpp iso2 b2423 1 +SULabcpp iso2 b2424 1 +SULabcpp iso2 b2425 1 +SULabcpp iso3 b2422 2 +SULabcpp iso3 b2423 1 +SULabcpp iso3 b2424 1 +SULabcpp iso3 b3917 1 +SULFACabcpp iso1 b0933 2 +SULFACabcpp iso1 b0934 2 +SULFACabcpp iso1 b0936 1 +SULFACtex iso1 b0241 3 +SULFACtex iso2 b0929 3 +SULFACtex iso3 b1377 3 +SULFACtex iso4 b2215 3 +SULR iso1 b2763 4 +SULR iso1 b2764 8 +T2DECAI iso1 b0954 2 +TAGURr iso1 b1521 1 +TALA iso1 b0008 2 +TALA iso2 b2464 2 +TARTD iso1 b3061 2 +TARTD iso1 b3062 2 +TARTRDtex iso1 b0241 3 +TARTRDtex iso2 b0929 3 +TARTRDtex iso3 b1377 3 +TARTRDtex iso4 b2215 3 +TARTRt7pp iso1 b3063 1 +TARTRtex iso1 b0241 3 +TARTRtex iso2 b0929 3 +TARTRtex iso3 b1377 3 +TARTRtex iso4 b2215 3 +TARTt2_3pp iso1 b4123 1 +TAUDO iso1 b0368 2 +TAURabcpp iso1 b0365 1 +TAURabcpp iso1 b0366 2 +TAURabcpp iso1 b0367 2 +TAURtex iso1 b0241 3 +TAURtex iso2 b0929 3 +TAURtex iso3 b1377 3 +TAURtex iso4 b2215 3 +TCYNTtex iso1 b0241 3 +TCYNTtex iso2 b0929 3 +TCYNTtex iso3 b1377 3 +TCYNTtex iso4 b2215 3 +TDPADGAT iso1 b3790 2 +TDPAGTA iso1 b3791 4 +TDPDRE iso1 b2038 2 +TDPDRR iso1 b2040 2 +TDPGDH iso1 b2041 2 +TDPGDH iso2 b3788 2 +TDP iso1 b1134 1 +TDSK iso1 b0915 1 +TDSR1 iso1 b2893 1 +TDSR1 iso1 b4136 1 +TDSR2 iso1 b0604 1 +TDSR2 iso1 b4136 1 +TEO2M iso1 b1430 2 +TGBPA iso1 b2095 1 +TGBPA iso1 b2096 1 +TGBPA iso2 b3132 1 +TGBPA iso2 b3137 1 +THD2pp iso1 b1602 1 +THD2pp iso1 b1603 1 +THDPS iso1 b0166 1 +THFAT iso1 b2551 2 +THIORDXi iso1 b1710 1 +THIORDXi iso2 b2480 1 +THIORDXi iso2 b2582 1 +THIORDXi iso3 b2480 1 +THIORDXi iso3 b3781 1 +THMabcpp iso1 b0066 2 +THMabcpp iso1 b0067 2 +THMabcpp iso1 b0068 1 +THMDt2pp_copy1 iso1 b2393 1 +THMDt2pp_copy1 iso2 b2964 1 +THMDt2pp_copy2 iso1 b2406 1 +THMDtex iso1 b0241 3 +THMDtex iso2 b0929 3 +THMDtex iso3 b1377 3 +THMDtex iso4 b2215 3 +THMtex iso1 b0241 3 +THMtex iso2 b0929 3 +THMtex iso3 b1377 3 +THMtex iso4 b2215 3 +THRA2 iso1 b0870 4 +THRA2 iso2 b2551 2 +THRabcpp iso1 b3454 1 +THRabcpp iso1 b3455 1 +THRabcpp iso1 b3456 1 +THRabcpp iso1 b3457 1 +THRabcpp iso1 b3460 1 +THRA iso1 b0870 4 +THRA iso2 b2551 2 +THRD iso1 b3589 1 +THRD iso2 b3616 4 +THRD_L iso1 b3117 1 +THRD_L iso2 b3772 4 +THRPtex iso1 b0241 3 +THRPtex iso2 b0929 3 +THRPtex iso3 b1377 3 +THRPtex iso4 b2215 3 +THRS iso1 b0004 1 +THRt2pp iso1 b0813 1 +THRt2pp iso2 b3823 1 +THRt2rpp iso1 b3116 1 +THRt4pp iso1 b3089 1 +THRtex iso1 b0241 3 +THRtex iso2 b0929 3 +THRtex iso3 b1377 3 +THRtex iso4 b2215 3 +THYMtex iso1 b0241 3 +THYMtex iso2 b0929 3 +THYMtex iso3 b1377 3 +THYMtex iso4 b2215 3 +THZPSN3 iso1 b0423 1 +THZPSN3 iso1 b2530 1 +THZPSN3 iso1 b3990 1 +THZPSN3 iso1 b3992 1 +THZPSN3 iso1 b4407 1 +TKT1 iso1 b2465 2 +TKT1 iso2 b2935 2 +TKT2 iso1 b2465 2 +TKT2 iso2 b2935 2 +TMAOR1 iso1 b0894 1 +TMAOR1 iso1 b0895 1 +TMAOR1 iso1 b0896 1 +TMAOR1pp iso1 b0996 1 +TMAOR1pp iso1 b0997 1 +TMAOR2 iso1 b0894 1 +TMAOR2 iso1 b0895 1 +TMAOR2 iso1 b0896 1 +TMAOR2pp iso1 b0996 1 +TMAOR2pp iso1 b0997 1 +TMAOtex iso1 b0241 3 +TMAOtex iso2 b0929 3 +TMAOtex iso3 b1377 3 +TMAOtex iso4 b2215 3 +TMAtex iso1 b0241 3 +TMAtex iso2 b0929 3 +TMAtex iso3 b1377 3 +TMAtex iso4 b2215 3 +TMDK1 iso1 b1238 4 +TMDPP iso1 b4382 2 +TMDS iso1 b2827 2 +TMK iso1 b1106 1 +TMPK iso1 b0417 1 +TMPPP iso1 b3993 1 +TPI iso1 b3919 2 +TPRDCOAS iso1 b0613 1 +TRDR iso1 b0888 1 +TRDR iso1 b2582 1 +TRDR iso2 b0888 1 +TRDR iso2 b3781 1 +TRE6PH iso1 b4239 1 +TRE6PP iso1 b1897 1 +TRE6PS iso1 b1896 4 +TREH iso1 b3519 1 +TREHpp iso1 b1197 1 +TREptspp iso1 b2415 1 +TREptspp iso1 b2416 1 +TREptspp iso1 b2417 1 +TREptspp iso1 b4240 1 +TREtex iso1 b0241 3 +TREtex iso2 b0929 3 +TREtex iso3 b1377 3 +TREtex iso4 b2215 3 +TRPAS2 iso1 b3708 4 +TRPS1 iso1 b1260 2 +TRPS1 iso1 b1261 2 +TRPS2 iso1 b1260 2 +TRPS2 iso1 b1261 2 +TRPS3 iso1 b1260 2 +TRPS3 iso1 b1261 2 +TRPt2rpp iso1 b0112 1 +TRPt2rpp iso2 b3161 1 +TRPt2rpp iso3 b3709 1 +TRPtex iso1 b0241 3 +TRPtex iso2 b0929 3 +TRPtex iso3 b1377 3 +TRPtex iso4 b2215 3 +TRPtipp iso1 b1473 1 +TRSARr iso1 b0509 1 +TRSARr iso2 b3125 1 +TSULabcpp iso1 b2422 2 +TSULabcpp iso1 b2423 1 +TSULabcpp iso1 b2424 1 +TSULabcpp iso1 b2425 1 +TSULabcpp iso2 b2422 2 +TSULabcpp iso2 b2423 1 +TSULabcpp iso2 b2424 1 +TSULabcpp iso2 b3917 1 +TSULtex iso1 b0241 3 +TSULtex iso2 b0929 3 +TSULtex iso3 b1377 3 +TSULtex iso4 b2215 3 +TTDCAtexi iso1 b2344 1 +TTDCEAtexi iso1 b2344 1 +TTRCYCtex iso1 b0241 3 +TTRCYCtex iso2 b0929 3 +TTRCYCtex iso3 b1377 3 +TTRCYCtex iso4 b2215 3 +TTRCYCtpp iso1 b0462 3 +TTRCYCtpp iso1 b0463 6 +TTRCYCtpp iso1 b3035 3 +TTRCYCtpp iso2 b0463 6 +TTRCYCtpp iso2 b2470 3 +TTRCYCtpp iso2 b3035 3 +TUNGSabcpp iso1 b0763 1 +TUNGSabcpp iso1 b0764 2 +TUNGSabcpp iso1 b0765 2 +TUNGStex iso1 b0241 3 +TUNGStex iso2 b0929 3 +TUNGStex iso3 b1377 3 +TUNGStex iso4 b2215 3 +TYMtex iso1 b0241 3 +TYMtex iso2 b0929 3 +TYMtex iso3 b1377 3 +TYMtex iso4 b2215 3 +TYRL iso1 b3991 4 +TYROXDApp iso1 b1386 2 +TYRPpp iso1 b4055 4 +TYRPtex iso1 b0241 3 +TYRPtex iso2 b0929 3 +TYRPtex iso3 b1377 3 +TYRPtex iso4 b2215 3 +TYRt2rpp iso1 b0112 1 +TYRt2rpp iso2 b1907 1 +TYRTA iso1 b0928 2 +TYRTA iso2 b3770 6 +TYRTA iso3 b4054 2 +TYRtex iso1 b0241 3 +TYRtex iso2 b0929 3 +TYRtex iso3 b1377 3 +TYRtex iso4 b2215 3 +TYRtipp iso1 b1473 1 +U23GAAT iso1 b0179 3 +UAAGDS iso1 b0085 1 +UACGALPpp iso1 b0480 1 +UACGAMPpp iso1 b0480 1 +UACGAMtex iso1 b0241 3 +UACGAMtex iso2 b0929 3 +UACGAMtex iso3 b1377 3 +UACGAMtex iso4 b2215 3 +UACMAMO iso1 b3787 2 +UAG2E iso1 b3786 2 +UAGAAT iso1 b0181 1 +UAGAAT iso1 b1094 1 +UAGCVT iso1 b3189 1 +UAGDP iso1 b3730 3 +UAGPT3 iso1 b0090 2 +UAMAGS iso1 b0088 1 +UAMAS iso1 b0091 1 +UAPGR iso1 b3972 1 +UDCPDP iso1 b0841 1 +UDCPDP iso2 b1278 1 +UDCPDP iso3 b3057 1 +UDCPDPpp iso1 b0841 1 +UDCPDPpp iso2 b1278 1 +UDCPDPpp iso3 b3057 1 +UDCPDPS iso1 b0174 2 +UDPACGALtex iso1 b0241 3 +UDPACGALtex iso2 b0929 3 +UDPACGALtex iso3 b1377 3 +UDPACGALtex iso4 b2215 3 +UDPG4E iso1 b0759 2 +UDPGALM iso1 b2036 2 +UDPGALPpp iso1 b0480 1 +UDPGALtex iso1 b0241 3 +UDPGALtex iso2 b0929 3 +UDPGALtex iso3 b1377 3 +UDPGALtex iso4 b2215 3 +UDPGDC iso1 b2255 6 +UDPGD iso1 b2028 1 +UDPGLCURtex iso1 b0241 3 +UDPGLCURtex iso2 b0929 3 +UDPGLCURtex iso3 b1377 3 +UDPGLCURtex iso4 b2215 3 +UDPGPpp iso1 b0480 1 +UDPGPT iso1 b2047 1 +UDPGtex iso1 b0241 3 +UDPGtex iso2 b0929 3 +UDPGtex iso3 b1377 3 +UDPGtex iso4 b2215 3 +UDPKAAT iso1 b2253 2 +UGCIAMH iso1 b0515 1 +UGLCURPpp iso1 b0480 1 +UGLT iso1 b0758 2 +UGLYCH iso1 b0505 2 +UGMDDS iso1 b0086 1 +UHGADA iso1 b0096 1 +ULA4NFT iso1 b2255 6 +ULA4Ntppi iso1 b2258 1 +ULA4Ntppi iso1 b4544 1 +UM3PL iso1 b4233 1 +UM4PCP iso1 b1192 1 +UM4PL iso1 b4233 1 +UMPK iso1 b0171 6 +UMPK iso2 b0910 1 +UMPtex iso1 b0241 3 +UMPtex iso2 b0929 3 +UMPtex iso3 b1377 3 +UMPtex iso4 b2215 3 +UPLA4FNF iso1 b2256 1 +UPLA4FNT iso1 b2254 1 +UPP3MT iso1 b3368 1 +UPP3S iso1 b3804 1 +UPPDC1 iso1 b3997 2 +UPPRT iso1 b2498 2 +URACPAH iso1 b1011 1 +URAt2pp iso1 b1006 1 +URAt2pp iso2 b2497 1 +URATEtex iso1 b0241 3 +URATEtex iso2 b0929 3 +URATEtex iso3 b1377 3 +URATEtex iso4 b2215 3 +URATEtpp iso1 b2888 1 +URAtex iso1 b0241 3 +URAtex iso2 b0929 3 +URAtex iso3 b1377 3 +URAtex iso4 b2215 3 +URDGLYCD iso1 b0517 2 +UREAtex iso1 b0241 3 +UREAtex iso2 b0929 3 +UREAtex iso3 b1377 3 +UREAtex iso4 b2215 3 +UREAtpp iso1 b3927 4 +URIH iso1 b0030 1 +URIH iso2 b0651 1 +URIH iso3 b2162 4 +URIK1 iso1 b2066 4 +URIK2 iso1 b2066 4 +URIt2pp_copy1 iso1 b2393 1 +URIt2pp_copy1 iso2 b2964 1 +URIt2pp_copy2 iso1 b2406 1 +URItex iso1 b0411 1 +USHD iso1 b0524 1 +VALabcpp iso1 b3454 1 +VALabcpp iso1 b3455 1 +VALabcpp iso1 b3456 1 +VALabcpp iso1 b3457 1 +VALabcpp iso1 b3460 1 +VALt2rpp iso1 b0401 1 +VALt3pp iso1 b2682 1 +VALt3pp iso1 b2683 1 +VALt3pp iso2 b4141 1 +VALTA iso1 b3770 6 +VALtex iso1 b0241 3 +VALtex iso2 b0929 3 +VALtex iso3 b1377 3 +VALtex iso4 b2215 3 +VPAMTr iso1 b3572 2 +WCOS iso1 b0827 2 +X5PL3E iso1 b3582 1 +X5PL3E iso2 b4197 1 +XAND iso1 b2866 1 +XAND iso1 b2867 1 +XAND iso1 b2868 1 +XANt2pp iso1 b2882 1 +XANt2pp iso2 b2888 1 +XANt2pp iso3 b3654 1 +XANtex iso1 b0241 3 +XANtex iso2 b0929 3 +XANtex iso3 b1377 3 +XANtex iso4 b2215 3 +XMPtex iso1 b0241 3 +XMPtex iso2 b0929 3 +XMPtex iso3 b1377 3 +XMPtex iso4 b2215 3 +XPPT iso1 b0238 4 +XTSNH iso1 b0030 1 +XTSNt2rpp iso1 b2406 1 +XTSNtex iso1 b0241 3 +XTSNtex iso2 b0929 3 +XTSNtex iso3 b1377 3 +XTSNtex iso4 b2215 3 +XYHDL iso1 b3656 6 +XYLabcpp iso1 b3566 1 +XYLabcpp iso1 b3567 2 +XYLabcpp iso1 b3568 2 +XYLI1 iso1 b3565 4 +XYLI2 iso1 b3565 4 +XYLK2 iso1 b0063 1 +XYLK2 iso2 b3580 2 +XYLK iso1 b0063 1 +XYLK iso2 b3564 2 +XYLt2pp iso1 b4031 1 +XYLtex iso1 b0241 3 +XYLtex iso2 b0929 3 +XYLtex iso3 b1377 3 +XYLtex iso4 b2215 3 +XYLUt2pp iso1 b3577 1 +XYLUt2pp iso1 b3578 1 +XYLUt2pp iso1 b3579 1 +XYLUtex iso1 b0241 3 +XYLUtex iso2 b0929 3 +XYLUtex iso3 b1377 3 +XYLUtex iso4 b2215 3 +YUMPS iso1 b2165 3 +ZN2abcpp iso1 b3469 1 +ZN2t3pp iso1 b0752 1 +ZN2t3pp iso2 b3915 2 +Zn2tex iso1 b0241 3 +Zn2tex iso2 b0929 3 +Zn2tex iso3 b1377 3 +Zn2tex iso4 b2215 3 +ZN2tpp iso1 b3040 1 +ZNabcpp iso1 b1857 1 +ZNabcpp iso1 b1858 2 +ZNabcpp iso1 b1859 2 diff --git a/docs/src/examples/data/e_coli_reaction_kcat.tsv b/docs/src/examples/data/e_coli_reaction_kcat.tsv new file mode 100644 index 00000000..08e731b6 --- /dev/null +++ b/docs/src/examples/data/e_coli_reaction_kcat.tsv @@ -0,0 +1,1871 @@ +reaction kcat +13PPDH2 10.0193056436704 +13PPDH2_b 8.77203237400417 +23PDE2pp 24.9412421205754 +23PDE4pp 24.9412421205754 +23PDE7pp 24.9412421205754 +23PDE9pp 24.9412421205754 +2AGPEAT120 4.27830584222986 +2AGPEAT140 4.27830584222986 +2AGPEAT141 4.27830584222986 +2AGPEAT160 4.27830584222986 +2AGPEAT161 4.27830584222986 +2AGPEAT180 4.27830584222986 +2AGPEAT181 4.27830584222986 +2AGPGAT120 4.27830584222986 +2AGPGAT140 4.27830584222986 +2AGPGAT141 4.27830584222986 +2AGPGAT160 4.27830584222986 +2AGPGAT161 4.27830584222986 +2AGPGAT180 4.27830584222986 +2AGPGAT181 4.27830584222986 +2DDARAA 5.21653540222097 +2DDARAA_b 4.44671650209795 +2DGULRGx 4.98740807075617 +2DGULRGy 7.94967517744325 +2DGULRx 4.98740807075617 +2DGULRy 7.94967517744325 +2DOXG6PP 13.2447698987952 +2HESR 10.0716945436083 +2HPTCOAT 18.2921770402979 +2MAHMP 7.5975929923852 +3AMACHYD 41.6517242342344 +3HAD100 4.39387451614104 +3HAD120 4.39387451614104 +3HAD121 4.39387451614104 +3HAD140 4.7238623506414 +3HAD141 4.39387451614104 +3HAD160 4.7238623506414 +3HAD161 4.39387451614104 +3HAD180 4.39387451614104 +3HAD181 4.39387451614104 +3HAD40 4.39387451614104 +3HAD60 4.7238623506414 +3HAD80 4.39387451614104 +3HBZCT 6.92589213957476 +3HCINNMH 5.73475014712646 +3HPADHi 5.3927538893854 +3HPPPNH 5.73475014712646 +3KGK 7.7935251969048 +3NTD2pp 26.0925894155051 +3NTD4pp 21.9537427390778 +3NTD7pp 26.0925894155051 +3NTD9pp 26.0925894155051 +3OAR100 8.24329298955517 +3OAR100_b 5.66311126869771 +3OAR120 4.4800608462323 +3OAR120_b 5.66311126869771 +3OAR121 3.76323216049135 +3OAR140 4.26551759693818 +3OAR140_b 5.66311126869771 +3OAR141 3.76323216049135 +3OAR160 3.19280138872202 +3OAR160_b 5.66311126869771 +3OAR161 3.76323216049135 +3OAR180 5.17741184962385 +3OAR180_b 5.06552584681538 +3OAR181 1.27988953981167 +3OAR40 8.24337196264866 +3OAR40_b 5.06552584681538 +3OAR60 8.24337196264866 +3OAR60_b 5.66311126869771 +3OAR80 8.24337196264866 +3OAR80_b 5.66311126869771 +3OAS100 5.92034460327097 +3OAS120 5.92034460327097 +3OAS121 1.87647496051425 +3OAS140 4.19282309762856 +3OAS141 1.87647496051425 +3OAS160 5.92034460327097 +3OAS161 1.87647496051425 +3OAS180 5.92034460327097 +3OAS181 1.31640661008089 +3OAS60 5.92034460327097 +3OAS80 5.92034460327097 +3OXCOAT 6.59778308232384 +3PEPTabcpp 6.16253252869977 +3SLAR 7.48524159294397 +42A12BOOXpp 20.5167543333707 +4ABZGLUH 35.4055116366341 +4ABZGLUH_b 6.23040391550792 +4HTHRA 13.9136776986161 +4HTHRA_b 3.33744250073237 +4HTHRK 3.34738015798494 +4HTHRS 13.5311904775331 +4PCP 17.9131183641197 +4PCPpp 12.2100308227317 +4PEPTabcpp 6.17726180909412 +5DGLCNR 44.1917064260468 +5DKGR 40.7055797862128 +5DKGR_b 7.08438771382553 +5DOAN 0.0299207198851433 +6D6SFK 7.41711643919261 +6D6SPA 41.469124247573 +A5PISO 37.2296643882805 +A5PISO_b 83.0272448453371 +AACPS1 0.415177196960515 +AACPS2 3.76112320556721 +AACPS3 2.16834205221814 +AACPS4 2.44626436685676 +AACPS5 2.06191272909666 +AACPS6 3.76112320556721 +AACPS7 1.67871775655375 +AACPS8 3.76112320556721 +AACPS9 0.00298546352020273 +AACTOOR 5.22588898424484 +AADDGT 7.02372014918449 +AAMYL 12.2514628892924 +AAMYLpp 10.5007897027625 +AB6PGH 10.341849774767 +ABTA 23.3858776716333 +ABUTD 9.82711567839092 +ACACCT 10.1045867962457 +ACACT1r 47.9316975036025 +ACACT1r_b 7.22516165822894 +ACACT2r 50.1551506475236 +ACACT2r_b 8.28007308107699 +ACACT3r 40.7277313515213 +ACACT3r_b 5.86685213809256 +ACACT4r 49.3225731395513 +ACACT4r_b 8.01083747359174 +ACACT5r 40.7277313515213 +ACACT5r_b 5.86685213809256 +ACACT6r 44.4918869994071 +ACACT6r_b 7.975868974899 +ACACT7r 33.4229717576011 +ACACT7r_b 5.77921156740107 +ACACT8r 5.86685213809256 +ACACT8r_b 12.3130464319242 +ACALD 157.881311434786 +ACALD_b 41.0772902141259 +ACANTHAT 6.00128652411287 +ACBIPGT 3.61197336627097 +ACCOAC 13.5464745532275 +ACCOAL 6.84138279261006 +ACGAL1PPpp 22.6470341696899 +ACGAM1PPpp 22.6470341696899 +ACGAMK 8.57137535484602 +ACGAMT 10.3954899567112 +ACGK 8.4 +ACGS 228 +ACHBS 24.2146880499225 +ACKr 154.296915465516 +ACKr_b 320.762753520128 +ACLS 99.6353948883991 +ACM6PH 4.83037995559269 +ACMAMUT 6.82409057435941 +ACNML 6.81788349495952 +ACOAD1f 7.11827119414585 +ACOAD1f_b 356 +ACOAD1fr 18.4653911971493 +ACOAD2f 141.171248093136 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13.5311904775331 +CDGUNPD 11.0171500568784 +CDPMEK 4.08681070369138 +CDPPH 20.9564430124409 +CFAS160E 8.42750201034672 +CFAS160G 8.42750201034672 +CFAS180E 8.42750201034672 +CFAS180G 8.42750201034672 +CHOLD 5.36360113159844 +CHOLID 5.46884904179311 +CHORM 22.4670136651908 +CHORS 42 +CHRPL 0.543619102929351 +CINNDO 8.48131124326115 +CITL 81.3177019658477 +CLPNH120pp 12.8197036018068 +CLPNH140pp 12.8197036018068 +CLPNH141pp 12.8197036018068 +CLPNH160pp 12.8197036018068 +CLPNH161pp 12.8197036018068 +CLPNH180pp 12.8197036018068 +CLPNH181pp 12.8197036018068 +CLPNS120pp 5.2334005566775 +CLPNS120pp_b 4.949595302671 +CLPNS140pp 5.2334005566775 +CLPNS140pp_b 4.949595302671 +CLPNS141pp 5.2334005566775 +CLPNS141pp_b 4.949595302671 +CLPNS160pp 0.247394389254112 +CLPNS160pp_b 4.949595302671 +CLPNS161pp 0.21079347427593 +CLPNS161pp_b 4.949595302671 +CLPNS180pp 5.2334005566775 +CLPNS180pp_b 4.949595302671 +CLPNS181pp 0.135608986592734 +CLPNS181pp_b 4.949595302671 +CMPN 9.72298155344663 +COLIPAabcpp 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7.05493128586977 +CYSTL 8.40984804863167 +CYSTRS 6.54026436603574 +CYTBD2pp 19.1000025991512 +CYTBDpp 8.51627818790513 +CYTBO3_4pp 45.3482514390652 +CYTD 10.59607020381 +CYTDH 9.72248156463871 +CYTDK1 9.78144941091262 +CYTDK2 10.1158531405334 +CYTK1 24 +CYTK1_b 8.9119778017279 +CYTK2 9.99748309362758 +CYTK2_b 8.34021627303796 +DAAD 0.212326005766108 +DADA 33.0541357457718 +DADK 4.81427669638384 +DADK_b 3.92007383177679 +DAGK120 6.37340143940361 +DAGK140 6.37340143940361 +DAGK141 6.37340143940361 +DAGK160 6.37340143940361 +DAGK161 6.37340143940361 +DAGK180 6.37340143940361 +DAGK181 6.37340143940361 +DAPAL 15.7440617950712 +DAPDC 55.7009974553855 +DAPE 84 +DAPE_b 14.8363565861348 +DASYN120 31.631520610796 +DASYN140 31.631520610796 +DASYN141 31.631520610796 +DASYN160 111.484064976126 +DASYN161 86.7116673035816 +DASYN180 31.631520610796 +DASYN181 44.6903126035828 +DB4PS 0.34 +DBTS 0.00379938258082894 +DC6PDA 11.1035561824413 +DC6PH 22.6470341696899 +DCTPD 4.31628619828794 +DCYTD 10.59607020381 +DDGALK 9.35832351964338 +DDGLK 7.67514104450385 +DDPA 30.4744957510635 +DDPGALA 6.3869982316261 +DDPGALA_b 5.89027829518053 +DGK1 10.0047946408752 +DGK1_b 8.45670598626436 +DGUNC 5.94913740240481 +DHACOAH 10.9780613420595 +DHACOAH_b 10.9780613420595 +DHAD1 420 +DHAD2 139 +DHAPT 44.351669172647 +DHBD 0.936895016381711 +DHBD_b 5.71796624690977 +DHBS 0.509427511775445 +DHBSH 12.8197036018068 +DHCIND 5.16779470190159 +DHCINDO 18.7533823196001 +DHCURR 7.65295096835558 +DHDPRy 14 +DHDPS 11 +DHFR 2.65203617251836 +DHFR_b 4.42736783437002 +DHFS 0.23 +DHMPTR 5.56551811436266 +DHNAOT4 0.356291178941366 +DHNCOAS 0.0529857234721957 +DHNCOAT 0.683201038913556 +DHNPA2r 2.91790367174636 +DHNPA2r_b 5.77471066931013 +DHNPTE 6.50749299599942 +DHNPTE_b 6.50749299599942 +DHORD2 38.5306805462644 +DHORD5 0.00407857264841925 +DHORDfum 3.28274965624399 +DHORTS 9.66611921712663 +DHORTS_b 14.3002400767693 +DHPPD 5.16779470190159 +DHPPDA2 0.32 +DHPS2 0.371229170487303 +DHPTDNR 5.99250249426982 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14.4982404650522 +TRE6PP 11.7689348811775 +TRE6PS 7.91314238864529 +TREH 18.2998718885334 +TREHpp 20.4250792633978 +TRPAS2 28.98710156221 +TRPAS2_b 5 +TRPS1 54.6504588981143 +TRPS2 71.4293253002498 +TRPS3 88.2049040495694 +TRPTRS 6.54026436603574 +TRSARr 28.6731048574488 +TRSARr_b 80.2014089960751 +TYRL 0.0143369406308285 +TYROXDApp 20.5167543333707 +TYRPpp 15.6674143737912 +TYRTA 7.80073017029772 +TYRTA_b 12.096336840044 +TYRTRS 6.54026436603574 +U23GAAT 36 +UAAGDS 8 +UACGALPpp 4.29065074800568 +UACGAMPpp 4.29065074800568 +UACMAMO 5.726958245789 +UAG2E 3.94877616119486 +UAG2E_b 3.94877616119486 +UAGAAT 2.44977186579031 +UAGAAT_b 21.6425991513373 +UAGCVT 3.3 +UAGDP 16 +UAGPT3 17 +UAMAGS 29 +UAMAS 14 +UAPGR 43 +UDCPDP 23.7281625729441 +UDCPDPpp 26.4872899377807 +UDCPDPS 0.14 +UDCPPtppi 12.8197036018068 +UDPG4E 53.1524935888073 +UDPG4E_b 121.10253184581 +UDPGALM 8.94950886449833 +UDPGALPpp 4.29065074800568 +UDPGD 8.35689008733074 +UDPGDC 3.96269305821496 +UDPGPpp 4.29065074800568 +UDPGPT 7.50801435329467 +UDPGPT_b 7.50801435329467 +UDPKAAT 6.93633528106696 +UDPKAAT_b 8.17613942231003 +UGCIAMH 16.7185097291515 +UGLCURPpp 4.29065074800568 +UGLT 80.5344342196906 +UGLT_b 5.2025136344983 +UGLYCH 9.32990956289489 +UGMDDS 16 +UHGADA 21 +ULA4NFT 4.56427321655228 +ULA4Ntppi 10.1089184986542 +UM3PL 7.79882868786899 +UM4PCP 17.9131183641197 +UM4PL 7.79882868786899 +UMPK 26.5565496634357 +UMPK_b 9.14456100180362 +UPLA4FNF 27.9908309721225 +UPLA4FNT 10.2677467833159 +UPP3MT 0.112264526711574 +UPP3S 1 +UPPDC1 0.81 +UPPRT 8.99468052267482 +URACPAH 11.3033957407599 +URDGLYCD 4.85857997201296 +URIC 5.22588898424484 +URIH 9.72248156463871 +URIK1 9.78144941091262 +URIK2 10.1158531405334 +USHD 16.5941999635267 +VALTA 8.28061648420117 +VALTA_b 19.0532877363441 +VALTRS 6.54026436603574 +VPAMTr 17.8309398407416 +VPAMTr_b 49.2529379595513 +WCOS 4.67933517568821 +X5PL3E 6.85935268596047 +XAND 8.44448432836534 +XPPT 5.61409039436033 +XTSNH 9.47722204912371 +XYHDL 9.34074844522538 +XYLI1 6.88501156036144 +XYLI1_b 6.88501156036144 +XYLI2 6.50195825224657 +XYLI2_b 8.43955340625552 +XYLK2 8.49633380346128 +XYLK 6.38081875530872 +YUMPS 7.31518304078335 +YUMPS_b 7.20073662862541 diff --git a/docs/src/examples/data/e_coli_uniprot.tsv b/docs/src/examples/data/e_coli_uniprot.tsv deleted file mode 100644 index 532b9884..00000000 --- a/docs/src/examples/data/e_coli_uniprot.tsv +++ /dev/null @@ -1,4519 +0,0 @@ -gene_product mass kind -b0688 58.361 -b0832 33.238 -b0586 141.991 -b3772 56.195 Homotetramer -b1759 15.046 Monomer -b4283 10.344 -b3850 21.226 Homotetramer -b1884 32.849 -b3428 93.173 -b2143 31.54 Homodimer -b2988 70.532 Homodimer -b2314 22.938 -b2341 77.072 Heterotetramer -b2355 18.252 -b2529 13.849 Homodimer -b0164 29.863 -b3676 12.779 -b1404 44.281 -b0316 34.866 -b4110 32.899 -b0386 28.145 -b2152 43.394 -b1627 20.898 -b4048 26.673 -b2005 13.899 -b2673 9.139 -b3047 28.492 -b3947 91.774 -b3939 41.55 Homotetramer -b1427 20.681 -b4802 3.574 -b3683 39.692 -b1913 68.188 -b0179 36.038 Homotrimer -b4299 29.877 -b2119 39.682 -b4739 4.303 -b2981 44.674 -b0651 33.823 -b1279 11.351 -b2959 12.881 -b1264 57.494 Heterotetramer -b2827 30.48 Homodimer -ECOK12F003 16.463 -b0292 24.517 -b1633 23.562 Monomer -b3333 44.54 -b2110 26.589 -b1482 15.088 -b0139 95.499 -b0285 33.858 Heterotrimer -b2900 11.905 Monomer -b3938 12.141 Homodimer -b2343 10.318 -b0020 34.284 -b2575 27.27 -b3190 9.452 -b2490 15.577 -b4045 8.325 -b2040 32.694 Homodimer -b3377 46.516 -b3445 19.565 -b3191 10.68 -b4314 18.111 -b4302 15.638 -b3617 43.117 Homodimer -b0992 40.097 -b1894 9.868 -b4166 43.073 Monomer -b4136 61.795 -b0932 98.919 -b2258 14.085 Heterodimer -JW5914 37.851 -b0291 91.229 -b1452 38.613 Monomer -b3725 29.027 -b0520 29.597 -JW5903 35.098 -b1734 50.513 Homotetramer -b2861 13.452 -b0080 37.999 Homotetramer -b0804 25.529 -b2787 49.141 Homodimer -b4310 39.572 Homodimer -b1562 5.737 -b3460 39.076 -b3691 47.077 -b1833 48.273 -b0998 22.574 -b0400 49.629 -b4174 45.545 -b4731 4.432 -b3554 25.663 -b4548 7.861 -b0335 69.351 -b2631 13.665 -b0384 11.687 -b3553 35.396 Homodimer -b1345 47.539 -b2780 60.374 Homodimer -b0891 22.497 Monomer -b2578 21.248 -b4115 46.843 Homodimer -b0397 118.721 Heterodimer -b2172 54.032 -b1263 56.87 Heterotetramer -b0903 85.357 Homodimer -b1044 11.194 -b2181 12.525 -b2470 113.047 -b1053 43.867 -b0896 30.826 Heterotrimeric -b2899 23.847 -b2054 19.962 -b3410 8.66 -b4398 26.125 -b0450 12.259 Homotrimer -b1421 58.899 -b3923 16.293 -b3186 11.564 -b3652 76.43 -b1904 11.741 -b1716 13.497 -b3674 19.188 -b2235 43.517 Tetramer -b4775 3.858 -b3008 43.212 Homotetramer -b1462 20.967 -b1967 31.19 Homodimer -b0694 25.362 -b1068 33.682 -b1590 30.524 -b4511 8.271 -b4486 103.403 -b3889 8.408 -b1197 63.637 Monomer -b3563 12.555 -b3949 37.086 -b1808 70.378 -b1490 53.178 -b3507 20.408 -b3728 37.024 -b1812 50.97 Monomer -b2561 30.708 -b4409 4.556 -b1158 20.573 -b0103 22.622 Monomer -b3984 24.73 -b0993 101.024 -b2093 10.222 -b0436 48.193 Homodimer -b1167 9.701 -b3332 37.647 -b3366 12.284 -b0985 27.296 -b1596 45.258 -b0442 12.704 -b4102 27.621 -b3241 34.775 -b4366 25.622 -b4665 2.209 -b1265 1.723 -b2821 107.708 Monomer -b3100 11.811 -b4226 19.704 Homohexamer -b1209 23.551 Monomer -b0301 21.899 -b0532 95.677 -b0498 14.152 -b3284 18.51 -b1510 136.515 -b1625 8.417 -b0568 111.308 -b2547 55.016 -b3675 13.768 -b1580 36.564 -b4213 70.832 -b0107 50.615 -b0573 12.251 -b0280 15.815 -b0867 31.072 -b3935 81.655 -b3043 19.494 -b4720 3.949 -b0144 34.868 -b3291 14.957 Homopentamer -b3101 14.102 -b3931 49.594 -b4154 65.972 -b3897 66.0 -b3125 30.427 -b3729 66.894 Homodimer -b3624 32.92 -b3535 7.018 -b1780 32.666 Monomer -b0644 37.031 -b3459 14.506 -b3030 70.244 Heterotetramer -ECOK12F049 19.067 -b0605 20.761 Homodimer -b2229 23.767 -b3465 21.678 -b2092 48.365 -b0801 38.897 -b0214 17.597 Monomer -b3879 34.01 -b0525 18.153 -b1395 51.733 Homotrimer -b1969 25.018 -b0796 25.017 -b3066 65.565 Monomer -b3660 33.113 -b0541 33.54 -b0853 17.666 -b2016 29.68 -b4252 16.865 -b3857 21.643 Monomer -b2637 17.099 -b4269 36.502 -ECOK12F014 15.854 -b3943 32.866 -b0811 27.19 -b1252 26.094 Homodimer -b3355 32.344 -b1680 44.434 Homodimer -b2311 20.695 -b0685 11.28 -b4470 45.361 -b2133 64.612 -b0657 57.066 Monomer -b2157 32.724 -b2921 34.674 -b2347 34.503 -b3723 32.097 -b2944 19.348 -b0624 13.777 -b1120 31.464 -b4123 47.935 -b0776 41.594 Homodimer -b4513 3.072 -b0965 14.701 -b4308 37.997 -b0596 26.25 Homotetramer -b1606 26.348 -b0311 61.878 -b1343 49.188 Monomer -b4336 48.242 -b3337 7.363 Monomer -b2545 38.051 -b2552 43.868 Monomer -b0634 40.476 -b1450 25.151 -b0629 35.96 -b2405 33.627 -b3418 103.118 Monomer -b3326 54.611 -b1796 6.608 Homodimer -b0604 27.495 Homodimer -b0463 42.197 Monomeric -b2279 10.845 -b4059 18.975 Homotetramer -b2850 16.878 -b0237 52.915 -b3555 11.033 -b3501 13.253 -b2860 34.398 -b4145 32.947 -b3899 51.12 -b4535 4.115 -b3831 27.159 Homohexamer -b1389 10.942 Homotrimer -b1157 19.284 -b2985 26.347 -b2028 43.657 -b0545 19.476 Homodimer -b0769 37.06 -b2768 20.786 -b2386 43.966 -b1413 149.028 -b2629 9.967 -b4248 14.59 -b0798 18.669 -b1411 49.563 -b3437 19.543 -b2002 16.557 -b1438 15.247 -b2775 46.831 -b3544 60.294 -b0322 10.634 -b1697 27.47 -b4206 23.505 -b1794 38.546 Homodimer -b0278 27.274 -b4402 4.886 -b3895 30.56 Homodimer -ECOK12F009 20.362 -b0330 58.649 -b1496 64.985 -b1224 140.489 Dimer -b4128 11.468 Monomer -b1222 67.084 -b1816 56.528 -b3178 70.708 -b2330 35.002 -b1690 44.608 -b1813 21.436 -b1199 22.632 Homodimer -b2993 17.751 -b0636 17.341 Homodimer -b1831 25.893 -b2941 9.519 -b2488 20.159 -b2089 33.54 -b2037 45.383 -b0343 46.503 Monomer -b4568 5.536 -b3384 37.438 Homodimer -b3264 25.198 -ECOK12F098 50.244 -b0583 23.259 -b2094 16.907 -b2844 41.019 -b1491 49.574 -b2390 13.263 -b0378 40.414 -b1634 53.991 Monomer -b4125 60.551 Homodimer -b1219 12.693 Homohexamer -b3076 117.879 Heterooctamer -b0421 32.16 -ECOK12F056 19.51 -b3805 33.852 Monomer -b3991 26.896 Homotetramer -b3147 72.825 -b0241 38.922 Homotrimer -b3204 17.96 -b1674 22.367 -b2795 50.972 -b1707 27.046 -b4610 5.231 -b2418 30.847 Homodimer -b4599 3.509 -b2163 25.294 Homodimer -b3199 21.703 -b3327 44.339 -b0257 15.85 -b2034 37.757 -b0475 35.884 Monomer -b1216 39.168 -b3955 66.61 -b3045 34.398 -b3226 29.524 Homodimer -b0561 21.203 -b1412 21.658 Homodimer -b3411 33.267 -b0962 77.976 -b4245 34.427 Heterododecamer -b2947 35.561 Homotetramer -b0449 65.222 -b0168 29.331 Monomer -b2845 45.099 -b1919 35.153 Homodimer -b0711 23.947 -b4267 37.147 -b3150 20.028 -b1292 31.548 -b4234 21.359 -b2904 13.811 -b4065 60.523 -b3210 87.983 -b2025 28.454 Heterodimer -b1881 23.976 Homodimer -b0222 20.815 Homotetramer -b4604 6.218 -b1377 41.22 Homotrimer -b0606 56.177 Homodimer -b0491 28.165 -b3531 41.7 -b3257 9.098 -b4239 63.838 -b3894 112.549 -b1107 37.595 Monomer -b4401 27.292 -b4524 40.147 -b2788 48.85 -b1695 43.002 -b2670 16.949 -b1054 35.407 Monomer -b2840 25.248 -b4396 33.145 -b1811 6.554 -b0733 58.205 Heterodimer -b1092 32.417 -b0123 56.556 Monomer -b2708 34.031 Homotetramer -b0795 36.416 -b2434 16.312 -b3663 17.219 -b2286 68.236 -b3880 47.433 Homohexamer -b4738 1.589 -b2215 40.368 Homotrimer -b4725 6.229 -b4153 27.123 -b4399 52.176 -b0999 11.512 -b2880 28.65 -b3381 42.294 -b4055 26.104 Homotetramer -b3699 89.95 Heterotetramer -b4790 4.153 -b4504 8.581 -b3025 24.678 -b0414 40.338 Homodimer -b1566 12.208 -b1475 32.239 Trimer -b1460 43.079 -b0030 32.561 -b2282 36.219 -b4031 53.608 -b2213 39.324 -b4589 7.521 -b3649 10.237 -b1922 27.521 -b1917 27.677 -b3239 10.796 -b1664 42.876 -b1121 28.865 -b0313 21.815 -b4111 54.846 -b3847 50.176 -b0555 17.972 -b1921 21.658 -b2086 32.039 Monomer -b2609 9.191 -b0947 40.644 -b2376 10.162 -b2914 22.86 Homodimer -b3348 8.214 -b0298 11.543 -b3919 26.972 Homodimer -b3115 43.384 Homodimer -ECOK12F081 9.126 -b0909 26.74 -b4776 6.371 -b0831 34.066 -b2602 13.204 -b3509 12.043 Homodimer -b2250 18.61 -b2901 55.361 Homotetramer -b3483 14.531 -b2454 30.082 -b3265 41.318 -b3773 33.204 -b4363 17.047 -b1497 44.518 -b4782 1.604 -b0231 39.516 Monomer -b3053 108.418 Monomer -b3073 49.661 Homodimer -b0866 11.437 -b0037 58.559 -b0186 80.59 Homodecamer -b1378 128.824 -b0012 17.637 -b4498 12.403 -b1871 37.007 Homotetramer -b2195 20.809 -b1756 24.017 -b1119 33.043 -b2326 21.146 -b2375 22.977 -b0934 28.925 -b2320 41.368 Homodimer -b3114 85.936 -b4515 4.042 -b3085 19.483 -b1165 10.345 -b4215 35.935 -b3423 28.048 -b0869 53.707 -b0199 37.788 -b4084 33.821 -b2946 26.978 Homodimer -b3656 88.079 Homohexamer -b0842 44.321 Monomer -b2049 53.016 -b0849 9.685 Monomer -b2917 77.871 Homodimer -b2842 27.07 Homotetramer -b4057 13.519 -b1181 17.91 -b2462 11.65 Homohexamer -b1243 60.899 -b1645 75.267 -b4382 47.207 Homodimer -b4816 2.079 -b0197 29.432 -b3595 26.447 -b2798 28.166 -b1985 60.061 -b3219 24.9 -b4550 8.171 -b3927 29.78 Homotetramer -b3886 32.839 -b3376 38.599 -b0029 34.775 Homodimer -b0429 12.029 Heterooctamer -b2951 25.787 Monomer -b3200 20.127 -b1201 70.562 Homodimer -b1155 15.434 -b2148 35.55 -b4262 39.619 -b3876 51.574 -b2989 32.392 Homodimer -b2302 24.516 Homodimer -b0224 28.021 -b2543 15.211 -b1080 38.169 -b2196 71.389 -ECOK12F053 8.628 -b0268 32.53 -b4056 15.656 -b0944 25.853 -b2886 17.513 -b3906 32.373 -b1568 10.976 -b4053 39.153 Homodimer -b2146 44.329 Heterotetramer -b1790 30.554 -b1506 6.88 -b3331 22.231 -b4818 1.841 -b2444 9.206 -b0488 16.939 -b0305 31.474 -b2797 48.753 -b1559 27.926 -b4342 58.553 -b2125 27.4 -b2033 21.675 -b4592 3.597 -b4730 2.629 -b3730 49.19 Homotrimer -b0939 25.389 -b3856 19.363 Homodimer -b3172 49.898 Homotetramer -b3230 14.856 -b1846 23.687 -b0405 39.431 Monomer -b0125 20.115 Homotetramer -b2208 18.047 -b1241 96.127 -b0620 25.453 -b1045 18.88 Homodimer -b1608 26.704 -b1057 20.736 -b2296 43.29 Homodimer -b2283 100.299 -b2188 67.296 -b0957 37.201 Monomer -b1678 36.082 -b1277 21.836 Homodimer -b3734 55.222 -b0926 20.354 -b0788 35.86 -b4686 3.618 -b0803 9.756 -b2923 23.176 -b4471 48.522 -b1928 14.983 -b0426 18.344 Monomer -b1817 35.048 Homodimer -b2509 51.832 Heterooligomer -b3893 33.1 -b0083 13.627 -b2605 17.245 -b1143 12.883 -b3406 18.527 -b4502 8.954 -b1673 77.877 -b0550 13.846 Homodimer -b1677 8.323 Homotrimer -b3417 90.522 Homodimer -b4390 47.346 Homotetramer -b4673 2.465 -b1256 22.928 -b2237 25.296 -ECOK12F004/ECOK12F005 7.792 -b3306 14.127 -b3302 6.542 -b3642 23.567 Homodimer -b0227 28.785 -b2131 32.609 -b2522 28.643 -b1929 44.429 -b2616 61.396 -b1879 74.843 -b1658 38.175 Homodimer -b3954 32.149 -b3214 26.352 -b4305 40.615 -b0314 75.842 -b4482 27.908 -b4063 17.15 Homodimer -b0269 69.399 -b3539 47.258 -b1220 52.1 -b2299 20.376 -b2340 17.208 -b3705 61.526 -b0928 43.573 Homodimer -b1444 50.83 Homotetramer -b4766 3.681 -b2287 25.056 -b1767 37.127 Homotetramer -b0148 89.148 -b4081 76.151 -b0530 18.475 -b3110 48.315 -b2436 34.323 Homodimer -b4620 10.049 -b3912 26.312 -b0890 146.663 Homohexamer -b1095 43.046 Homodimer -b3031 21.642 -b2385 39.624 -b2896 16.064 -b0949 72.067 -b1939 36.776 -b1516 36.685 -b1179 12.415 -b2943 50.983 -b3427 10.129 -b4406 7.214 -b0031 28.757 Homotetramer -b1156 21.662 -b1717 7.289 -b2257 62.543 -b2001 57.237 -b4689 9.463 -b1259 6.002 -b2643 17.303 -b1858 27.867 -b3402 64.637 -b0619 61.684 -b0014 69.115 -b1507 49.276 -ECOK12F085 14.132 -ECOK12F054 16.013 -b3303 17.603 -b3283 19.871 -b2256 33.112 -b4606 2.408 -b1247 37.198 -b4539 10.216 -b2894 34.246 -b1866 65.913 Homodimer -b2164 43.432 -b3290 50.368 -b3924 27.751 Monomer -b2472 41.269 Homodimer -b3453 48.449 -b0425 33.871 Monomer -b0936 34.558 -b0116 50.688 Homodimer -b1557 7.717 -b3471 25.269 -b3942 80.024 Homotetramer -b1897 29.175 -b2014 49.538 -b0333 43.102 Homodimer -b0946 20.589 -b4472 139.053 -b4702 2.123 -b4212 14.075 -b3937 23.14 -b2212 24.076 -b4087 56.745 -b0180 17.033 Oligomer -b0905 65.652 -b1643 8.891 -b0504 34.512 -b2487 63.383 -b0094 45.33 -b3144 93.616 -b2618 10.789 -b1189 47.607 -b0467 20.375 -b2892 63.389 -b3997 39.248 Homodimer -b0049 31.297 Monomer -b4664 2.151 -b0969 12.41 -b0977 31.431 -b3594 31.874 -b0095 40.324 Homodimer -b1262 49.492 Monomer -b4099 38.853 -b2648 5.438 -b2837 37.094 Homodimer -b0007 51.663 -b3748 15.292 Homodecamer -ECOK12F082 18.588 -b4263 54.332 -b2806 41.905 Monomer -b0710 26.892 -b1959 32.194 -b0779 76.226 -ECOK12F075 10.379 -b0642 97.234 Monomer -b1785 56.101 Homodimer -b3779 54.871 -b2808 34.402 -b1486 37.345 -b2045 47.344 -b4085 26.109 Homohexamer -b0819 33.325 -b0078 17.977 Dimer -b3229 24.305 -b0033 117.842 -b1083 34.281 -b4232 36.834 Homotetramer -b3987 150.632 -b2649 29.787 -b2331 21.013 -b4345 40.59 -b1061 8.949 -b1855 37.41 -b2702 20.58 -b2856 16.577 -b4742 5.971 -b3059 22.193 -b3038 45.026 -b1530 16.065 -b3700 40.514 -b2439 22.788 Homotrimerizes -b0560 20.428 -b4403 25.259 -ECOK12F067 11.389 -b1851 64.639 -b2577 33.243 -b2207 9.469 Monomer -b4706 2.33 -b3932 19.093 -b1598 29.277 -b0612 53.093 -b1326 26.558 Homodimer -b2705 27.858 Homotetramer -b0013 14.482 -b1255 26.419 -b0872 35.74 -b1049 96.937 -b1873 40.286 -b3916 34.842 Homotetramer -b4298 32.722 -b3739 13.632 -b0799 81.44 Monomer -b3398 79.49 -b0366 28.297 -b1109 47.359 Monomer -b3869 38.556 -b0270 50.632 -b3034 23.667 Homodimer -b0208 33.776 -b2455 49.022 -b2725 17.627 -b2319 36.364 -b2511 55.036 -b4770 2.707 -b2802 64.977 Homohexamer -b0246 11.94 -b2039 32.694 Homotetramer -b0837 41.054 Monomer -b0916 47.656 -b0375 23.956 -b4528 6.761 Homodimer -b3439 26.279 -b1479 63.197 Homotetramer -ECOK12F097 14.48 -b4303 29.355 -b1409 33.054 -b2284 49.292 -b1312 31.25 -b0907 39.783 Homodimer -b0490 25.382 -b2759 18.702 Homodimer -b1485 31.971 -b2669 15.348 -b3055 23.076 -b2938 73.898 Homotetramer -b1026 33.54 -b1887 18.084 -b3733 31.577 -b0923 26.974 -b0778 24.14 Homodimer -b0557 10.447 -b2395 83.524 -b2542 43.978 -b3307 11.58 -b0980 47.057 Monomer -b4496 17.296 -b4097 27.831 -b1313 38.217 -b1725 32.459 -b3849 52.96 -b1968 50.85 -b0494 23.622 Monomer -b2267 17.42 -b2464 35.659 Homodimer -b3011 42.097 Homodimer -b4516 9.902 -b3401 32.534 -b0983 41.741 -b3403 59.643 Monomer -b1246 37.188 -b3446 10.613 -b1454 23.321 -b1297 53.177 Dodecamer -b3653 42.425 -b2427 31.192 Homotetramer -b2567 25.55 Homodimer -b3362 6.599 -ECOK12F047 35.372 -b3533 99.785 -b1249 54.822 -b0782 18.665 Homohexamer -b2352 51.484 -b1553 18.31 -b2438 17.893 Monomeric -b0697 72.199 -b2109 92.282 -b3234 47.205 -b4278 50.386 -b0295 8.767 -b3529 74.381 -b4052 52.39 Homohexamer -b3151 37.257 -b2873 51.025 Homotetramer -b4362 19.455 -b2728 9.732 Homodimer -b4261 40.358 -b4484 18.965 Homodimer -b0529 31.044 Homodimer -b2571 35.75 Homodimer -b0900 34.294 -b2953 10.456 -b4670 2.056 -b4678 2.242 -b2720 20.309 -b3349 20.853 Monomer -b0389 7.281 -b1841 13.41 -b1652 23.523 Homodimer -b3827 33.727 -b2975 58.92 -b1153 21.644 -b2170 42.746 -ECOK12F036 8.172 -b3094 29.836 -b1714 36.832 Tetramer -b3600 41.139 Monomer -b0120 30.385 Heterooctamer -b2411 73.606 -b2373 60.581 Homotetramer -b0177 90.553 -b0726 105.062 Homodimer -b4138 45.751 -b1453 54.233 -b0232 11.234 -b2557 141.403 Monomer -b1545 21.852 -b1772 34.121 -b3706 49.231 Homodimer -b1451 77.261 -b2762 27.976 Homodimer -b0028 16.081 -b2731 78.468 -b1088 19.315 -b0756 38.19 -b3206 9.81 -b2632 32.094 -b4703 3.465 -b1414 29.706 Monomer -b0901 23.036 -b3745 55.907 -b3551 85.851 -b1526 32.483 -b3176 47.544 -b2682 26.108 -b2496 26.633 -b4148 10.9 Homodimer -b0339 23.764 Oligomer -b2739 29.217 -b0544 57.527 -b1854 51.357 Homotetramer -b4133 57.813 -b1094 8.64 -b2429 49.802 -b4198 25.278 -b0640 38.704 -b3754 51.462 -b1455 8.27 -b2568 35.96 -b1078 27.744 -b1151 17.609 -b1139 33.762 -b0820 59.858 -b0348 34.196 Homotetramer -b0398 44.714 Heterodimer -b1973 24.762 -b2666 5.865 -b1748 43.665 -b0259 37.851 -b0968 10.3 -b3197 35.196 Homotetramer -b4778 1.63 -b4546 8.415 -b4506 5.467 -b4024 48.532 Homodimer -ECOK12F079 21.961 -b0761 28.281 Homodimer -b0660 39.039 -b0937 21.253 Homodimer -ECOK12F104 192.016 Monomer -b0511 52.456 -b0161 49.354 -b2512 41.887 -b3537 7.364 -b1551 5.639 -b3587 12.409 -b1515 34.456 -b0978 57.92 Heterodimer -b1944 17.221 -b2242 45.357 -b0369 35.625 Homooctamer -b2106 30.419 -b1528 42.538 -b1368 37.06 -b3807 12.231 Monomer -b2329 39.137 Homotetramer -b2530 45.09 Homodimer -b3985 17.712 -b0808 81.904 Homoheptamer -b1775 49.602 -b1422 33.402 -b3404 50.334 Homodimer -b2042 32.829 -b1517 31.893 Homodecamer -b3891 34.747 -b3585 37.274 -b2630 40.061 -b1366 13.473 -b0964 24.594 -b3124 39.104 -b2038 21.27 Homodimer -JW5899 35.098 -b3666 50.607 Monomer -b0581 41.688 Homodimer -b3543 37.497 -b0341 41.361 -b0085 53.344 -b2322 40.465 -b3201 26.801 -b2633 31.255 -b1691 46.08 -b1204 21.082 Monomer -b4183 25.009 -b3463 24.439 Homodimer -b0505 18.17 Homodimer -b1591 23.345 Monomer -b2061 16.709 -b0887 65.056 -b3090 20.512 -b3577 17.516 -b0874 32.34 -b3527 55.527 -b3467 13.496 -b2990 8.808 -ECOK12F024 26.439 -b2956 38.459 -b4086 34.316 -b2998 10.945 -b4361 27.935 -b2551 45.317 Homodimer -b4058 103.868 -b0248 17.42 -b2407 29.835 Hexamer -b0955 65.819 -b3904 54.069 Monomer -b1058 5.897 -b2359 13.102 -b3682 17.626 -b0416 15.689 Monomer -b3395 29.0 -b0110 20.536 -b0674 62.659 Homodimer -b0354 19.923 -b1978 248.569 -ECOK12F002 33.54 -b2486 56.767 -b0807 34.226 -b2676 36.443 Tetramer -b3882 31.158 Homotetramer -b2677 44.163 -b3466 10.252 -b3504 29.45 -b2823 12.004 -b1776 38.732 -b3526 33.962 -ECOK12F048 9.763 -b2303 14.082 Homooctamer -b3057 29.759 -b1275 36.15 Homotetramer -b0875 23.703 Homotetramer -b1727 24.33 -b3921 16.542 -b1302 44.729 -b3794 27.928 -b1073 15.24 -b0084 63.877 Homodimer -b2683 12.024 -b3308 20.302 -b1549 16.497 -b1285 74.665 -b0331 32.135 Homotetramer -b4260 54.88 Homohexamer -b2960 27.307 Monomer -b1573 8.35 -b2500 23.238 Monomer -b4326 14.747 -b0317 17.311 -b2858 27.365 -b0068 36.163 Monomer -b0462 113.574 Homotrimer -b0404 22.961 -b1150 6.381 -b3556 7.403 -b0996 43.607 -b1319 34.913 Monomer -b3777 16.873 -b0655 33.42 -b3252 73.339 -b2774 28.042 -b3192 23.963 -b2276 52.044 -b0200 21.294 Monomer -b3352 71.843 -b1077 25.912 -b4176 7.166 -b0256 44.267 -b3565 49.742 Homotetramer -b3518 51.571 -b3774 54.069 Homotetramer -b2463 82.417 Homooligomer -b4755 5.465 -b1504 18.949 -b0170 30.423 Heterotetramer -b3386 24.554 -ECOK12F017 33.563 -b2727 31.565 Monomer -b3800 46.513 -b4466 167.246 -b3098 11.051 -b0182 42.382 -b2952 21.167 -b1684 13.3 Homodimer -b2469 63.697 -b3350 66.411 -b0601 23.943 -b3155 11.27 -b0212 28.434 Monomer -b3926 56.231 Homotetramer -b4319 17.317 -b4661 97.49 -b2740 46.77 -b2521 30.812 Monomer -b2627 83.062 -b2934 16.046 -b3394 20.796 -b3946 23.555 Homodecamer -b0106 44.45 -b2789 49.142 -b0011 26.665 -b0454 14.45 -b0622 21.77 Homodimer -b0638 23.308 -b1999 27.074 -b2201 23.053 -b3330 13.901 -b0627 7.024 -b0172 20.639 -b3135 17.519 -b3651 25.343 -ECOK12F041 40.653 -b2918 36.704 Monomer -b0860 26.829 -b2867 31.557 Heterotrimer -b2754 10.518 Homodimer -b4104 22.797 -b1254 20.79 -b3579 35.97 -b1689 13.929 -b2041 40.558 Homodimer -b3571 75.713 Monomer -b2317 24.51 -b0684 19.737 Monomer -b1429 35.932 Homotrimer -b3282 20.768 -b3014 9.513 -b2520 181.585 -b1499 28.725 -b1859 27.729 -b3654 48.868 -b4329 16.193 -b1512 33.797 -b1335 19.179 -b1781 30.987 -b2832 26.157 -b4105 37.371 -b3605 42.728 -b4151 13.107 -b2859 16.403 -b1712 11.354 Heterodimer -b3361 22.96 -b2247 44.226 Homooctamer -b3070 28.872 -b0166 29.892 -b3429 52.822 -b4069 72.094 -b2127 28.046 -b4570 5.888 -b2507 58.679 Homodimer -b2936 26.842 -b2345 40.249 -b3928 9.635 Homodimer -b1272 39.366 -b2615 32.566 Homohexamer -b3690 40.142 -b2843 31.076 Homohexamer -b3261 11.24 Homodimer -b3964 13.024 -b4322 44.838 -b4005 45.94 Monomer -b3287 19.328 Monomer -b1370 37.777 -b0159 24.354 Homodimer -b2238 7.517 -b2875 57.682 -b0772 46.082 -b3958 35.952 -b3426 56.751 -b0507 64.732 Homotetramer -b2763 63.998 -b1484 36.1 -b4116 29.007 -b3574 31.067 -b1556 7.741 -b1200 38.215 Homodimer -b2368 42.585 -b1111 23.362 -b1722 27.607 -b3193 19.576 -b3988 155.16 -b1766 67.219 Homotetramer -JW2619 11.824 -b1344 35.561 Homodimer -b2796 46.906 -b1042 15.049 -b3703 5.38 -b2384 37.409 -b2506 20.23 -b0323 33.931 -b2096 30.812 -b3370 47.577 -b1798 23.201 -b3713 20.376 Homotetramer -b3221 17.038 -b4711 37.851 -b4605 5.325 -b3354 8.47 -b3078 52.147 -b1793 8.942 -b1287 42.22 -b1125 31.062 -b3145 38.535 -b2356 10.336 -b3608 36.362 -b0881 12.179 -b3986 12.295 Homodimer -b1147 20.212 -b3353 38.495 -b0704 21.961 -b3196 34.741 -b0961 16.275 -b2162 33.748 Homotetramer -b3084 42.331 -b0215 27.099 -b2746 16.898 Homotrimer -b4357 35.397 -b1244 33.443 -ECOK12F059 13.916 -b2052 36.141 Homodimer -b0319 32.266 -b2412 36.475 -b3472 19.787 -b2493 39.194 -b0006 29.586 -b1387 73.003 -b0122 12.854 -b1588 89.987 -b4478 42.523 -b1523 13.544 -b0815 59.706 -b1619 26.779 Homotetramer -b1561 9.235 -b2515 40.684 -b4331 20.53 -b1630 38.14 -b2450 29.751 -b3189 44.818 -b1947 12.67 -b2053 42.047 Homodimer -b1269 32.711 -b0572 50.27 Homotrimer -b3295 36.512 Homodimer -b1400 21.325 -b0153 70.423 -b3231 16.019 -b2617 12.302 -b2966 24.614 -b1195 8.775 -b1025 51.783 Homodimer -b1468 140.227 Tetramer -b2879 48.842 -b2076 111.01 -b4520 8.255 -b1096 29.715 Homodimer -b0146 26.229 -b2662 45.775 Homotetramer -b1555 12.091 -b2393 43.476 -b2160 39.71 -b0833 90.049 -b2171 21.533 -b2743 23.258 Monomer -b1069 55.267 -b3142 20.744 -b0118 93.498 Monomer -b1752 26.16 -b0722 12.868 -b4780 5.068 -b0588 29.784 -b0482 29.902 -b2878 115.582 -b2457 9.866 Homohexamer -b0193 29.912 -b4193 50.737 Homodimer -b1184 47.68 -b1477 10.401 -b0387 16.969 -b2665 16.063 -b1115 40.834 -b1316 84.867 -b2144 27.287 -b3218 37.851 -b3618 33.458 -b4667 2.232 -b4240 51.081 -b2124 17.973 -b0156 12.1 Homodimer -ECOK12F007 2.588 -b1205 10.486 -b1215 30.833 Homotrimer -b0235 9.82 -b1924 48.456 Homopentamer -b0927 23.784 -b3493 53.389 -b1146 7.402 -b1110 18.92 -b3224 53.551 -b1646 17.681 Monomer -b0413 17.229 -b3318 11.199 -b0994 37.865 -b2252 22.257 -b1857 33.777 -ECOK12F105 27.535 -b2883 50.244 -b1415 52.273 Homotetramer -b2581 37.784 -b2173 36.113 Oligomerizes -b0575 114.707 -b3035 53.741 Homotrimer -b2765 13.773 -b3317 29.86 -b4090 16.073 Homodimer -b2180 58.726 -b2889 20.508 Homodimer -b1974 20.337 -b1849 42.434 Homodimer -b3871 67.355 Monomer -b3297 13.845 -b2620 18.269 -b0812 18.695 Homododecamer -b3782 3.75 -b1039 14.879 -b1738 11.427 -b1961 53.465 -b2165 32.91 Homotrimer -b3524 74.457 -b0312 52.911 Dimer -b1729 48.662 -b0044 10.479 -b3080 88.321 -b2625 54.027 -b2707 28.236 -b0211 49.417 -b2623 37.139 -b3838 18.421 -b1945 37.849 -b0294 23.274 -b1737 48.332 -b0851 26.801 Homodimer -b0399 26.433 -b3538 62.032 -b1327 33.659 -b2548 35.058 -b0329 9.895 -b0388 19.151 Monomer -b4021 24.57 -b4219 23.315 -b2122 67.73 -b0854 40.84 -b0818 41.169 -b0648 27.022 -b0774 47.336 Homodimer -b1116 43.264 -b4182 25.334 -b1810 10.835 -b1828 48.152 -b4235 48.37 -b4622 10.257 -b3077 17.457 Heterooctamer -b4017 82.598 -b4109 84.371 -b4525 6.725 -b2141 14.579 -b2452 42.807 -ECOK12F013 20.966 -b4580 104.725 -b2150 35.713 -b3475 21.768 -b4380 58.02 -b0943 18.512 -b3461 32.469 -b3444 9.868 -b1533 32.324 -b0334 53.952 Monomer -b4297 70.017 -b3957 42.347 Homodimer -b3250 39.53 -b3632 38.731 -b3634 17.837 Homohexamer -b0662 42.953 -b1801 52.881 -b1745 49.299 Homodimer -b3107 5.961 -b1465 26.018 Dimer -b4129 57.827 Homodimer -b3424 31.307 -b0938 18.68 -b3679 62.085 -b1105 22.516 -b4743 6.428 -b4768 1.172 -b3589 40.351 -b0063 61.089 -b0768 36.058 -b2913 44.176 Homotetramer -b2136 21.445 -b2565 27.391 Monomer -b0132 34.607 -b2477 36.842 -b1065 44.363 -b4118 34.928 -b3862 36.289 -b0981 81.242 -b1436 8.709 -b4722 3.016 -b4598 3.538 -b4394 18.213 Homodimer -b1585 26.507 -b1862 22.704 -b4596 6.441 -b1668 60.755 -b0360 13.452 -b1348 7.019 -b4132 46.665 -b3072 55.066 -b2484 51.755 -b3623 41.729 -b3963 26.553 Homodimer -b4277 12.161 -b0293 20.111 -b2916 33.472 Homodimer -b1927 56.639 Monomer -b1140 42.799 -b2804 15.473 Homodecamer -b1546 21.338 -b2958 26.429 -b3616 37.239 Homotetramer -b2554 49.148 -b3655 62.272 -b1192 33.567 -b3839 28.876 -b0066 24.999 -b1373 21.337 -b2963 40.113 -b1232 31.935 Homohexamer -b1762 40.346 -b0191 15.623 -b2114 76.255 Homodimer -b1923 51.295 -b1471 36.241 -b2877 21.514 Monomer -b1676 50.729 Homotetramer -b1301 47.17 -b1351 10.016 -b1013 23.688 Homodimer -b1144 11.458 -b4779 1.23 -b0877 38.358 -b1539 27.249 Homotetramer -b0196 14.163 -b3378 12.479 -b0247 18.099 -b2024 26.033 Monomer -b2408 29.233 -b4249 24.598 -b0043 45.703 -b3612 56.194 Monomer -b0935 41.736 Homotetramer -b1724 10.865 -b1825 10.792 -b3357 23.64 Homodimer -b4659 24.791 -b0591 43.282 -b2495 13.399 -b2336 27.728 -b0884 8.25 -b0721 14.299 -b4428 5.626 -b3476 58.719 -b3262 33.397 -b0351 33.442 -b0828 33.394 Heterotetramer -b2415 9.119 -b2183 25.865 Monomer -b3103 14.281 -b1616 49.908 -b0236 18.834 -b4671 3.999 -b0115 66.096 -b3592 22.545 -b3496 53.575 -ECOK12F064 27.723 -b4789 1.043 -b2300 20.122 -b1852 55.704 -b0272 27.838 -b2562 9.791 -b3645 31.078 -b0703 55.232 -b4460 34.211 -b2187 8.288 -b3945 38.712 Homodimer -b3741 69.521 Homodimer -ECOK12F027 10.455 -b2030 37.851 -b0824 33.038 -b2752 35.188 Heterodimer -b0393 33.993 -b2781 30.412 Homodimer -b2222 22.96 Heterodimer -b3061 32.734 Tetramer -b2524 7.732 Monomer -b2103 28.634 Monomer -b0951 60.52 Homohexamer -b2231 96.964 Heterotetramer -b3669 20.889 -JW5919 13.452 -ECOK12F061 9.377 -b4412 5.502 Homodimer -b1820 17.615 -b3044 13.452 -b1330 38.755 Homoheptamer -b0501 10.052 -b3048 38.555 -b1099 36.937 -b1029 38.668 -b0995 26.233 -ECOK12F065 7.894 -b0274 19.758 -b2364 35.332 -b2292 65.872 -b1554 19.663 -b3766 3.231 -b4715 9.556 -b4517 6.576 -b0447 17.437 -b4041 91.381 -b2383 92.13 -b4289 34.893 -b2935 72.212 Homodimer -b3021 14.703 Homodimer -b0271 60.825 -b0967 44.357 Homodimer -b0198 23.256 -b0183 21.526 -b4062 12.911 -ECOK12F101 26.032 -b4773 1.992 -b2925 39.147 Homodimer -b4565 9.803 -b4553 11.336 -b3570 30.868 -b4214 27.176 -b0991 8.727 -b2518 15.463 Homotetramer -b3941 33.103 Homotetramer -b4018 29.739 Homotetramer -b3065 8.5 -b0117 69.362 -b4567 8.697 -b1483 34.621 -b1631 21.912 -b0589 34.91 -b1769 50.318 -b3746 56.389 Hexameric -b2505 17.705 -b1705 7.117 -b3064 36.008 Homodimer -b1661 43.909 Homodimer -b0700 157.776 -b1779 35.532 Homotetramer -b1472 10.736 -b2584 97.987 -b3281 29.414 Monomer -b2010 43.346 -b3432 84.337 Monomer -b2446 15.729 -b3482 159.395 -b1178 14.906 -b4483 28.974 Monomer -b3712 27.647 -b0473 71.423 Homodimer -b2290 45.517 Homodimer -b0379 11.424 -b2193 23.575 -b1356 17.663 -b2786 102.453 -b1446 8.8 -b2604 45.989 Homodimer -b4285 22.265 -b2592 95.585 Homohexamer -b4243 13.612 Homotrimer -b3409 84.474 -b1949 9.632 -b2685 42.736 Homodimer -b4734 3.258 -b4365 27.032 -b3334 17.234 -b0486 45.659 -b2374 45.828 Homodimer -b4070 53.703 Homodimer -b3708 52.773 Homotetramer -b0394 32.5 -b2636 16.735 -b2332 30.26 -b1893 19.565 -b3060 35.315 -b2082 8.43 -b4264 37.567 -b4340 53.047 -b1227 25.497 Dimer -b4621 7.888 -b2784 83.876 -b2606 13.133 -b4677 2.665 -b1571 5.792 -b3967 31.002 Monomer -b0652 26.661 -b0724 26.77 -b4750 3.193 -b0817 17.64 Homodimer -b3809 30.209 Homodimer -b4304 46.684 -b1629 80.172 -b3156 18.534 -b3237 16.995 Homohexamer -b4179 92.109 Monomer -b2778 32.206 -b4195 17.238 -b3434 21.49 -b2893 25.622 Homodimer -b0570 53.738 -b4377 39.832 -b1584 21.887 Homododecamer -b1514 36.395 -b2095 47.109 -b4258 108.192 Monomer -b2533 29.172 Monomer -b2323 42.613 Homodimer -b3822 68.364 -b3811 33.868 -b2219 67.79 Homodimer -b0759 37.265 Homodimer -b2741 37.972 -b0345 38.59 Homotetramer -b2126 62.092 -b3989 21.131 -b2927 37.299 Homotetramer -b2583 25.995 Monomer -b1340 21.512 -b1410 65.456 -b0365 34.266 -ECOK12F073 15.183 -b2291 22.708 Homodimer -b3917 36.659 -b2777 25.03 Homodimer -b2217 23.671 -b2536 41.593 -b4190 27.588 -b4047 9.749 -b1876 64.683 Monomer -b1464 32.319 Homodimer -JW5928 37.851 -b0192 25.844 -b1357 10.976 -b3129 12.359 Homodimer -b0862 26.217 -b2004 13.684 Homodimer -b0956 17.693 Homodimer -b0607 15.935 -b2813 40.411 -b0537 45.09 -b1311 33.225 -b3561 37.57 -b3194 27.863 -b3801 60.718 -b0440 9.226 Heterodimer -b1946 14.855 -b1868 31.479 -b1856 49.058 -b1003 8.524 -b4143 57.329 -b3126 27.384 Homohexamer -ECOK12F022 10.26 -b4150 41.556 Monomer -b1258 18.597 Homodimer -b2139 52.138 -b3668 56.306 -b4536 8.514 -b3032 30.938 -b0255 15.25 -b0567 33.057 -b2020 46.11 Homodimer -b1321 52.609 -b1131 51.543 Homotetramer -b1925 14.95 -b3141 27.724 -b2101 28.277 -b4485 55.26 -b2478 31.27 Homotetramer -b1611 50.489 Homotetramer -b0039 42.558 Homotetramer -b4684 4.791 -b2003 8.411 -b2799 40.513 Homodimer -b4282 8.714 -JW5902 13.452 -b3532 86.024 -b1589 22.752 -b4602 2.998 -b4015 47.522 Homotetramer -b1480 5.096 -b4476 46.416 -b0150 82.182 Monomer -b2416 63.562 Homodimer -b0988 19.7 -b0391 10.234 -b2841 51.684 -b0169 26.744 -b3667 48.257 -b1018 41.138 Monomer -b3269 43.261 -b0880 7.969 Homodimer -b3866 19.059 Homodimer -b1447 15.855 -b1615 46.648 -b4747 4.711 -b1586 10.477 -b2686 55.624 -b2801 47.545 -b2514 47.029 Homodimer -b2570 16.639 -b1135 24.88 -b0649 55.682 -b4255 15.603 -b2251 16.371 Monomer -b3644 33.175 -b4545 5.315 -b1541 7.276 -b1778 15.451 -ECOK12F052 25.446 -b0187 14.737 -b1206 59.429 -b3159 32.535 -b2961 39.149 Monomer -b2714 36.813 -b1976 30.279 -b1739 12.021 -b2008 39.955 -b1493 52.668 Homohexamer -b3063 52.906 -b1358 15.743 -b4022 32.477 Monomer -b1248 12.687 -b2074 44.464 -b3104 13.456 -b0914 64.461 Homodimer -b2608 20.605 -b4317 96.482 -b1067 24.177 -b2155 73.896 -b4001 26.317 -b4636 7.821 -b4461 48.044 -b2349 44.061 -b2770 28.72 -b1388 35.499 -b3131 29.572 -b4508 8.493 -b1055 39.781 -b1500 7.272 -b4666 2.207 -b0595 32.554 -b0383 49.439 -b3792 44.96 -b4480 31.746 -b0979 42.424 Heterodimer -b1613 42.85 -b4175 37.65 -b1281 26.35 Homodimer -b4221 136.78 -b1900 55.018 -b1431 24.427 -b1037 30.557 -b3481 15.094 Homotetramer -b2479 20.769 -b2199 27.885 -b2526 65.652 -b1886 59.944 -b3966 68.407 -b4020 59.467 -b3578 45.368 -b4543 6.881 -b0076 35.695 -b1741 33.739 -b2223 47.528 -b1605 49.501 -b3323 55.298 -b2068 31.393 Monomer -b1048 57.912 -b3140 29.001 -b3414 20.998 Homodimer -ECOK12F030 55.682 -b4751 6.058 -b0185 35.242 -b2262 31.633 Homohexamer -b4637 3.109 -b1325 34.674 Monomer -b1930 8.639 -b0603 34.397 -b0008 35.219 Homodimer -ECOK12F057 16.38 -b4014 60.274 -b0385 41.537 -b0433 53.245 -b0027 18.156 -b2972 29.466 -JW5936 37.851 -b4464 46.758 -b1117 25.438 -b4356 49.44 -b1850 22.284 Homotrimer -b1675 7.907 -b1822 30.419 Homodimer -b0297 33.175 -b1434 19.731 -b4144 11.958 -b1056 20.912 -b1521 54.808 -b1218 25.512 -b0516 45.694 Homodimer -b3247 55.364 Homodimer -b1009 28.898 -b4542 3.643 -b2365 47.163 -b2113 39.938 Homodimer -b0134 28.237 Homodecamer -b0594 59.112 -b3737 8.256 -b3606 17.726 Homodimer -b3175 11.365 -b0258 43.739 -b0223 28.636 -b0412 19.56 -b3795 50.399 -b2593 26.339 Homodimer -b2721 64.98 -b2194 39.089 -b1022 50.766 -b1656 21.266 Homodimer -b1194 27.857 Monomer -b0009 21.222 Homotrimer -b0760 54.536 -b4385 49.757 -b4488 34.507 Tetramer -b2366 47.901 Monomer -b1363 53.944 -b4332 41.361 -b4330 23.793 -b2013 38.1 -b0510 10.844 -b1097 38.247 Homodimer -b3393 16.846 -b1902 18.894 -b2132 83.46 -b2948 20.686 -b1334 27.967 Homodimer -b2667 10.596 Homodimer -b2661 51.72 Homotetramer -b0784 8.758 Heterotetramer -b1225 58.066 Dimer -b4227 34.345 -b2145 9.264 -b0895 22.869 Heterotrimeric -b1014 143.815 Homodimer -b2737 41.339 -b3523 47.208 -b2569 66.57 -b2398 12.72 -b1000 34.455 -b0766 30.201 -b4463 53.737 -b0340 17.049 Homodecamer -b0948 78.854 Monomer -b4274 13.085 -b2297 77.172 Homohexamer -b4313 23.116 -b2079 27.656 -b3697 29.721 Homodimer -b2075 112.078 -b1962 25.904 -b0004 47.114 -b0705 43.161 -b2458 36.067 Homodimer -b3267 7.452 -b1583 12.909 -b4353 7.729 -b0147 19.934 Monomer -b1594 44.316 Homodimer -b2862 11.291 -JW5935 37.851 -b0356 39.359 Homodimer -b0373 11.543 -b3364 43.166 -b1278 29.021 -b3138 17.622 -b3486 100.785 -b2221 23.526 Heterodimer -b0483 13.171 -b0174 28.444 Homodimer -b3249 18.788 -b4029 78.491 -b1138 27.579 -b1609 49.283 -b4360 17.353 -b2273 27.991 -b3105 33.256 -b2949 15.186 Monomer -b2301 24.326 -b3375 27.821 -b0355 31.424 -b2179 38.092 -b4307 19.957 -b4122 60.105 Homodimer -ECOK12F032 28.164 -b0859 41.956 -b4044 49.646 -b0281 53.074 -b1736 12.748 -b1839 12.378 -b4139 52.356 Homotetramer -b0249 9.014 -b1915 8.239 -b3153 18.858 -b2717 17.057 Monomer -b4347 12.203 -b2984 28.151 -b2182 43.353 -b2576 49.914 -b2065 21.249 Homotrimer -b1397 42.277 -b0048 17.999 -b0194 63.693 Homodimer -b1090 38.214 Homodimer -b0090 37.815 Homodimer -b2104 27.339 -b4309 36.878 -b4669 1.91 -b2129 34.425 -b0984 78.687 -b3787 45.839 Homodimer -b0267 43.769 -b3012 31.11 Monomer -b2907 42.288 -b2572 24.321 -b3956 99.063 Homotetramer -b3293 13.945 -b1765 20.059 Homodimer -b3872 26.939 -b3888 37.094 -b0396 41.926 -b0563 7.088 -b0814 18.603 -b4375 59.574 -b4006 57.329 -b2467 21.749 Homodimer -b0844 30.196 -b1550 6.548 -b2626 24.561 -b0209 29.992 -b3639 43.438 Homododecamer -b3844 26.242 Monomer -b2134 33.887 -b0018 7.742 -b1617 68.447 Homotetramer -ECOK12F008 80.33 -b2964 46.389 -b2872 44.804 -b0189 9.48 -b4051 35.172 Homodimer -b0072 49.882 Heterodimer -b2994 62.491 Heterodimer -b4259 16.633 -b1936 10.732 -b2260 50.185 -b2306 28.653 -b4121 23.442 -b2073 24.218 -b3775 10.232 -b0574 44.305 -b1093 25.56 Homotetramer -b2699 37.973 Polymerizes -b3062 22.679 Heterotetramer -b3322 15.876 -b1593 24.981 Homodimer -b1036 17.074 -b4341 6.709 -b0910 24.746 -b1089 6.446 -b1180 23.711 -b3385 27.389 Monomer -b0108 15.622 -b0367 29.812 -b2764 66.27 -b4016 67.699 -b1826 5.552 -b1229 3.447 -b1710 20.47 -b1019 46.754 Homodimer -b1266 32.58 -b0559 7.624 -b4655 4.779 -b0972 40.681 Heterodimer -b3842 18.34 -b4512 7.467 -b4359 85.494 -b3244 51.364 -b3567 56.47 -b4529 8.696 -b0737 25.598 -b0621 48.412 -b0071 22.487 Heterodimer -b2007 12.778 -b0728 41.393 Heterotetramer -b4311 27.888 Monomer -b1624 38.257 -b3564 52.618 Homodimer -b2394 40.909 -b2244 34.923 -b4595 7.102 -b4211 29.734 Monomer -b2043 51.316 -b4337 44.688 -b3568 41.031 -b4494 18.234 -b0618 40.077 -b3500 48.773 Homodimer -b4618 3.222 -b0441 68.15 -b0315 40.725 -b1267 23.212 -b3534 27.14 -b3431 73.577 Monomer -b1101 50.677 Homodimer -b4559 6.555 -b4518 5.883 -b2060 79.343 -b3093 46.892 -b0569 85.319 -b2549 123.832 -b4159 123.968 Homoheptamer -b2266 11.306 -b1662 23.445 Homotrimer -b2249 44.226 -b1768 23.362 -b3067 70.263 -b4233 49.874 -b2184 66.413 Monomer -b1642 16.353 Homodimer -b3980 43.314 Monomer -b1481 7.987 -b1317 23.565 Monomer -b1654 12.879 Homodimer -b3920 21.763 -b1853 31.976 -b1920 29.039 -b3835 63.203 -b0732 100.015 -b3013 34.983 -b1570 15.656 -b1914 23.893 -b3298 13.099 -b4126 8.55 -b2527 20.138 -b3911 51.624 -b4774 2.4 -b1543 46.267 -b0834 49.873 Homodimer -b3848 21.757 Monomer -b3473 42.156 -ECOK12F001 11.543 -b0149 94.293 -b0392 10.618 -b1238 23.457 Homotetramer -b0336 43.65 -b3127 49.009 -b1185 20.142 -b0035 21.244 -b3452 33.264 -b0892 49.626 Homotetramer -b4487 13.469 -b4537 9.123 -b3405 27.354 Monomer -b3648 23.593 Homotetramer -b1430 22.531 Homodimer -b4217 8.072 -b1082 57.93 -b2263 27.682 Monomer -b3633 47.291 -b4023 10.532 -b4147 20.591 -b1380 36.535 -b0841 22.399 -b0843 9.971 -b4695 15.411 -b2585 52.802 Multimeric -b0599 39.092 -b4354 77.324 -b1353 19.244 -b0474 23.586 Monomer -b1547 32.902 -b2910 12.594 Homodimer -b0566 29.019 -b1805 62.332 Homodimer -b0133 31.598 Homodimer -b2066 24.353 Homotetramer -b2206 93.042 -b3091 54.093 -b0057 5.737 -b4415 5.564 -b4030 15.597 -JW5900 13.452 -b0435 11.994 -b0324 50.549 -b2491 75.305 -b3134 13.721 -b3266 111.454 -b3320 22.244 -JW1882 37.851 -b0326 31.793 -b2414 34.49 Homodimer -b1428 35.849 -b1337 52.194 -b3552 22.197 -b2525 12.331 -b3029 11.532 Homodimer -b3487 38.828 -b1171 11.852 -b2812 28.562 -b1508 10.016 Homodimer -b0982 16.386 -b3342 13.737 -b1655 29.917 -b1987 35.856 -b0040 56.587 -b1638 25.545 Homodimer -b2822 128.848 Heterotrimer -b4181 14.935 -b3412 28.505 Monomer -b3506 20.964 -b2233 131.153 -b1569 8.578 -b4271 45.582 -b4210 35.208 -b2216 100.372 -b4728 2.33 -b1693 27.467 Homodimer -b2876 28.103 -b1683 54.745 -b2224 40.352 -b2869 66.096 -b3764 13.134 -b3925 35.852 Homodimer -ECOK12F071 14.507 Homotetramer -b3382 13.528 -b3121 45.251 -b0252 31.051 -b3166 35.087 -b3081 72.678 Monomer -b2265 48.765 Homodimer -b1997 13.452 -b3106 25.895 Monomer -b0765 39.102 -b2730 35.092 Homodimer -b4389 49.472 -b1990 34.411 -b0184 129.905 -b2794 32.588 Homodimer -b4046 19.254 -b2480 17.634 Monomer -b3635 30.29 Monomer -b0484 87.873 -b0138 20.307 -b0602 47.827 -b4349 59.307 -b3922 10.776 -b0633 37.528 -b3881 31.983 -b0142 18.079 Monomer -b3559 76.813 Tetramer -b0074 57.298 Homotetramer -b2767 9.662 -b3546 63.804 -b1186 56.728 -b0727 44.011 -b2803 52.259 -b4135 21.931 -b1260 28.724 Tetramer -b3006 26.287 -b3211 34.607 -b0579 14.05 -JW5933 35.098 -b2760 55.901 -b1303 36.986 -b0407 11.887 -b2646 12.308 -b0806 8.896 -b4293 19.48 -b1372 113.78 -b2081 51.193 -b3709 45.211 -b4040 32.512 -b3464 54.513 -b3636 6.372 -b0065 28.244 -ECOK12F055 28.808 -b1883 37.468 -b2701 40.256 Monomer -b0087 39.875 -b4209 24.883 Homodimer -b4381 27.734 Monomer -b2828 33.108 -b2388 34.723 -b1134 17.433 Monomer -b0540 11.543 -b4026 7.386 -b1298 28.013 Homodimer -b4083 73.151 -b4131 81.26 Homodecamer -b2700 17.582 Homodimer -b2178 40.36 -b2891 41.251 -b1520 34.809 -JW5951 37.851 -b1877 18.885 -b4501 7.678 -ECOK12F084 99.192 -b2202 23.101 -b0976 14.89 -b1123 38.867 -b4799 2.14 -b0250 17.026 -b1439 52.793 -b4752 6.767 -b0218 12.136 -b4387 24.083 -b3022 11.232 -b3478 30.362 -b4004 48.395 Monomer -ECOK12F077 25.627 -b1542 53.685 -ECOK12F026 182.631 -b3898 38.733 -b4178 15.593 -b1777 10.338 -b0915 35.589 -b4680 2.704 -b2381 28.721 -b3647 63.179 -b3360 20.772 Monomer -b0696 20.267 -b2912 21.105 -b1838 25.274 -b2854 18.277 -b4817 7.582 -b1952 6.946 -b0533 35.696 -b1177 13.414 -ECOK12F023 8.15 -b0081 17.386 Dodecamer -b4727 1.69 -b0283 34.954 Homodimer -b0628 36.072 Monomer -b0038 45.127 Homodimer -b1832 18.122 -b4034 43.388 -b4526 6.584 -b1440 42.295 -b2099 35.621 -b4593 6.518 -b3884 28.507 Monomer -b3769 9.703 Tetramer -b4558 7.177 -b2531 17.337 -b1329 59.9 -b3236 32.337 Homodimer -b3834 22.153 -b3609 17.277 Homotetramer -b1604 33.903 -b0079 3.291 -b4754 3.191 -b1282 11.396 -b1339 34.058 -b3505 37.851 -ECOK12F083 8.313 -b1006 45.557 -b3238 9.196 -b0623 7.463 -b2933 48.971 -b4160 35.934 Heterodimer -b3374 28.332 Monomer -b3240 73.591 -b2248 28.904 -b0879 70.702 Homodimer -b2790 16.274 Monomer -b1237 15.54 Homodimer -b0041 27.144 Heterodimer -ECOK12F039 33.661 -b3198 19.997 Homotetramer -b1305 8.763 -b1518 11.255 Homodimer -b0709 54.159 -b3180 10.784 -b3883 31.728 -b2288 16.457 -b1010 13.763 Homotrimer -b2517 43.086 -b1942 17.307 -b3598 13.866 -b2866 81.321 Heterotrimer -b1074 13.968 -b2430 47.752 -b2971 14.67 -b1323 57.656 Homodimer -ECOK12F021 13.452 -b2186 37.823 -b2293 23.008 -b2782 12.098 -b1711 34.949 -b0781 37.346 Monomer -b3389 38.881 Monomer -b1280 44.531 -b3665 63.739 Homodimer -b2546 34.483 -b4392 73.353 -b3711 36.882 -b1250 46.063 Dimer -b2378 35.493 -b2372 33.616 -b0157 22.128 -b4569 19.193 -b2926 41.118 Monomer -b2970 37.349 -b1755 56.243 -b3480 29.722 -b4514 9.555 -b2610 49.787 -ECOK12F086 23.63 -ECOK12F092 12.945 -b2909 21.23 -b4027 23.755 -b3959 27.16 Homodimer -b3096 14.172 -b3755 26.076 -b4218 49.763 -b1217 8.945 Monomer -b2027 36.455 Homodimer -b4300 29.268 -b0437 23.187 -b4393 12.355 Homodimer -b0195 26.362 Homodimer -b0585 45.652 Monomer -b3859 38.12 Monomer -b3484 43.146 -b1889 34.186 -b3934 37.82 -b2903 104.376 -b4767 2.019 -b1420 5.894 -b3643 24.425 Homodimer -ECOK12F066 6.108 -b1071 10.341 -b0126 25.097 Homodimer -b0091 53.626 -b4038 51.708 -b3905 32.315 -b3717 22.485 -b1476 25.368 Trimer -b3485 41.062 -b0919 34.488 -b3650 79.342 -b2211 61.553 -b1938 60.589 -b2826 17.865 -b1133 40.959 -b2328 30.137 Dimer -b3833 28.073 -b2077 50.901 -b0791 15.465 -b4225 12.492 Homodimer -b2668 18.639 -b0780 32.788 -b1955 30.439 -b4492 87.13 -b2281 20.538 -b0632 44.444 -b3806 97.586 -b1024 92.207 -b3347 28.882 -b1740 30.637 Homodimer -b1511 57.545 -b3998 24.673 Monomer -b0459 20.096 Homodimer -b0093 31.434 -b2333 18.951 -b0310 25.589 -b3039 29.903 Monomer -b4386 37.926 Monomer -b0882 84.207 -b2432 20.898 -b0718 90.128 -b1804 42.734 -b2516 36.192 -b1912 20.701 -b4388 35.043 -b0534 18.223 -b1021 16.082 -b2123 16.594 -b2019 33.367 -b1295 9.321 -b1211 40.517 -b2158 36.882 -b4505 12.857 -b1070 15.867 -b2664 24.991 -b0681 52.78 -b3458 39.379 -b4351 33.52 -b4741 3.823 -b3743 16.888 -b3962 51.56 Homooligomer -ECOK12F094 10.866 -b2424 30.292 -ECOK12F063 15.853 -b1610 35.783 Monomer -b0716 39.539 -b0446 30.371 -b2358 14.401 -b4586 18.118 -b2218 106.506 -b3830 29.425 -b4812 4.477 -b3050 23.087 -b2174 26.759 -b4746 1.481 -b4383 44.37 -b2445 13.778 -b0556 17.226 -b1473 31.539 -b2497 45.06 -b2476 26.995 Homotrimer -b4662 5.338 -b4169 47.985 -b0190 20.877 -b3019 83.831 Heterotetramer -b3132 47.192 -b4207 22.216 Homodimer -ECOK12F051 11.429 -b4411 4.81 -b0263 13.093 -b3727 34.121 -b3400 15.496 Monomer -b1701 62.759 Homodimer -b3740 23.431 -b0342 22.799 Homotrimer -ECOK12F034 18.133 -b2783 9.356 -b1449 37.61 Homodimer -b0822 30.413 Homodimer -b2121 42.119 -b0229 63.153 -b3343 10.718 Heterohexamer -b4242 99.466 -b4096 24.705 -b1308 11.475 Monomer -b4320 31.473 -b3168 97.35 -b4301 23.214 -b1300 53.419 -b0207 29.437 Monomer -b1384 34.62 -b2111 19.061 -b3951 85.96 -b3944 22.955 -b2346 28.042 -b2071 17.428 -b4555 11.07 -b0792 41.566 -b0613 31.644 -b1038 15.056 -b2324 74.434 -b1487 57.641 -b2698 19.424 -b0119 13.942 -b2214 38.549 Homodimer -b1008 21.57 -b2098 47.359 -b3960 50.318 -b4137 12.331 Homotrimer -b1732 84.163 Homotetramer -b1489 90.26 Homodimer -b4781 1.029 -b0069 63.975 -b4683 3.203 -b3878 77.275 -b0830 56.47 -b0918 27.614 -b1874 26.762 Homodimer -ECOK12F044 29.627 -b4141 44.778 -b2755 33.194 Homodimer -b3071 23.401 Oligomer -b0865 18.991 -b1648 9.359 -b4777 3.906 -b0676 44.541 -b1103 13.241 Homodimer -b0402 50.216 -b4224 9.272 -b2156 53.576 -b4294 9.925 -b4407 7.311 -b3442 44.231 -b0424 20.777 Homodimer -b2544 32.716 -b3148 14.798 -b0427 48.81 -b2688 58.269 -b0970 23.363 -b1823 7.402 -b4797 2.183 -b3228 18.262 Homodimer -b4281 8.821 -b0997 94.456 -b1159 31.39 -b3873 36.942 -b0303 8.472 -b1981 47.817 -b4042 13.245 Homotrimer -ECOK12F070 19.285 -b2962 10.953 Monomer -b4231 34.978 -b4318 18.715 -b4786 2.198 -b3315 12.226 -b1236 32.942 Homotetramer -b4538 12.969 -b0015 41.1 Homodimer -b0940 95.242 -b3456 46.269 -b1830 76.663 -b0129 16.54 -ECOK12F089 65.715 -b4732 3.234 -b1441 37.041 -b4788 1.576 -b3380 44.56 -b0929 39.333 Homotrimer -b2945 26.709 -b2154 31.259 Homotetramer -b3120 20.577 -b2871 43.328 Homodimer -b1770 28.261 -b1773 30.81 -b3268 37.021 -b3659 43.493 -b1789 15.256 -b0275 9.902 -b1733 27.774 Homodimer -b2607 28.422 Homodimer -b3462 38.544 -b1122 17.416 -b4687 3.103 -b3169 54.871 Monomer -b1641 15.602 -b2628 62.007 -b1172 10.807 -b2466 38.746 -b1291 37.661 -b0661 53.663 Monomer -b3212 163.297 -b1896 53.611 Homotetramer -b1957 6.678 -ECOK12F046 43.66 -b2709 55.236 -b3689 46.187 -b4544 12.192 Heterodimer -b0920 28.666 -b0466 6.025 -b1760 9.947 -b3907 37.32 -b0088 46.974 -b2246 46.294 -b0096 33.956 -b2270 63.634 -b0930 52.57 Homodimer -b0888 34.623 Homodimer -b0127 34.647 -b0899 52.496 -b1578 24.724 -b3491 37.657 -b0325 37.978 -b0368 32.41 Homodimer -b2072 27.208 -b1614 54.689 Homodimer -b4054 43.538 Homodimer -b4533 9.023 -b4220 64.796 -b4315 19.373 -b2756 22.293 -b1704 38.735 -b3160 37.129 -b4188 9.949 -b4733 5.943 -b2022 40.278 -b2147 45.069 Heterotetramer -b0738 15.383 -b4372 15.174 -b1374 21.908 -b0499 26.96 -b1529 23.617 -b1148 12.156 -b4253 69.578 -b3216 86.289 -b4753 2.617 -b0835 49.582 -ECOK12F033 37.284 -b3593 156.321 -b0945 36.775 Monomer -b1971 37.369 Heterodimer -b3903 47.199 Homotetramer -b2468 71.844 -b4676 3.458 -b2285 18.59 -b2558 58.302 -b2532 27.048 Homodimer -b4265 46.041 -b0723 64.422 -ECOK12F050 16.507 -b0472 21.963 -b0158 29.367 -b2742 40.149 -b1270 21.999 -b3255 16.687 Homodimer -b1166 9.694 Homodimer -b2392 44.194 -b1795 8.671 -b4395 24.065 -b0531 25.458 -b0254 33.639 -b3685 58.939 -b2937 33.557 -b3974 36.36 -b1336 54.886 -b2723 64.077 -b3392 15.098 -b0372 33.54 -b0434 20.95 -b1136 45.757 Homodimer -b3289 48.348 -b0130 46.315 -b3875 27.2 -b3994 70.85 Homodimer -b1587 89.78 -b4172 11.166 Homohexamer -b3680 33.958 -b4820 2.169 -b4358 36.448 -b2733 95.247 -b0813 31.168 -b1869 15.226 -b2118 138.068 -b0363 44.708 -b2423 32.538 -b1607 12.323 -b1382 6.84 -b0300 28.475 -b0456 13.318 -b0571 25.395 -b1288 27.864 Homotetramer -b3495 16.066 Homodimer -b3184 34.963 -b2977 13.737 -b4663 3.408 -b2205 24.925 -b3314 25.983 -b2734 25.098 -b3896 39.294 -b1198 51.449 Homodimer -b0873 60.064 -b2986 25.356 -b2528 11.556 Homodimer -b1682 27.582 -b4462 85.227 -b4474 31.169 Homooctamer -b2064 68.963 -b4352 35.66 Monomer -b4257 44.9 -b1442 34.36 -b1845 79.491 -b1104 13.981 -b1626 16.319 -b0730 28.273 -b3744 36.651 Homodimer -b0496 89.332 -ECOK12F102 81.489 -b0698 59.189 -b4334 27.255 Homodimer -b0493 29.41 -b2091 37.39 -b1127 44.923 Homodimer -b3972 37.851 Monomer -b4241 34.531 Homodimer -b4149 19.852 Homodimer -b3365 93.121 Homodimer -b2367 56.001 -b3248 21.515 Homodimer -b3371 38.569 Homododecamer -b1599 11.72 -b1432 45.741 -b2344 48.542 -b3181 17.641 -b0564 28.763 -b3702 52.551 -b1659 35.25 -b1023 77.413 -b1834 94.97 Homohexamer -b0714 29.845 -b0104 37.384 Homotetramer -b4339 21.769 -b2225 28.304 -b3581 23.445 Homodimer -b1548 21.404 -b2241 58.958 -b1577 35.071 -b3391 44.716 -b3024 14.011 -b3698 13.787 -b4192 40.061 -b0480 60.824 Monomer -b0942 18.914 -b2426 27.85 -b3173 60.753 -b3328 15.905 -b0023 9.684 -b3027 13.201 -b2461 17.659 -b2012 8.148 -b4500 151.114 -b0752 34.678 -b3118 34.539 -b4824 2.149 -b0850 10.521 -b1888 71.382 -b1699 45.923 -b2852 52.753 -b0178 17.688 Homotrimer -b4194 10.896 -ECOK12F096 12.587 -b1203 39.667 Monomer -b1168 56.906 -b3868 52.255 Homodimer -b4465 45.818 -b1392 39.32 -b0086 47.447 Monomer -b0885 26.619 Monomer -b1375 8.751 -b4088 32.91 -b0109 32.762 Homodimer -b0677 40.949 Homotetramer -b4075 14.523 -b3300 48.512 -b1445 6.646 -b0827 44.067 Homodimer -b0552 37.851 -b3821 33.163 Homodimer -b0181 28.08 Homotrimer -b3824 22.427 -b3558 33.477 -b0553 40.302 Homotrimer -b2556 53.33 -b4108 12.345 -b3812 27.122 -b0220 16.872 Homodimer -b1385 53.699 Homodimer -b1213 14.639 -b1803 35.661 -b0238 16.971 Homotetramer -b0485 32.903 Homotetramer -b3657 50.948 -b4186 45.02 -b4080 53.453 -b4367 30.113 -b0344 116.483 Homotetramer -b2128 25.515 -b1744 35.8 -b3747 69.294 -b1540 26.565 -b3693 31.374 -b0523 17.78 Homooctamer -b4588 3.644 -b2501 80.432 Homotetramer -b0230 23.779 -b4074 61.295 -b3910 25.343 Monomer -b0432 34.911 Heterooctamer -b1307 8.042 -b2080 12.024 -b3780 47.126 -b3521 33.33 -b1245 33.022 -b0546 30.841 -b2771 48.234 -b3525 29.601 -b2168 33.756 Homodimer -b4291 85.322 -b1396 14.851 Homotetramer -b3865 23.561 -b3996 29.689 Homodimer -b3646 22.048 -b4745 7.383 -b0870 36.495 Homotetramer -b4423 4.014 -b2929 19.272 -b3158 37.047 -b2362 13.672 -b3088 35.909 -b4120 52.636 Monomer -b4541 12.603 -b2681 41.655 -b0682 11.999 -b4729 8.638 -b0886 62.92 -b1289 13.989 -b3614 35.353 -b3982 20.532 Monomer -b2153 24.831 -b2451 49.599 -ECOK12F072 27.062 -b0650 61.986 -b1757 48.229 Monomer -b0763 27.364 -b2342 46.531 Heterotetramer -b3640 16.287 Homotrimer -b0503 41.111 Monomer -b3793 51.517 -b3573 17.459 -b1791 41.208 -b1210 46.307 Homodimer -b3704 13.789 -b0461 14.557 -b2417 18.251 Heterodimer -b1982 53.995 Homohexamer -b0438 46.356 -b2992 17.964 -b1672 24.421 -b3771 65.532 Homodimer -b0699 8.275 -b3312 7.273 -b2327 28.643 -b1544 8.778 -b2259 9.871 -b1657 40.064 -b1635 22.868 Homodimer -b4050 9.023 -b3164 77.101 -b3503 15.853 -b3292 16.179 Homodimer -b3028 21.891 Homodimer -b0401 46.209 -b0286 24.343 Heterotrimer -b2839 34.365 -b3137 31.294 Homotetramer -b3785 39.489 -b3752 32.291 Homodimer -b3902 30.145 Homotetramer -b2818 49.195 Homohexamer -b3641 22.836 Homodimer -b0408 66.632 -b3596 18.079 -b3572 46.711 Homodimer -b2023 21.653 Heterodimer -b3157 19.672 -b4112 41.029 -b4073 35.042 -b4551 7.599 -b4328 41.084 -b2983 38.533 -b1565 11.308 -b2269 46.078 -b4273 34.398 -b1576 6.842 -b2456 9.956 -b2566 33.81 Monomer -b2906 44.245 Homotetramer -b1448 19.248 -b0005 11.355 -b3999 22.613 -b1931 24.979 -b4601 3.236 -b3661 29.424 -b2838 46.177 -b3627 39.423 -b2976 80.489 Monomer -b0171 25.97 Homohexamer -b4180 26.557 Homodimer -b2130 41.139 -b4113 25.031 Homodimer -b1457 18.907 -b2197 17.698 -b1663 49.447 -b0228 20.042 Monomer -b1463 32.275 Homodimer -b2220 52.176 -b1950 28.543 -b2726 13.168 Homodimer -b2107 12.466 -b3900 16.094 -b2710 54.234 Homotetramer -b0338 32.961 -b2887 69.089 -b2177 69.669 -b2062 41.91 -b1572 4.688 -b1381 96.835 -b3918 28.451 -b0565 35.562 Homopentamer -b0679 68.347 -b3068 18.673 -b1534 42.659 -b1519 29.006 Monomer -b0952 20.634 -b3056 46.467 Monomer -b2793 20.708 -b0477 48.449 Homodimer -b2442 45.382 -b4140 17.692 -b0810 24.364 -b1535 33.863 Homodimer -b0448 66.017 -b1694 57.562 Homotetramer -b4453 3.917 -b3161 44.333 -b2601 38.804 -b2112 10.137 -b1379 15.166 -b2819 66.902 Heterotrimer -b0464 24.767 -b3469 76.84 -b3311 9.704 -b4490 30.292 -b1560 39.26 -b4079 79.374 -b0176 49.071 -b1208 30.925 Homodimer -b3421 45.222 Monomer -b3696 24.17 -b1114 129.983 Monomer -b1908 25.039 -b3083 12.103 -b1051 14.259 -b0034 15.436 -b1492 55.077 Monomer -b3299 4.364 -b1085 12.1 -b0986 24.268 -b1799 34.631 -b1361 20.05 -b2508 52.022 Homotetramer -b0713 25.8 -b4161 39.193 Monomer -b2660 46.082 -b4748 4.013 -b0959 24.147 -b3033 16.548 -b2234 85.775 Tetramer -b4012 16.447 -b0364 20.487 -b1100 29.809 -b1953 8.579 -b1552 7.684 -b2573 21.696 -b4509 5.494 -b1751 24.125 -ECOK12F078 50.46 -b1786 56.603 Homodimer -b3804 27.798 Monomer -b4477 21.391 Homotrimer -b1149 50.871 -b0064 33.384 Homodimer -b1941 49.316 -ECOK12F088 23.433 -b4272 13.452 -b3637 9.006 -b3530 127.724 -b1988 32.835 -b0731 69.668 -b1012 42.219 -b0631 9.827 -b0630 23.883 Monomer -b4469 83.478 -b1935 13.396 -b2274 16.163 -b4177 47.345 Homodimer -b4373 16.61 -b3929 17.36 Homotrimer -b0687 20.315 Homodimer -b2598 1.924 -b1783 74.48 -b1020 39.265 -b4783 2.162 -b3625 27.461 -b3514 111.517 Homotrimer -b3575 36.573 Homodimer -b3324 30.038 -b0871 62.011 Homotetramer -b0576 50.677 -b0592 34.283 -b1667 11.288 Homodimer -b3786 42.245 Homodimer -b4114 61.667 -b3336 18.495 Homooligomer -b3765 55.146 -b2069 49.371 -b2210 60.23 -b0558 16.414 -b1176 24.776 -b1513 55.821 -b2334 17.89 -b1761 48.581 Homohexamer -b3846 79.594 Heterotetramer -b4146 38.75 -b2085 11.465 -b3430 48.698 Homotetramer -b3547 42.951 -b2379 46.216 Homodimer -b4522 5.337 -b0852 32.436 -ECOK12F043 11.707 Homodimer -b2614 21.798 Homodimer -b1709 27.081 -ECOK12F095 19.719 -b3165 10.269 -b1435 72.702 -b1907 42.819 -b4497 26.725 -b3628 40.826 -b4384 25.95 Homohexamer -b1047 44.69 -b3580 55.155 Homodimer -b2594 37.122 -b1960 18.016 -b0527 19.53 -b0861 24.914 -b4547 8.071 -b0047 67.796 Homodimer -b4556 23.724 -b1106 32.397 -b4171 35.065 Monomer -b1196 16.695 -b3952 32.43 -b0987 9.508 -b3867 52.729 Monomer -b0376 41.849 -b4737 0.915 -b3390 19.538 Monomer -b2339 19.851 -b1905 19.424 Homooligomer -b1728 22.35 -b2067 123.887 Homodimer -b4204 29.739 -b2140 35.199 -b3915 32.927 Homodimer -b3588 56.306 Homotetramer -b2431 33.052 -b1723 32.456 Homodimer -b1618 21.799 -b2735 27.435 -b1829 31.923 -b1386 84.379 Homodimer -b1141 9.287 -b0021 19.565 -b4615 12.34 -b1355 5.194 -ECOK12F068 11.008 -b0262 39.059 -b4003 51.032 -b1958 32.191 -b4726 1.758 -b0973 66.253 Heterodimer -b0593 42.932 Monomer -b4371 37.625 Monomer -b1536 14.121 -b0481 17.093 -b2058 17.616 -b3152 23.198 -b4199 10.149 -b3288 34.168 Monomer -b3448 16.624 -b2687 19.416 Homodimer -b0966 11.779 -b0445 64.992 -b2409 33.903 -b0958 18.801 -b0646 55.256 -b4244 17.121 Heterododecamer -b3195 29.097 -b2380 62.657 -b3950 11.248 -b2192 37.851 -b2703 33.332 -b0046 20.17 Homodimer -b2672 11.847 -b1970 15.46 Homotetramer -b2035 44.744 -b0213 27.244 -b0163 15.096 -b2387 11.735 -ECOK12F103 26.259 -b3810 26.729 -b0175 31.454 -ECOK12F010 113.788 -b2922 26.635 -b1338 46.588 -b1819 30.955 Homotrimer -b4798 2.827 -b2957 36.851 Homotetramer -b4064 45.711 -b4397 17.108 -b1299 20.092 -b4579 24.932 -b0680 63.478 Monomer -b3003 31.488 -b3271 28.574 -b1046 53.666 -b3874 46.335 -b2751 52.558 Heterodimer -b0755 28.556 Homodimer -b0279 32.679 -b2399 14.91 -b2204 31.874 -b0308 25.213 -b0590 33.871 -b1686 14.945 Homotetramer -b1992 26.386 -b3515 28.028 Homodimer -b2135 21.691 -b1474 112.963 Trimer -b2824 14.973 -b3687 15.774 Monomer -b0154 45.366 Homodimer -b0422 8.952 Heterooligomer -b4350 134.095 -b2377 8.874 -ECOK12F011 40.465 -b3513 41.191 Homotrimer -b2833 7.877 -b2460 25.418 Homodimer -b0089 45.987 -b0702 12.557 -b0136 21.112 -b3584 27.414 -b1079 24.615 -b4668 2.064 -b3179 23.335 -b3368 49.951 Monomer -b0790 28.79 -b1644 31.496 -b0111 32.122 -b3678 57.295 -b1937 11.127 -b0495 24.533 -b2996 36.003 -b3818 14.408 -b2056 45.409 -b2954 21.039 Homodimer -b1726 20.367 -b0098 102.023 Monomer -b1015 54.344 -b3388 46.162 -b3887 15.95 Homodimer -b0845 41.852 -b3075 36.21 -b3304 12.77 -b1202 99.685 -b3791 41.901 Homotetramer -b0309 7.854 -b2881 103.519 -b3183 43.286 Monomer -b0615 55.173 Oligomer -b1362 11.07 -b2029 51.481 Homodimer -b2704 13.304 -b3149 21.106 Homotetramer -b0526 52.202 Monomer -ECOK12F040 84.966 -b0415 16.157 -b1865 17.306 -b4043 22.358 Homodimer -b3154 16.776 -b1108 21.226 -b2535 49.04 -b2745 39.091 Monomer -b0458 18.267 -b3684 27.328 -b0715 36.884 -b0026 104.297 Monomer -b3783 47.004 Homohexamer -b2255 74.289 Homohexamer -b3498 77.167 -b2716 53.935 -b3550 17.104 -b3508 23.213 -b4089 32.362 -b2230 62.671 -b0904 30.991 -b0468 14.77 -b0639 24.528 -b1892 13.316 Homodimer -b2275 32.136 -b3742 15.808 Homodimer -b0941 37.851 -b2580 25.693 Monomer -b2761 100.545 -b0771 81.505 -b0287 22.967 Homodimer -b2277 56.525 -b1276 97.677 Monomer -b3724 27.417 Homodimer -b4287 28.191 -b4421 3.972 -b2940 8.114 -b3399 25.399 -b2050 44.914 -b1621 56.627 -b3344 13.045 Heterohexamer -b2295 17.213 -b4613 3.021 -b2510 7.994 -b0856 35.49 -b4772 4.937 -b2748 11.622 -b3119 8.608 -b0740 45.956 -b3310 13.541 -b2137 26.951 -b3041 23.353 Homodimer -b4237 17.446 Monomer -b3583 25.561 -b2370 134.743 -b4162 20.816 Homodimer -b0145 17.528 -b0614 20.27 -b0840 28.548 Homooctamer -b3449 27.41 -b0128 28.516 -b4312 22.993 -b4035 40.99 -b2325 10.0 -b1399 35.295 -b4503 6.953 -b4819 3.427 -b2449 14.554 -b4705 5.031 -b3566 35.734 -b1818 27.636 Homotrimer -b4801 2.72 -b2538 51.109 -b2553 12.425 Homotrimer -b0457 58.72 -b3313 15.281 -b1650 39.516 -b1637 47.527 Homodimer -b3557 19.725 -b2316 33.322 -b3443 15.95 -b2513 22.176 -b2015 34.169 -b0489 33.743 -b0658 33.298 -b4660 61.576 -b2574 60.337 Monomer -b1774 37.701 -b4187 60.59 Homotetramer -b2874 33.071 -b2982 37.851 -b1564 9.071 Homotetramer -b2870 44.187 Homotrimer -b3586 41.771 -b3082 14.995 -b0736 15.562 -b2851 19.093 -b0825 22.997 Homodecamer -b4658 12.628 -b0508 29.377 Homodimer -b1324 17.835 Homodimer -b0846 20.307 -b2254 36.339 -b4355 59.443 -b1063 20.5 -b0307 53.052 -b0289 26.628 -b0707 20.211 -b2243 44.108 -ECOK12F093 12.131 -b0509 30.801 -ECOK12F029 35.499 -b1602 48.723 Heterodimer -b0847 60.351 -b3259 31.877 -JW2286 9.868 -b3363 20.431 -b1257 18.961 -b2753 37.92 -b2729 41.363 Monomer -b0975 21.546 -b0151 28.886 -b2834 38.5 -b0839 43.609 -b3367 28.563 -b2357 18.766 -b1595 33.281 -b0580 9.404 -b0253 31.892 -b3517 52.685 Homohexamer -ECOK12F100 19.518 -b1456 77.142 -b2166 33.573 -b0751 26.996 -b3973 35.312 Monomer -b3086 25.48 -b4127 10.468 -b3718 26.279 -b1901 35.541 -b0320 55.581 -b4795 8.757 -b3715 24.664 -b1792 13.386 -b4290 33.146 -b1060 9.664 -b1393 27.237 -b3861 52.637 -b2000 106.825 -b0764 24.939 -b2360 30.443 -b4124 27.488 -b3736 17.264 -b0506 29.27 Homotetramer -b2465 73.043 Homodimer -b1286 72.491 -b0036 28.19 Homotrimer -b4279 44.104 -b4481 40.64 -b2369 22.69 Homodimer -b2232 26.555 Homodimer -b1043 11.967 -b2492 30.565 -b0321 50.374 -b0470 71.138 -b3222 29.644 Homodimer -b0137 21.047 -b2991 12.697 Monomer -b4103 13.335 -b1749 30.969 Monomer -b0173 43.388 Homodimer -b1788 3.772 -b3858 10.273 -b1466 26.161 -b2151 37.357 Homodimer -b1996 34.398 -b2088 11.543 -b3784 40.957 -b2167 57.519 -b2389 43.574 -b2482 72.583 -b3005 15.527 -ECOK12F045 29.359 Monomer -b1214 30.841 -b3095 24.585 -b0777 28.276 -b4119 50.657 Homodimer -b1494 104.656 -b0953 6.507 -b4335 42.743 -b3316 10.43 -b2245 28.916 Homohexamer -b0382 9.937 -b4184 14.224 -b2102 31.604 -b4674 2.657 -ECOK12F069 31.615 -b0635 70.857 -b2541 28.5 -b1943 39.312 -b0419 36.42 -b4238 80.023 Homodimer -b0757 41.442 -b2719 27.999 -b0587 42.1 -b1860 37.174 Homododecamer -b3751 30.95 -b3202 53.99 -b1601 37.543 -b0754 38.01 Homotetramer -b1895 15.633 -b3346 26.821 -b1719 74.014 Homodimer -b1112 8.815 -b2697 96.032 Homotetramer -b3803 42.963 Homooligomer -b2309 28.483 -b0016 40.909 -b1035 20.724 -b3203 10.75 -b4246 5.098 -b1698 33.77 -b4467 45.11 -ECOK12F074 12.768 Monomer -b1837 7.315 -b2835 41.656 -b1527 42.841 -b3936 7.871 -b2868 16.922 Heterotrimer -b0240 15.655 -b3319 22.087 -b1347 7.863 -b4288 34.131 -b3626 39.04 -b4348 51.395 -b3845 40.876 Heterotetramer -b3136 41.783 -b3408 8.371 Monomer -b0773 17.085 Homodimer -b1408 22.524 -ECOK12F012 16.141 -b0990 7.781 -b0431 74.368 Heterooctamer -b1331 37.851 -b0469 19.859 Homodimer -b4306 27.354 -b0513 47.239 -b0858 18.518 -b0487 15.235 Homodimer -ECOK12F025 9.271 -b1730 30.16 -b4324 29.308 -b3631 42.284 -b0318 21.687 -b3345 13.641 Heterohexamer -b1290 30.571 -b0802 8.568 -b4092 27.848 Homodimer -b2363 12.133 -ECOK12F031 10.249 -b2650 18.024 -b3721 53.161 -b2036 42.966 Homodimer -b4557 9.381 -b4346 53.157 -b4338 12.078 -b1268 71.289 -b3597 41.988 -b2435 31.412 -ECOK12F042 8.372 Homodimer -b3162 70.546 -b1651 14.92 Homodimer -b1916 28.117 -b0160 59.383 Homotetramer -b2471 13.601 -b1687 113.248 -b1342 36.612 -b4757 3.112 -b2805 27.362 -b0551 14.176 -b2560 24.439 -b3256 49.321 -b0600 42.963 Homodimer -b1742 21.577 -b0492 31.791 -b2503 85.608 -b2494 53.908 -b1041 15.882 -ECOK12F058 15.695 -b3440 38.765 -b4735 3.827 -b1132 22.948 -b3528 45.436 -b3209 22.982 Homodimer -b3726 32.322 -b1875 21.205 -b3953 12.637 -b0719 19.838 -b3790 24.22 Homodimer -b3870 51.904 Oligomer -b4771 1.882 -b0823 90.125 -b2678 37.62 -b1750 26.058 -b0712 34.386 -b0917 6.855 -ECOK12F087 36.787 -b4039 18.777 Monomer -b0786 25.902 -b3243 34.516 -b1164 8.769 -b1735 32.968 Homodimer -b1294 61.565 -b2696 6.856 Homodimer -b1418 20.286 Monomer -b2644 17.964 -b0284 78.088 Heterotrimer -b3511 20.903 -b0328 24.811 -b1864 26.423 -b1402 34.398 -b0925 67.812 -b2078 51.991 -b4185 23.352 -b1059 40.902 Monomer -b1731 9.377 -b0739 43.157 -b3407 85.12 -b3981 13.643 -b3701 40.587 -b0381 39.316 -b1809 12.493 -b2534 31.516 -b2863 29.513 -b1002 45.683 Homodimer -ECOK12F020 34.398 -b2200 23.619 -b1807 25.181 Homodimer -b4724 7.141 -b4475 35.903 -b1315 38.652 -b3359 43.767 Homodimer -b2382 32.356 -b2289 34.594 -b2354 16.408 -b3778 77.024 Homodimer -b0471 12.015 Homodimer -b2853 8.055 -b3877 50.982 -b2400 53.816 Monomer -b0242 39.057 Homotetramer -b3714 46.866 -b1713 87.378 Tetramer -b0420 67.617 Homodimer -b0809 26.731 Heterotetramer -b4566 9.734 -b3735 19.332 -b2747 25.737 Homodimer -b0753 12.872 -b0350 28.89 -b2149 56.415 -b3133 17.086 -b3416 78.503 -b4378 28.909 -b0659 17.526 -b2930 34.323 Homodimer -b3753 36.612 -b3454 26.31 -b1746 53.026 -b3863 103.118 -ECOK12F091 27.973 -b0692 46.495 Monomer -b1261 42.983 Tetramer -b0358 29.04 -b3037 23.479 -b4532 6.782 -b1126 43.028 -b4527 5.769 -b0411 33.589 -b2897 10.547 Monomer -b1161 15.769 -b2785 48.052 -b0082 34.878 -b3590 68.867 -b0913 84.474 -b3843 55.604 Homohexamer -b2115 30.613 -b1628 20.544 -b1098 23.783 Homodimer -b0140 27.054 -b1532 7.537 -b3258 51.717 -b1007 17.749 -b4376 21.074 -b2712 82.066 Monomer -b4675 2.691 -b2371 41.671 Homodimer -b0517 37.967 Homodimer -b1782 27.831 -b3425 12.082 Homodimer -b2603 18.978 -b0478 59.424 -b1322 39.392 -b2713 19.026 -b2413 29.305 -b2800 23.775 Homotetramer -b3933 35.793 -b3604 29.166 -b4410 4.359 -b4571 31.061 -b3128 56.402 Homodimer -b2836 80.7 -b3338 97.058 -b1718 20.564 Monomer -b1592 44.153 -b0188 48.204 -b4736 2.716 -b1228 9.607 -b1669 29.341 -b0735 10.932 -b0524 26.894 -b3688 11.826 -JW2285 19.565 -b2848 18.72 -b0577 46.603 Homoheptamer -b3770 34.094 Homohexamer -b2519 85.067 -b3549 21.1 -b3130 17.836 Homohexamer -b3732 50.325 -b4793 2.605 -b1359 32.509 -b3630 30.872 -b1154 22.02 -b4473 40.955 -b4364 28.001 -b0055 30.579 Homodimer -b4216 20.421 -b2485 23.361 -b1763 73.217 -b2422 41.059 -b1918 24.801 -b0562 21.121 -b0233 15.488 -b4419 4.014 -b2070 71.639 -b4066 49.378 -b1142 10.963 -b4254 36.907 -b0357 10.318 -b2965 79.416 -b3819 33.283 -b3309 11.316 -b3457 32.982 -b2619 17.727 -b1040 24.935 -b1027 11.543 -b1328 33.482 -b0439 87.438 Homohexamer -b2830 20.795 Monomer -b4011 14.447 -b1306 13.517 -b1064 24.35 -b4002 15.199 -b2240 50.31 Monomer -b0502 13.916 -ECOK12F019 12.371 -b0954 18.969 Homodimer -b2504 7.462 -b2305 34.179 -b2226 61.476 -b3074 12.315 Homodimer -b3447 61.768 -b4082 36.908 -b1827 30.029 -b2715 51.026 -b3227 48.831 -b2017 9.308 -b1715 1.762 -b1647 33.676 -b2268 32.93 Homodimer -b2059 33.035 -b1426 8.878 -b3182 51.798 -b1128 42.579 Homodimer -b3510 11.858 Homodimer -b4201 11.442 -b2865 26.565 -b2599 43.111 Homodimer -b4468 38.361 -b3673 42.216 -b1124 29.111 -b3613 46.595 -b3220 43.293 -b1223 49.693 -b1836 8.753 -ECOK12F090 9.911 -b0124 86.747 Monomer -b3788 39.754 Homodimer -b1600 13.115 -b0908 46.096 Monomer -b2595 27.829 -b3686 16.093 Homodimer -b3621 35.544 -b3611 15.596 -b4158 12.638 -b2997 39.652 Heterodimer -b2732 13.94 -b0453 19.431 -b0059 109.769 -b3163 33.621 Homodimer -b3820 17.163 -b0444 25.514 -b0653 24.915 -b2942 41.952 Homotetramer -b3422 60.299 -b3789 32.734 Homotetramer -b3836 9.664 -b4157 11.819 -b2968 20.395 -b0024 7.89 -b0675 27.163 Monomer -b0058 24.861 -b3139 28.645 -b3781 11.807 Monomer -b3177 30.615 Homodimer -b4723 7.104 -b0542 7.173 -b2831 25.527 -b0912 10.651 Heterodimer -b3215 25.339 -b0051 30.42 -b0002 89.12 Homotetramer -b2766 46.393 -b1696 34.894 -b1234 33.067 -b0933 27.738 -b2564 26.384 Homooctamer -b1314 29.832 -b3492 43.741 -b2310 27.992 -b4794 0.951 -b0219 28.925 -b2315 45.406 Monomer -b2829 83.716 -b2239 40.843 Homodimer -b4479 26.08 -b2750 22.321 -b4173 48.327 Monomer -b1597 10.591 -b3170 16.651 -b2420 28.243 -b0678 29.774 Homohexamer -b3223 24.074 -b4100 21.027 Homodimer -b3965 41.967 -b1700 10.724 -b2009 18.081 -b0742 28.231 Homotrimer -b0121 32.321 Homodimer -b2622 46.652 -b1086 36.027 -b1304 25.493 -b1824 5.212 -b0547 17.433 -b0647 20.915 -b0264 19.758 -b4284 44.281 -b2011 54.501 Monomer -b3502 45.497 -b2419 13.732 -b3638 25.343 -b2437 40.16 -b2361 20.255 -b1632 24.459 -b1882 14.097 -b4072 24.567 -b0729 29.777 Heterotetramer -b2105 10.134 -b2425 37.615 -b2051 18.273 Homodimer -b4803 4.249 -b3040 26.485 -b0003 33.624 -b1193 22.227 -b3602 13.696 -b3908 23.097 Homodimer -b2711 41.404 -b1113 34.636 -b4222 12.866 -b2563 14.052 Homodimer -b4785 3.188 -b0479 43.306 -b1333 35.707 -b3102 37.386 Homodimer -b2447 22.907 -b0430 22.623 Heterooctamer -b3499 31.942 Monomer -b2161 43.41 -b2582 15.555 -b3054 48.389 -b0598 75.105 -b3433 40.018 Homodimer -b1956 64.283 Homodimer -b0070 42.713 -b0010 20.071 -b0829 69.114 -b3749 55.042 -b2190 91.202 -b0032 41.431 -b1221 23.927 -b2209 18.192 Homodimer -b1274 97.35 Monomer -b1679 15.8 Homodimer -b1802 42.561 -b2021 39.36 Homodimer -b0691 24.604 -b2749 12.017 -b1383 11.878 -b0075 3.146 -b0549 10.348 -b3441 18.794 -b4325 30.593 -b2684 20.563 -b3263 7.204 -b0617 10.689 Oligomer -b3892 24.606 -b4106 29.431 -b2537 32.838 -b4098 31.845 -b1062 38.827 Homodimer -b0162 43.687 -b1102 81.233 -b1233 16.99 -b1843 24.395 -b1623 36.397 -b2499 36.854 Homodimer -b1581 45.968 -b3117 35.232 -b0838 23.713 -b2271 35.931 -b3018 27.453 -b3023 17.827 -b0022 9.868 -b1509 50.539 -b0135 44.899 -b3816 36.59 Homopentamer -b3260 35.866 -b1706 54.382 -b4709 9.868 -b1660 43.367 -b4060 10.303 -b0226 9.406 -b3167 15.154 Monomer -b3722 66.483 -b1821 20.117 -b2987 53.809 -b0112 49.69 -b3520 22.604 -b0443 15.088 Homotetramer -b1488 21.213 -b4094 20.73 -b2236 9.293 -b4170 67.924 -b4612 6.027 -b1191 62.285 -b3591 50.607 Homodecamer -b2313 17.907 -b1118 45.344 -b2502 58.136 Homodimer -b4510 6.69 Homodimer -b2321 36.668 -b1991 36.987 Homodimer -b1861 22.086 Homotetramer -b2108 36.885 -b3301 14.98 -b1758 22.752 -b3321 11.736 -b1844 25.133 -b2846 24.287 -b2718 15.465 -b0152 32.998 -b2849 16.272 -b2498 22.533 Homodimer -b3383 33.504 -b4765 1.806 -b4028 26.281 -b4280 41.384 -b1880 42.238 -b1162 28.265 -b1620 36.625 -b1708 17.283 -b1870 27.777 Homodimer -b3046 91.792 -b3540 37.56 -b4327 34.711 -b3026 50.282 -b4167 54.65 -b1498 62.802 -b0131 13.834 Heterooctamer -b0898 41.432 -b2890 57.603 Homodimer -b1800 40.315 -b2539 20.579 -b0512 49.602 Homotetramer -b0406 42.594 Homodimer -b4682 5.383 -b4554 7.995 -b1671 25.093 -b2559 18.718 Homodimer -b3232 43.064 -b2006 6.959 -b2579 14.284 -b1524 33.516 Homotetramer -b3615 40.524 -b1522 34.322 Homodimer -b2440 31.782 -b0217 29.606 -b2550 44.521 -b3294 14.365 -b2635 7.703 -b1531 15.184 Monomer -b2489 28.101 -b4251 21.502 -b2312 56.488 Homotetramer -b2307 26.87 -b4191 27.602 -b2203 16.297 -b3672 3.206 -b0061 25.519 Homotetramer -b2253 42.238 Homodimer -b0783 17.467 Homohexamer -b1764 36.687 Homodimer -b4784 5.22 -b0234 17.555 -b2198 7.745 -b1806 20.921 -b3548 25.951 -b2969 32.058 -b1163 45.295 Monomer -b2905 40.147 -b2264 61.367 Homodimer -b1983 25.867 -b0554 7.778 -b0251 16.815 -b4013 35.727 Homodimer -b1293 36.038 -b1341 46.452 -b2882 49.108 -b1066 22.688 -b3901 12.265 Homodimer -b1273 9.386 -b2353 12.658 -b1575 6.964 -b4740 7.677 -b2523 46.18 Homohexamer -b1502 32.07 -b0410 13.364 -b2758 40.025 -b2792 12.787 -b0417 35.071 -b3208 27.342 -b3860 23.105 -b2955 42.584 -b3415 45.967 -b4521 16.533 -b4230 35.659 -b0548 6.494 -b3829 84.674 Monomer -b3738 30.303 -ECOK12F035 23.657 -b4036 49.912 Homotrimer -b2980 28.826 -b0911 61.158 -b1815 59.711 -b1525 49.718 Homodimer -b3823 22.474 -b2611 29.262 -b4019 135.997 -b3042 11.276 Homotrimer -b3270 41.484 -b0001 2.138 -b3351 20.958 -b0863 26.93 -b1235 37.302 -b2063 59.45 -b1567 5.881 -b4189 12.038 -b2634 26.606 -b4756 6.81 -b0989 7.72 -b3808 17.342 -b1906 8.629 -b2689 15.59 -b3451 31.5 -b1034 26.891 Homotrimer -b1639 12.568 Monomer -b3992 26.97 Homodimer -b2779 45.655 -b0403 69.041 Monomer -b3468 23.791 -b0683 16.795 Homodimer -JW5918 35.098 -b1579 45.262 -b0960 81.668 -b4822 2.29 -b3296 23.469 -b0893 48.414 Homodimer -b4744 4.013 -b0597 14.97 Homotetramer -b0720 48.015 Homohexamer -b1284 27.603 -b1784 49.392 -b0641 21.357 -b4594 7.362 -ECOK12F080 7.053 -b4152 15.015 -b0610 14.927 -b3622 46.878 -b0296 9.92 -b0113 29.425 -b2902 25.938 -b1242 23.521 -b1890 32.011 -b0645 27.736 -b1688 39.841 -b4582 14.467 -b1320 36.134 -b2979 53.812 -b4823 1.393 -b1390 27.877 -b1424 62.758 -b3089 43.478 -b3305 18.904 -b3146 31.348 -b3620 39.042 -b4268 21.004 -b1011 25.209 -b4037 31.943 -b2736 30.751 -b1563 11.225 -b4821 2.128 -b3802 45.245 -b3187 35.217 -b1467 58.558 Dimer -b1376 16.017 Homodimer -b2919 29.173 Dimer -b4142 10.387 Heptamer -b0836 14.536 -b0225 10.847 Monomer -b0025 34.734 -b0775 38.648 Homodimer -b0805 81.96 -b4710 19.565 -b1251 10.602 Homodimer -b4374 25.301 Monomer -b0346 31.322 -b2586 11.805 -b1459 27.838 -b4391 62.443 Monomer -b3358 79.972 -b0584 82.107 -b3253 34.724 Homodimer -b2810 43.234 Homodimer -b0060 90.053 -b0654 27.503 -b2663 51.08 -b0906 26.282 -b3213 52.015 -b4033 57.013 -b0062 56.074 Homohexamer -b3664 46.934 -b3225 32.593 Homotetramer -b3474 38.522 -b0894 90.399 Heterotrimeric -b2272 19.019 Monomer -b2453 41.031 -ECOK12F038 10.748 -b0717 26.954 -b4379 31.491 -b2335 17.89 -b3562 16.123 -b1084 118.197 -b4032 32.225 -b2261 35.477 -b0924 170.23 Homodimerization -b1283 6.948 -b4796 4.027 -b2048 50.463 -b2950 35.994 -b0608 44.176 -b1461 8.673 Homodimer -b4400 49.83 -b4078 25.079 -b3832 54.764 -b2675 80.479 Tetramer -b2441 49.403 -b2142 24.47 -b3607 29.317 Homohexamer -b2473 24.855 -ECOK12F062 71.76 -b3909 33.669 -b0643 18.797 -b2920 53.824 -b0821 47.329 -JW5934 13.452 -b0515 28.73 Monomer -b1075 23.575 -b0409 35.382 -b2018 2.081 -b1495 89.283 -b3020 60.694 -b4076 22.784 -b2047 52.408 -b0758 39.646 Homodimer -b0050 13.867 -b0793 42.06 -b0428 32.248 -b2809 8.174 -b4787 3.305 -b1352 8.434 -b3010 35.957 -b4575 13.956 -b2888 51.758 -b0290 59.997 -b2738 23.222 -b0787 26.123 -b2185 10.693 -b1994 37.823 -b3519 63.697 Monomer -b3116 48.879 -b4203 15.769 -b1310 46.808 -b1190 38.845 -b3052 51.051 Homodimer -b2474 74.893 -b3450 39.524 -b3983 14.875 -b1365 9.787 -b1403 13.452 -b0460 8.628 -b3582 32.455 -b2690 20.78 -b3092 53.987 -b1188 60.814 -b1681 46.823 -b3629 36.73 -b0974 27.597 -b0950 46.463 -b0689 18.282 -b2097 38.109 Homooctamer -b4292 35.532 -b0337 47.591 Homohexamer -b3599 67.972 Homodimer -b1394 28.405 -b3049 7.892 -b0868 38.086 -ECOK12F015 24.081 -b1391 18.324 Monomer -b1863 18.747 Homodimer -b1360 28.128 -b2820 133.959 Heterotrimer -b2057 45.26 -b3677 15.729 -b1926 13.829 Homodimer -b2406 46.14 -b0260 50.526 -b2351 34.635 -b0347 62.186 -b2350 13.226 -b2624 8.133 -b3670 11.106 Dimer -b0770 51.351 -b3516 31.563 Homodimer -b2638 11.824 -b4534 4.039 -b2924 30.896 Homoheptamer -b3280 10.007 -b2448 13.819 -b0637 11.582 -b2600 42.043 -b1406 30.706 -ECOK12F006 9.604 -b0451 44.515 Homotrimer -b3825 38.978 -b1004 20.846 Homodimer -b1182 33.759 Monomer -b1653 169.381 -b2776 54.177 -b3009 24.134 -b2459 30.172 Homodimer -b4749 2.308 -b3731 15.068 -b1835 53.228 -b2898 36.094 -b0897 23.1 Homooctamer -b1033 35.343 -b0963 16.919 Homohexamer -b1872 88.964 -b1469 49.89 -b0143 53.871 Monomer -b4067 59.197 -b1787 17.851 -b2308 24.649 -b0273 36.827 -b0141 20.118 -b2674 15.34 -b3099 15.147 -b1505 41.616 -b2769 30.308 -b4130 53.055 Monomer -b3185 9.124 -b3087 36.214 -b2280 19.875 -b1145 25.095 -b0889 18.887 Homodimer -b4095 42.01 -b1183 15.063 -b0304 48.244 -b1072 23.519 -b3479 26.82 -b1332 9.339 -b4321 47.138 -b1174 10.235 -b3890 8.442 -b3233 14.961 -b3707 2.894 -b3990 43.32 -b3470 9.095 -b2294 19.536 -b3512 20.599 -b3205 32.492 Homotrimer -b4061 60.801 -b2481 22.154 -b0741 18.824 -b3235 37.581 Homotrimer -b0855 41.931 -b2318 30.4 Homodimer -b3097 13.906 -b0210 22.991 -b0042 33.513 Heterodimer -b4202 8.986 -b0265 9.902 -b0706 28.865 -b1878 14.059 -b4049 38.468 -b0794 63.132 -b1501 83.495 -b0077 62.984 Dimer -b3002 18.641 -b3662 41.842 -b2475 31.46 -b0167 102.39 Monomer -b3455 28.427 -b4573 33.808 -b4688 4.63 -b4155 36.976 Homodimer -b1253 14.231 -b3826 29.708 -b4333 31.956 -b2642 64.196 -b2939 4.859 -b1842 8.846 -b2915 8.372 -b3369 5.819 -b1175 29.614 -b0922 50.579 -b0767 36.308 -b1087 21.691 Monomer -b3488 61.164 -b0377 46.459 -b1407 86.716 -b3940 88.888 Homotetramer -b3387 32.1 -b2176 58.588 -b1603 54.623 Heterodimer -b0092 32.84 Monomer -b0611 29.618 Monomer -b0539 10.509 -b1470 12.872 -b1891 21.566 Heterohexamer -b2724 21.873 -b3720 60.657 Homomonomer -b0686 28.437 -b0543 11.958 Homodimer -b0797 49.989 -b1754 42.845 -b1212 30.975 -b2807 14.333 -b1747 38.456 -b0518 58.596 -b1271 27.933 -b4581 7.969 -b1443 28.722 -b0288 11.798 -b3542 32.308 -b1743 18.199 Homodimer -b3716 16.683 -b1753 20.533 -b3610 9.137 Monomer -b0616 33.11 Oligomer -b2671 13.066 -b3710 41.49 -b4455 5.998 -b1932 17.891 -b4196 23.578 Homodimer -b2100 34.385 -b2032 43.188 -b4316 26.689 -b3494 13.027 -b2645 11.737 -b3560 34.774 Tetramer -b1993 20.164 Homodimer -b3051 60.7 Homooligomerizes -b2647 157.5 -b3817 14.549 -b1771 36.329 Monomer -b0708 53.667 Monomer -b0465 127.215 -b0045 48.667 -b0380 8.097 -b4791 2.925 -b1685 7.266 -b0239 47.009 -b0390 24.917 -b2757 25.209 -b3279 20.245 -b0578 23.905 Homodimer -b1187 26.969 Homodimer -b2410 36.406 -b0102 28.292 -b3207 24.345 -b4644 10.073 -b4800 1.763 -b3143 25.677 -b0931 45.897 -b4523 6.338 -b1419 5.86 -b1537 18.321 -b1296 50.853 -b4197 32.007 -b2443 25.143 -JW5895 37.851 -b1649 22.275 -b3339 43.284 Monomer -b1867 20.452 -b0789 47.634 -b0582 40.909 -b1226 26.449 -b1670 29.583 -b2908 49.815 Homotetramer -b1309 64.186 -b3885 22.732 -b0902 28.204 Monomer -b3341 20.019 -b2026 22.756 -b4256 18.622 -ECOK12F037 8.576 -b2895 19.7 -b3188 10.495 -b0857 30.541 -b0306 26.004 -b0155 50.349 Homodimer -b0266 13.184 -b2791 29.666 -b2597 12.785 -b2817 45.634 -b3438 36.422 -b0876 63.589 -b0067 59.533 -b0848 14.203 -b3329 18.565 -b2679 36.023 -b2928 27.132 -b0522 39.461 Homodimer -b3396 93.636 -b1640 39.496 -b3750 33.452 -b0349 31.937 Homodimer -b3335 24.957 -b1885 57.512 -b3497 26.949 -b4815 1.201 -b4093 16.57 Homodimer -b0695 98.718 -b3961 34.276 Homodimer -ECOK12F076 21.224 -b3325 70.698 -b4792 2.925 -b0476 36.034 Homodimer -b3601 21.99 Homodimer -b1346 8.456 -ECOK12F018 11.543 -b0864 27.022 -b0514 38.734 -b2659 37.36 Homotetramer -b0053 47.284 -b2847 30.85 -b1797 13.611 -ECOK12F060 19.636 Homotetramer -b0535 23.664 -b0073 39.517 Homodimer -b1503 18.144 -b1076 42.045 -b1001 48.355 -b4101 16.54 -b0353 41.551 -b0261 33.423 Monomer -b1398 48.953 Monomer -b4156 54.725 -b3242 7.847 -b1091 33.515 Homodimer -b2433 17.168 -b0693 82.416 -b0114 99.668 Homodimer -b4286 15.067 -b0277 24.471 -b0019 41.356 Monomer -b4107 16.171 -b0361 34.398 -b0921 29.814 -b3413 25.726 -b0521 31.644 Homodimer -ECOK12F028 143.692 -b1972 24.068 Heterodimer -b3477 35.248 -b4077 47.159 -b1814 48.907 -b1160 12.133 -b3379 32.915 Monomer -b3569 44.869 -b1028 12.008 -b3671 60.441 Dimer -b0878 40.624 Homohexamer -b1152 28.233 -b2483 34.359 -b2046 53.693 -b2706 12.953 -b0826 26.719 Homodimer -b4679 3.092 -b0452 31.966 Homotetramer -b3576 17.549 -b0800 35.049 -b3058 13.62 Homooctamer -b2304 32.699 -b3113 14.007 Homotrimer -b2120 83.39 -b0299 33.54 -b0052 35.114 Homodimer -b4266 27.563 -b3251 36.952 -b2169 39.648 -b4685 2.979 -b3813 81.99 -b3340 77.581 -b4000 9.535 Heterodimer -b1538 77.516 -b1703 31.211 Homotetramer -b0221 89.224 -b2540 11.329 -b4295 36.112 -b2811 15.94 Homodimer -b4025 61.53 Homodimer -b3930 33.594 -ECOK12F099 102.472 -b0099 14.927 Monomer -b3995 18.243 -b2825 20.52 -b1050 8.443 -b0243 44.63 Homodimer -b4572 44.979 -b1951 23.516 -b0750 38.241 Monomer -b0785 16.981 Heterotetramer -b1848 10.717 -b1840 32.526 -b1129 55.3 Homodimer -b3719 42.755 -b0101 7.306 -b3522 37.911 -b4296 47.004 -b0418 19.418 -b1948 26.928 -b0327 8.89 -b1940 25.05 -b4721 5.511 -b3017 51.858 -b2175 21.04 Monomer -b0734 42.453 Heterodimer -b4071 20.714 -b0528 7.39 -b3603 59.168 -b2722 33.029 -b1963 11.325 -b2995 43.602 -b0497 159.725 -b1433 40.583 -b4117 84.425 Homodecamer -b4200 15.703 -b1702 87.435 Homodimer -b1622 43.642 Homodimer -b0352 36.47 -b1612 60.299 Homodimer -b3619 34.893 Homopentamer -b2298 54.797 -b4168 16.853 Homodimer -b4068 11.672 -b4323 53.58 -b2278 66.438 -b1137 25.147 -b1423 51.043 -b1558 7.563 -b2055 27.894 -b3079 40.099 -b1582 11.92 -b4672 4.122 -b2044 45.362 -b4769 2.006 -b2428 31.22 Homodimer -b1349 29.721 Homotetramer -b1350 96.368 Homotetramer -b2421 32.664 Homodimer -b3397 21.153 Homodimer -b1130 25.535 Monomer -b0276 27.859 -b2555 27.348 -b1636 31.322 Homodimer -b1478 35.38 -b1847 12.962 Monomer -b3541 35.844 -b2587 47.052 -b0762 5.3 -b4205 12.247 -b0245 12.905 -b1081 34.475 -b2744 26.9 Monomer -b3828 35.629 -b1207 34.218 Homohexamer -b0054 89.671 -b0423 54.973 -b3536 59.428 -b2159 31.48 Monomer -b0656 37.851 -b3356 14.517 -b3001 38.832 Homotetramer -b3993 23.015 -b0097 18.88 -b4208 51.66 diff --git a/docs/src/examples/data/ecoli_gene_product_aa_counts.tsv b/docs/src/examples/data/ecoli_gene_product_aa_counts.tsv deleted file mode 100644 index 221f46b2..00000000 --- a/docs/src/examples/data/ecoli_gene_product_aa_counts.tsv +++ /dev/null @@ -1,86101 +0,0 @@ -gene_product metabolite aa_count -b0688 lys__L_c 29 -b0688 ser__L_c 29 -b0688 pro__L_c 28 -b0688 gln__L_c 18 -b0688 glu__L_c 31 -b0688 asn__L_c 29 -b0688 his__L_c 15 -b0688 val__L_c 40 -b0688 ile__L_c 30 -b0688 cys__L_c 5 -b0688 tyr__L_c 14 -b0688 phe__L_c 20 -b0688 asp__L_c 34 -b0688 arg__L_c 20 -b0688 trp__L_c 5 -b0688 gly_c 53 -b0688 leu__L_c 44 -b0688 met__L_c 11 -b0688 thr__L_c 24 -b0688 ala__L_c 67 -b0832 lys__L_c 4 -b0832 ser__L_c 15 -b0832 pro__L_c 14 -b0832 gln__L_c 8 -b0832 glu__L_c 6 -b0832 asn__L_c 10 -b0832 his__L_c 5 -b0832 val__L_c 27 -b0832 ile__L_c 27 -b0832 cys__L_c 1 -b0832 tyr__L_c 5 -b0832 phe__L_c 21 -b0832 asp__L_c 13 -b0832 arg__L_c 20 -b0832 trp__L_c 8 -b0832 gly_c 23 -b0832 leu__L_c 37 -b0832 met__L_c 9 -b0832 thr__L_c 11 -b0832 ala__L_c 39 -b0586 lys__L_c 25 -b0586 ser__L_c 62 -b0586 pro__L_c 92 -b0586 gln__L_c 83 -b0586 glu__L_c 73 -b0586 asn__L_c 28 -b0586 his__L_c 27 -b0586 val__L_c 78 -b0586 ile__L_c 53 -b0586 cys__L_c 13 -b0586 tyr__L_c 33 -b0586 phe__L_c 46 -b0586 asp__L_c 74 -b0586 arg__L_c 76 -b0586 trp__L_c 24 -b0586 gly_c 84 -b0586 leu__L_c 160 -b0586 met__L_c 27 -b0586 thr__L_c 75 -b0586 ala__L_c 160 -b3772 lys__L_c 21 -b3772 ser__L_c 24 -b3772 pro__L_c 21 -b3772 gln__L_c 19 -b3772 glu__L_c 38 -b3772 asn__L_c 14 -b3772 his__L_c 16 -b3772 val__L_c 40 -b3772 ile__L_c 20 -b3772 cys__L_c 7 -b3772 tyr__L_c 14 -b3772 phe__L_c 25 -b3772 asp__L_c 29 -b3772 arg__L_c 31 -b3772 trp__L_c 2 -b3772 gly_c 46 -b3772 leu__L_c 59 -b3772 met__L_c 12 -b3772 thr__L_c 16 -b3772 ala__L_c 60 -b1759 lys__L_c 3 -b1759 ser__L_c 5 -b1759 pro__L_c 8 -b1759 gln__L_c 9 -b1759 glu__L_c 15 -b1759 asn__L_c 0 -b1759 his__L_c 7 -b1759 val__L_c 9 -b1759 ile__L_c 8 -b1759 cys__L_c 1 -b1759 tyr__L_c 2 -b1759 phe__L_c 3 -b1759 asp__L_c 6 -b1759 arg__L_c 9 -b1759 trp__L_c 3 -b1759 gly_c 8 -b1759 leu__L_c 14 -b1759 met__L_c 3 -b1759 thr__L_c 2 -b1759 ala__L_c 20 -b1884 lys__L_c 7 -b1884 ser__L_c 18 -b1884 pro__L_c 11 -b1884 gln__L_c 15 -b1884 glu__L_c 16 -b1884 asn__L_c 10 -b1884 his__L_c 11 -b1884 val__L_c 13 -b1884 ile__L_c 10 -b1884 cys__L_c 2 -b1884 tyr__L_c 11 -b1884 phe__L_c 16 -b1884 asp__L_c 13 -b1884 arg__L_c 27 -b1884 trp__L_c 3 -b1884 gly_c 17 -b1884 leu__L_c 38 -b1884 met__L_c 6 -b1884 thr__L_c 19 -b1884 ala__L_c 23 -b3850 lys__L_c 12 -b3850 ser__L_c 11 -b3850 pro__L_c 7 -b3850 gln__L_c 7 -b3850 glu__L_c 12 -b3850 asn__L_c 7 -b3850 his__L_c 5 -b3850 val__L_c 11 -b3850 ile__L_c 10 -b3850 cys__L_c 1 -b3850 tyr__L_c 10 -b3850 phe__L_c 7 -b3850 asp__L_c 8 -b3850 arg__L_c 17 -b3850 trp__L_c 4 -b3850 gly_c 7 -b3850 leu__L_c 12 -b3850 met__L_c 6 -b3850 thr__L_c 11 -b3850 ala__L_c 16 -b4283 lys__L_c 12 -b4283 ser__L_c 4 -b4283 pro__L_c 3 -b4283 gln__L_c 6 -b4283 glu__L_c 8 -b4283 asn__L_c 2 -b4283 his__L_c 0 -b4283 val__L_c 5 -b4283 ile__L_c 5 -b4283 cys__L_c 0 -b4283 tyr__L_c 1 -b4283 phe__L_c 2 -b4283 asp__L_c 4 -b4283 arg__L_c 9 -b4283 trp__L_c 1 -b4283 gly_c 2 -b4283 leu__L_c 8 -b4283 met__L_c 4 -b4283 thr__L_c 5 -b4283 ala__L_c 7 -b3428 lys__L_c 37 -b3428 ser__L_c 48 -b3428 pro__L_c 28 -b3428 gln__L_c 36 -b3428 glu__L_c 54 -b3428 asn__L_c 49 -b3428 his__L_c 26 -b3428 val__L_c 54 -b3428 ile__L_c 50 -b3428 cys__L_c 5 -b3428 tyr__L_c 38 -b3428 phe__L_c 30 -b3428 asp__L_c 53 -b3428 arg__L_c 46 -b3428 trp__L_c 14 -b3428 gly_c 48 -b3428 leu__L_c 87 -b3428 met__L_c 19 -b3428 thr__L_c 35 -b3428 ala__L_c 58 -b2143 lys__L_c 10 -b2143 ser__L_c 19 -b2143 pro__L_c 16 -b2143 gln__L_c 13 -b2143 glu__L_c 13 -b2143 asn__L_c 11 -b2143 his__L_c 9 -b2143 val__L_c 8 -b2143 ile__L_c 13 -b2143 cys__L_c 5 -b2143 tyr__L_c 9 -b2143 phe__L_c 11 -b2143 asp__L_c 17 -b2143 arg__L_c 11 -b2143 trp__L_c 3 -b2143 gly_c 20 -b2143 leu__L_c 39 -b2143 met__L_c 6 -b2143 thr__L_c 14 -b2143 ala__L_c 47 -b2988 lys__L_c 31 -b2988 ser__L_c 24 -b2988 pro__L_c 27 -b2988 gln__L_c 30 -b2988 glu__L_c 47 -b2988 asn__L_c 25 -b2988 his__L_c 19 -b2988 val__L_c 39 -b2988 ile__L_c 38 -b2988 cys__L_c 9 -b2988 tyr__L_c 23 -b2988 phe__L_c 25 -b2988 asp__L_c 42 -b2988 arg__L_c 30 -b2988 trp__L_c 17 -b2988 gly_c 48 -b2988 leu__L_c 62 -b2988 met__L_c 11 -b2988 thr__L_c 31 -b2988 ala__L_c 41 -b2341 lys__L_c 40 -b2341 ser__L_c 32 -b2341 pro__L_c 38 -b2341 gln__L_c 35 -b2341 glu__L_c 44 -b2341 asn__L_c 20 -b2341 his__L_c 13 -b2341 val__L_c 53 -b2341 ile__L_c 52 -b2341 cys__L_c 9 -b2341 tyr__L_c 13 -b2341 phe__L_c 24 -b2341 asp__L_c 30 -b2341 arg__L_c 44 -b2341 trp__L_c 2 -b2341 gly_c 69 -b2341 leu__L_c 68 -b2341 met__L_c 16 -b2341 thr__L_c 37 -b2341 ala__L_c 75 -b2314 lys__L_c 20 -b2314 ser__L_c 8 -b2314 pro__L_c 31 -b2314 gln__L_c 8 -b2314 glu__L_c 15 -b2314 asn__L_c 6 -b2314 his__L_c 1 -b2314 val__L_c 21 -b2314 ile__L_c 7 -b2314 cys__L_c 0 -b2314 tyr__L_c 5 -b2314 phe__L_c 3 -b2314 asp__L_c 10 -b2314 arg__L_c 6 -b2314 trp__L_c 0 -b2314 gly_c 19 -b2314 leu__L_c 18 -b2314 met__L_c 4 -b2314 thr__L_c 10 -b2314 ala__L_c 28 -b2355 lys__L_c 7 -b2355 ser__L_c 12 -b2355 pro__L_c 11 -b2355 gln__L_c 9 -b2355 glu__L_c 6 -b2355 asn__L_c 7 -b2355 his__L_c 1 -b2355 val__L_c 11 -b2355 ile__L_c 9 -b2355 cys__L_c 4 -b2355 tyr__L_c 5 -b2355 phe__L_c 8 -b2355 asp__L_c 8 -b2355 arg__L_c 7 -b2355 trp__L_c 1 -b2355 gly_c 19 -b2355 leu__L_c 19 -b2355 met__L_c 3 -b2355 thr__L_c 8 -b2355 ala__L_c 17 -b2529 lys__L_c 12 -b2529 ser__L_c 10 -b2529 pro__L_c 4 -b2529 gln__L_c 2 -b2529 glu__L_c 12 -b2529 asn__L_c 7 -b2529 his__L_c 2 -b2529 val__L_c 9 -b2529 ile__L_c 11 -b2529 cys__L_c 3 -b2529 tyr__L_c 4 -b2529 phe__L_c 2 -b2529 asp__L_c 10 -b2529 arg__L_c 3 -b2529 trp__L_c 1 -b2529 gly_c 9 -b2529 leu__L_c 6 -b2529 met__L_c 3 -b2529 thr__L_c 3 -b2529 ala__L_c 15 -b0164 lys__L_c 8 -b0164 ser__L_c 14 -b0164 pro__L_c 18 -b0164 gln__L_c 6 -b0164 glu__L_c 15 -b0164 asn__L_c 10 -b0164 his__L_c 9 -b0164 val__L_c 16 -b0164 ile__L_c 12 -b0164 cys__L_c 6 -b0164 tyr__L_c 7 -b0164 phe__L_c 17 -b0164 asp__L_c 13 -b0164 arg__L_c 16 -b0164 trp__L_c 3 -b0164 gly_c 22 -b0164 leu__L_c 34 -b0164 met__L_c 6 -b0164 thr__L_c 14 -b0164 ala__L_c 24 -b3676 lys__L_c 3 -b3676 ser__L_c 5 -b3676 pro__L_c 4 -b3676 gln__L_c 1 -b3676 glu__L_c 5 -b3676 asn__L_c 3 -b3676 his__L_c 0 -b3676 val__L_c 7 -b3676 ile__L_c 7 -b3676 cys__L_c 1 -b3676 tyr__L_c 5 -b3676 phe__L_c 5 -b3676 asp__L_c 4 -b3676 arg__L_c 8 -b3676 trp__L_c 2 -b3676 gly_c 9 -b3676 leu__L_c 24 -b3676 met__L_c 5 -b3676 thr__L_c 4 -b3676 ala__L_c 13 -b1404 lys__L_c 28 -b1404 ser__L_c 27 -b1404 pro__L_c 16 -b1404 gln__L_c 12 -b1404 glu__L_c 24 -b1404 asn__L_c 20 -b1404 his__L_c 13 -b1404 val__L_c 15 -b1404 ile__L_c 22 -b1404 cys__L_c 3 -b1404 tyr__L_c 8 -b1404 phe__L_c 10 -b1404 asp__L_c 12 -b1404 arg__L_c 47 -b1404 trp__L_c 6 -b1404 gly_c 22 -b1404 leu__L_c 40 -b1404 met__L_c 6 -b1404 thr__L_c 30 -b1404 ala__L_c 22 -b0316 lys__L_c 12 -b0316 ser__L_c 14 -b0316 pro__L_c 12 -b0316 gln__L_c 18 -b0316 glu__L_c 17 -b0316 asn__L_c 14 -b0316 his__L_c 7 -b0316 val__L_c 14 -b0316 ile__L_c 29 -b0316 cys__L_c 4 -b0316 tyr__L_c 9 -b0316 phe__L_c 14 -b0316 asp__L_c 14 -b0316 arg__L_c 18 -b0316 trp__L_c 4 -b0316 gly_c 19 -b0316 leu__L_c 31 -b0316 met__L_c 6 -b0316 thr__L_c 29 -b0316 ala__L_c 25 -b2152 lys__L_c 8 -b2152 ser__L_c 18 -b2152 pro__L_c 13 -b2152 gln__L_c 15 -b2152 glu__L_c 6 -b2152 asn__L_c 9 -b2152 his__L_c 5 -b2152 val__L_c 22 -b2152 ile__L_c 23 -b2152 cys__L_c 4 -b2152 tyr__L_c 14 -b2152 phe__L_c 22 -b2152 asp__L_c 11 -b2152 arg__L_c 25 -b2152 trp__L_c 18 -b2152 gly_c 35 -b2152 leu__L_c 74 -b2152 met__L_c 9 -b2152 thr__L_c 16 -b2152 ala__L_c 38 -b0386 lys__L_c 16 -b0386 ser__L_c 17 -b0386 pro__L_c 14 -b0386 gln__L_c 8 -b0386 glu__L_c 17 -b0386 asn__L_c 7 -b0386 his__L_c 4 -b0386 val__L_c 25 -b0386 ile__L_c 21 -b0386 cys__L_c 4 -b0386 tyr__L_c 3 -b0386 phe__L_c 9 -b0386 asp__L_c 10 -b0386 arg__L_c 7 -b0386 trp__L_c 1 -b0386 gly_c 24 -b0386 leu__L_c 18 -b0386 met__L_c 14 -b0386 thr__L_c 12 -b0386 ala__L_c 38 -b4110 lys__L_c 8 -b4110 ser__L_c 16 -b4110 pro__L_c 13 -b4110 gln__L_c 25 -b4110 glu__L_c 15 -b4110 asn__L_c 5 -b4110 his__L_c 9 -b4110 val__L_c 13 -b4110 ile__L_c 6 -b4110 cys__L_c 5 -b4110 tyr__L_c 5 -b4110 phe__L_c 10 -b4110 asp__L_c 11 -b4110 arg__L_c 20 -b4110 trp__L_c 11 -b4110 gly_c 19 -b4110 leu__L_c 44 -b4110 met__L_c 7 -b4110 thr__L_c 17 -b4110 ala__L_c 33 -b1627 lys__L_c 5 -b1627 ser__L_c 8 -b1627 pro__L_c 6 -b1627 gln__L_c 2 -b1627 glu__L_c 3 -b1627 asn__L_c 8 -b1627 his__L_c 1 -b1627 val__L_c 22 -b1627 ile__L_c 13 -b1627 cys__L_c 3 -b1627 tyr__L_c 4 -b1627 phe__L_c 15 -b1627 asp__L_c 3 -b1627 arg__L_c 6 -b1627 trp__L_c 2 -b1627 gly_c 14 -b1627 leu__L_c 36 -b1627 met__L_c 9 -b1627 thr__L_c 13 -b1627 ala__L_c 20 -b4048 lys__L_c 18 -b4048 ser__L_c 21 -b4048 pro__L_c 7 -b4048 gln__L_c 7 -b4048 glu__L_c 17 -b4048 asn__L_c 15 -b4048 his__L_c 4 -b4048 val__L_c 9 -b4048 ile__L_c 15 -b4048 cys__L_c 4 -b4048 tyr__L_c 9 -b4048 phe__L_c 14 -b4048 asp__L_c 25 -b4048 arg__L_c 5 -b4048 trp__L_c 1 -b4048 gly_c 9 -b4048 leu__L_c 23 -b4048 met__L_c 7 -b4048 thr__L_c 10 -b4048 ala__L_c 15 -b2005 lys__L_c 4 -b2005 ser__L_c 8 -b2005 pro__L_c 7 -b2005 gln__L_c 6 -b2005 glu__L_c 6 -b2005 asn__L_c 6 -b2005 his__L_c 2 -b2005 val__L_c 7 -b2005 ile__L_c 9 -b2005 cys__L_c 2 -b2005 tyr__L_c 4 -b2005 phe__L_c 3 -b2005 asp__L_c 7 -b2005 arg__L_c 10 -b2005 trp__L_c 1 -b2005 gly_c 6 -b2005 leu__L_c 15 -b2005 met__L_c 2 -b2005 thr__L_c 9 -b2005 ala__L_c 10 -b2673 lys__L_c 1 -b2673 ser__L_c 3 -b2673 pro__L_c 5 -b2673 gln__L_c 3 -b2673 glu__L_c 4 -b2673 asn__L_c 4 -b2673 his__L_c 3 -b2673 val__L_c 5 -b2673 ile__L_c 5 -b2673 cys__L_c 2 -b2673 tyr__L_c 1 -b2673 phe__L_c 4 -b2673 asp__L_c 5 -b2673 arg__L_c 9 -b2673 trp__L_c 1 -b2673 gly_c 4 -b2673 leu__L_c 4 -b2673 met__L_c 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8.62272334281505 -22.0985712615015 CBMKr 48.9923131785471 -10.0047946408752 DGK1 25.7742216037812 -2.43103799110981 DRPA 2.59138992709921 -22 PPND 20.4608900970349 -8.24329298955517 3OAR100 97.8987867315128 -36 U23GAAT 4.827637391977 -7.67790795167168 G1PTT 23.858080016648 -22 PRAMPC 20.8675052220888 -59.1963000296893 NDPK1 66.3260696592308 -8.4755108185456 PMANM 8.82236450158008 -0.028018758934332 PANTS 0.03269069418323 -7.91377087589054 FACOAL161t2pp 10.0952231487247 -6.40152230045654 POR5 18.4205899764218 -10.7537996694691 PLIPA1A181pp 8.58788686938986 -1.87647496051425 3OAS161 19.352448409774 -12.2100308227317 4PCPpp 12.3592941369574 -141.171248093136 ACOAD4f 141.173888351252 -49.4063744431873 G3PAT160 49.8824051422951 -13.3568510646453 NTPP5 13.4068883690137 -88.2049040495694 TRPS3 89.1711821382672 -17.6458325266833 ECA4OALpp 17.6796523128988 -0.15 PPNCL2 0.407426249001308 -4.32739356849149 GMPR 39.7852294929437 -6.90934583794074 PROD3 132.948646303977 -18.4911010881758 NTPTP1 31.8180329331548 -0.724280662050357 QULNS 0.14467746640514 -14.8549990880405 ACPPAT161 19.4772722341392 -7.79882868786899 UM3PL 11.575109077135 -1 UPP3S 1.48210597603188 -4.39387451614104 3HAD40 22.2658727853376 -12.0188378623327 GLYCLTDx 215.096783859061 -70.9551139784491 LPLIPAL2E160 65.5229971428497 -2.16834205221814 AACPS3 15.8490923889944 -0.007 AMPMS2 0.007 -23.1463962552721 RNDR3 23.1955143619255 -35.4580895556515 TRDR 55.9260185151911 -18.1800830767426 S4FE4ST 18.1800830784897 -1.87647496051425 3OAS141 19.352448409774 -10 IPPS 10.1114223948264 -14 DHDPRy 38.2054456973526 -12.1013484522464 HEPT3 12.2052285413896 -10.6291000267471 ALLTAMH2 17.6389391475821 -30.6265997297014 ARGDCpp 25.8313564046201 -42.1371456160758 GLYOX3 76.2405910195335 -16.7144388326034 FADRx2 16.7144388326034 -4.84920199788896 ICL 37.6755111535914 -129.542321434344 PGMT 129.565545948733 -6.68041709674797 HXCT 6.83291151453169 -6.19300769135426 GDPMNH 9.04085053750334 -7.06844849399563 TDPGDH 16.9879958213875 -30.4744957510635 DDPA 45.9226356513373 -6.90950541323177 PDE1 32.005489949609 -14 UAMAS 2.61479777813301 -11 ICDHyr 9.18680434483867 -9.99748309362758 CYTK2 20.9638639679666 -5.726958245789 UACMAMO 13.0272760928959 -9.32263154247246 NTPP3 9.35633156276175 -0.608388066657058 MCTP2App 6.16710231660382 -49.8379866532823 HPYRRy 83.9075174470313 -17.9131183641197 UM4PCP 10.559819092414 -32.7894786514513 ECOAH4 78.7146105594081 -12.4033324847194 GSNK 35.0712822578486 -7.67399226946877 TDP 21.278603427696 -1.77608521380872 EAR100x 31.0564301138869 -0.029624088079717 MOHMT 0.0891676245334938 -70.9551139784491 LPLIPAL2E120 70.9446943513978 -12.150661503191 HEPK2 12.1742856013593 -14.9811492626551 NTPP1 14.981226548581 -10.7537996694691 PLIPA1G161pp 0.523954526404158 -11.8847026786785 AICART 11.1097609865022 -8.85987966614543 MACPD 14.7988246725104 -7.60892130006815 OAADC 48.3779877348618 -1.48129909978704 PDX5PS 1.48684022401947 -34.2295171481601 GAPP 99.7459028364127 -28.6460085431503 THRS 25.3271371933677 -6.8670545591118 THD2pp 125.875975404661 -13.5923766946336 ENTERES 13.5924336120343 -10.1661537772165 ADD 10.2060361413686 -70 PAPPT3 64.9670376151988 -69 MTHFD 235.074563132314 -4.27830584222986 2AGPGAT120 9.43117373836633 -106.717501617949 CAT 107.262466139275 -26 ACODA 24.861721138483 -36.1816049123875 HPYRRx 128.570225892172 -46 PPC 90.1815937994103 -9.47722204912371 ADNUC 9.56920628218936 -112 GARFT 111.833789319993 -6.33810777213502 APG3PAT161 9.3198539789387 -10.1158531405334 CYTDK2 0.0277875005335043 -0.12 GTPCII2 18.2687320785189 -78.6920349312527 LPLIPAL2A181 43.1207136664636 -6.95125327838478 AGPR 9.27601959862679 -5.01271223867661 ADPRDP 5.61797190703738 -3.2680205804032 EAR40x 40.9543155479592 -7.9498660634001 PYDAMK 1.80942465329374 -15.5612145346491 HEPT1 15.6104419150812 -44.4918869994071 ACACT6r 44.7515663426474 -228 ACGS 227.106464912501 -0.07 ASP1DC 0.0296497952311108 -0.763830547473857 KDOPS 2.60912112660982 -9.72248156463871 CYTDH 11.8036185563134 -7.0441397354614 DSERDHr 78.1705736293342 -3.70100063106254 MDDCP4pp 7.95952943485877 -3.79385723706577 EDTXS2 3.84096152387249 -14.6480923425953 ECOAH8 112.578527881852 -21.1013834797386 ALCD2x 21.1206595580602 -9.78144941091262 CYTDK1 0.0277784191925643 -1.30103467933211 FCLT 2.42767920636038 -16.3405813766365 MCOATA 71.4812765634496 -8.46642382814223 TMDK1 22.950759867895 -32.4432385562773 ARGDC 39.7918900555391 -3.76112320556721 AACPS6 20.0930209451119 -70.9551139784491 LPLIPAL2E140 70.0230213809846 -17.9905730992609 GLCTR2 18.0224920881973 -0.0299207198851433 5DOAN 0.45311965079172 -53.0481222661386 ACONTa 47.911914120386 -86.4269139876146 TKT1 139.068207332488 -3.58216518716408 PUNP1 8.65562275394425 -7.6212375081202 R5PP 7.62720492923544 -70.9551139784491 LPLIPAL2E180 67.0379046036806 -19.4287147866981 GTPDPDP 39.3396352213152 -18.2998718885334 TREH 18.3407611944274 -9.72248156463871 URIH 17.003822706945 -163.678729835396 G6PDH2r 153.270343002344 -5.50686501417287 GTHOr 67.8048542143961 -84.8451257345241 BPNT 83.2091669933782 -21 PSCVT 5.73724481310076 -59 DHQTi 35.5800131345032 -2.2 GF6PTA 5.13566832163632 -12.0179446399117 INSK 62.1246310816741 -0.23 DHFS 0.0293678704469519 -10 SHSL1 7.42738402879147 -4.82665967492526 AHGDx 0.0277802282007662 -0.567371613797198 HBZOPT 0.581259469851581 -7.34603584029288 ALR2x 11.0765469632116 -1.28772688539305 OCTDPS 0.173464681957904 -23.3858776716333 ABTA 118.467562989803 -8.24337196264866 3OAR60 97.8988162144909 -5.74534530970532 PSD141 9.55371876757977 -92.8305552312845 EDD 418.45468773565 -7.4 TMDS 2.59222368382665 -5.93045782748065 AST 20.6956557321808 -18.3123222720833 MDDEP4pp 18.4837209942582 -2.65203617251836 DHFR 6.17073584840659 -3.32633594496724 PPPGO 4.99093164206129 -7.9 PSD161 15.9799506675708 -12.0135408265643 F6PP 56.6419210101268 -11.5424674218984 NTD9 56.6867424601346 -0.0156143146075014 RHCCE 0.0156143146075014 -9.1 HCO3E 83.0401108134006 -3.76323216049135 3OAR161 64.7843237618887 -0.120344379706301 GLUTRS 0.128228220796823 -0.184466497531518 PPPGO3 0.773710484000868 -10.1733686206634 ALATA_L 65.2617570245243 -151.868642334337 HSK 151.327705486595 -11.1279549747511 PSSA120 15.0638517524493 -34.7185511909517 G3PAT180 34.8742754091884 -1.30900572807743 GALUi 4.35940540827003 -13.5382564797121 HPYRP 14.6777374182253 -17.6986182226431 G3PD5 37.7507808729059 -17 UAGPT3 10.9919417562605 -36 FACOAE160 45.4583538201912 -17.7605080306089 GLCTR1 17.7722889211921 -9.71671132192274 AGM3Pt2pp 15.8084684361627 -2.44626436685676 AACPS4 26.1661930762634 -32.2022536372637 FA100ACPHi 0.0277802607994991 -16.3194538084558 LPLIPAL1E181pp 11.8698679761853 -0.34 SHCHF 0.0776539148481969 -6.84138279261006 ACCOAL 31.2362832907044 -14 PRFGS 6.35255612105195 -8.50809961482906 MMCD 10.3219908778047 -12.3521936260443 GPDDA2pp 42.5798691689966 -14.5905993785821 CDAPPA120 30.6543183424727 -0.34 SHCHD2 0.0776539149716929 -103.561878025645 FBA 103.695676737481 -7.04964753908229 GUAPRT 11.3174001229189 -48.3375841974961 IPPMIa 49.2955413121866 -31.631520610796 DASYN141 31.6776892121928 -1.8061711658725 GMHEPK 5.71389838937478 -3.39630763544674 I4FE4ST 3.36124197044872 -12.1134114172347 RNTR1c2 21.0628193110183 -7.55355587820654 AGM4PA 6.83228326928934 -14.4370563752109 GPDDA2 14.4846535856684 -13.0123677341436 SADT2 25.8644361774866 -5.33664385022243 PYNP2r 12.8664175857397 -4.62720290212769 LCADi 42.5111540022742 -30.2656512306736 TALA 105.270840461532 -31.631520610796 DASYN140 31.6795948265049 -31.8462858930882 RNDR1 31.9930090111683 -22.4670136651908 CHORM 32.8165439924679 -38.5306805462644 DHORD2 38.5258791229216 -17.7430003261412 G3PT 75.4927505593541 -31.631520610796 DASYN120 31.9374034892371 -2.8 ARGSS 7.52509570788556 -9.47722204912371 XTSNH 0.0321883713176667 -7.02372014918449 AADDGT 21.0646670914908 -18.1561006422383 NADPHQR4 166.21179709183 -13.678526406088 FACOAE141 37.5855946176834 -29.258245134103 GLUDy 197.658178965366 -13.4963772115735 NTPP11 13.4963772115736 -28.98710156221 TRPAS2 105.095399500571 -4.03455769786865 EAR100y 27.6279842534269 -6.12785683575419 POX 82.1643573361679 -13.0634177806784 RNTR2c2 14.943909812043 -129.94468556604 PGI 129.944685566075 -22.9493866299083 FACOAE181 21.4915924341425 -5.86685213809256 ACACT8r 12.3742260902234 -7.57928781022639 GLYCK2 49.5592469670276 -3.53916021095346 PAI2I 3.83812395812714 -4.94263743088984 FESR 43.2273410539044 -6.02573911039186 SULR 60.6896119304698 -17.1915076828226 GSPMDA 134.357074204726 -52 LPADSS 52.0013736658151 -3.8511448018947 MECDPDH5 3.93349733571202 -0.27 PNTK 0.0907608083981143 -10.7537996694691 PLIPA2E120pp 19.229976932835 -31.4348629061135 ACOATA 4.53729320842702 -325.69661009454 PTAr 327.277062235138 -16.9676597109052 PAPA140 16.979897484894 -14.4982404650522 TRE6PH 21.749093049772 -0.135608986592734 CLPNS181pp 4.22649994365184 -12.3521936260443 GPDDA4pp 24.135741303877 -0.00298546352020273 AACPS9 0.00298546352020273 -7.79882868786899 UM4PL 0.133991649860263 -1.84914427838857 MDDCP3pp 7.10021893095112 -5.32236823396501 NNATr 5.48990822777255 -71.4293253002498 TRPS2 96.8903135204454 -47.9316975036025 ACACT1r 47.9525460592378 -5.84679084607549 GDPDPK 19.7945796779595 -29.3601534015691 ECAtpp 31.2218025934023 -7.04937702292617 RBK 23.3677876978669 -33.3731597285484 PGPP140pp 33.3732134597078 -19.1000025991512 CYTBD2pp 84.9926410613544 -70.9551139784491 LPLIPAL2G120 70.9527975531773 -5.74534530970532 PSD140 5.77967680033412 -0.03 PDX5POi 0.0300000004887914 -6.82409057435941 ACMAMUT 22.6269456018971 -8.4280132477343 MLTP2 5.78721350298169 -0.00167803910640036 OHPBAT 0.00167803910640036 -17.0332729614286 PRPPS 42.0521922302344 -17.8309398407416 VPAMTr 121.133084614804 -5 ANPRT 4.44534572367273 -0.936895016381711 DHBD 60.8469753808853 -16.9676597109052 PAPA141 16.9932185016743 -18.8449876726474 GMPS 21.6742020217549 -78.6920349312527 LPLIPAL2A161 26.3205245086476 -33.3731597285484 PGPP180pp 33.3736257199926 -3.45122103767822 DNTPPA 3.4586268758147 -4.27830584222986 2AGPEAT181 9.71864214464363 -0.585096478864559 GRTT 0.597857852755903 -8.57137535484602 ACGAMK 17.1937654081739 -171.897800219254 ALAALAr 171.898177365063 -32.7526628660403 CTECOAI6 88.0820975076227 -24.4710071815017 ACPPAT160 25.277977486808 -5.64532486823644 APH180 0.0304038898718575 -6.9761014205088 MLTGY2pp 8.32416543178487 -156.615656584062 ASPK 236.339357309974 -3.76323216049135 3OAR121 60.4082607213155 -4.98904680464982 NDPK5 5.51771770685484 -10.7537996694691 PLIPA2A181pp 22.2801740618146 -0.117179957550107 E4PD 1.23226619334962 -12.2299655765177 GDPMNP 86.8801934285514 -5.92034460327097 3OAS80 27.0824308653484 -8.75928626340847 LSERDHr 80.6095264177537 -24.9864478005271 ECOAH6 74.3677610520841 -22 FACOAE120 15.1137212680748 -33.3731597285484 PGPP180 39.3175151180912 -13.4859997903367 GLUR 34.659197578155 -7.5975929923852 2MAHMP 7.66926426967754 -19.2183185651919 PLIPA1E180pp 30.8777772671989 -13.9136776986161 4HTHRA 13.913833715265 -4.27830584222986 2AGPGAT161 6.26981946339601 -11.3233008256728 PGSA120 11.3332450995983 -10 ADSL1r 34.0569248264458 -43 UAPGR 36.6636752275822 -9.66611921712663 DHORTS 5.43730910309877 -17.477194593864 L_LACD2 78.1583168394546 -4.2 ASPO6 0.167953520271859 -53.9575791765669 NADH17pp 254.384044021033 -2.16536211916694 NTD8 41.2259281640062 -16.3194538084558 LPLIPAL1G120pp 1.65489502285713 -139 DHAD2 138.837906039493 -38 SERAT 111.158792591811 -6.37340143940361 DAGK181 13.7143614703853 -10.0950127452361 AGM4PApp 10.8565224067691 -4.84128359060696 SGSAD 20.6776734592339 -17.477194593864 L_LACD3 17.7160238440235 -1.8061711658725 GMHEPAT 5.71389838937472 -8.4280132477343 MLTP3 6.19847386918635 -1.25856158095846 KARA2 7.6534844387969 -42.5161615804862 AGPAT140 43.0700530870953 -4.39387451614104 3HAD121 20.2079881365448 -154.296915465516 ACKr 154.92958199942 -4.81427669638384 DADK 17.8719143269618 -19 ASNS2 15.5080444399407 -60.7437517420101 PPCK 60.7437517419543 -8.99468052267482 UPPRT 1.71378957922102 -0.148088871232051 DMPPS 0.14021411783765 -7.86168894408219 HSDy 58.5438487149103 -14 G5SD 20.1655832248775 -68.3525058092151 GLCDpp 320.107006609722 -7.55355587820654 AGM3PA 20.0531880812331 -14.5905993785821 CDAPPA161 10.583867946368 -4.03455769786865 EAR60y 31.3483327132076 -21.1202496280269 GLCS1 20.4759833494006 -18.8214703548273 LALGP 0.50441148147678 -15.8474194403512 SERD_D 205.041937012887 -9.73912172260244 AP4AS 41.3952453682804 -7.12301822013926 FEOXAMR2 0.467945152108023 -33.3731597285484 PGPP120 33.376732488462 -8 UAAGDS 4.8236348890679 -59.423158320646 HACD3 85.5677181660235 -9.94912056286888 PLIPA2G180pp 19.1022052107948 -4.34390852749122 ORPT 36.6658794371609 -5.28666282406101 NTD2 116.645913462721 -76.9849171370588 FDH4pp 278.25454705588 -11 ARGSL 7.73634132264702 -141.171248093136 ACOAD8f 141.171231411502 -0.00541425854537074 FACOAE80 0.00541425854537074 -16.3194538084558 LPLIPAL1E120pp 16.4840441127524 -66.7611983218546 GND 102.728933767382 -34.7185511909517 G3PAT141 34.8566039579823 -8.28061648420117 VALTA 4.93300423171554 -5.92034460327097 KAS14 22.145157336612 -96.7379748902582 IPPMIb 96.9808429771706 -4.26551759693818 3OAR140 83.7095104895704 -12.0378378856263 NTD10 151.352780766228 -8.38446736006649 SDPTA 36.9361124201246 -16.7185097291515 UGCIAMH 17.6613850799989 -10.1004168584709 ILETA 30.0919870951282 -12.2318421292692 AMPTASECG 11.9376763776869 -68.9189154272571 PPA 635.909687681267 -78 DHQS 73.7608805894546 -42.5161615804862 AGPAT120 44.1270490140079 -3.1795960845827 HISTD 3.40845698021283 -10.7537996694691 PLIPA1E140pp 9.69123937824694 -6.37340143940361 DAGK140 4.72703387286322 -3.3 ADSS 3.77497546990187 -6.27275024623321 FLVRx 5.81184070846522 -64.4189010282935 LGTHL 135.60038791433 -11.7689348811775 TRE6PP 11.7974934013733 -6.28235209377117 NTD6 137.666116462489 -3.33574484275822 PTA2 2.50284375236198 -395.486610471369 ATPS4rpp 1249.09518030494 -1.87647496051425 3OAS121 19.352448409774 -37.2296643882805 A5PISO 38.1724023937267 -42 CHORS 60.2637580350781 -7.9498660634001 PYDXNK 0.176648998417731 -0.24 PPBNGS 1.37151724670131 -5.13659347260333 SUCOAS 44.144600740976 -26.4872899377807 UDCPDPpp 64.4510604397518 -17.9131183641197 AM4PCP 4.73521166143761 -5.2334005566775 CLPNS140pp 5.2382419696826 -0.0214258833324572 TMPPP 0.0214258833324572 -49.3225731395513 ACACT4r 49.5341549224539 -7.65991161133188 NAMNPP 0.15489936551657 -9.82711567839092 ABUTD 145.545222999148 -4.06600945016315 AGMH 7.56688447924258 -7.49076096620309 PGAMT 3.76478360108829 -8.53911941823882 HSST 4.30954609576446 -6.7 PSD160 15.0363209117008 -12.3450146303109 SHGO 15.8175209679612 -7.91314238864529 TRE6PS 64.0579550730976 -0.00908518444447114 GTPCI 0.00908518444447114 -3.81484086552927 EAR121y 24.7023983988598 -1.67871775655375 AACPS7 7.08353929366853 -1.63139027289837 S7PI 4.1136801613763 -24 CYTK1 43.5804902484381 -1.28656250077213 PTPATi 1.85829074575948 -21 UHGADA 22.2030002985878 -18.4911010881758 NTPTP2 41.9179876083894 -70.9551139784491 LPLIPAL2E141 69.3231872101431 -8.27561050810826 PACCOAL 0.027779128705969 -22.4070633631046 NDPK3 26.8998401587778 -23.7281625729441 UDCPDP 50.2418428338084 -11.2622474817792 NTP5 0.0277848046063613 -9.23596612648813 NTP1 0.0277946511922708 -154 AIRC2 153.691369747039 -84 DAPE 82.7805810681957 -2.20365653517859 PSD181 4.81364218828696 -7.72563595203305 OPHHXy 7.72574289871407 -14.5905993785821 CDAPPA160 27.373443570904 -5.02373334184366 F6PA 179.41706768728 -9.71671132192274 AGM4Pt2pp 10.4072554124564 -32.1934820696073 ECOAH3 78.399478302884 -108.169244504748 PFK_3 108.16923573373 -4.39490951111428 EAR180x 7.22290301954882 -188.924437140568 SUCDi 427.94900970527 -5.92034460327097 3OAS160 21.495288287332 -10.1593467066937 IMPC 11.109758632224 -7.91377087589054 FACOAL141t2pp 8.5131448982464 -35.7711244019367 HACD8 117.248078999605 -4.30144019884974 PPAKr 23.0499897245991 -0.31 METS 12.9216264186971 -11.3233008256728 PGSA180 23.2584499893801 -32.7526628660403 CTECOAI8 116.704333901848 -57.8494981269925 HACD1 78.7102803204279 -16 UAGDP 63.5241823966578 -6.9761014205088 MLTGY4pp 7.41761060978355 -15.0781276605754 SADH 30.5375702421432 -9.74701540726299 HEPK1 9.89779003662669 -70.9551139784491 LPLIPAL2G141 69.7217667640864 -5.26176283862732 FE3Ri 17.9448830184223 -10.7537996694691 PLIPA1G160pp 7.92884710943499 -10.6047276455777 ICHORS_copy1 9.20714560613371 -5.64532486823644 APH181 5.36771211992988 -0.194692175869479 HMBS 0.212864732405117 -9.24437268361056 GLUSy 90.6016622247883 -8.508720299453 ACOTA 9.26711943497305 -3.34738015798494 4HTHRK 3.3473801579833 -7.12301822013926 FEOXAMR1 7.75068424331035 -4.7238623506414 3HAD160 18.7661407087355 -44.3822675925909 ACONTb 36.4771408270688 -3.94877616119486 UAG2E 12.0791827200543 -6.51408479417205 THFAT 7.80311235238343 -7.91377087589054 FACOAL140t2pp 7.93415241458294 -1.35081523236687 EAR140x 23.0914493243252 -2.4 THDPS 1.30917318647903 -7.52114907689696 NTPP8 8.92902089545807 -85.0720534858788 ADSK 83.6628201916483 -1.49190406602306 EAR141x 27.8145454551133 -3.30275553856767 I2FE2SS 3.18874020491303 -3.2680205804032 EAR80x 40.9543155479592 -0.0165967054233192 GTHS 0.0165967054233192 -6.2099955014517 ALAR 7.29502400894512 -5.95604008098527 HSTPT 11.7939085506811 -11.379820332083 NDP3 5.47875948783633 -16.9676597109052 PAPA181 16.9729532743964 -9.43165489858234 MLDCP2App 10.0769347519706 -0.543619102929351 CHRPL 3.31319521224883 -3.49684293835857 NDPK8 13.9028114415899 -0.168924501541162 G1SAT 0.340676682597438 -1.48400860358283 PSSA181 1.61644361122554 -3.61218245230292 PUNP6 36.3096721883803 -12.1491081447529 GLUTRR 22.4920155563849 -9.64357492966325 IPMD 7.55088319744533 -11.5036707235437 GTHPi 94.4565728727754 -14.5905993785821 CDAPPA181 17.734596436953 -50.5363737418265 HACD7 90.8339820478366 -5.4924414425035 APG3PAT181 12.045122803018 -29 UAMAGS 18.8695471818252 -9.94959455216948 ADPT 6.57366882575784 -0.011359717623223 I4FE4SR 0.011359717623223 -18.1561006422383 NADPHQR3 57.8560938654247 -3.91046418939074 TDPDRE 6.48792729756343 -15.8619296332902 AP4AH 97.0674661390234 -4.27830584222986 2AGPEAT120 4.40381042173382 -0.212326005766108 DAAD 0.0315905281452287 -37.3656163524736 FRD3 222.610277040407 -55.4094643400599 HACD6 83.6741584863222 -33.3731597285484 PGPP120pp 33.3731759169585 -28.6731048574488 TRSARr 45.6932589868003 -14.9841776036285 KAS15 17.1272548322859 -3.43804149583395 PAI2T 6.45447768040333 -10.0950127452361 AGM3PApp 11.2581114166559 -14.3908252606217 CSND 22.1209021506982 -3.34464481213215 MDH3 265.575450211433 -805.926305067497 MGSA 1067.80206678054 -34.7185511909517 G3PAT140 34.7220802771363 -10.7537996694691 PLIPA1E120pp 10.8676680605739 -5.74534530970532 PSD120 13.1522250740428 -2.40084005051582 PAPSR2 19.5265424932005 -4.64863027546045 FLVR 0.0278339827979088 -21.7906889741116 DURIK1 22.0807760416647 -14.6251536039818 GTHRDHpp 14.6251772458887 -11 CTPS2 2.6791758612393 -33.0541357457718 DADA 33.0541425094199 -5.17741184962385 3OAR180 8.04473443119367 -3.61218245230292 PUNP3 3.69934166345311 -0.00208115513686405 G6PP 0.00208115513686405 -7.43237917930687 PDXPP 0.105256380024536 -4.2 KDOCT2 1.51311741947082 -189.368885346935 PGM 203.484552162899 -5.92034460327097 3OAS60 27.0824308653484 -3.57382272279548 GNP 52.0685052792075 -18.5317969992483 CBPS 31.55731622661 -11.3233008256728 PGSA140 8.2656987981438 -0.09 FMNAT 1.99938158515757 -2.16143696367366 ADMDC 3.07356540595758 -3.35086834918046 ENTCS 5.18126733252531 -3.67344216144375 QMO3 55.8286526629646 -4.27830584222986 2AGPGAT160 8.55390544855073 -8.46991458184782 G3PAT181 18.9743011657182 -3.76112320556721 AACPS8 0.0687674509410358 -16.9676597109052 PAPA181pp 25.9827730338465 -5.64532486823644 APH161 2.99892975676163 -3.81484086552927 EAR141y 34.145905360484 -0.32 APRAUR 37.7160794186968 -1.1 DXPS 0.120156891951524 -4.39387451614104 3HAD141 20.2079881365345 -0.81 UPPDC1 0.204483847112815 -0.313750394210426 HPPK2 0.78009095725086 -6.23665409241565 PPK2 6.23665408847789 -7.36065535534709 NTPP7 32.506139617685 -4.95149832289923 NDPK7 7.46952431530987 -0.445730546112667 MLTG4 0.0277821230209013 -11.1279549747511 PSSA180 10.848281388395 -33.4229717576011 ACACT7r 33.8800799000221 -8.19083404537989 GTPDPK 29.5475764651855 -10.7537996694691 PLIPA1G181pp 10.7806411003098 -9.8696185083081 LDH_D2 64.0834672602208 -4.75412267252741 ASPO3 4.75409931324696 -6.37340143940361 DAGK141 0.0277779702802118 -1.33389682554036 DPCOAK 1.34546879208571 -7.91377087589054 FACOAL160t2pp 8.23986617404274 -9.05553677971361 PHETA1 15.5183180540692 -0.0523365402118008 AHCYSNS 0.460396629583062 -13.678526406088 FACOAE60 47.0447457620905 -20.0797810122274 OCBT 30.9491514892288 -9.78144941091262 URIK1 41.7376838273811 -3.81995890025428 GLXCL 91.0352563802908 -1.31640661008089 3OAS181 2.18619085391962 -12.946525398015 MN6PP 11.1584193395002 -22 PRATPP 20.8675052220888 -59 MOAT2 59.0006205750039 -5.29079931198922 S2FE2SS2 5.29079940304036 -2609.26794703223 GLYOX 2609.25957729466 -8.03893063993268 GLYCLTDy 274.797439916288 -15 PSSA160 19.1999894563388 -5.79890677379566 FEENTERR4 6.16803718289403 -195.856878553668 PPS 223.185785567362 -4.27830584222986 2AGPGAT181 10.1000732260843 -23.3169310769599 GMHEPPA 23.0006399112711 -8.24337196264866 3OAR80 97.8988162144909 -3.15043503552138 FDH5pp 48.0827551581215 -18.5922898085779 PUNP7 19.2185077419964 -0.0737204848470377 RBFSa 6.21434562734705 -12.0076793406068 GLDBRAN2 226.053436790013 -51.2640144234606 ADNCYC 52.4305021147881 -10.1158531405334 URIK2 7.84770374142707 -10.7649039385675 HCYSMT 1.09783883665642 -37.4134199559911 PSERT 104.38640182271 -24.2416058379824 ECOAH7 86.1343885555008 -12.0367226800489 AGPAT181 13.0373741736549 -10.7537996694691 PLIPA1G141pp 7.11684316935168 -14.7813586093928 ASPT 151.752134415835 -43 FACOAE161 70.6822506515365 -4.08681070369138 CDPMEK 0.404128742412186 -14.4370563752109 GPDDA4 14.4696513551035 -16.3194538084558 LPLIPAL1G181pp 11.2185971387046 -21.7085522706885 KARA1 27.4177110859734 -14.2250386671848 AIRC3 104.157881825031 -16.9676597109052 PAPA140pp 16.9688689589968 -32.4949661754608 SHKK 48.9166153382574 -17.5269456107024 NTD7 151.631856922207 -7.31569220491032 TDPAGTA 25.6931136677735 -5.92034460327097 3OAS100 27.0824308653484 -26.7081760308423 THIORDXi 11.008603871167 -44.6903126035828 DASYN181 72.7282412845507 -6.360662346572 ASNS1 2.43473510364746 -420 DHAD1 419.946617562976 -16.3816873656339 LIPAabcpp 28.8366836323098 -160 AGPAT161 160.335142052697 -4.93247882186656 MCTP1App 7.5767662359004 -26.5565496634357 UMPK 49.4667928671333 -3.8 HISTP 5.84617387144119 -70.9551139784491 LPLIPAL2E181 47.2438699265444 -3.38629696219554 MECDPS 3.44663178135214 -10.6917095572778 NTD3 110.560962591191 -9.87477281963863 APG3PAT120 14.8012204777298 -5.33350755901341 PPM 22.6655750131648 -9.71671132192274 AGMt2pp 10.0166177554422 -3.19280138872202 3OAR160 59.6012770117803 -13.8996381142985 ASNNpp 34.3323626597057 -6.17726180909412 4PEPTabcpp 18.6517214646923 -16.5941999635267 USHD 17.1538655249424 -8.24337196264866 3OAR40 97.8988162144909 -4.06600945016315 AGM4PH 4.53342997784784 -8.41916898496515 GLCP2 19.9455469175705 -2.3137737375996 ASPO5 2.32527376513382 -13.8354553098106 ALKP 22.4394919150282 -0.888063877555547 IPDPS 0.888063877552197 -9.27286448964064 LPLIPAL1G180pp 9.36697341790446 -178.097602229689 ACOAD5f 178.099261154487 -7.2 MDH 13.6611250664431 -18 PSSA161 21.5850708525597 -10.7537996694691 PLIPA1G120pp 24.876666705637 -32.2022536372637 FA80ACPHi 32.2022536476606 -37.564156745734 MICITDr 37.5648144339073 -7.13652466003536 APG3PAT160 11.6187069414473 -1.26576123437941 EAR160x 21.8021187000377 -57.5550750822299 HACD4 84.7748266793122 -5.98058042386664 FMNRx 2.43308684147239 -11.5118670178791 S4FE4SR 11.5118670179939 -15 ADSL2r 29.1185189629681 -86.7116673035816 DASYN161 132.175984005822 -0.03 RBFSb 21.2774519509611 -4.39387451614104 3HAD100 22.2658727853376 -0.0797674465458344 G1PP 0.0792818445612659 -0.373794511155472 MDDCP2pp 4.42497866202754 -157.881311434786 ACALD 158.134554655276 -32.1731186850537 ECOAH2 69.6530585333102 -5.82556844710157 ALDD2y 118.903534068151 -7.3273393941184 NTD4 75.1711770142311 -0.0215920627931895 ICYSDS 0.028606963862759 -33.0541357457718 ADA 24.4317247213951 -59 MOAT 59.0006205750039 -5.64532486823644 APH141 0.0352030254959299 -15.825706161739 SGDS 22.1099501644316 -0.0165119707806824 GLUCYS 0.0165119707806824 -8.38052765338577 NDPK4 13.1610848966833 -193.906572544439 TPI 193.906572544439 -33.3731597285484 PGPP181pp 43.5238619474473 -3.81484086552927 EAR180y 7.27653986256944 -13.138414218614 ASPCT 50.4080189796211 -61 GLUPRT 58.9835055590327 -1.8 IMPD 8.64285767974561 -17.9131183641197 4PCP 17.9131183640867 -26.824997024954 PFL 156.767838931358 -1.23246860390301 MCTP1Bpp 5.58025998658015 -0.5 PMPK 0.0371339869751646 -11.2866253651575 LADGMDH 40.5423624942287 -17.6729642199055 AGDC 28.9082081590882 -50.1551506475236 ACACT2r 50.3597392127115 -11 DHDPS 25.8905647185067 -16.0100104283114 PGK 24.3139524216734 -6.0730986057998 NADH10 12.3794422742497 -10.7537996694691 PLIPA2E181pp 26.8478589817141 -8.65643947924285 LDH_D 79.2606128630183 -17.2590808767831 ANS 17.4455325131076 -7.10499831048079 PETNT161pp 20.1744233561608 -2.08168429864306 GRXR 16.4207021284037 -32 P5CR 25.0941316360891 -11.8151570105411 GGPTRCO 15.3127262555338 -141.171248093136 ACOAD7f 141.17286449216 -4.19282309762856 3OAS140 21.1384023280281 -12.3434475641483 GUAD 10.4302285743422 -4.46670653180314 SPODM 42.2809820325572 -10.7537996694691 PLIPA2G120pp 1.20930146332253 -24.2146880499225 ACHBS 51.8161656546549 -33.1249150534487 SERD_L 95.3863917433755 -0.797018233205693 PUNP4 3.55274294509316 -3.3 DXPRIi 0.319937455182416 -31.2362234610073 LYSDC 125.34427050428 -117.269621287688 PYK 131.758796565638 -7.74158107713212 ACS 22.044352863885 -150.315575924322 MDH2 468.311554623403 -1.5530820637521 ADCL 44.5717995268221 -12.8389409520264 MPTG 14.3521720099001 -7.16428041109659 TDPADGAT 49.4623208958842 -2.91790367174636 DHNPA2r 3.11014198240838 -4.83037995559269 ACM6PH 132.620929783655 -157.859884613081 FBP 157.888336495849 -9.32990956289489 UGLYCH 17.484360612017 -5.61409039436033 XPPT 9.69660994353709 -7.04964753908229 HXPRT 7.03374166818891 -35.4055116366341 4ABZGLUH 35.7803674647353 -17.7319925689386 GLYCL 84.7864510871154 -36.924305260043 ACPPAT180 37.179330507898 -4.31628619828794 DCTPD 4.31390685013272 -5.40405812820357 CPPPGO2 0.112849417855932 -111.484064976126 DASYN160 139.96992502931 -6.0730986057998 NADH9 24.9887065689571 -3.2680205804032 EAR60x 40.9543155479592 -48.8046583918772 FRD2 194.061131693333 -16.9676597109052 PAPA120 16.9681526012865 -54.6504588981143 TRPS1 55.4491288388172 -10.7537996694691 PLIPA1G140pp 9.69123937824695 -5.21653540222097 2DDARAA 5.21655155808572 -8.42233184067756 NTD5 157.455878454157 -31.631520610796 DASYN180 41.0020873911265 -0.113635978384975 ICHORT 6.90330084847515 -2.64096179762377 NADK 5.26286375844736 -4.67691144447274 NTD12 85.2495467401865 -39.6398380856591 CYSS 59.6772003976535 -9.12247253823189 GALT1 9.14950294686965 -3.32901422177842 PPA2 66.0927765323177 -40.7277313515213 ACACT5r 40.7621798402361 -26.9093338335343 ECOAH1 68.9503476237359 -7.55355587820654 AM3PA 19.4675632032559 -1.77608521380872 EAR120x 31.0564301138869 -5.60790271955258 FMNRx2 1.46229261053298 -40.7277313515213 ACACT3r 41.0370705570667 -14.5905993785821 CDAPPA140 19.9870823176851 -10.59607020381 DCYTD 13.8085054055079 -3.8 IGPDH 5.84617387144117 -4.03455769786865 EAR40y 31.3483327132076 -17.8650969005895 SCYSDS 17.8650969017868 -4.06600945016315 AGM3PH 5.43495065697899 -7.80073017029772 TYRTA 13.7231974483886 -0.23 TMPK 0.274041824709955 -0.09 RBFK 26.7320913196862 -13.4800577512757 PRMICI 8.16129754969286 -2.44977186579031 UAGAAT 20.9123084816918 -6.37340143940361 DAGK120 0.0277779469904667 -9.47722204912371 INSH 9.56137793807862 -37.5180492534449 LEUTAi 47.7809377889222 -1.49808180321955 MDDEP1pp 5.32660513268425 -122.993573124826 ME2 122.993573124079 -10.2736379789841 ANHMK 15.5005178573354 -10.3954899567112 ACGAMT 30.3581777028958 -11.4055353088469 GLGC 59.8824190106411 -54.2201067396986 ALCD19 54.4439793256873 -4.27830584222986 2AGPGAT140 1.040325187712 -5.51462248092798 PRASCSi 8.25139826670435 -31 ADK1 56.2084256637901 -55.7009974553855 DAPDC 54.2397145821785 -0.445730546112667 MLTG5 0.0277797407776567 -24.2199993725483 R15BPK 38.3856450444084 -3.72011217539015 MTHFR2 4.425293301419 -10.59607020381 CYTD 14.7055978754878 -6.2019908206647 TMDPP 7.49449433961738 -3.42551556403819 GLYCTO2 129.125294020083 -18.4653911971493 ACOAD1fr 19.9821890626055 -18 DTMPK 18.0123957012714 -19.5202533533525 GLYAT 42.047101723796 -12.3954475664231 MDDCP5pp 12.8452486156871 -19.2183185651919 PLIPA2A120pp 22.1901873701974 -3.81484086552927 EAR181y 23.1900638544989 -17.3714931361751 THRA 24.6296483741545 -45.3482514390652 CYTBO3_4pp 499.346172847825 -2.04743283973816 T2DECAI 17.4339608630475 -8.42233184067756 NTD1 25.5345712231044 -10.0373918643451 DXYLTD 10.037394132192 -129.988812763387 TKT2 159.678884777606 -32.1975067467725 ECOAH5 78.40157006433 -5 IGPS 6.12122486691322 -303 FADRx 303.000000019419 -53.9279454930502 NADH18pp 299.121011808396 -55.6113261824479 FTHFD 458.871328175265 -8.40984804863167 CYSTL 25.8665288143905 -0.518672695127365 DPR 1.18830226391311 -6.9761014205088 MLTGY3pp 7.7030460166367 -3.76323216049135 3OAR141 63.9801844492073 -5.92034460327097 3OAS120 23.4775017954542 -36.924305260043 ACPPAT120 36.9918674441195 -6.0730986057998 NADH5 24.9564035063976 -0.808873218866375 COLIPAabcpp 1.54565083791465 -0.585096478864559 DMATT 0.597857852755903 -68.2906734786104 HPYRI 82.7068527823386 -4.6710064327499 OBTFL 21.4119157353745 -305.067211620742 HEX1 410.085241339593 -7.10499831048079 PETNT181pp 16.422179387078 -16 UGMDDS 7.98007369085429 -7.48538395020982 HEX7 157.099858616494 -0.215400054772666 PMDPHT 14.0214528535803 -14.3838357545581 RPI 696.890254949965 -4.03455769786865 EAR140y 23.7855386938817 -13.3479399927695 AGMT 16.3007726644751 -8.4280132477343 MLTP1 17.4287922674523 -6.37340143940361 DAGK161 13.8129614368735 -13.4963772115735 NTPP10 13.4958315777306 -7.91377087589054 FACOAL181t2pp 16.2973842818838 -3.90009990403904 PGPP181 6.28273690261955 -0.161613505067713 PUNP2 22.8965700564099 -6.67679651458127 IPDDI 6.68274892245471 -0.150831209620209 THZPSN3 0.0280577218757936 -15.5671218675882 G6PDA 13.2863480222502 -0.0263814182897123 DUTPDP 10.3191433759219 -12.8800134178269 ASPTA 14.8400703674814 -19.2183185651919 PLIPA1E160pp 18.1576069200108 -3.6316462288739 AI2K 3.70718086087905 -9.97267444166286 NADHPO 144.180040002275 -17.9131183641197 AGM4PCP 8.05121536428233 -37.464286427222 PGCD 110.528548630229 -6.9761014205088 MLTGY1pp 7.83736223309529 -2693.14210994718 PSP_L 2693.07285687818 -0.0429060109254141 GCALDD 1.28664307856576 -14.5905993785821 CDAPPA141 38.9485731284329 -0.34 DB4PS 38.2673566603552 -25 GLU5K 52.7720323292437 -428 SDPDS 427.879266228514 -32.7526628660403 CTECOAI7 116.704333901456 -15.8054508832196 MOAT3C 19.2898831519911 -10.7537996694691 PLIPA1E181pp 18.2107765546399 -30.1104369946513 THRD 32.4939828574272 -8.44448432836534 HXAND 19.2994563863166 -1.49190406602306 EAR161x 28.2869532411162 -69 MTHFC 235.074563132314 -3.30832139753064 OPHBDC 3.3172868178427 -8.43283823160346 MAN1PT2 18.9644530414812 -58.1848761721395 ENO 58.1848761721405 -6.46472426311112 PPM2 6.85511921424223 -7.55355587820654 AM4PA 10.1118080761559 -70.1659565032491 MALS 89.9150055278743 -0.934695618341888 AGMHE 3.80769420694561 -78.6920349312527 LPLIPAL2A141 78.3609546840485 -33.3731597285484 PGPP141 33.3749802478474 -5.95572870045351 GUI1 -7.98690145352878 DXYLK -5.07144077841572 GLUNpp -3.32432583544691 I2FE2ST -41.469124247573 6D6SPA -0.02 BMOCOS -31.4348629061135 ACOATA_b -8.61983957121507 RNDR2b -8.26488093467909 FRULYSE -5.80040086969086 GLTPD_b -70.9551139784491 LPLIPAL2G160 -0.336712933665159 OHPBAT_b -9.78017358694592 BWCOGDS2 -5.06552584681538 3OAR40_b -7.8456224702159 PSURIK -356 ACOAD2f_b -7.17026079129293 DTARTD -8.28835858207763 RMPA -7.54006725425595 SHK3Dr_b -7.45089023981007 MALTATr_b -21.4753385719262 NADPPPS -8.7518300449315 ACP1_FMN -13.5320841274986 ECOAH3_b -3.31883883080054 OMMBLHX3 -15.8060012194203 NTD10pp -9.68776117812554 SULRi -7.08438771382553 5DKGR_b -37.7623836733976 HKNDDH -21.5778026792875 ASPTA_b -17.6458325266833 O16A4Lpp -14.4370563752109 GPDDA5 -5.66311126869771 3OAR160_b -9.23305898355569 POR5_b -12.8197036018068 DM_aacald_c -60.9399212836141 LPLIPAL2ATE140 -0.0330976153708453 PPK2r_b -5.84761566870932 SBTPD -14.1325789520922 O16GLCT2 -27.9908309721225 UPLA4FNF -4.85857997201296 URDGLYCD -10.7537996694691 PLIPA2E140pp -18.7533823196001 DHCINDO -3.41688678082287 DM_4crsol_c -12.8197036018068 GUR1PPpp -18.5922898085779 PUNP7_b -5.96746421768547 TAGURr_b -14.1325789520922 SELGTHR -22.7222398931112 DURADx_b -356 ACOAD3f_b -9.07436584506882 GLYCDx -10.341849774767 AB6PGH -16.0961503466412 GLYAT_b -22.0816112336816 TARTD -6.31794152342441 EDTXS3 -6.19703519832067 O16GLCT1 -4.75751325035118 GTHOr_b -8.31138565047014 QUINDHyi -5.76393685859313 PYNP2r_b -13.531522603259 ECOAH5_b -22.9970612997064 CU1Opp -16.3194538084558 LPLIPAL1E140pp -21.9537427390778 3NTD4pp -8.42750201034672 CFAS180E -4.949595302671 CLPNS161pp_b -5.07134589760155 NDPK7_b -5.35167572464651 RMI_b -16.9676597109052 PAPA120pp -70.0381260814935 GAPD_b -7.84494481662741 CTBTCAL2 -6.2019908206647 TMDPP_b -53.1524935888073 UDPG4E -19.2183185651919 PLIPA1A120pp -19.440284535597 PPTHpp -9.00256637955014 HMPK1 -7.25064876591939 METNA_b -10.1957746136553 MAN6PI -7.96759097242003 FCLPA_b -5.76332229126599 FALDH2_b -14.1325789520922 ARBTNR1 -6.6833968551003 G1SAT_b -6.29087964911215 FDMO3 -12.6451091022919 MANPGH -6.32150383138407 RMK -7.54961253966413 ASNN -18.8282093195665 MTHFD_b -60.9399212836141 LPLIPAL2ATE141 -6.7523723830486 FHL -14.1325789520922 CPGNR3 -6.60197172550686 LYSAM_b -7.22516165822894 ACACT1r_b -6.53829788537226 SBTPD_b -21.6425991513373 UAGAAT_b -14.4370563752109 GPDDA1 -39.149077156915 G3PD6 -5.35167572464651 RMI -10.7537996694691 PLIPA2E160pp -60.9399212836141 LPLIPAL2ATE181 -41.6517242342344 3AMACHYD -3.33744250073237 4HTHRA_b -11.3033957407599 URACPAH -7.73272914476094 GALCTD -10.5533836284025 ALCD2x_b -3.32750574421132 PDX5PO2 -9.1e-05 OPMEACPD -120.40415251836 RPI_b -5.75735046248501 HADPCOADH3_b -4.27830584222986 2AGPEAT140 -6.60197172550686 LYSAM -5.16779470190159 DHCIND -24.9412421205754 23PDE7pp -20.8067764969771 LDH_D_b -320.762753520128 ACKr_b -5.97053657094509 CCGS -6.22246300009095 HACD1_b -20.3139791833709 PHETA1_b -6.54026436603574 CYSTRS -0.683201038913556 DHNCOAT -6.25704495866425 HACD2_b -70.9551139784491 LPLIPAL2G180 -7.20073662862541 YUMPS_b -12.3459265445801 G6PDH2r_b -6.54026436603574 ILETRS -14.1325789520922 ARBTNR3 -6.55692163777932 FCLK -5.95572870045351 GUI2 -11.7706732280931 LIPATPT -4.29065074800568 UGLCURPpp -26.4845496436311 IDOND2 -6.05596664911473 NDPK2_b -7.21837245614033 ALR2 -4.26710833801534 APCS -10.157757624107 SERAT_b -5.64694381091642 GALCTLO -6.23343768080963 DHPTPE_b -6.54026436603574 ARGTRS -5.36360113159844 CHOLD -9.57e-05 OGMEACPS -21.8287269409359 CBMKr_b -6.29087964911215 FDMO6 -5.93571799059276 ATHRDHr -22.6470341696899 DC6PH -7.40701886614873 PYROX -6.54026436603574 PROTRS -5.56551811436266 DHMPTR -5.94746483433418 APPLDHr -33.7198546749132 MNNH -86.8866356040527 GALKr -7.05493128586977 CYSTA -3.84509092381357 AHGDx_b -8.49633380346128 XYLK2 -6.5760235412013 M1PD_b -33.3731597285484 PGPP140 -7.39349607059153 PYDXPP -12.702060036899 ACONTa_b -5.54421888697013 NADPHXD -14.1325789520922 H2SO -7.45089023981007 MALTATr -13.5311904775331 CDGS -3.9488237038152 DURIPP_b -6.54026436603574 GLYTRS -60.9399212836141 LPLIPAL2ATG120 -0.0133419286015386 OMBZLM -14.8363565861348 DAPE_b -6.54026436603574 TYRTRS -8.35689008733074 UDPGD -8.17787745477089 BSORy -16.3194538084558 LPLIPAL1G160pp -3.78736509301032 KARA1_b -0.00257808962634552 LIPOCT -33.5048559640593 MTHFC_b -8.56879850392903 NMNAT -3.28206581081228 F1PP -19.2183185651919 PLIPA1A180pp -4.67933517568821 BWCOS -9.67741894601476 NDPK1_b -17.3024053604118 NTD9pp -3.38190933710789 MLTP2_b -11.6285888435292 NNDMBRT -5.71796624690977 DHBD_b -24.9412421205754 23PDE2pp -6.54026436603574 HISTRS -6.54384597382893 LSERDHr_b -16.3194538084558 LPLIPAL1A141pp -3.38190933710789 MLTP1_b -68.673625342829 ENO_b -3.50210030846351 SHCHCS3 -3.96269305821496 UDPGDC -10.1089184986542 ULA4Ntppi -12.8197036018068 CLPNH160pp -12.835497303321 ECOAH7_b -5.73475014712646 3HCINNMH -6.29087964911215 FDMO4 -16.3194538084558 LPLIPAL1E180pp -0.0133419286015386 AMMQLT8 -6.92589213957476 3HBZCT -0.29951252665605 RNDR4 -6.89005553020675 ACOXT_b -7.91377087589054 FACOAL80t2pp -8.50596574781977 S2FE2SR -5.95572870045351 GUI1_b -8.29965923722674 RHMND_b -22.6470341696899 NACODA -73.5351271880204 AKGDH -110.352952443697 IPPMIa_b -4.67933517568821 WCOS -5.79890677379566 FE3DHBZS3R -19.2183185651919 PLIPA2A141pp -60.9399212836141 LPLIPAL2ATE180 -20.9564430124409 CDPPH -7.67514104450385 DDGLK -7.91377087589054 FACOAL60t2pp -21.0017209929976 PTHRpp -10.7984207007903 NO3R2bpp -0.004 PMEACPE -15.8060012194203 NTD11pp -5.26e-05 OPMEACPR -4.27830584222986 2AGPGAT180 -70.9551139784491 LPLIPAL2E161 -5.86685213809256 ACACT3r_b -5.26e-05 OGMEACPR -12.1207185944742 NTPP4 -4.42736783437002 DHFR_b -7.17711069342902 ALAALAD -60.9399212836141 LPLIPAL2ATE161 -0.42509131330408 PERD_b -276.485032638806 PGM_b -11.7171019105839 PHYTSpp -7.94967517744325 2DGULRGy -12.1774551184445 ADSL1r_b -5.13795333895422 ALDD19xr -15.8060012194203 NTD3pp -5.73475014712646 3HPPPNH -6.88501156036144 XYLI1_b -3.28313773971342 GLYCTO4 -5.07134589760155 NDPK3_b -0.43501507610676 OPHHX -9.74904608686967 SPMDAT1 -5.26519589876188 OMMBLHXy -5.97805153408351 HCO3E_b -25.1652984052316 OXCDC -7.91377087589054 FACOAL100t2pp -7.65295096835558 CURR -12.2062522431945 PCNO_b -278 ACOAD6f_b -12.3690225993407 HYD3pp -19.5741993920429 HOPNTAL -14.1325789520922 OXAMTC -12.3130464319242 ACACT8r_b -4.27830584222986 2AGPEAT161 -14.5905993785821 CDAPPA180 -27.2430167123806 FBA3_b -4.87786505085693 FALDH2 -14.1325789520922 FE3HOXR1 -7.31518304078335 YUMPS -8.01083747359174 ACACT4r_b -5.98679926956662 ALLPI_b -6.50749299599942 DHNPTE -13.678526406088 FACOAE100 -185 GLUDy_b -9.34074844522538 XYHDL -5.32855487393035 MALDDH -5.64532486823644 APH160 -7.7120057266492 NHFRBO -13.2100159747178 SPODMpp -5.89027829518053 DDPGALA_b -6.89005553020675 ACOXT -0.0219068585633886 OHPHM -10.0068223306195 PSCVT_b -7.69522614026085 E4PP -7.28575100661646 SELNPS -21.5106952985364 TGBPA_b -8.17613942231003 UDPKAAT_b -3.47298546198547 DNMPPA -8.14837102939885 CRNBTCT_b -8.29743706957731 CYSDDS -3.92007383177679 DADK_b -7.54082956772798 ARABDI_b -16.3010071173973 G1PPpp -15.8060012194203 NTD6pp -9.77997281085205 SELGTHR3 -7.55984792854927 NODOy -9.36169757281227 TKT2_b -13.4965738518818 MAN6PI_b -8.32120067419343 OP4ENH -12.8197036018068 UDCPPtppi -10.2131134699155 GAL1PPpp -16.3194538084558 LPLIPAL1G140pp -24 AGPR_b -15.8060012194203 NTD8pp -8.1445963560195 AMALT4 -23.1856286761843 INOSTO_b -43.9976219143484 ATHRDHr_b -10.0465844885282 TMAOR1 -10.0373918643451 DXYLTD_b -12.9139520235646 ACOTA_b -21.0017209929976 G2PPpp -84.760994217943 GLCRD -14.6479591443544 SQVOSI -9.41371178700294 AMANK -13.6554266937406 ECOAH4_b -8.48131124326115 CINNDO -9.43196005260989 HPACOAT -48.9067788360235 P5CD -0.169010959151894 PROD2 -10.9576500530258 TKT1_b -8.36158948703022 FCLPA -6.5852709536791 O16AP3pp -6.71948261035315 ICHORS -9.29941870599852 NADPHXE -14.1325789520922 FECRMR3 -60.9399212836141 LPLIPAL2ATE160 -18.6337640884861 ASAD_b -4.83672099497515 DHPTDNRN -13.0504166462609 DMSOR2pp -7.34225466894063 CDGR -8.9119778017279 CYTK1_b -4.27830584222986 2AGPEAT141 -13.4542965656053 NTRIR4pp -7.66113765671388 ALTRH -11.8110161530733 ARGSL_b -7.17415862680257 CBLAT_b -12.6592136826489 PGSA160 -0.61138890662873 SUCBZS -14.1325789520922 CPGNR2 -12.3521936260443 GPDDA5pp -267.02594272906 HPYRI_b -60.9399212836141 LPLIPAL2ATG141 -3.30405431459374 OMPHHXy -15.7032406798118 ACP1p -368.156156872851 PPKr_b -4 PGAMT_b -129.23324311666 TPI_b -9.85691693936135 KDUI -10.8968096821967 FEENTERES -41.0558867475998 ATPS4rpp_b -16.3194538084558 LPLIPAL1E160pp -3.61218245230292 PUNP4_b -13.5311904775331 4HTHRS -9.32220683804572 PHDA -14.1325789520922 CPGNR1 -9.8791774614638 CRNCDH_b -7.48524159294397 3SLAR -0.134397015539724 E4PD_b -9.8791774614638 CRNCDH -4.98740807075617 2DGULRx -11.9290138022234 RZ5PP -8.53540788201842 ALLK -14.1325789520922 FECRMR2 -11.6405723416128 DMSOR2 -13.5090398827475 ECOAH2_b -5.78547966105236 GHBDHx_b -7.54082956772798 FCI -20.5167543333707 TYROXDApp -5.07134589760155 NDPK4_b -8.67666543354302 ALATA_L2 -11.4603209935956 HYD1pp -22.6470341696899 SLNTtpp -8.6990148311021 GDPTPDP -6.54026436603574 LYSTRS -3.28462902599731 I2FE2SR -5.94746483433418 LALDO2x -9.83517080876102 RPNTPH -8.28007308107699 ACACT2r_b -41.7711881918955 CTECOAI8_b -3e-05 EPMEACPR -19.2183185651919 PLIPA2A160pp -5.28947600988182 QUINDH -7.7935251969048 3KGK -15.8060012194203 NTD1pp -3.28279311621632 PYK4 -36.7833834874228 CRNCAR -0.21079347427593 CLPNS161pp -11.6405723416128 TMAOR2 -3.28314382507536 PYK3 -8.78250755353721 PDE4 -10.6147423842663 ASPK_b -70.9551139784491 LPLIPAL2G161 -0.797018233205693 PUNP3_b -11.4429682428518 F6PA_b -5.38004036809284 RBP4E -10.2269643957335 COLIPAKpp -15.0049993633707 PFK_2 -95.9820545568523 DSBDR -0.204043245148785 CBLAT -12.8197036018068 CLPNH181pp -0.052912548720704 OMMBLHX -9.04301914105289 POAACR -78.6920349312527 LPLIPAL2A160 -9.98306523174808 METGLCUR -356 ACOAD4f_b -12.8197036018068 CLPNH141pp -9.68776117812554 ALDD2x -10.2218166932244 CPL -5.66311126869771 3OAR60_b -4.949595302671 CLPNS141pp_b -8.02979614061208 TEO2M -36.7833834874228 CRNCAR_b -6.68041709674797 BUTCT -8.42750201034672 CFAS180G -6.85884192583395 RNDR1b -6.23040391550792 4ABZGLUH_b -13.8336211394513 SFGTHi -8.89065272191197 NO3R1bpp -4.6092320763004 CPH4S -14.1325789520922 FE3HOXR2 -6.28813738741624 O16GALFT -0.295482347833575 OMPHHX -6.59778308232384 3OXCOAT -5.46884904179311 CHOLID -7.11984541878741 FRULYSK -83.0272448453371 A5PISO_b -16.4614886518363 FE3DCITR5 -10.5422327038766 CXSAMS -6.35332337312877 ALDD19xr_b -4.27830584222986 2AGPEAT160 -11.7171019105839 NTP3pp -4.54058177114775 LKDRA -32.2022536372637 FA140ACPHi -12.8197036018068 DHBSH -7.84494481662741 CRNDCAL2 -32.762171277202 GLUR_b -9.87477281963863 APG3PAT140 -9.72298155344663 NMNN -15.9448570262625 NTP10 -5.2334005566775 CLPNS141pp -13.0144703891317 LACZ -16.9676597109052 PAPA180pp -5.66311126869771 3OAR120_b -55 CTECOAI7_b -3.31883883080054 OPHHX3 -6.23343768080963 DHPTPE -9.63086192408184 NTP11 -2.1446363890821 MLDCP1App -10.5007897027625 AAMYLpp -5.66323224437527 ALDD3y -3.32685814425622 MPTS -9.14456100180362 UMPK_b -1.75119947292763 MDDEP3pp -13.5311904775331 GUACYC -10.1632223181602 GK1_b -7.01854335443396 LCARS -7.12300955302751 ALAR_b -16.3194538084558 LPLIPAL1A140pp -19.9287512702345 NTPP6 -14.1325789520922 FEENTERR1 -12.0784608676325 FORCT -9.77997281085205 SELGTHR2 -4.79906331523554 PACCOAE -12.2898542905242 ASCBPL -5.87769280281901 ARAI_b -3.29693227872121 MOX -12.8197036018068 SELCYSS -7.50495570572763 DKGLCNR1 -13.4208419454982 AMANAPEr -5.70265352420519 ALDD4 -0.029991639009848 NDPK6 -26.798450811193 PGPP160 -19.2183185651919 PLIPA2A180pp -9.29941870599852 NADHXE_b -12.8197036018068 CLPNH140pp -8.14837102939885 CRNCBCT -6.29087964911215 FDMO -22.6470341696899 ACGAL1PPpp -9.98492026055118 HETZK -12.8197036018068 PPKr -5.77921156740107 ACACT7r_b -7.3380250082382 ADK3_b -5 TRPAS2_b -7.50801435329467 UDPGPT_b -3.39425059050586 DM_mththf_c -29.1152175038775 IDOND_b -15.8619296332902 GP4GH -7.41711643919261 6D6SFK -4.61027471072257 DSBCGT -26.0925894155051 3NTD9pp -4.44671650209795 2DDARAA_b -78.6920349312527 LPLIPAL2A180 -4.29065074800568 UDPGPpp -36.947400853666 PRPPS_b -6.00128652411287 ACANTHAT -6.54026436603574 ALATRS -10.7537996694691 PLIPA2G160pp -6.75581212870909 INOSTO -7.25064876591939 METNA -16.3194538084558 LPLIPAL1A160pp -7.63898671760847 BETALDHy -9.78017358694592 BMOGDS2 -22.6470341696899 ACGAM1PPpp -10.9780613420595 DHACOAH -14.1325789520922 FECRMR1 -29.7627459908217 LCARS_b -12.0817807384531 GALCTND -14.9811492626551 NTPP2 -12.8197036018068 CLPNH161pp -5.51015809942923 ALPATG160pp -11.3096437646949 TMAOR2pp -14.4904842323542 ASR -6.17234523457795 HADPCOADH3 -6.28449082904548 HACD4_b -7.0100863743819 ALLULPE -10.7326347222725 O16AP1pp -9.43165489858234 MLDCP1Bpp -6.11071541451978 SELR -60.9399212836141 LPLIPAL2ATG180 -5.51175660716486 NADHXD -6.25521897159379 AMPNTAT -5.66311126869771 3OAR140_b -3.29832021636678 MOGDS -6.11462720336892 TMK -80.8575378141401 ORPT_b -3.61218245230292 PUNP6_b -41.0772902141259 ACALD_b -17.9036203644542 O16AUNDtpp -13.4963772115735 NTPP9 -3.61218245230292 PUNP5_b -6.85147503011835 PUACGAMS -67.4405872256222 MI1PP -81.3177019658477 CITL -37.564156745734 MICITDr_b -8.68568584351256 PPAKr_b -15.6674143737912 TYRPpp -6.06330742855276 OXDHCOAT -6.85935268596047 X5PL3E -16.9676597109052 PAPA160pp -26.8249540642409 HACD8_b -22.4148082256332 R1PK -8.45670598626436 DGK1_b -67.4405872256222 G2PP -1.13902792635075 CPMPS -16.3816873656339 LIPACabcpp -8.1445963560195 AMALT3 -12.2318421292692 AMPTASEPG -4.59109056305994 GOFUCR -32.2022536372637 FA161ACPHi -7.45089023981007 GLCATr_b -3.58216518716408 PUNP2_b -6.98569338680191 AICART_b -8.1445963560195 AMALT2 -12.8197036018068 FMETTRS -18.2921770402979 2HPTCOAT -7.5 SDPTA_b -10.6920882280843 PRCPD -111.890403442209 HSDy_b -7.15844114002346 SERASr_b -16.3194538084558 LPLIPAL1G141pp -4.29065074800568 UDPGALPpp -6.5560852954136 DSBGGT -5.87769280281901 ARAI -39.149077156915 G3PD7 -10.7537996694691 PLIPA2A161pp -31.3414776416144 NTRIR2x -8.43955340625552 XYLI2_b -5.2334005566775 CLPNS180pp -9.99140521868654 FRULYSDG_b -12.8197036018068 DM_oxam_c -6.5852709536791 O16AP2pp -17.3024053604118 NTD7pp -4.949595302671 CLPNS160pp_b -6.29087964911215 FDMO2 -12.4124409421081 NDPK5_b -8.77203237400417 13PPDH2_b -51.9313402919591 NADTRHD -9.6171453462001 FUM_b -6.70410633993799 CYSSADS -59.0283029676531 MDH_b -16.9676597109052 PAPA141pp -6.18946170505935 M1PD -0.0529857234721957 DHNCOAS -8.02077425530949 ADK1_b -9.72394783647555 GMAND -10.7537996694691 PLIPA1E161pp -12.3690225993407 HYD2pp -10.4218852696745 ADOCBLS -7.97889534947856 PNSPA -19.2183185651919 PLIPA2A140pp -3.38190933710789 MLTP3_b -6.54026436603574 ASNTRS -3.61197336627097 ACBIPGT -4.93303445876218 DSBAO1 -20.5167543333707 PEAMNOpp -5.20258423265415 ADK4_b -60.9399212836141 LPLIPAL2ATE120 -8.64883988249267 NO3R2pp -14.1325789520922 FEENTERR3 -20.4250792633978 TREHpp -40.4785951254567 HKNTDH -4.27830584222986 2AGPEAT180 -10.7537996694691 PLIPA2G161pp -7.975868974899 ACACT6r_b -5.06552584681538 3OAR180_b -1.15761426700864 IPDDI_b -18.1800830767426 S2FE2ST -13.2447698987952 2DOXG6PP -42.5845389491717 SUCOAS_b -15.8060012194203 NTD12pp -49.2529379595513 VPAMTr_b -40.7055797862128 5DKGR -7.94967517744325 2DGULRy -6.54026436603574 METTRS -5.2025136344983 UGLT_b -5.81896337114245 TAUDO -9.74904608686967 SPMDAT2 -0.68 MPTAT -12.3521936260443 GPDDA1pp -5.64532486823644 APH140 -0.0219068585633886 DMQMT -8.42750201034672 CFAS160G -9.52957749614555 MCPST -5.94913740240481 DGUNC -0.00379938258082894 DBTS -3.4184394105812 DM_5drib_c -5.3890526219887 MANAO -4.69482933757065 T2DECAI_b -5.3927538893854 3HPADHi -9.36097510133393 GALM2pp -7.60371445073628 NNATr_b -18.7533823196001 HPPPNDO -6.01102216922935 KARA2_b -19.0532877363441 VALTA_b -10.0193056436704 13PPDH2 -5.07134589760155 NDPK6_b -33.3731597285484 PGPP160pp -32.2022536372637 FA120ACPHi -5.41256299739385 NODOx -12.4312965588633 GLUN -7.78333378888225 MDDCP1pp -11.1035561824413 DC6PDA -5.52112613019445 APPLDHr_b -13.5311904775331 THRAi -26.0925894155051 3NTD7pp -14.1325789520922 FEENTERR2 -6.68279883045761 BETALDHx -6.81788349495952 ACNML -8.05395627705488 CYANST -4.95179587352808 GGGABADr_b -0.002 BTS5 -10.1045867962457 ACACCT -7.50801435329467 UDPGPT -6.93750206832537 DURADx -11.1805285354586 PUACGAMS_b -141.171248093136 ACOAD8f_b -6.66152780293822 MCITL2_b -5.64532486823644 APH120 -0.02 MOCOS -6.50749299599942 DHNPTE_b -4.45119086529593 ARHGDx_b -15.8060012194203 NTD5pp -4.29065074800568 UACGAMPpp -78.6920349312527 LPLIPAL2A120 -4.29065074800568 UACGALPpp -19.2183185651919 PLIPA1A140pp -7.84494481662741 CRNCAL2 -16.3194538084558 LPLIPAL1A161pp -12.8240192629504 PGLYCP -8.67347196877192 DTMPK_b -6.98183293351835 HACD5_b -33.6251684461842 RNDR2 -15.7440617950712 DAPAL -14.1669615376595 ACONTb_b -13.5311904775331 THRA2i -9.78017358694592 BWCOGDS1 -10.0465844885282 DMSOR1 -5.66311126869771 3OAR80_b -356 ACOAD1f_b -13.4208419454982 AMANAPEr_b -22.6470341696899 SELtpp -6.38081875530872 XYLK -5.51015809942923 ALPATE160pp -42.9726094350002 G3PD2_b -1.47410682561451 SEPHCHCS -1.39673307324372 SUCBZL -5.916114222538 LIPAMPL -234.737594641894 RPE_b -0.000241778468067115 LIPOS -0.001 AMAOTr -5.82917536506072 HACD7_b -20.2428316763182 NMNDA -8.48131124326115 PPPNDO -8.14837102939885 CRNCBCT_b -7.72949835479362 RBK_L1 -10.2677467833159 UPLA4FNT -60.9399212836141 LPLIPAL2ATG161 -30.1326412593048 AIRC3_b -4.949595302671 CLPNS181pp_b -6.54026436603574 LEUTRS -70.9551139784491 LPLIPAL2G140 -22.6470341696899 NADN -12.8197036018068 CLPNH180pp -6.45309523398801 GHBDHx -165.651619616071 PTAr_b -9.66703987066147 NTP3 -65.0207730024042 THRA2 -11.0171500568784 CDGUNPD -28.3362824926326 ALAALAr_b -9.29941870599852 NADHXE -12.0858394364867 ECOAH1_b -4.80484263429064 GLTPD -14.1325789520922 ARBTNR2 -22.6470341696899 FFSD -9.1e-05 OGMEACPD -12.8197036018068 PPK2r -6.54026436603574 TRPTRS -8.00707222190863 ThDPAT -20.9564430124409 NDP7 -3.28333714722111 DM_amob_c -4.81595877778011 GLCRAL -7.94967517744325 DKGLCNR2y -1.7 MPTSS -17.3024053604118 NTD2pp -3e-05 EGMEACPR -9.29941870599852 NADPHXE_b -5.99250249426982 DHPTDNR -8.62007041767261 ALLULPE_b -5.89775281528862 MANAO_b -9.23547561261836 LDGUNPD -80.2014089960751 TRSARr_b -60.9399212836141 LPLIPAL2ATG140 -4.949595302671 CLPNS140pp_b -24.9412421205754 23PDE4pp -8.44090400765777 FACOAE140 -50.6456147443905 FBA_b -10.730580277584 LALDO3 -0.14 UDCPDPS -12.8197036018068 CLPNH120pp -13.0504166462609 DMSOR1pp -7.17415862680257 CBIAT_b -47.1613388091059 FRULYSDG -60.9399212836141 LPLIPAL2ATG181 -6.93633528106696 UDPKAAT -6.54026436603574 GLNTRS -10.0866261151077 O16AT -13.6255610320451 ADSL2r_b -5.2334005566775 CLPNS120pp -7.17340001902784 ACPS1 -3.28347896738899 OCTNLL -7.07829146361377 NDPK8_b -8.52388734035983 CYANSTpp -114.571049242897 PGK_b -0.356291178941366 DHNAOT4 -11.2054125246455 ECOAH6_b -10.6277896303531 OCBT_b -0.247394389254112 CLPNS160pp -10.6384719001763 DSERDHr_b -6.9754367307807 HACD3_b -5.98679926956662 ALLPI -4.98740807075617 DKGLCNR2x -5.22588898424484 URIC -356 ACOAD5f_b -128 ACOAD7f_b -71.9441726515919 PGMT_b -21.0017209929976 R5PPpp -6.45858649757649 RMPA_b -5.83820200407307 DOGULNR -3.94877616119486 UAG2E_b -14.1325789520922 FE3HOXR3 -16.3194538084558 LPLIPAL1E141pp -9.88480731519341 ARMEPNS -4.98740807075617 2DGULRGx -8.26488093467909 FRULYSE_b -0.415177196960515 AACPS1 -10.3290088886071 ACONMT -21.0017209929976 PSP_Lpp -121.10253184581 UDPG4E_b -1.56860107820385 RNDR4b -20.5167543333707 42A12BOOXpp -7.45089023981007 GLCATr -33.3731597285484 PGPP161pp -4.27830584222986 2AGPGAT141 -12.2514628892924 AAMYL -6.54026436603574 SERTRS2 -22.6935382139956 AP5AH -8.45874420054375 ILETA_b -5.84979759306616 GDMANE -6.02081435837576 MSAR -32.2022536372637 FA160ACPHi -6.54026436603574 PHETRS -4.56427321655228 ULA4NFT -8.56416014799677 REPHACCOAI_b -7.79958936375767 CBIAT -7.54082956772798 ARABDI -16.3292691246309 LACZpp -4.75848947844236 CYNTAH -0.445764498674099 HEMEOS -19.2183185651919 PLIPA1A160pp -14.9031987512286 MLTG2 -5.22588898424484 AACTOOR -4.949595302671 CLPNS120pp_b -16.2714114428206 TPRDCOAS -6.37643326100858 RBP4E_b -219.871561047833 FRUK -80.5344342196906 UGLT -8.51627818790513 CYTBDpp -6.58274734195207 OXCOAHDH -13.2549225867173 EDTXS4 -9.96477057818195 BSORx -51.1837096140852 PRAGSr_b -13.687225030818 HEX4 -10.7649039385675 HCYSMT2 -9.35832351964338 DDGALK -7.71480612016353 LA4NTpp -10.7537996694691 PLIPA1G180pp -44.1917064260468 5DGLCNR -6.54026436603574 ASPTRS -24.9412421205754 23PDE9pp -9.68776117812554 LCARR -6.17608312220086 HACD6_b -5.49415034353821 TAGURr -10.7537996694691 PLIPA2E141pp -8.64883988249267 NO3R1pp -11.3096437646949 TMAOR1pp -6.54026436603574 VALTRS -10.7537996694691 PLIPA2E161pp -5.66311126869771 3OAR100_b -8.56416014799677 REPHACCOAI -44.3275828780912 PPM_b -3.29875591487523 MOADSUx -4.949595302671 CLPNS180pp_b -3.28280292496259 PYK2 -25.527196271437 PGPP161 -9.84665229189934 PGSA161 -12.0883257323105 FTHFLi -12.0784608676325 FORCT_b -16.9676597109052 PAPA161pp -6.37753797673125 ICDHyr_b -6.54026436603574 SERTRS -16.324331259361 BGLA1 -4.43089962500847 KG6PDC -16.3194538084558 LPLIPAL1A180pp -32.7526628660403 CTECOAI6_b -4.07364397216986 LKDRA_b -6.03208886180558 IDOND -3.3809994505017 PYAM5PO -8.78925762287418 PRMICI_b -11.8847026786785 IMPC_b -16.3194538084558 LPLIPAL1G161pp -11.4611602967879 SQGH -0.00245481662751423 MALCOAMT -36.924305260043 ACPPAT140 -8.67666543354302 ALATA_D2 -42.8230486229967 MC6PH -7.65295096835558 DHCURR -17.3024053604118 NTD4pp -33.3731597285484 PGPP141pp -7.54082956772798 FCI_b -12.5008625464818 TALA_b -8.96441322758818 GHMT2r_b -10.7537996694691 PLIPA2G141pp -277.255143103062 IPPMIb_b -6.62442182306535 ADK4 -22.550645175314 ALCD19_b -17.3211657042649 TGBPA -10.9780613420595 DHACOAH_b -8.1445963560195 AMALT1 -8.94950886449833 UDPGALM -11.2057502921497 ECOAH8_b -22.6470341696899 ALLTAMH -5.95572870045351 GUI2_b -11.4800725699084 FLDR2 -8.42750201034672 CFAS160E -6.08420064497371 RU5PP -8.87295574194234 PPM2_b -5.86685213809256 ACACT5r_b -6.88501156036144 XYLI1 -5.10262669448315 SARCOX -6.70053017457135 ALAGLUE_b -5.10262669448315 MTRPOX -16.3194538084558 LPLIPAL1E161pp -10.0716945436083 2HESR -23.6754810704787 GARFT_b -3.73833877568561 CYSDS -8.34021627303796 CYTK2_b -0.01 PUNP1_b -14.4447035079095 GALS3 -3.35992228435343 MOCDS -5.16779470190159 DHPPD -8.29965923722674 RHMND -14.3002400767693 DHORTS_b -22.6470341696899 HYPOE -12.901700505449 MCOATA_b -10.7537996694691 PLIPA2E180pp -9.78017358694592 BMOGDS1 -9.72298155344663 CMPN -7.97479082251521 AMAOTr_b -8.14837102939885 CRNBTCT -2.62e-05 OPMEACPS -7.38416285367725 ARHGDx -0.00177887784592734 AOXSr2 -3.28274965624399 DHORDfum -13.4542965656053 NTRIR3pp -60.9399212836141 LPLIPAL2ATG160 -18.3123222720833 MDDEP2pp -26.1973199145951 ALATA_L_b -3.28353278683241 GLYCTO3 -6.3869982316261 DDPGALA -10.3226638115809 NTP12 -12.3580625736735 PCNO -26.0925894155051 3NTD2pp -30.295743086643 ICHORS_copy2_b -105.549374987197 PGI_b -5.35167572464651 LYXI -11.0650875369486 PPDOy -7.88288000368347 PYDXK -40.5940989045039 LCARSyi -14.9031987512286 MLTG1 -6.54026436603574 THRTRS -12.3521936260443 GPDDA3pp -78.6920349312527 LPLIPAL2A140 -5.77471066931013 DHNPA2r_b -14.4370563752109 GPDDA3 -12.096336840044 TYRTA_b -13.5216641984178 METSOXR2 -4.93303445876218 DSBAO2 -8.4755108185456 PMANM_b -10.7537996694691 PLIPA2G140pp -3.60529488225729 ADOCBIK -11.4950407883335 GALKr_b diff --git a/docs/src/examples/data/ecoli_ribosomes.tsv b/docs/src/examples/data/ecoli_ribosomes.tsv deleted file mode 100644 index 956b8690..00000000 --- a/docs/src/examples/data/ecoli_ribosomes.tsv +++ /dev/null @@ -1,16 +0,0 @@ -Condition GR Ribosome ActiveR -Acetate 0.3 6.624906061 4.687433534 -Chemostat 0.12 5.824027364 2.864275753 -Chemostat 0.2 6.339881832 3.913507304 -Chemostat 0.35 7.035733218 5.195161659 -Chemostat 0.5 9.420515091 7.548489656 -Fructose 0.65 12.36148947 10.3810958 -Fumarate 0.42 8.9221144 6.888397147 -Galactose 0.26 7.522765265 5.093538981 -Glucose 0.58 12.31629979 10.14695153 -Glucosamine 0.46 10.10666059 7.960725809 -Glycerol 0.47 10.45813488 8.274955209 -Mannose 0.47 9.030639429 7.145455441 -Pyruvate 0.4 8.207851571 6.265535551 -Succinate 0.44 9.678353479 7.55048853 -Xylose 0.55 11.71670541 9.561109759 From e4ab6d3e4b87ec7619f8f73d1692dc8897083289 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 15 Jan 2025 12:24:51 +0100 Subject: [PATCH 23/45] continue fixing --- docs/src/examples/07a-srba.jl | 344 ++----- .../examples/data/e_coli_reaction_kcat.tsv | 932 ++++++++++++++++-- 2 files changed, 901 insertions(+), 375 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 8fda01e0..b6fad6ca 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -45,291 +45,68 @@ import ConstraintTrees as C import HiGHS # ## Collect data for RBA model -# RBA models require a lot of data. Below we have processed the data into a -# format that is amenable to model building. Sources of the data are shown where -# it is instantiated. In essence, we merely load the information into -# COBREXA/Julia objects. - -#md # ```@raw html -#md #
Data for reaction turnover numbers -#md # ``` import CSV import Statistics: mean -data_root = joinpath(dirname(pathof(COBREXA)), "..", "docs", "src", "examples", "data") - -# ### Helper functions -# +data_dir = joinpath(dirname(pathof(COBREXA)), "..", "docs", "src", "examples", "data")V -# Checks if reaction has a gene reaction rule assigned to it. -function has_reaction_grr(model, rid) - grr = A.reaction_gene_association_dnf(model, rid) - if isnothing(grr) || isempty(grr) || isnothing(first(grr)) || isempty(first(grr)) - return false - end - return true -end - -# This adds kcats to -# 1] transporters (if the kcat is missing and the transporter has a grr) -# 2] physiological reactions which don't have a kcat (but they get an average -# one if grr is present) -function add_kcats!( - model, - kcat_data; - transporter_kcat = 180.0, - average_kcat = 25.0, - block_brackets = false, +e_coli_gp_mass = Dict{String,Float64}( + x.gene_product => x.mass for + x in CSV.File(joinpath(data_dir, "e_coli_gp_mass.tsv"), delim = '\t') ) - for rid in A.reactions(model) - !has_reaction_grr(model, rid) && continue - rxn = A.reaction_stoichiometry(model, rid) - if block_brackets - suffixes = [split(met, "[")[end] for met in keys(rxn)] - else - suffixes = [split(met, "_")[end] for met in keys(rxn)] - end - if length(unique(suffixes)) > 1 - if !haskey(kcat_data, rid) - kcat_data[rid] = transporter_kcat - end - end - end - for rid in A.reactions(model) - !has_reaction_grr(model, rid) && continue - if !haskey(kcat_data, rid) - kcat_data[rid] = average_kcat - elseif haskey(kcat_data, rid) - continue - end - end - return nothing -end - -# Finds mass of each gene product in a model -function get_protein_masses(model, proteome_data) - avg_mass = (mean([x[1] for x in values(proteome_data)]),) - return Dict{String,Float64}( - gid => get(proteome_data, gid, avg_mass)[1] for gid in A.genes(model) - ) -end - -# Assemble reaction isozymes from kcat data, Uniprot proteome data, and -# ComplexPortal data. This changes the GRR structure of the model (basically -# making it match the expectations from the data files). In a set of complexes, -# this also gets rid of low confidence complexes if any complex in the set can -# be found in the ComplexPortal. -function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) - mer_map = Dict( - "Homomonomer" => 1, - "Monomer" => 1, - "Homodimer" => 2, - "Homotrimer" => 3, - "Homotetramer" => 4, - "Homopentamer" => 5, - "Homohexamer" => 6, - "Homoheptamer" => 7, - "Homooctamer" => 8, - "Homodecamer" => 10, - "Homododecamer" => 12, - ) - #+ - # infer protein stoichiometry from uniprot annotations - reaction_isozymes = Dict{String,Dict{String,Isozyme}}() - multi_component_enzymes = [] # for use later - for rid in A.reactions(model) - haskey(kcat_data, rid) || continue # skip if no kcat data available - if has_reaction_grr(model, rid) - grrs = A.reaction_gene_association_dnf(model, rid) - for (i, grr) in enumerate(grrs) - isozyme_id = "isozyme_" * string(i) - d = get!(reaction_isozymes, rid, Dict{String,Isozyme}()) - if length(grr) == 1 # only assign homomers - gid = first(grr) - if haskey(proteome_data, gid) # has uniprot data - idx = proteome_data[gid][2] - ss_counts = [get(mer_map, idx, 1.0)] - else # no data - ss_counts = [1.0] - end - else # assume complexes have uni-stoichiometry, fix in next step - ss_counts = fill(1.0, length(grr)) - push!(multi_component_enzymes, (rid, isozyme_id)) - end - d[isozyme_id] = Isozyme( - gene_product_stoichiometry = Dict(grr .=> ss_counts), - kcat_forward = kcat_data[rid] * scale, - kcat_reverse = kcat_data[rid] * scale, # assume forward and reverse are the same - ) - end - end - end - #+ - # fix complex stoichiometry using ComplexPortal data - fixed_multi_component_enzymes = [] - not_fixed_multi_component_enzymes = [] - for (rid, isozyme_id) in multi_component_enzymes - grr = collect(keys(reaction_isozymes[rid][isozyme_id].gene_product_stoichiometry)) - stoichs = [] - for v in values(complex_data) - if length(intersect(collect(keys(v)), grr)) == length(grr) && - length(intersect(collect(keys(v)), grr)) == length(v) - push!(stoichs, v) - end - end - if length(stoichs) == 1 - push!(fixed_multi_component_enzymes, (rid, isozyme_id)) - d = first(stoichs) - for (k, v) in d - if v == 0 - d[k] = 1.0 - end - end - reaction_isozymes[rid][isozyme_id].gene_product_stoichiometry = d - else - push!(not_fixed_multi_component_enzymes, (rid, isozyme_id)) - end - end - #+ - # use only the entries where the stoichiometry is known, if any are known - for (rid, isozyme_id) in not_fixed_multi_component_enzymes - if rid in first.(fixed_multi_component_enzymes) - delete!(reaction_isozymes[rid], isozyme_id) - end - end - return reaction_isozymes -end - -# ### Data loading -# load data from papers, complex DB, and Uniprot - -proteome_data = begin - x = CSV.File(joinpath(data_root, "e_coli_uniprot.tsv"), delim = '\t') - Dict{String,Tuple{Float64,String}}( - gp => (m, coalesce(k, "")) for (gp, m, k) in zip(x.gene_product, x.mass, x.kind) - ) -end -# this data is taken from: *Heckmann, David, et al. "Machine learning applied -# to enzyme turnover numbers reveals protein structural correlates and improves -# metabolic models." Nature communications 9.1 (2018): 1-10.* -kcat_data = Dict( - String(r.KcatID) => r.KcatHeckmann for - r in CSV.File(joinpath(data_root, "ecoli_kcats.tsv")) +kcat_scale = 3600 / 1e3 +e_coli_rxn_kcat_isozyme = Dict{String,Isozyme}( + x.reaction => Isozyme( + kcat_forward = x.kcat * scale, + kcat_reverse = x.kcat * scale, + gene_product_stoichiometry = Dict(), + ) for x in CSV.File(joinpath(data_dir, "e_coli_reaction_kcat.tsv"), delim = '\t') ) -complex_data = begin - x = CSV.File(joinpath(data_root, "e_coli_complex.tsv"), delim = '\t') - res = Dict{String,Dict{String,Float64}}() - for c in x.complex - res[c] = Dict{String,Float64}() - end - for (c, gp, s) in zip(x.complex, x.gene_product, x.stoichiometry) - res[c][gp] = s - end - res +e_coli_rxn_isozymes = Dict{String,Dict{String,Isozyme}}() +for x in CSV.File(joinpath(data_dir, "e_coli_isozyme_gp.tsv"), delim = '\t') + haskey(e_coli_rxn_kcat_isozyme, x.reaction) || continue + rxn = get!(e_coli_rxn_isozymes, x.reaction, Dict{String,Isozyme}()) + iso = get!(rxn, x.isozyme, e_coli_rxn_kcat_isozyme[x.reaction]) + iso.gene_product_stoichiometry[x.gene_product] = x.stoichiometry end -# load the E. coli model as a basis to assemble the data around - -model = load_model("iML1515.json", A.CanonicalModel.Model) - -# Assemble the isozymes and gene product masses increase protein concentrations -# by changing units, convert kcat units from 1/s to k/h -scale = 3600 / 1e3 - -# add kcats that are not measured -# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=114686&ver=3&trm=glucose+transport&org= -add_kcats!(model, kcat_data; transporter_kcat = 180.0, average_kcat = 25.0) - -# get uniprot molar masses (units: kDa = kg/mol) -gene_product_molar_masses = get_protein_masses(model, proteome_data) - -# collect kcats and stoichiometry -reaction_isozymes = - get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) - -# apply analysis-specific quirks -gene_product_molar_masses["b1692"] = 54.58 -gene_product_molar_masses["s0001"] = 54.58 - -# ribosome data (see comment URLs for sources) -# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=100118&ver=10&trm=e+coli+ribosome+molar+mass&org= ) -gene_product_molar_masses["ribosome"] = 2700.0 -# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=101175 -aas_in_ribosome = 7459 -# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=114971&ver=1&trm=ribosome+amino+acid&org= -atp_polymerization_cost = 4.2 -# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=109522&ver=2&trm=ribosome+density&org= -ribosomes_per_protein = 3.46 # multiple ribosomes can produce a single AA, effectively speeding up the overall rate (assume average for all genes) - -# Load and prepare the amino acid data - -amino_acids = Dict( - :glu__L_c => "E", - :lys__L_c => "K", - :his__L_c => "H", - :ser__L_c => "S", - :arg__L_c => "R", - :gln__L_c => "Q", - :trp__L_c => "W", - :ile__L_c => "I", - :tyr__L_c => "Y", - :gly_c => "G", - :thr__L_c => "T", - :ala__L_c => "A", - :cys__L_c => "C", - :asn__L_c => "N", - :pro__L_c => "P", - :phe__L_c => "F", - :asp__L_c => "D", - :val__L_c => "V", - :leu__L_c => "L", - :met__L_c => "M", +e_coli_gp_aas = Dict{String,Dict{Symbol,Int}}( + begin + d = Dict(keys(x) .=> values(x)) + gp = d[:gene_product] + delete!(d, :gene_product) + gp => d + end for x in CSV.File(joinpath(data_dir, "e_coli_gp_aa.tsv"), delim = '\t') ) -aacount = begin # count of each amino acid in a gene product - x = CSV.File(joinpath(data_root, "ecoli_gene_product_aa_counts.tsv"), delim = '\t') - res = Dict{Symbol,Dict{Symbol,Int}}() - for gp in x.gene_product - res[Symbol(gp)] = Dict{Symbol,Int}() - end - for (gp, met, n) in zip(x.gene_product, x.metabolite, x.aa_count) - res[Symbol(gp)][Symbol(met)] = n - end - res -end - -avg_prot = Dict() -for v in values(aacount) - for (k, vv) in v - avg_prot[k] = get(avg_prot, k, 0) + vv - end -end -for (k, v) in avg_prot - avg_prot[k] = v / sum(values(avg_prot)) -end -aacount[:ribosome] = - Dict(k => round(Int, aas_in_ribosome * v, RoundNearest) for (k, v) in avg_prot) +amino_acids = Set(aa for (k, v) in e_coli_gp_aas for (aa, _) in v) -#md # ```@raw html -#md #
-#md # ``` +# assume some constants (these can be found via https://bionumbers.hms.harvard.edu ) +aas_in_ribosome = sum(values(e_coli_gp_aas["ribosome"])) +atp_polymerization_cost = 4.2 +protein_polymerization_atp_per_gDW = 12.0 +ribosomes_per_protein = 3.46 # ## Model assembly -# Now that we have loaded all the data, we can start building the simplified RBA model # First, load the model model = load_model("iML1515.json", A.CanonicalModel.Model) -# Next, we will remove the biomass reactions, as these are handled differently -# in RBA. However, we will save biomass composition for later use. +# We remove the biomass reactions, as these are handled differently in RBA. +# However, we will save biomass composition for later use. biomass = model.reactions["BIOMASS_Ec_iML1515_core_75p37M"] # remove the biomass functions for rba delete!(model.reactions, "BIOMASS_Ec_iML1515_WT_75p37M") delete!(model.reactions, "BIOMASS_Ec_iML1515_core_75p37M") +# apply a few quirks to enforce glucose-consuming metabolism +model.reactions["EX_glc__D_e"].lower_bound = -1000 +model.reactions["EX_glc__D_e"].upper_bound = 1000 +delete!.(Ref(model.reactions), ["EX_for_e", "EX_pyr_e", "EX_5dglcn_e", "EX_lac__D_e"]); + # identify membrane reactions (transporting stuff between compartments) membrane_rids = [ rid for (rid, r) in model.reactions if @@ -352,23 +129,14 @@ membrane_frac = 0.20 # fraction of total proteome that is allowed to be membrane # use COBREXA's built in function to lay the foundation of the RBA model ct = enzyme_constrained_flux_balance_constraints( model; - reaction_isozymes, - gene_product_molar_masses, + reaction_isozymes = e_coli_rxn_isozymes, + gene_product_molar_masses = e_coli_gp_mass, capacity = [ ("membrane", membrane_gids, float(total_capacity * membrane_frac)), ("total", A.genes(model), float(total_capacity)), ], ) -# apply a few quirks -ct.fluxes[:EX_glc__D_e].bound = C.Between(-1000, 1000) -ct.fluxes_forward[:EX_glc__D_e].bound = C.Between(0, 1000) -ct.fluxes_reverse[:EX_glc__D_e].bound = C.Between(0, 1000) -ct.fluxes[:EX_for_e].bound = C.EqualTo(0.0) -ct.fluxes[:EX_pyr_e].bound = C.EqualTo(0.0) -ct.fluxes[:EX_5dglcn_e].bound = C.EqualTo(0.0) -ct.fluxes[:EX_lac__D_e].bound = C.EqualTo(0.0) - # We now need to extend the enzyme constrained model with further resource # allocation constraints. Since RBA models are bilinear, it is simpler to create # a function that builds a model at a specific growth rate, transforming the @@ -382,7 +150,8 @@ function with_srba_constraints(ct, mu) energy_metabolites = Dict(:atp_c => -1, :h2o_c => -1, :adp_c => 1, :h_c => 1, :pi_c => 1) #+ - # attach new variables for ribosomes (recall ribosomes are required to make proteins, and ribosomes themselves) + # attach new variables for ribosome production (recall ribosomes are + # required to make proteins, and ribosomes themselves) rbatree = ct + :ribosomes^C.variables(; @@ -390,18 +159,19 @@ function with_srba_constraints(ct, mu) bounds = C.Between(0, Inf), ) #+ - # we are going to modify a few parts locally so let's make a copy of them to not change the base model (ct) + # we are going to modify a few parts locally so let's make a copy of them + # to not change the base model (ct) rbatree = C.ConstraintTree( rbatree..., :flux_stoichiometry => deepcopy(rbatree.flux_stoichiometry), :gene_product_capacity => deepcopy(rbatree.gene_product_capacity), ) #+ - # amino acid dilution by growth note: in RBA biomass components get diluted - # directly, and it is not necessary to have a biomass reaction for this - # purpose. Here the amino acids get special attention, since they are - # consumed by the ribosomes. - for aa in keys(amino_acids) + # Connect amino-acid production to its consumption for gene products. + # + # (The conversion factor 0.001 is required to convert the units from mol to + # mmol, which is assumed in AA-related constraints.) + for aa in amino_acids rbatree.flux_stoichiometry[aa].value -= mu * 0.001 * @@ -418,18 +188,17 @@ function with_srba_constraints(ct, mu) ) end #+ - # In contrast, the other biomass components just get diluted by growth, including the energy metabolites - prot_atp_req = 12.0 # protein polymerization cost for average proteome in 1 gDW - for (mid, v) in biomass.stoichiometry # from the saved biomass composition of the original model + # Make a modified biomass reaction which is adjusted for growth (mu), + # and additionally consumes the energy metabolites required for the + # polymerization. + for (mid, v) in biomass.stoichiometry k = Symbol(mid) haskey(amino_acids, k) && continue - #+ - # if the metabolite is an energy metabolite, we add the energy cost of translation - offset = haskey(energy_metabolites, k) ? -energy_metabolites[k] * prot_atp_req : 0.0 + offset = haskey(energy_metabolites, k) ? -energy_metabolites[k] * protein_polymerization_atp_per_gDW : 0.0 rbatree.flux_stoichiometry[k].value += mu * (v + offset) end #+ - # energy costs of protein synthesis + # Consume energy (ATP) for all polymerization. for (k, kk) in energy_metabolites rbatree.flux_stoichiometry[k].value += (kk * mu * 0.001 * atp_polymerization_cost) * sum( @@ -444,8 +213,8 @@ function with_srba_constraints(ct, mu) sum(C.value(x) for x in values(rbatree.ribosomes); init = C.zero(C.LinearValue)) end #+ - # add the equations for protein synthesis by ribosomes - # (the conversion is: ribosome elongation rate amino acids/second => amino acids/hr) + # Use and consume ribosomes for protein synthesis. + # (the conversion below is: ribosome elongation rate amino acids/second => amino acids/hr) kr = ribosomes_per_protein * 12 * 3600 aa_sum(g) = haskey(aacount, g) ? sum(values(aacount[g])) : 300 rbatree *= @@ -495,7 +264,6 @@ res = screen(mus, workers = [1]) do mu C.value(v) * gene_product_molar_masses["ribosome"] for v in values(rbat.ribosomes) ), - nothing, ) sol = optimized_values( rbat; diff --git a/docs/src/examples/data/e_coli_reaction_kcat.tsv b/docs/src/examples/data/e_coli_reaction_kcat.tsv index 08e731b6..7bd81d9e 100644 --- a/docs/src/examples/data/e_coli_reaction_kcat.tsv +++ b/docs/src/examples/data/e_coli_reaction_kcat.tsv @@ -1,10 +1,35 @@ reaction kcat +12PPDRtex 180.0 +12PPDStex 180.0 13PPDH2 10.0193056436704 13PPDH2_b 8.77203237400417 +14GLUCANabcpp 180.0 +14GLUCANtexi 180.0 +23CAMPtex 180.0 +23CCMPtex 180.0 +23CGMPtex 180.0 +23CUMPtex 180.0 +23DAPPAtex 180.0 +23DOGULNt4pp 180.0 23PDE2pp 24.9412421205754 23PDE4pp 24.9412421205754 23PDE7pp 24.9412421205754 23PDE9pp 24.9412421205754 +26DAHtex 180.0 +2AGPA120tipp 180.0 +2AGPA140tipp 180.0 +2AGPA141tipp 180.0 +2AGPA160tipp 180.0 +2AGPA161tipp 180.0 +2AGPA180tipp 180.0 +2AGPA181tipp 180.0 +2AGPE120tipp 180.0 +2AGPE140tipp 180.0 +2AGPE141tipp 180.0 +2AGPE160tipp 180.0 +2AGPE161tipp 180.0 +2AGPE180tipp 180.0 +2AGPE181tipp 180.0 2AGPEAT120 4.27830584222986 2AGPEAT140 4.27830584222986 2AGPEAT141 4.27830584222986 @@ -12,6 +37,13 @@ reaction kcat 2AGPEAT161 4.27830584222986 2AGPEAT180 4.27830584222986 2AGPEAT181 4.27830584222986 +2AGPG120tipp 180.0 +2AGPG140tipp 180.0 +2AGPG141tipp 180.0 +2AGPG160tipp 180.0 +2AGPG161tipp 180.0 +2AGPG180tipp 180.0 +2AGPG181tipp 180.0 2AGPGAT120 4.27830584222986 2AGPGAT140 4.27830584222986 2AGPGAT141 4.27830584222986 @@ -21,6 +53,8 @@ reaction kcat 2AGPGAT181 4.27830584222986 2DDARAA 5.21653540222097 2DDARAA_b 4.44671650209795 +2DGLCptspp 180.0 +2DGLCtex 180.0 2DGULRGx 4.98740807075617 2DGULRGy 7.94967517744325 2DGULRx 4.98740807075617 @@ -29,7 +63,11 @@ reaction kcat 2HESR 10.0716945436083 2HPTCOAT 18.2921770402979 2MAHMP 7.5975929923852 +34dhpactex 180.0 3AMACHYD 41.6517242342344 +3AMPtex 180.0 +3CMPtex 180.0 +3GMPtex 180.0 3HAD100 4.39387451614104 3HAD120 4.39387451614104 3HAD121 4.39387451614104 @@ -46,6 +84,7 @@ reaction kcat 3HCINNMH 5.73475014712646 3HPADHi 5.3927538893854 3HPPPNH 5.73475014712646 +3HPPtex 180.0 3KGK 7.7935251969048 3NTD2pp 26.0925894155051 3NTD4pp 21.9537427390778 @@ -84,10 +123,16 @@ reaction kcat 3OAS80 5.92034460327097 3OXCOAT 6.59778308232384 3PEPTabcpp 6.16253252869977 +3PEPTtex 180.0 3SLAR 7.48524159294397 +3UMPtex 180.0 42A12BOOXpp 20.5167543333707 4ABZGLUH 35.4055116366341 4ABZGLUH_b 6.23040391550792 +4ABZGLUtex 180.0 +4ABZGLUtr 180.0 +4HBZt3pp 180.0 +4HOXPACDtex 180.0 4HTHRA 13.9136776986161 4HTHRA_b 3.33744250073237 4HTHRK 3.34738015798494 @@ -95,10 +140,14 @@ reaction kcat 4PCP 17.9131183641197 4PCPpp 12.2100308227317 4PEPTabcpp 6.17726180909412 +4PEPTtex 180.0 5DGLCNR 44.1917064260468 +5DGLCNt2rpp 180.0 +5DGLCNtex 180.0 5DKGR 40.7055797862128 5DKGR_b 7.08438771382553 5DOAN 0.0299207198851433 +5MTRtex 180.0 6D6SFK 7.41711643919261 6D6SPA 41.469124247573 A5PISO 37.2296643882805 @@ -119,9 +168,12 @@ AAMYLpp 10.5007897027625 AB6PGH 10.341849774767 ABTA 23.3858776716333 ABUTD 9.82711567839092 +ABUTt2pp 180.0 +ABUTtex 180.0 ACACCT 10.1045867962457 ACACT1r 47.9316975036025 ACACT1r_b 7.22516165822894 +ACACt2pp 180.0 ACACT2r 50.1551506475236 ACACT2r_b 8.28007308107699 ACACT3r 40.7277313515213 @@ -136,45 +188,61 @@ ACACT7r 33.4229717576011 ACACT7r_b 5.77921156740107 ACACT8r 5.86685213809256 ACACT8r_b 12.3130464319242 +ACACtex 180.0 ACALD 157.881311434786 ACALD_b 41.0772902141259 +ACALDtex 180.0 +ACALDtpp 180.0 ACANTHAT 6.00128652411287 ACBIPGT 3.61197336627097 ACCOAC 13.5464745532275 ACCOAL 6.84138279261006 ACGAL1PPpp 22.6470341696899 +ACGAL1Ptex 180.0 +ACGALtex 180.0 ACGAM1PPpp 22.6470341696899 +ACGAM1Ptex 180.0 ACGAMK 8.57137535484602 ACGAMT 10.3954899567112 +ACGAptspp 180.0 +ACGAtex 180.0 ACGK 8.4 -ACGS 228 +ACGS 228.0 ACHBS 24.2146880499225 ACKr 154.296915465516 ACKr_b 320.762753520128 ACLS 99.6353948883991 ACM6PH 4.83037995559269 ACMAMUT 6.82409057435941 +ACMANAptspp 180.0 +ACMANAtex 180.0 +ACMUMptspp 180.0 +ACMUMtex 180.0 +ACNAMt2pp 180.0 +ACNAMtex 180.0 ACNML 6.81788349495952 ACOAD1f 7.11827119414585 -ACOAD1f_b 356 +ACOAD1f_b 356.0 ACOAD1fr 18.4653911971493 ACOAD2f 141.171248093136 -ACOAD2f_b 356 +ACOAD2f_b 356.0 ACOAD3f 177.065139062978 -ACOAD3f_b 356 +ACOAD3f_b 356.0 ACOAD4f 141.171248093136 -ACOAD4f_b 356 +ACOAD4f_b 356.0 ACOAD5f 178.097602229689 -ACOAD5f_b 356 +ACOAD5f_b 356.0 ACOAD6f 177.843931399064 -ACOAD6f_b 278 +ACOAD6f_b 278.0 ACOAD7f 141.171248093136 -ACOAD7f_b 128 +ACOAD7f_b 128.0 ACOAD8f 141.171248093136 ACOAD8f_b 141.171248093136 ACOATA 31.4348629061135 ACOATA_b 31.4348629061135 -ACODA 26 +ACODA 26.0 +ACOLIPAabctex 180.0 +ACONIs 25.0 ACONMT 10.3290088886071 ACONTa 53.0481222661386 ACONTa_b 12.702060036899 @@ -195,11 +263,18 @@ ACPPAT180 36.924305260043 ACPPAT181 6.19497135686288 ACPS1 7.17340001902784 ACS 7.74158107713212 +ACSERtex 180.0 +ACSERtpp 180.0 +ACt2rpp 180.0 +ACt4pp 180.0 +ACtex 180.0 ADA 33.0541357457718 ADCL 1.5530820637521 ADCS 1.82257631235063 ADD 10.1661537772165 -ADK1 31 +ADEt2rpp 180.0 +ADEtex 180.0 +ADK1 31.0 ADK1_b 8.02077425530949 ADK3 14.7767439401705 ADK3_b 7.3380250082382 @@ -208,15 +283,20 @@ ADK4_b 5.20258423265415 ADMDC 2.16143696367366 ADNCYC 51.2640144234606 ADNK1 0.008 +ADNt2pp_copy1 180.0 +ADNt2pp_copy2 180.0 +ADNtex 180.0 ADNUC 9.47722204912371 ADOCBIK 3.60529488225729 +ADOCBLabcpp 180.0 ADOCBLS 10.4218852696745 +ADOCBLtonex 180.0 ADPRDP 5.01271223867661 ADPT 9.94959455216948 ADSK 85.0720534858788 -ADSL1r 10 +ADSL1r 10.0 ADSL1r_b 12.1774551184445 -ADSL2r 15 +ADSL2r 15.0 ADSL2r_b 13.6255610320451 ADSS 3.3 AGDC 17.6729642199055 @@ -234,36 +314,50 @@ AGMH 4.06600945016315 AGMHE 0.934695618341888 AGMT 13.3479399927695 AGMt2pp 9.71671132192274 +AGMtex 180.0 AGPAT120 42.5161615804862 AGPAT140 42.5161615804862 AGPAT141 42.5161615804862 -AGPAT160 136 -AGPAT161 160 +AGPAT160 136.0 +AGPAT161 160.0 AGPAT180 42.5161615804862 AGPAT181 12.0367226800489 AGPR 6.95125327838478 -AGPR_b 24 +AGPR_b 24.0 +AGt3 180.0 AHCYSNS 0.0523365402118008 AHGDx 4.82665967492526 AHGDx_b 3.84509092381357 +AI2abcpp 180.0 AI2K 3.6316462288739 +AI2tex 180.0 +AI2tpp 180.0 AICART 11.8847026786785 AICART_b 6.98569338680191 -AIRC2 154 +AIRC2 154.0 AIRC3 14.2250386671848 AIRC3_b 30.1326412593048 AKGDH 73.5351271880204 +AKGt2rpp 180.0 +AKGtex 180.0 +ALAabcpp 180.0 +ALAALAabcpp 180.0 ALAALAD 7.17711069342902 ALAALAr 171.897800219254 ALAALAr_b 28.3362824926326 +ALAALAtex 180.0 ALAGLUE 6.70053017457135 ALAGLUE_b 6.70053017457135 ALAR 6.2099955014517 ALAR_b 7.12300955302751 +ALAt2pp 180.0 +ALAt4pp 180.0 ALATA_D2 8.67666543354302 ALATA_L 10.1733686206634 ALATA_L2 8.67666543354302 ALATA_L_b 26.1973199145951 +ALAtex 180.0 +ALAtpp 180.0 ALATRS 6.54026436603574 ALCD19 54.2201067396986 ALCD19_b 22.550645175314 @@ -276,12 +370,16 @@ ALDD2y 5.82556844710157 ALDD3y 5.66323224437527 ALDD4 5.70265352420519 ALKP 13.8354553098106 +ALLabcpp 180.0 ALLK 8.53540788201842 ALLPI 5.98679926956662 ALLPI_b 5.98679926956662 ALLTAMH2 10.6291000267471 ALLTAMH 22.6470341696899 +ALLtex 180.0 ALLTN 9.84431651530832 +ALLTNt2rpp 180.0 +ALLTNtex 180.0 ALLULPE 7.0100863743819 ALLULPE_b 8.62007041767261 ALPATE160pp 5.51015809942923 @@ -308,9 +406,12 @@ AMPN 10.9966267301907 AMPNTAT 6.25521897159379 AMPTASECG 12.2318421292692 AMPTASEPG 12.2318421292692 +AMPtex 180.0 +ANHGMtex 180.0 ANHMK 10.2736379789841 -ANPRT 5 +ANPRT 5.0 ANS 17.2590808767831 +AOBUTDs 25.0 AOXSr2 0.00177887784592734 AP4AH 15.8619296332902 AP4AS 9.73912172260244 @@ -337,14 +438,27 @@ ARABDI 7.54082956772798 ARABDI_b 7.54082956772798 ARAI 5.87769280281901 ARAI_b 5.87769280281901 +ARBabcpp 180.0 +ARBt2rpp 180.0 +ARBt3ipp 180.0 +ARBtex 180.0 +ARBTNabcpp 180.0 +ARBTNexs 25.0 ARBTNR1 14.1325789520922 ARBTNR2 14.1325789520922 ARBTNR3 14.1325789520922 +ARBTptspp 180.0 +ARBTtex 180.0 +ARGabcpp 180.0 +ARGAGMt7pp 180.0 ARGDC 32.4432385562773 ARGDCpp 30.6265997297014 -ARGSL 11 +ARGORNt7pp 180.0 +ARGSL 11.0 ARGSL_b 11.8110161530733 ARGSS 2.8 +ARGt3pp 180.0 +ARGtex 180.0 ARGTRS 6.54026436603574 ARHGDx 7.38416285367725 ARHGDx_b 4.45119086529593 @@ -352,12 +466,19 @@ ARMEPNS 9.88480731519341 ASAD 11.6645773743091 ASAD_b 18.6337640884861 ASCBPL 12.2898542905242 +ASCBptspp 180.0 +ASCBtex 180.0 ASNN 7.54961253966413 ASNNpp 13.8996381142985 ASNS1 6.360662346572 -ASNS2 19 +ASNS2 19.0 +ASNt2rpp 180.0 +ASNtex 180.0 ASNTRS 6.54026436603574 +ASO3t8pp 180.0 +ASO3tex 180.0 ASP1DC 0.07 +ASPabcpp 180.0 ASPCT 13.138414218614 ASPK 156.615656584062 ASPK_b 10.6147423842663 @@ -366,16 +487,24 @@ ASPO4 1.92184908723055 ASPO5 2.3137737375996 ASPO6 4.2 ASPT 14.7813586093928 +ASPt2_2pp 180.0 +ASPt2_3pp 180.0 +ASPt2pp 180.0 ASPTA 12.8800134178269 ASPTA_b 21.5778026792875 +ASPtex 180.0 +ASPtpp 180.0 ASPTRS 6.54026436603574 ASR 14.4904842323542 AST 5.93045782748065 ATHRDHr 5.93571799059276 ATHRDHr_b 43.9976219143484 +ATPHs 25.0 ATPPRT 3.7544744728258 ATPS4rpp 395.486610471369 ATPS4rpp_b 41.0558867475998 +BALAt2pp 180.0 +BALAtex 180.0 BETALDHx 6.68279883045761 BETALDHy 7.63898671760847 BGLA1 16.324331259361 @@ -385,20 +514,38 @@ BMOGDS2 9.78017358694592 BPNT 84.8451257345241 BSORx 9.96477057818195 BSORy 8.17787745477089 +BTNtex 180.0 BTS5 0.002 BUTCT 6.68041709674797 +BUTSO3abcpp 180.0 +BUTSO3tex 180.0 +BUTt2rpp 180.0 +BUTtex 180.0 BWCOGDS1 9.78017358694592 BWCOGDS2 9.78017358694592 BWCOS 4.67933517568821 +CA2t3pp 180.0 +CA2tex 180.0 +CADVtpp 180.0 CAT 106.717501617949 +CAt6pp 180.0 CBIAT 7.79958936375767 CBIAT_b 7.17415862680257 +CBItonex 180.0 +CBIuabcpp 180.0 +CBL1abcpp 180.0 +CBL1tonex 180.0 CBLAT 0.204043245148785 CBLAT_b 7.17415862680257 +CBMD 25.0 CBMKr 22.0985712615015 CBMKr_b 21.8287269409359 CBPS 18.5317969992483 CCGS 5.97053657094509 +CD2abcpp 180.0 +CD2t3pp 180.0 +CD2tex 180.0 +CD2tpp 180.0 CDAPPA120 14.5905993785821 CDAPPA140 14.5905993785821 CDAPPA141 14.5905993785821 @@ -411,17 +558,31 @@ CDGS 13.5311904775331 CDGUNPD 11.0171500568784 CDPMEK 4.08681070369138 CDPPH 20.9564430124409 +CELBpts 180.0 CFAS160E 8.42750201034672 CFAS160G 8.42750201034672 CFAS180E 8.42750201034672 CFAS180G 8.42750201034672 +CGLYabcpp 180.0 +CGLYtex 180.0 +CHLabcpp 180.0 +CHLt2pp 180.0 +CHLt3pp 180.0 +CHLtex 180.0 +CHOLATEtpp 180.0 CHOLD 5.36360113159844 CHOLID 5.46884904179311 CHORM 22.4670136651908 -CHORS 42 +CHORS 42.0 CHRPL 0.543619102929351 +CHTBSptspp 180.0 +CHTBStex 180.0 CINNDO 8.48131124326115 CITL 81.3177019658477 +CITt7pp 180.0 +CITtex 180.0 +CLBtex 180.0 +CLIPAabctex 180.0 CLPNH120pp 12.8197036018068 CLPNH140pp 12.8197036018068 CLPNH141pp 12.8197036018068 @@ -443,17 +604,35 @@ CLPNS180pp 5.2334005566775 CLPNS180pp_b 4.949595302671 CLPNS181pp 0.135608986592734 CLPNS181pp_b 4.949595302671 +CLt3_2pp 180.0 +CLtex 180.0 +CLtipp 180.0 CMPN 9.72298155344663 +CMPtex 180.0 +CMtex 180.0 +CMtpp 180.0 +CO2tex 180.0 +CO2tpp 180.0 +COBALT2abcpp 180.0 +COBALT2t3pp 180.0 +COBALT2tex 180.0 +COBALT2tpp 180.0 COLIPAabcpp 0.808873218866375 +COLIPAabctex 180.0 COLIPAKpp 10.2269643957335 +COLIPAPabctex 180.0 +CPGNabcpp 180.0 +CPGNexs 25.0 CPGNR1 14.1325789520922 CPGNR2 14.1325789520922 CPGNR3 14.1325789520922 +CPGNtonex 180.0 CPH4S 4.6092320763004 CPL 10.2218166932244 CPMPS 1.13902792635075 CPPPGO 0.696852840385725 CPPPGO2 5.40405812820357 +CRNabcpp 180.0 CRNBTCT 8.14837102939885 CRNBTCT_b 8.14837102939885 CRNCAL2 7.84494481662741 @@ -463,29 +642,58 @@ CRNCBCT 8.14837102939885 CRNCBCT_b 8.14837102939885 CRNCDH 9.8791774614638 CRNCDH_b 9.8791774614638 +CRNDabcpp 180.0 CRNDCAL2 7.84494481662741 +CRNDt2rpp 180.0 +CRNDtex 180.0 +CRNt2rpp 180.0 +CRNt7pp 180.0 +CRNt8pp 180.0 +CRNtex 180.0 +CS1tex 180.0 CS 31.4913433767798 CSND 14.3908252606217 +CSNt2pp 180.0 +CSNtex 180.0 +CTBTabcpp 180.0 CTBTCAL2 7.84494481662741 +CTBTt2rpp 180.0 CTECOAI6 32.7526628660403 CTECOAI6_b 32.7526628660403 CTECOAI7 32.7526628660403 -CTECOAI7_b 55 +CTECOAI7_b 55.0 CTECOAI8 32.7526628660403 CTECOAI8_b 41.7711881918955 -CTPS2 11 +CTPS2 11.0 +CU1abcpp 180.0 CU1Opp 22.9970612997064 +CU2abcpp 180.0 +CU2tex 180.0 +CU2tpp 180.0 CURR 7.65295096835558 +CUt2pp 180.0 +CUt3 180.0 +CUtex 180.0 CXSAMS 10.5422327038766 CYANST 8.05395627705488 CYANSTpp 8.52388734035983 +CYANtex 180.0 CYNTAH 4.75848947844236 +CYNTt2pp 180.0 +CYNTtex 180.0 +CYSabc2pp 180.0 +CYSabcpp 180.0 CYSDDS 8.29743706957731 CYSDS 3.73833877568561 +CYSDtex 180.0 +CYSItex 180.0 +CYSItpp 180.0 CYSS 39.6398380856591 CYSSADS 6.70410633993799 CYSTA 7.05493128586977 +CYStex 180.0 CYSTL 8.40984804863167 +CYStpp 180.0 CYSTRS 6.54026436603574 CYTBD2pp 19.1000025991512 CYTBDpp 8.51627818790513 @@ -494,7 +702,10 @@ CYTD 10.59607020381 CYTDH 9.72248156463871 CYTDK1 9.78144941091262 CYTDK2 10.1158531405334 -CYTK1 24 +CYTDt2pp_copy1 180.0 +CYTDt2pp_copy2 180.0 +CYTDtex 180.0 +CYTK1 24.0 CYTK1_b 8.9119778017279 CYTK2 9.99748309362758 CYTK2_b 8.34021627303796 @@ -502,6 +713,8 @@ DAAD 0.212326005766108 DADA 33.0541357457718 DADK 4.81427669638384 DADK_b 3.92007383177679 +DADNt2pp 180.0 +DADNtex 180.0 DAGK120 6.37340143940361 DAGK140 6.37340143940361 DAGK141 6.37340143940361 @@ -509,10 +722,14 @@ DAGK160 6.37340143940361 DAGK161 6.37340143940361 DAGK180 6.37340143940361 DAGK181 6.37340143940361 +DALAt2pp 180.0 +DALAtex 180.0 +DAMPtex 180.0 DAPAL 15.7440617950712 DAPDC 55.7009974553855 -DAPE 84 +DAPE 84.0 DAPE_b 14.8363565861348 +DAPtex 180.0 DASYN120 31.631520610796 DASYN140 31.631520610796 DASYN141 31.631520610796 @@ -520,37 +737,51 @@ DASYN160 111.484064976126 DASYN161 86.7116673035816 DASYN180 31.631520610796 DASYN181 44.6903126035828 +DATPHs 25.0 DB4PS 0.34 DBTS 0.00379938258082894 DC6PDA 11.1035561824413 DC6PH 22.6470341696899 +DCAtex 180.0 +DCMPtex 180.0 DCTPD 4.31628619828794 DCYTD 10.59607020381 +DCYTt2pp 180.0 +DCYTtex 180.0 +DDCAtexi 180.0 DDGALK 9.35832351964338 +DDGLCNt2rpp 180.0 +DDGLCNtex 180.0 DDGLK 7.67514104450385 DDPA 30.4744957510635 DDPGALA 6.3869982316261 DDPGALA_b 5.89027829518053 DGK1 10.0047946408752 DGK1_b 8.45670598626436 +DGMPtex 180.0 +DGSNt2pp 180.0 +DGSNtex 180.0 DGUNC 5.94913740240481 DHACOAH 10.9780613420595 DHACOAH_b 10.9780613420595 -DHAD1 420 -DHAD2 139 +DHAD1 420.0 +DHAD2 139.0 DHAPT 44.351669172647 +DHAtex 180.0 DHBD 0.936895016381711 DHBD_b 5.71796624690977 DHBS 0.509427511775445 DHBSH 12.8197036018068 +DHBSZ3FEabcpp 180.0 DHCIND 5.16779470190159 DHCINDO 18.7533823196001 DHCURR 7.65295096835558 -DHDPRy 14 -DHDPS 11 +DHDPRy 14.0 +DHDPS 11.0 DHFR 2.65203617251836 DHFR_b 4.42736783437002 DHFS 0.23 +DHGLYH 25.0 DHMPTR 5.56551811436266 DHNAOT4 0.356291178941366 DHNCOAS 0.0529857234721957 @@ -567,15 +798,23 @@ DHORTS_b 14.3002400767693 DHPPD 5.16779470190159 DHPPDA2 0.32 DHPS2 0.371229170487303 +DHPStex 180.0 +DHPStr 180.0 +DHPTDCs2 25.0 DHPTDNR 5.99250249426982 DHPTDNRN 4.83672099497515 DHPTPE 6.23343768080963 DHPTPE_b 6.23343768080963 -DHQS 78 -DHQTi 59 +DHQS 78.0 +DHQTi 59.0 +DIMPtex 180.0 +DINSt2pp 180.0 +DINStex 180.0 DKGLCNR1 7.50495570572763 DKGLCNR2x 4.98740807075617 DKGLCNR2y 7.94967517744325 +D_LACt2pp 180.0 +D_LACtex 180.0 DM_4crsol_c 3.41688678082287 DM_5drib_c 3.4184394105812 DM_aacald_c 12.8197036018068 @@ -589,9 +828,15 @@ DMSOR1 10.0465844885282 DMSOR1pp 13.0504166462609 DMSOR2 11.6405723416128 DMSOR2pp 13.0504166462609 +DMSOtex 180.0 +DMSOtpp 180.0 +DMStex 180.0 DNMPPA 3.47298546198547 DNTPPA 3.45122103767822 DOGULNR 5.83820200407307 +DOPAtex 180.0 +DOXRBCNtex 180.0 +DOXRBCNtpp 180.0 DPCOAK 1.33389682554036 DPR 0.518672695127365 DRPA 2.43103799110981 @@ -602,18 +847,25 @@ DSBDR 95.9820545568523 DSBGGT 6.5560852954136 DSERDHr 7.0441397354614 DSERDHr_b 10.6384719001763 +DSERt2pp 180.0 +DSERtex 180.0 DTARTD 7.17026079129293 -DTMPK 18 +DTMPK 18.0 DTMPK_b 8.67347196877192 +DTMPtex 180.0 +DUMPtex 180.0 DURADx 6.93750206832537 DURADx_b 22.7222398931112 DURIK1 21.7906889741116 DURIPP 4.88887249825539 DURIPP_b 3.9488237038152 +DURIt2pp 180.0 +DURItex 180.0 DUTPDP 0.0263814182897123 DXPRIi 3.3 DXPS 1.1 DXYLK 7.98690145352878 +DXYLONtex 180.0 DXYLTD 10.0373918643451 DXYLTD_b 10.0373918643451 E4PD 0.117179957550107 @@ -643,6 +895,7 @@ EAR60x 3.2680205804032 EAR60y 4.03455769786865 EAR80x 3.2680205804032 EAR80y 4.03455769786865 +ECA4COLIPAabctex 180.0 ECA4OALpp 17.6458325266833 ECAP1pp 9.66340435185086 ECAP2pp 6.34828672805857 @@ -670,17 +923,25 @@ EDTXS1 6.82122326168105 EDTXS2 3.79385723706577 EDTXS3 6.31794152342441 EDTXS4 13.2549225867173 -EGMEACPR 3e-05 +EGMEACPR 3.0e-5 +ENLIPAabctex 180.0 ENO 58.1848761721395 ENO_b 68.673625342829 ENTCS 3.35086834918046 ENTERES 13.5923766946336 -EPMEACPR 3e-05 +EPMEACPR 3.0e-5 ETHAAL 71.1055373608447 +ETHAtex 180.0 +ETHSO3abcpp 180.0 +ETHSO3tex 180.0 +ETOHtex 180.0 +ETOHtrpp 180.0 F1PP 3.28206581081228 F6PA 5.02373334184366 F6PA_b 11.4429682428518 F6PP 12.0135408265643 +F6Pt6_2pp 180.0 +F6Ptex 180.0 FA100ACPHi 32.2022536372637 FA120ACPHi 32.2022536372637 FA140ACPHi 32.2022536372637 @@ -689,11 +950,11 @@ FA160ACPHi 32.2022536372637 FA161ACPHi 32.2022536372637 FA80ACPHi 32.2022536372637 FACOAE100 13.678526406088 -FACOAE120 22 +FACOAE120 22.0 FACOAE140 8.44090400765777 FACOAE141 13.678526406088 -FACOAE160 36 -FACOAE161 43 +FACOAE160 36.0 +FACOAE161 43.0 FACOAE180 13.678526406088 FACOAE181 22.9493866299083 FACOAE60 13.678526406088 @@ -709,9 +970,14 @@ FACOAL181t2pp 7.91377087589054 FACOAL60t2pp 7.91377087589054 FACOAL80t2pp 7.91377087589054 FADRx2 16.7144388326034 -FADRx 303 +FADRx 303.0 +FADt 180.0 +FADtex 180.0 FALDH2 4.87786505085693 FALDH2_b 5.76332229126599 +FALDtex 180.0 +FALDtpp 180.0 +FALGTHLs 25.0 FBA 103.561878025645 FBA3 29.2711483800407 FBA3_b 27.2430167123806 @@ -730,24 +996,50 @@ FDMO3 6.29087964911215 FDMO4 6.29087964911215 FDMO 6.29087964911215 FDMO6 6.29087964911215 +FE2abcpp 180.0 +FE2t2pp 180.0 +FE2t3pp 180.0 +FE2tex 180.0 +FE2tpp 180.0 +FE3DCITabcpp 180.0 +FE3DCITexs 25.0 FE3DCITR5 16.4614886518363 +FE3DCITtonex 180.0 FE3DHBZS3R 5.79890677379566 +FE3DHBZStonex 180.0 +FE3HOXabcpp 180.0 +FE3HOXexs 25.0 FE3HOXR1 14.1325789520922 FE3HOXR2 14.1325789520922 FE3HOXR3 14.1325789520922 +FE3HOXtonex 180.0 FE3Ri 5.26176283862732 +FE3tex 180.0 +FECRMabcpp 180.0 +FECRMexs 25.0 FECRMR1 14.1325789520922 FECRMR2 14.1325789520922 FECRMR3 14.1325789520922 +FECRMtonex 180.0 +FEENTERabcpp 180.0 FEENTERES 10.8968096821967 +FEENTERexs 25.0 FEENTERR1 14.1325789520922 FEENTERR2 14.1325789520922 FEENTERR3 14.1325789520922 FEENTERR4 5.79890677379566 +FEENTERtex 180.0 +FEENTERtonex 180.0 +FEENTERtpp 180.0 +FEOXAMabcpp 180.0 +FEOXAMexs 25.0 FEOXAMR1 7.12301822013926 FEOXAMR2 7.12301822013926 FEOXAMR3 7.12301822013926 +FEOXAMtonex 180.0 FEROpp 3.28395809606657 +FESD1s 25.0 +FESD2s 25.0 FESR 4.94263743088984 FFSD 22.6470341696899 FHL 6.7523723830486 @@ -758,9 +1050,14 @@ FMETTRS 12.8197036018068 FMNAT 0.09 FMNRx2 5.60790271955258 FMNRx 5.98058042386664 +FMNt 180.0 +FMNtex 180.0 FOMETRi 6.10494911723952 FORCT 12.0784608676325 FORCT_b 12.0784608676325 +FORt2pp 180.0 +FORtex 180.0 +FORtppi 180.0 FRD2 48.8046583918772 FRD3 37.3656163524736 FRUK 219.871561047833 @@ -769,13 +1066,31 @@ FRULYSDG_b 9.99140521868654 FRULYSE 8.26488093467909 FRULYSE_b 8.26488093467909 FRULYSK 7.11984541878741 +FRULYSt2pp 180.0 +FRULYStex 180.0 +FRUpts2pp 180.0 +FRUptspp 180.0 +FRUtex 180.0 +FRUURt2rpp 180.0 +FRUURtex 180.0 +Ftex 180.0 FTHFD 55.6113261824479 FTHFLi 12.0883257323105 +Ftpp 180.0 +FUCtex 180.0 +FUCtpp 180.0 FUM 438.012822340482 FUM_b 9.6171453462001 -G1PACT 16 +FUMt1pp 180.0 +FUMt2_2pp 180.0 +FUMt2_3pp 180.0 +FUMtex 180.0 +FUSAtex 180.0 +FUSAtpp 180.0 +G1PACT 16.0 G1PP 0.0797674465458344 G1PPpp 16.3010071173973 +G1Ptex 180.0 G1PTT 7.67790795167168 G1SAT 0.168924501541162 G1SAT_b 6.6833968551003 @@ -788,38 +1103,72 @@ G3PAT160 49.4063744431873 G3PAT161 37.4175053228345 G3PAT180 34.7185511909517 G3PAT181 8.46991458184782 +G3PCabcpp 180.0 +G3PCtex 180.0 G3PD2 108.588027779767 G3PD2_b 42.9726094350002 G3PD5 17.6986182226431 G3PD6 39.149077156915 G3PD7 39.149077156915 +G3PEabcpp 180.0 +G3PEtex 180.0 +G3PGabcpp 180.0 +G3PGtex 180.0 +G3PIabcpp 180.0 +G3PItex 180.0 +G3PSabcpp 180.0 +G3PStex 180.0 G3PT 17.7430003261412 -G5SD 14 +G5SADs 25.0 +G5SD 14.0 G6PDA 15.5671218675882 G6PDH2r 163.678729835396 G6PDH2r_b 12.3459265445801 G6PP 0.00208115513686405 +G6Pt6_2pp 180.0 +G6Ptex 180.0 GAL1PPpp 10.2131134699155 +GAL1Ptex 180.0 +GALabcpp 180.0 +GALBDtex 180.0 GALCTD 7.73272914476094 GALCTLO 5.64694381091642 GALCTND 12.0817807384531 +GALCTNLt2pp 180.0 +GALCTNLtex 180.0 +GALCTNt2pp 180.0 +GALCTNtex 180.0 +GALCTt2rpp 180.0 +GALCTtex 180.0 GALKr 86.8866356040527 GALKr_b 11.4950407883335 GALM2pp 9.36097510133393 GALS3 14.4447035079095 GALT1 9.12247253823189 +GALt2pp 180.0 +GALtex 180.0 +GALTptspp 180.0 +GALTtex 180.0 GALUi 1.30900572807743 +GALURt2rpp 180.0 +GALURtex 180.0 +GAM6Pt6_2pp 180.0 +GAMAN6Ptex 180.0 +GAMptspp 180.0 +GAMtex 180.0 GAPD 35.7649614246495 GAPD_b 70.0381260814935 GAPP 34.2295171481601 -GARFT 112 +GARFT 112.0 GARFT_b 23.6754810704787 GART 0.12 +GBBTNtex 180.0 GCALDD 0.0429060109254141 GDMANE 5.84979759306616 GDPDPK 5.84679084607549 GDPMNH 6.19300769135426 GDPMNP 12.2299655765177 +GDPtex 180.0 GDPTPDP 8.6990148311021 GF6PTA 2.2 GGGABADr 5.51442024445757 @@ -831,54 +1180,95 @@ GHBDHx 6.45309523398801 GHBDHx_b 5.78547966105236 GHMT2r 4.43933684472924 GHMT2r_b 8.96441322758818 -GK1 42 +GK1 42.0 GK1_b 10.1632223181602 GLBRAN2 8.6979639005214 +GLCabcpp 180.0 GLCATr 7.45089023981007 GLCATr_b 7.45089023981007 GLCDpp 68.3525058092151 +GLCNt2rpp 180.0 +GLCNtex 180.0 GLCP2 8.41916898496515 GLCP 8.41916898496515 +GLCptspp 180.0 GLCRAL 4.81595877778011 GLCRD 84.760994217943 +GLCRt2rpp 180.0 +GLCRtex 180.0 GLCS1 21.1202496280269 +GLCt2pp 180.0 +GLCtex_copy1 180.0 +GLCtex_copy2 180.0 GLCTR1 17.7605080306089 GLCTR2 17.9905730992609 GLCTR3 10.8557719467887 +GLCUR1Ptex 180.0 +GLCURt2rpp 180.0 +GLCURtex 180.0 GLDBRAN2 12.0076793406068 GLGC 11.4055353088469 +GLNabcpp 180.0 GLNS 24.9302195019085 +GLNtex 180.0 GLNTRS 6.54026436603574 GLTPD 4.80484263429064 GLTPD_b 5.80040086969086 -GLU5K 25 +GLU5K 25.0 +GLUabcpp 180.0 +GLUABUTt7pp 180.0 GLUCYS 0.0165119707806824 GLUDC 80.4671796115922 GLUDy 29.258245134103 -GLUDy_b 185 +GLUDy_b 185.0 GLUN 12.4312965588633 GLUNpp 5.07144077841572 -GLUPRT 61 +GLUPRT 61.0 GLUR 13.4859997903367 GLUR_b 32.762171277202 GLUSy 9.24437268361056 +GLUt2rpp 180.0 +GLUt4pp 180.0 +GLUtex 180.0 GLUTRR 12.1491081447529 GLUTRS 0.120344379706301 GLXCL 3.81995890025428 +GLYALDtex 180.0 +GLYALDtpp 180.0 GLYAT 19.5202533533525 GLYAT_b 16.0961503466412 +GLYBabcpp 180.0 +GLYBt2pp 180.0 +GLYBt3pp 180.0 +GLYBtex 180.0 +GLYC2Pabcpp 180.0 +GLYC2Ptex 180.0 +GLYC3Pabcpp 180.0 +GLYC3Pt6pp 180.0 +GLYC3Ptex 180.0 +GLYCAt2rpp 180.0 +GLYCAtex 180.0 GLYCDx 9.07436584506882 GLYCK2 7.57928781022639 GLYCK 3.63395450143943 GLYCL 17.7319925689386 GLYCLTDx 12.0188378623327 GLYCLTDy 8.03893063993268 +GLYCLTt2rpp 180.0 +GLYCLTt4pp 180.0 +GLYCLTtex 180.0 +GLYCtex 180.0 GLYCTO2 3.42551556403819 GLYCTO3 3.28353278683241 GLYCTO4 3.28313773971342 +GLYCtpp 180.0 GLYK 1.42274572189134 GLYOX 2609.26794703223 GLYOX3 42.1371456160758 +GLYt2pp 180.0 +GLYt4pp 180.0 +GLYtex 180.0 +GLYtpp 180.0 GLYTRS 6.54026436603574 GMAND 9.72394783647555 GMHEPAT 1.8061711658725 @@ -886,7 +1276,8 @@ GMHEPK 1.8061711658725 GMHEPPA 23.3169310769599 GMPR 4.32739356849149 GMPS 18.8449876726474 -GMPS2 5 +GMPS2 5.0 +GMPtex 180.0 GND 66.7611983218546 GNK 117.570990995235 GNP 3.57382272279548 @@ -905,26 +1296,45 @@ GPDDA5pp 12.3521936260443 GRTT 0.585096478864559 GRXR 2.08168429864306 GSNK 12.4033324847194 +GSNt2pp 180.0 +GSNt3pp 180.0 +GSNtex 180.0 GSPMDA 17.1915076828226 GSPMDS 10.5134422900573 GTHOr 5.50686501417287 GTHOr_b 4.75751325035118 +GTHOXtex 180.0 GTHPi 11.5036707235437 +GTHRDabc2pp 180.0 +GTHRDabcpp 180.0 GTHRDHpp 14.6251536039818 +GTHRDtex 180.0 GTHS 0.0165967054233192 GTPCI 0.00908518444447114 GTPCII2 0.12 GTPDPDP 19.4287147866981 GTPDPK 8.19083404537989 +GTPHs 25.0 +GTPtex 180.0 GUACYC 13.5311904775331 GUAD 12.3434475641483 GUAPRT 7.04964753908229 +GUAt2pp 180.0 +GUAtex 180.0 +GUAtpp 180.0 GUI1 5.95572870045351 GUI1_b 5.95572870045351 GUI2 5.95572870045351 GUI2_b 5.95572870045351 GUR1PPpp 12.8197036018068 +H2O2tex 180.0 +H2Otex 180.0 +H2Otpp 180.0 H2SO 14.1325789520922 +H2St1pp 180.0 +H2Stex 180.0 +H2tex 180.0 +H2tpp 180.0 HACD1 57.8494981269925 HACD1_b 6.22246300009095 HACD2 57.8983630936063 @@ -944,10 +1354,14 @@ HACD8_b 26.8249540642409 HADPCOADH3 6.17234523457795 HADPCOADH3_b 5.75735046248501 HBZOPT 0.567371613797198 +HCINNMt2rpp 180.0 +HCINNMtex 180.0 HCO3E 9.1 HCO3E_b 5.97805153408351 HCYSMT 10.7649039385675 HCYSMT2 10.7649039385675 +HDCAtexi 180.0 +HDCEAtexi 180.0 HEMEOS 0.445764498674099 HEPK1 9.74701540726299 HEPK2 12.150661503191 @@ -959,17 +1373,28 @@ HETZK 9.98492026055118 HEX1 305.067211620742 HEX4 13.687225030818 HEX7 7.48538395020982 +HEXt2rpp 180.0 +HG2abcpp 180.0 +HG2t3pp 180.0 +HG2tex 180.0 +HISabcpp 180.0 +HISt2rpp 180.0 HISTD 3.1795960845827 +HIStex 180.0 HISTP 3.8 HISTRS 6.54026436603574 HKNDDH 37.7623836733976 HKNTDH 40.4785951254567 HMBS 0.194692175869479 HMPK1 9.00256637955014 +HOMt2pp 180.0 +HOMtex 180.0 HOPNTAL 19.5741993920429 HPACOAT 9.43196005260989 HPPK2 0.313750394210426 HPPPNDO 18.7533823196001 +HPPPNt2rpp 180.0 +HPPPNtex 180.0 HPYRI 68.2906734786104 HPYRI_b 267.02594272906 HPYRP 13.5382564797121 @@ -980,20 +1405,24 @@ HSDy_b 111.890403442209 HSK 151.868642334337 HSST 8.53911941823882 HSTPT 5.95604008098527 +Htex 180.0 HXAND 8.44448432836534 +HXAtex 180.0 HXCT 6.68041709674797 HXPRT 7.04964753908229 HYD1pp 11.4603209935956 HYD2pp 12.3690225993407 HYD3pp 12.3690225993407 HYPOE 22.6470341696899 +HYXNtex 180.0 +HYXNtpp 180.0 I2FE2SR 3.28462902599731 I2FE2SS2 3.30165956241704 I2FE2SS 3.30275553856767 I2FE2ST 3.32432583544691 I4FE4SR 0.011359717623223 I4FE4ST 3.39630763544674 -ICDHyr 11 +ICDHyr 11.0 ICDHyr_b 6.37753797673125 ICHORS 6.71948261035315 ICHORS_copy1 10.6047276455777 @@ -1005,19 +1434,34 @@ ICYSDS 0.0215920627931895 IDOND2 26.4845496436311 IDOND 6.03208886180558 IDOND_b 29.1152175038775 +IDONt2rpp 180.0 +IDONtex 180.0 IG3PS 14.0623086215301 IGPDH 3.8 -IGPS 5 +IGPS 5.0 +ILEabcpp 180.0 +ILEt2rpp 180.0 +ILEt3pp 180.0 ILETA 10.1004168584709 ILETA_b 8.45874420054375 +ILEtex 180.0 ILETRS 6.54026436603574 IMPC 10.1593467066937 IMPC_b 11.8847026786785 IMPD 1.8 +IMPtex 180.0 +INDOLEt2pp 180.0 +INDOLEt2rpp 180.0 +INDOLEtex 180.0 INOSTO 6.75581212870909 INOSTO_b 23.1856286761843 +INOSTt4pp 180.0 INSH 9.47722204912371 INSK 12.0179446399117 +INSt2pp 180.0 +INSt3pp 180.0 +INStex 180.0 +INSTtex 180.0 IPDDI 6.67679651458127 IPDDI_b 1.15761426700864 IPDPS 0.888063877555547 @@ -1026,7 +1470,12 @@ IPPMIa 48.3375841974961 IPPMIa_b 110.352952443697 IPPMIb 96.7379748902582 IPPMIb_b 277.255143103062 -IPPS 10 +IPPS 10.0 +ISETACabcpp 180.0 +ISETACtex 180.0 +K2L4Aabcpp 180.0 +K2L4Aabctex 180.0 +Kabcpp 180.0 KARA1 21.7085522706885 KARA1_b 3.78736509301032 KARA2 1.25856158095846 @@ -1038,10 +1487,17 @@ KDOPP 18.7248986850497 KDOPS 0.763830547473857 KDUI 9.85691693936135 KG6PDC 4.43089962500847 +Kt2pp 180.0 +Kt3pp 180.0 +Ktex 180.0 LA4NTpp 7.71480612016353 LACZ 13.0144703891317 LACZpp 16.3292691246309 LADGMDH 11.2866253651575 +LALADGLUtex 180.0 +LALADGLUtpp 180.0 +LALALGLUtex 180.0 +LALALGLUtpp 180.0 LALDO2x 5.94746483433418 LALDO3 10.730580277584 LALGP 18.8214703548273 @@ -1050,24 +1506,37 @@ LCARR 9.68776117812554 LCARS 7.01854335443396 LCARS_b 29.7627459908217 LCARSyi 40.5940989045039 +LCTSt3ipp 180.0 +LCTStex 180.0 +LCTStpp 180.0 LDGUNPD 9.23547561261836 LDH_D2 9.8696185083081 LDH_D 8.65643947924285 LDH_D_b 20.8067764969771 +LEUabcpp 180.0 +LEUt2rpp 180.0 +LEUt3pp 180.0 LEUTAi 37.5180492534449 +LEUtex 180.0 LEUTRS 6.54026436603574 LGTHL 64.4189010282935 LIPAabcpp 16.3816873656339 +LIPAabctex 180.0 LIPACabcpp 16.3816873656339 +LIPAHT2ex 25.0 +LIPAHTex 25.0 LIPAMPL 5.916114222538 LIPATPT 11.7706732280931 LIPOCT 0.00257808962634552 LIPOS 0.000241778468067115 +LIPOtex 180.0 LKDRA 4.54058177114775 LKDRA_b 4.07364397216986 L_LACD2 17.477194593864 L_LACD3 17.477194593864 -LPADSS 52 +L_LACt2rpp 180.0 +L_LACtex 180.0 +LPADSS 52.0 LPLIPAL1A120pp 16.3194538084558 LPLIPAL1A140pp 16.3194538084558 LPLIPAL1A141pp 16.3194538084558 @@ -1126,25 +1595,53 @@ LPLIPAL2G180 70.9551139784491 LPLIPAL2G181 70.9551139784491 LSERDHr 8.75928626340847 LSERDHr_b 6.54384597382893 +LYSabcpp 180.0 LYSAM 6.60197172550686 LYSAM_b 6.60197172550686 LYSDC 31.2362234610073 +LYSt2pp 180.0 +LYSt3pp 180.0 +LYStex 180.0 LYSTRS 6.54026436603574 LYXI 5.35167572464651 +LYXt2pp 180.0 +LYXtex 180.0 M1PD 6.18946170505935 M1PD_b 6.5760235412013 MACPD 8.85987966614543 MALCOAMT 0.00245481662751423 MALDDH 5.32855487393035 +MALDt2_2pp 180.0 +MALDtex 180.0 MALS 70.1659565032491 +MALt2_2pp 180.0 +MALt2_3pp 180.0 +MALTabcpp 180.0 MALTATr 7.45089023981007 MALTATr_b 7.45089023981007 +MALtex 180.0 +MALTHXabcpp 180.0 +MALTHXtexi 180.0 +MALTPTabcpp 180.0 +MALTptspp 180.0 +MALTPTtexi 180.0 +MALTtexi 180.0 +MALTTRabcpp 180.0 +MALTTRtexi 180.0 +MALTTTRabcpp 180.0 +MALTTTRtexi 180.0 MAN1PT2 8.43283823160346 MAN6PI 10.1957746136553 MAN6PI_b 13.4965738518818 +MAN6Pt6_2pp 180.0 +MAN6Ptex 180.0 MANAO 5.3890526219887 MANAO_b 5.89775281528862 +MANGLYCptspp 180.0 +MANGLYCtex 180.0 MANPGH 12.6451091022919 +MANptspp 180.0 +MANtex 180.0 MC6PH 42.8230486229967 MCITD 22.6714957215784 MCITL2 9.62180248466948 @@ -1173,19 +1670,42 @@ ME1 135.338619967144 ME2 122.993573124826 MECDPDH5 3.8511448018947 MECDPS 3.38629696219554 +MELIBt2pp 180.0 +MELIBt3ipp 180.0 +MELIBtex 180.0 +MEOHtex 180.0 +MEOHtrpp 180.0 MEPCT 13.9694726459131 +MEPNabcpp 180.0 +MEPNtex 180.0 +METabcpp 180.0 METAT 0.0542946360539788 +METDabcpp 180.0 +METDtex 180.0 METGLCUR 9.98306523174808 +METGLCURt2pp 180.0 +METGLCURtex 180.0 METNA 7.25064876591939 METNA_b 7.25064876591939 +METOX1s 25.0 +METOX2s 25.0 METS 0.31 +METSOX1tex 180.0 +METSOX2tex 180.0 METSOXR1 32.0146989593031 METSOXR2 13.5216641984178 +METt3pp 180.0 +METtex 180.0 METTRS 6.54026436603574 +MG2tex 180.0 +MG2tpp 180.0 +MG2uabcpp 180.0 MGSA 805.926305067497 MI1PP 67.4405872256222 MICITDr 37.564156745734 MICITDr_b 37.564156745734 +MINCYCtex 180.0 +MINCYCtpp 180.0 MLDCP1App 2.1446363890821 MLDCP1Bpp 9.43165489858234 MLDCP2App 9.43165489858234 @@ -1209,13 +1729,24 @@ MLTP2_b 3.38190933710789 MLTP3 8.4280132477343 MLTP3_b 3.38190933710789 MMCD 8.50809961482906 +MMETt2pp 180.0 +MMETtex 180.0 MMM 7.13686041960961 +MN2t3pp 180.0 +MN2tipp 180.0 +MN2tpp 180.0 MN6PP 12.946525398015 +MNLptspp 180.0 +MNLtex 180.0 MNNH 33.7198546749132 +MNt2pp 180.0 +MNtex 180.0 MOADSUx 3.29875591487523 -MOAT2 59 +MOAT2 59.0 MOAT3C 15.8054508832196 -MOAT 59 +MOAT 59.0 +MOBDabcpp 180.0 +MOBDtex 180.0 MOCDS 3.35992228435343 MOCOS 0.02 MOGDS 3.29832021636678 @@ -1227,14 +1758,20 @@ MPTG2 0.474918771833212 MPTS 3.32685814425622 MPTSS 1.7 MSAR 6.02081435837576 +MSO3abcpp 180.0 +MSO3tex 180.0 MTAN 0.444460993907051 -MTHFC 69 +MTHFC 69.0 MTHFC_b 33.5048559640593 -MTHFD 69 +MTHFD 69.0 MTHFD_b 18.8282093195665 MTHFR2 3.72011217539015 +MTHTHFSs 25.0 MTRPOX 5.10262669448315 +N2Otex 180.0 +N2Otpp 180.0 NACODA 22.6470341696899 +NACtex 180.0 NADDP 4.93456729372366 NADH10 6.0730986057998 NADH16pp 699.450754301741 @@ -1242,12 +1779,16 @@ NADH17pp 53.9575791765669 NADH18pp 53.9279454930502 NADH5 6.0730986057998 NADH9 6.0730986057998 +NADHHR 25.0 +NADHHS 25.0 NADHPO 9.97267444166286 NADHXD 5.51175660716486 NADHXE 9.29941870599852 NADHXE_b 9.29941870599852 NADK 2.64096179762377 NADN 22.6470341696899 +NADPHHR 25.0 +NADPHHS 25.0 NADPHQR2 18.1561006422383 NADPHQR3 18.1561006422383 NADPHQR4 18.1561006422383 @@ -1258,6 +1799,10 @@ NADPPPS 21.4753385719262 NADS1 0.122167138105439 NADTRHD 51.9313402919591 NAMNPP 7.65991161133188 +NAt3_1p5pp 180.0 +NAt3_2pp 180.0 +NAt3pp 180.0 +NAtex 180.0 NDP3 11.379820332083 NDP7 20.9564430124409 NDPK1 59.1963000296893 @@ -1276,21 +1821,38 @@ NDPK7 4.95149832289923 NDPK7_b 5.07134589760155 NDPK8 3.49684293835857 NDPK8_b 7.07829146361377 +NH4tex 180.0 +NH4tpp 180.0 NHFRBO 7.7120057266492 +NI2abcpp 180.0 +NI2t3pp 180.0 +NI2tex 180.0 +NI2tpp 180.0 +NI2uabcpp 180.0 NMNAT 8.56879850392903 NMNDA 20.2428316763182 NMNN 9.72298155344663 +NMNPtpp 180.0 +NMNtex 180.0 NNAM 9.78994837774661 NNATr 5.32236823396501 NNATr_b 7.60371445073628 NNDMBRT 11.6285888435292 NNDPR 0.46 +NO2t2rpp 180.0 +NO2tex 180.0 NO3R1bpp 8.89065272191197 NO3R1pp 8.64883988249267 NO3R2bpp 10.7984207007903 NO3R2pp 8.64883988249267 +NO3t7pp 180.0 +NO3tex 180.0 NODOx 5.41256299739385 NODOy 7.55984792854927 +NOtex 180.0 +NOtpp 180.0 +NOVBCNtex 180.0 +NOVBCNtpp 180.0 NTD10 12.0378378856263 NTD10pp 15.8060012194203 NTD11 6.85848692170799 @@ -1338,6 +1900,7 @@ NTPTP2 18.4911010881758 NTRIR2x 31.3414776416144 NTRIR3pp 13.4542965656053 NTRIR4pp 13.4542965656053 +O16A4COLIPAabctex 180.0 O16A4Lpp 17.6458325266833 O16AP1pp 10.7326347222725 O16AP2pp 6.5852709536791 @@ -1347,19 +1910,26 @@ O16AUNDtpp 17.9036203644542 O16GALFT 6.28813738741624 O16GLCT1 6.19703519832067 O16GLCT2 14.1325789520922 +O2Stex 180.0 +O2tex 180.0 +O2tpp 180.0 OAADC 7.60892130006815 OBTFL 4.6710064327499 OCBT 20.0797810122274 OCBT_b 10.6277896303531 +OCDCAtexi 180.0 +OCDCEAtexi 180.0 +OCTAtex 180.0 OCTDPS 1.28772688539305 OCTNLL 3.28347896738899 -OGMEACPD 9.1e-05 -OGMEACPR 5.26e-05 -OGMEACPS 9.57e-05 +OGMEACPD 9.1e-5 +OGMEACPR 5.26e-5 +OGMEACPS 9.57e-5 OHPBAT 0.00167803910640036 OHPBAT_b 0.336712933665159 OHPHM 0.0219068585633886 OMBZLM 0.0133419286015386 +OMCDC 25.0 OMMBLHX 0.052912548720704 OMMBLHX3 3.31883883080054 OMMBLHXy 5.26519589876188 @@ -1371,10 +1941,14 @@ OPHBDC 3.30832139753064 OPHHX 0.43501507610676 OPHHX3 3.31883883080054 OPHHXy 7.72563595203305 -OPMEACPD 9.1e-05 -OPMEACPR 5.26e-05 -OPMEACPS 2.62e-05 +OPMEACPD 9.1e-5 +OPMEACPR 5.26e-5 +OPMEACPS 2.62e-5 +ORNabcpp 180.0 ORNDC 36.1806204157884 +ORNtex 180.0 +OROTt2_2pp 180.0 +OROTtex 180.0 ORPT 4.34390852749122 ORPT_b 80.8575378141401 OXAMTC 14.1325789520922 @@ -1382,7 +1956,15 @@ OXCDC 25.1652984052316 OXCOAHDH 6.58274734195207 OXDHCOAT 6.06330742855276 P5CD 48.9067788360235 -P5CR 32 +P5CR 32.0 +PA120abcpp 180.0 +PA140abcpp 180.0 +PA141abcpp 180.0 +PA160abcpp 180.0 +PA161abcpp 180.0 +PA180abcpp 180.0 +PA181abcpp 180.0 +PACALDtex 180.0 PACCOAE 4.79906331523554 PACCOAL 8.27561050810826 PACOAT 9.43196005260989 @@ -1403,7 +1985,7 @@ PAPA180 16.9676597109052 PAPA180pp 16.9676597109052 PAPA181 16.9676597109052 PAPA181pp 16.9676597109052 -PAPPT3 70 +PAPPT3 70.0 PAPSR 100.558809027635 PAPSR2 2.40084005051582 PCNO 12.3580625736735 @@ -1415,17 +1997,32 @@ PDX5PO2 3.32750574421132 PDX5POi 0.03 PDX5PS 1.48129909978704 PDXPP 7.43237917930687 +PE120abcpp 180.0 +PE140abcpp 180.0 +PE141abcpp 180.0 +PE160abcpp 180.0 +PE161abcpp 180.0 +PE180abcpp 180.0 +PE181abcpp 180.0 PEAMNOpp 20.5167543333707 +PEAMNtex 180.0 PERD 0.02 PERD_b 0.42509131330408 PETNT161pp 7.10499831048079 PETNT181pp 7.10499831048079 PFK_2 15.0049993633707 -PFK 278 +PFK 278.0 PFK_3 108.169244504748 PFL 26.824997024954 +PG120abcpp 180.0 +PG140abcpp 180.0 +PG141abcpp 180.0 +PG160abcpp 180.0 +PG161abcpp 180.0 +PG180abcpp 180.0 +PG181abcpp 180.0 PGAMT 7.49076096620309 -PGAMT_b 4 +PGAMT_b 4.0 PGCD 37.464286427222 PGI 129.94468556604 PGI_b 105.549374987197 @@ -1437,6 +2034,13 @@ PGM 189.368885346935 PGM_b 276.485032638806 PGMT 129.542321434344 PGMT_b 71.9441726515919 +PGP120abcpp 180.0 +PGP140abcpp 180.0 +PGP141abcpp 180.0 +PGP160abcpp 180.0 +PGP161abcpp 180.0 +PGP180abcpp 180.0 +PGP181abcpp 180.0 PGPP120 33.3731597285484 PGPP120pp 33.3731597285484 PGPP140 33.3731597285484 @@ -1459,10 +2063,18 @@ PGSA161 9.84665229189934 PGSA180 11.3233008256728 PGSA181 5.07458857570637 PHDA 9.32220683804572 +PHEMEabcpp 180.0 +PHEt2rpp 180.0 PHETA1 9.05553677971361 PHETA1_b 20.3139791833709 +PHEtex 180.0 +PHEtipp 180.0 PHETRS 6.54026436603574 PHYTSpp 11.7171019105839 +PIt2rpp 180.0 +PItex 180.0 +PItpp 180.0 +PIuabcpp 180.0 PLIPA1A120pp 19.2183185651919 PLIPA1A140pp 19.2183185651919 PLIPA1A141pp 19.2183185651919 @@ -1512,6 +2124,8 @@ PMEACPE 0.004 PMPK 0.5 PNSPA 7.97889534947856 PNTK 0.27 +PNTOt4pp 180.0 +PNTOtex 180.0 POAACR 9.04301914105289 POR5 6.40152230045654 POR5_b 9.23305898355569 @@ -1520,8 +2134,11 @@ PPA2 3.32901422177842 PPA 68.9189154272571 PPAKr 4.30144019884974 PPAKr_b 8.68568584351256 +PPALtex 180.0 +PPAt4pp 180.0 +PPAtex 180.0 PPBNGS 0.24 -PPC 46 +PPC 46.0 PPCDC 0.15 PPCK 60.7437517420101 PPCSCT 13.3447540146703 @@ -1538,30 +2155,41 @@ PPM2_b 8.87295574194234 PPM 5.33350755901341 PPM_b 44.3275828780912 PPNCL2 0.15 -PPND 22 +PPND 22.0 PPNDH 17.8653110991477 PPPGO3 0.184466497531518 PPPGO 3.32633594496724 PPPNDO 8.48131124326115 +PPPNt2rpp 180.0 +PPPNtex 180.0 PPS 195.856878553668 PPTHpp 19.440284535597 -PRAGSr 20 +PPTtex 180.0 +PRAGSr 20.0 PRAGSr_b 51.1837096140852 -PRAIi 5 +PRAIi 5.0 PRAIS 14.5830301099742 -PRAMPC 22 +PRAMPC 22.0 PRASCSi 5.51462248092798 -PRATPP 22 +PRATPP 22.0 PRCPD 10.6920882280843 -PRFGS 14 +PRFGS 14.0 PRMICI 13.4800577512757 PRMICI_b 8.78925762287418 +PROabcpp 180.0 PROD2 0.169010959151894 PROD3 6.90934583794074 +PROGLYabcpp 180.0 +PROGLYtex 180.0 +PROt2rpp 180.0 +PROt4pp 180.0 +PROtex 180.0 PROTRS 6.54026436603574 PRPPS 17.0332729614286 PRPPS_b 36.947400853666 -PSCVT 21 +PSCLYSt2pp 180.0 +PSCLYStex 180.0 +PSCVT 21.0 PSCVT_b 10.0068223306195 PSD120 5.74534530970532 PSD140 5.74534530970532 @@ -1571,24 +2199,32 @@ PSD161 7.9 PSD180 5.74534530970532 PSD181 2.20365653517859 PSERT 37.4134199559911 +PSERtex 180.0 PSP_L 2693.14210994718 PSP_Lpp 21.0017209929976 PSSA120 11.1279549747511 PSSA140 11.1279549747511 PSSA141 11.1279549747511 -PSSA160 15 -PSSA161 18 +PSSA160 15.0 +PSSA161 18.0 PSSA180 11.1279549747511 PSSA181 1.48400860358283 PSURIK 7.8456224702159 +PSURItex 180.0 +PSURItpp 180.0 PTA2 3.33574484275822 PTAr 325.69661009454 PTAr_b 165.651619616071 PTHRpp 21.0017209929976 PTPATi 1.28656250077213 +PTRCabcpp 180.0 +PTRCORNt7pp 180.0 +PTRCt2pp 180.0 PTRCTA 8.49287900299281 +PTRCtex 180.0 PUACGAMS 6.85147503011835 PUACGAMS_b 11.1805285354586 +PUACGAMtr 180.0 PUNP1 3.58216518716408 PUNP1_b 0.01 PUNP2 0.161613505067713 @@ -1605,9 +2241,12 @@ PUNP7 18.5922898085779 PUNP7_b 18.5922898085779 PYAM5PO 3.3809994505017 PYDAMK 7.9498660634001 +PYDAMtex 180.0 PYDXK 7.88288000368347 PYDXNK 7.9498660634001 +PYDXNtex 180.0 PYDXPP 7.39349607059153 +PYDXtex 180.0 PYK 117.269621287688 PYK2 3.28280292496259 PYK3 3.28314382507536 @@ -1616,8 +2255,10 @@ PYK6 3.28311771871243 PYNP2r 5.33664385022243 PYNP2r_b 5.76393685859313 PYROX 7.40701886614873 +PYRtex 180.0 QMO2 3.28379953890912 QMO3 3.67344216144375 +QUIN2tex 180.0 QUINDH 5.28947600988182 QUINDHyi 8.31138565047014 QULNS 0.724280662050357 @@ -1625,6 +2266,7 @@ R15BPK 24.2199993725483 R1PK 22.4148082256332 R5PP 7.6212375081202 R5PPpp 21.0017209929976 +R5Ptex 180.0 RBFK 0.09 RBFSa 0.0737204848470377 RBFSb 0.03 @@ -1634,13 +2276,19 @@ RBP4E 5.38004036809284 RBP4E_b 6.37643326100858 REPHACCOAI 8.56416014799677 REPHACCOAI_b 8.56416014799677 +RFAMPtex 180.0 +RFAMPtpp 180.0 RHAT1 19.0103517848249 RHCCE 0.0156143146075014 RHMND 8.29965923722674 RHMND_b 8.29965923722674 +RIBabcpp 180.0 +RIBtex 180.0 RMI 5.35167572464651 RMI_b 5.35167572464651 RMK 6.32150383138407 +RMNtex 180.0 +RMNtpp 180.0 RMPA 8.28835858207763 RMPA_b 6.45858649757649 RNDR1 31.8462858930882 @@ -1674,24 +2322,32 @@ SADT2 13.0123677341436 SARCOX 5.10262669448315 SBTPD 5.84761566870932 SBTPD_b 6.53829788537226 +SBTptspp 180.0 +SBTtex 180.0 SCYSDS 17.8650969005895 -SDPDS 428 +SDPDS 428.0 SDPTA 8.38446736006649 SDPTA_b 7.5 +SELabcpp 180.0 SELCYSS 12.8197036018068 SELGTHR 14.1325789520922 SELGTHR2 9.77997281085205 SELGTHR3 9.77997281085205 SELNPS 7.28575100661646 SELR 6.11071541451978 +SELtex 180.0 SELtpp 22.6470341696899 SEPHCHCS 1.47410682561451 SERASr 0.209117787538849 SERASr_b 7.15844114002346 -SERAT 38 +SERAT 38.0 SERAT_b 10.157757624107 SERD_D 15.8474194403512 SERD_L 33.1249150534487 +SERt2rpp 180.0 +SERt4pp 180.0 +SERtex 180.0 +SERtpp 180.0 SERTRS2 6.54026436603574 SERTRS 6.54026436603574 SFGTHi 13.8336211394513 @@ -1704,23 +2360,50 @@ SHGO 12.3450146303109 SHK3Dr 28.1553987688921 SHK3Dr_b 7.54006725425595 SHKK 32.4949661754608 -SHSL1 10 +SHSL1 10.0 +SKMt2pp 180.0 +SKMtex 180.0 +SLNTabcpp 180.0 +SLNTtex 180.0 SLNTtpp 22.6470341696899 +SO2tex 180.0 +SO2tpp 180.0 +SO3tex 180.0 +SO4t2pp 180.0 +SO4tex 180.0 SOTA 7.9106756849236 +SPMDabcpp 180.0 SPMDAT1 9.74904608686967 SPMDAT2 9.74904608686967 +SPMDt3pp 180.0 +SPMDtex 180.0 SPMS 0.993811031248455 SPODM 4.46670653180314 SPODMpp 13.2100159747178 SQGH 11.4611602967879 +SQtex 180.0 +SQtr 180.0 SQVOSI 14.6479591443544 SSALx 1.85198942878732 SSALy 32.0280109910669 +SUCASPtpp 180.0 SUCBZL 1.39673307324372 SUCBZS 0.61138890662873 +SUCCt1pp 180.0 +SUCCt2_2pp 180.0 +SUCCt2_3pp 180.0 +SUCCtex 180.0 SUCDi 188.924437140568 +SUCFUMtpp 180.0 +SUCMALtpp 180.0 SUCOAS 5.13659347260333 SUCOAS_b 42.5845389491717 +SUCptspp 180.0 +SUCRtex 180.0 +SUCTARTtpp 180.0 +SULabcpp 180.0 +SULFACabcpp 180.0 +SULFACtex 180.0 SULR 6.02573911039186 SULRi 9.68776117812554 T2DECAI 2.04743283973816 @@ -1730,7 +2413,14 @@ TAGURr_b 5.96746421768547 TALA 30.2656512306736 TALA_b 12.5008625464818 TARTD 22.0816112336816 +TARTRDtex 180.0 +TARTRt7pp 180.0 +TARTRtex 180.0 +TARTt2_3pp 180.0 TAUDO 5.81896337114245 +TAURabcpp 180.0 +TAURtex 180.0 +TCYNTtex 180.0 TDP 7.67399226946877 TDPADGAT 7.16428041109659 TDPAGTA 7.31569220491032 @@ -1738,6 +2428,8 @@ TDPDRE 3.91046418939074 TDPDRR 1.22603165516902 TDPGDH 7.06844849399563 TDSK 16.7126625970639 +TDSR1 180.0 +TDSR2 180.0 TEO2M 8.02979614061208 TGBPA 17.3211657042649 TGBPA_b 21.5106952985364 @@ -1746,14 +2438,26 @@ ThDPAT 8.00707222190863 THDPS 2.4 THFAT 6.51408479417205 THIORDXi 26.7081760308423 +THMabcpp 180.0 +THMDt2pp_copy1 180.0 +THMDt2pp_copy2 180.0 +THMDtex 180.0 +THMtex 180.0 THRA 17.3714931361751 THRA2 65.0207730024042 THRA2i 13.5311904775331 +THRabcpp 180.0 THRAi 13.5311904775331 THRD 30.1104369946513 THRD_L 72.4442343685591 +THRPtex 180.0 THRS 28.6460085431503 +THRt2pp 180.0 +THRt2rpp 180.0 +THRt4pp 180.0 +THRtex 180.0 THRTRS 6.54026436603574 +THYMtex 180.0 THZPSN3 0.150831209620209 TKT1 86.4269139876146 TKT1_b 10.9576500530258 @@ -1763,6 +2467,8 @@ TMAOR1 10.0465844885282 TMAOR1pp 11.3096437646949 TMAOR2 11.6405723416128 TMAOR2pp 11.3096437646949 +TMAOtex 180.0 +TMAtex 180.0 TMDK1 8.46642382814223 TMDPP 6.2019908206647 TMDPP_b 6.2019908206647 @@ -1779,48 +2485,71 @@ TRE6PP 11.7689348811775 TRE6PS 7.91314238864529 TREH 18.2998718885334 TREHpp 20.4250792633978 +TREptspp 180.0 +TREtex 180.0 TRPAS2 28.98710156221 -TRPAS2_b 5 +TRPAS2_b 5.0 TRPS1 54.6504588981143 TRPS2 71.4293253002498 TRPS3 88.2049040495694 +TRPt2rpp 180.0 +TRPtex 180.0 +TRPtipp 180.0 TRPTRS 6.54026436603574 TRSARr 28.6731048574488 TRSARr_b 80.2014089960751 +TSULabcpp 180.0 +TSULtex 180.0 +TTDCAtexi 180.0 +TTDCEAtexi 180.0 +TTRCYCtex 180.0 +TTRCYCtpp 180.0 +TUNGSabcpp 180.0 +TUNGStex 180.0 +TYMtex 180.0 TYRL 0.0143369406308285 TYROXDApp 20.5167543333707 TYRPpp 15.6674143737912 +TYRPtex 180.0 +TYRt2rpp 180.0 TYRTA 7.80073017029772 TYRTA_b 12.096336840044 +TYRtex 180.0 +TYRtipp 180.0 TYRTRS 6.54026436603574 -U23GAAT 36 -UAAGDS 8 +U23GAAT 36.0 +UAAGDS 8.0 UACGALPpp 4.29065074800568 UACGAMPpp 4.29065074800568 +UACGAMtex 180.0 UACMAMO 5.726958245789 UAG2E 3.94877616119486 UAG2E_b 3.94877616119486 UAGAAT 2.44977186579031 UAGAAT_b 21.6425991513373 UAGCVT 3.3 -UAGDP 16 -UAGPT3 17 -UAMAGS 29 -UAMAS 14 -UAPGR 43 +UAGDP 16.0 +UAGPT3 17.0 +UAMAGS 29.0 +UAMAS 14.0 +UAPGR 43.0 UDCPDP 23.7281625729441 UDCPDPpp 26.4872899377807 UDCPDPS 0.14 UDCPPtppi 12.8197036018068 +UDPACGALtex 180.0 UDPG4E 53.1524935888073 UDPG4E_b 121.10253184581 UDPGALM 8.94950886449833 UDPGALPpp 4.29065074800568 +UDPGALtex 180.0 UDPGD 8.35689008733074 UDPGDC 3.96269305821496 +UDPGLCURtex 180.0 UDPGPpp 4.29065074800568 UDPGPT 7.50801435329467 UDPGPT_b 7.50801435329467 +UDPGtex 180.0 UDPKAAT 6.93633528106696 UDPKAAT_b 8.17613942231003 UGCIAMH 16.7185097291515 @@ -1828,8 +2557,8 @@ UGLCURPpp 4.29065074800568 UGLT 80.5344342196906 UGLT_b 5.2025136344983 UGLYCH 9.32990956289489 -UGMDDS 16 -UHGADA 21 +UGMDDS 16.0 +UHGADA 21.0 ULA4NFT 4.56427321655228 ULA4Ntppi 10.1089184986542 UM3PL 7.79882868786899 @@ -1837,35 +2566,64 @@ UM4PCP 17.9131183641197 UM4PL 7.79882868786899 UMPK 26.5565496634357 UMPK_b 9.14456100180362 +UMPtex 180.0 UPLA4FNF 27.9908309721225 UPLA4FNT 10.2677467833159 UPP3MT 0.112264526711574 -UPP3S 1 +UPP3S 1.0 UPPDC1 0.81 UPPRT 8.99468052267482 URACPAH 11.3033957407599 +URAt2pp 180.0 +URATEtex 180.0 +URATEtpp 180.0 +URAtex 180.0 URDGLYCD 4.85857997201296 +UREAtex 180.0 +UREAtpp 180.0 URIC 5.22588898424484 URIH 9.72248156463871 URIK1 9.78144941091262 URIK2 10.1158531405334 +URIt2pp_copy1 180.0 +URIt2pp_copy2 180.0 +URItex 180.0 USHD 16.5941999635267 +VALabcpp 180.0 +VALt2rpp 180.0 +VALt3pp 180.0 VALTA 8.28061648420117 VALTA_b 19.0532877363441 +VALtex 180.0 VALTRS 6.54026436603574 VPAMTr 17.8309398407416 VPAMTr_b 49.2529379595513 WCOS 4.67933517568821 X5PL3E 6.85935268596047 XAND 8.44448432836534 +XANt2pp 180.0 +XANtex 180.0 +XMPtex 180.0 XPPT 5.61409039436033 XTSNH 9.47722204912371 +XTSNt2rpp 180.0 +XTSNtex 180.0 XYHDL 9.34074844522538 +XYLabcpp 180.0 XYLI1 6.88501156036144 XYLI1_b 6.88501156036144 XYLI2 6.50195825224657 XYLI2_b 8.43955340625552 XYLK2 8.49633380346128 XYLK 6.38081875530872 +XYLt2pp 180.0 +XYLtex 180.0 +XYLUt2pp 180.0 +XYLUtex 180.0 YUMPS 7.31518304078335 YUMPS_b 7.20073662862541 +ZN2abcpp 180.0 +ZN2t3pp 180.0 +Zn2tex 180.0 +ZN2tpp 180.0 +ZNabcpp 180.0 From 0c8ed6add6ef55fbd7996cfb62d636a544ef3835 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 15 Jan 2025 15:36:25 +0100 Subject: [PATCH 24/45] make srba work nicely --- docs/src/examples/07a-srba.jl | 106 +++++++++++++++++++--------------- 1 file changed, 58 insertions(+), 48 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index b6fad6ca..700c8736 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -59,8 +59,8 @@ e_coli_gp_mass = Dict{String,Float64}( kcat_scale = 3600 / 1e3 e_coli_rxn_kcat_isozyme = Dict{String,Isozyme}( x.reaction => Isozyme( - kcat_forward = x.kcat * scale, - kcat_reverse = x.kcat * scale, + kcat_forward = x.kcat * kcat_scale, + kcat_reverse = x.kcat * kcat_scale, gene_product_stoichiometry = Dict(), ) for x in CSV.File(joinpath(data_dir, "e_coli_reaction_kcat.tsv"), delim = '\t') ) @@ -88,7 +88,6 @@ amino_acids = Set(aa for (k, v) in e_coli_gp_aas for (aa, _) in v) aas_in_ribosome = sum(values(e_coli_gp_aas["ribosome"])) atp_polymerization_cost = 4.2 protein_polymerization_atp_per_gDW = 12.0 -ribosomes_per_protein = 3.46 # ## Model assembly @@ -131,12 +130,15 @@ ct = enzyme_constrained_flux_balance_constraints( model; reaction_isozymes = e_coli_rxn_isozymes, gene_product_molar_masses = e_coli_gp_mass, - capacity = [ + capacity = Tuple{String,Vector{String},Float64}[ ("membrane", membrane_gids, float(total_capacity * membrane_frac)), ("total", A.genes(model), float(total_capacity)), ], ) +# How ATP gets consumed (this is used to power the RBA processes). +energy_stoichiometry = Dict(:atp_c => -1, :h2o_c => -1, :adp_c => 1, :h_c => 1, :pi_c => 1) + # We now need to extend the enzyme constrained model with further resource # allocation constraints. Since RBA models are bilinear, it is simpler to create # a function that builds a model at a specific growth rate, transforming the @@ -144,13 +146,9 @@ ct = enzyme_constrained_flux_balance_constraints( # to be inserted into models directly, obviating the need for this # function-based appraoch. The function belows glues the sRBA constraint system # to the given ecRBA model at a specific growth rate. -function with_srba_constraints(ct, mu) - #+ - # atp + h2o -> adp + h + po4 - energy_metabolites = - Dict(:atp_c => -1, :h2o_c => -1, :adp_c => 1, :h_c => 1, :pi_c => 1) +function with_srba_constraints(ct, mu; ribosome_aa_per_second = 12) #+ - # attach new variables for ribosome production (recall ribosomes are + # First, attach new variables for ribosome production (recall ribosomes are # required to make proteins, and ribosomes themselves) rbatree = ct + @@ -177,12 +175,14 @@ function with_srba_constraints(ct, mu) 0.001 * ( sum( - aacount[g][aa] * c.value for (g, c) in rbatree.gene_product_amounts if - haskey(aacount, g) && haskey(aacount[g], aa); + e_coli_gp_aas[g][aa] * c.value for + (g, c) in rbatree.gene_product_amounts if + haskey(e_coli_gp_aas, g) && haskey(e_coli_gp_aas[g], aa); init = zero(C.LinearValue), ) + sum( - aacount["ribosome"][String(aa)] * C.value(c) for - (_, c) in rbatree.ribosomes if haskey(aacount[:ribosome], String(aa)); + e_coli_gp_aas["ribosome"][String(aa)] * C.value(c) for + (_, c) in rbatree.ribosomes if + haskey(e_coli_gp_aas["ribosome"], String(aa)); init = zero(C.LinearValue), ) ) @@ -193,17 +193,19 @@ function with_srba_constraints(ct, mu) # polymerization. for (mid, v) in biomass.stoichiometry k = Symbol(mid) - haskey(amino_acids, k) && continue - offset = haskey(energy_metabolites, k) ? -energy_metabolites[k] * protein_polymerization_atp_per_gDW : 0.0 + k in amino_acids && continue + offset = + haskey(energy_stoichiometry, k) ? + -energy_stoichiometry[k] * protein_polymerization_atp_per_gDW : 0.0 rbatree.flux_stoichiometry[k].value += mu * (v + offset) end #+ # Consume energy (ATP) for all polymerization. - for (k, kk) in energy_metabolites + for (k, kk) in energy_stoichiometry rbatree.flux_stoichiometry[k].value += (kk * mu * 0.001 * atp_polymerization_cost) * sum( - sum(values(aacount[g])) * C.value(c) for - (g, c) in rbatree.gene_product_amounts if haskey(aacount, g); + sum(values(e_coli_gp_aas[g])) * C.value(c) for + (g, c) in rbatree.gene_product_amounts if haskey(e_coli_gp_aas, g); init = C.zero(C.LinearValue), ) #+ @@ -215,8 +217,8 @@ function with_srba_constraints(ct, mu) #+ # Use and consume ribosomes for protein synthesis. # (the conversion below is: ribosome elongation rate amino acids/second => amino acids/hr) - kr = ribosomes_per_protein * 12 * 3600 - aa_sum(g) = haskey(aacount, g) ? sum(values(aacount[g])) : 300 + kr = ribosome_aa_per_second * 3600 + aa_sum(g) = haskey(e_coli_gp_aas, g) ? sum(values(e_coli_gp_aas[g])) : 300 rbatree *= :protein_synthesis^C.ConstraintTree( g => @@ -233,10 +235,34 @@ function with_srba_constraints(ct, mu) 0, ) #+ - # patch the total gene product capacity bound with the new ribosomes - rbatree.gene_product_capacity.total.value += - sum(C.value.(values(rbatree.ribosomes))) * gene_product_molar_masses["ribosome"] + # Compute the total gene product and ribosome production mass (which can + # serve as minimization objective) + rbatree *= + :total_enzyme_mass^C.Constraint( + C.sum( + ( + C.value(v) * e_coli_gp_mass[string(k)] for + (k, v) in rbatree.gene_product_amounts + ), + init = zero(C.LinearValue), + ), + ) + rbatree *= + :total_ribosome_mass^C.Constraint( + C.sum( + ( + C.value(v) * e_coli_gp_mass["ribosome"] for + v in values(rbatree.ribosomes) + ), + init = zero(C.LinearValue), + ), + ) + rbatree *= + :total_mass^C.Constraint( + rbatree.total_ribosome_mass.value + rbatree.total_enzyme_mass.value, + ) + #+ return rbatree end @@ -245,38 +271,22 @@ end # Here we use screen to efficiently run all the simulations through the # expectably viable growth range -mus = range(0.1, 0.95, 10) # simulate at these growth rates +mus = range(0.1, 1.3, 20) # simulate at these growth rates -settings = [ - set_optimizer_attribute("solver", "simplex"), - set_optimizer_attribute("simplex_strategy", 4), -] - -res = screen(mus, workers = [1]) do mu - @info "sRBA step" mu - rbat = with_srba_constraints(ct, mu) - rbat *= - :lp_objective^C.Constraint( - sum( - C.value(v) * gene_product_molar_masses[string(k)] for - (k, v) in rbat.gene_product_amounts - ) + sum( - C.value(v) * gene_product_molar_masses["ribosome"] for - v in values(rbat.ribosomes) - ), - ) +@time res = screen(mus, workers = [1]) do mu + rba_constraints = with_srba_constraints(ct, mu, ribosome_aa_per_second = 12 * 3.46) sol = optimized_values( - rbat; - objective = rbat.lp_objective.value, + rba_constraints; + objective = rba_constraints.total_mass.value, optimizer = HiGHS.Optimizer, sense = Minimal, - settings, ) isnothing(sol) && return nothing return (; mu, - ribosome_mass = gene_product_molar_masses["ribosome"] * sum(values(sol.ribosomes)), - total_mass = sol.gene_product_capacity.total, + ribosome_mass = sol.total_ribosome_mass, + enzyme_mass = sol.total_enzyme_mass, + total_mass = sol.total_mass, ac_flux = sol.fluxes.EX_ac_e, glc_flux = sol.fluxes.EX_glc__D_e, o2_flux = sol.fluxes.EX_o2_e, From 69983c89f98a6d86444b1e6d90863a5861d32cc6 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 15 Jan 2025 15:48:56 +0100 Subject: [PATCH 25/45] fix V --- docs/src/examples/07a-srba.jl | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 700c8736..ab763de9 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -49,7 +49,7 @@ import HiGHS import CSV import Statistics: mean -data_dir = joinpath(dirname(pathof(COBREXA)), "..", "docs", "src", "examples", "data")V +data_dir = joinpath(dirname(pathof(COBREXA)), "..", "docs", "src", "examples", "data") e_coli_gp_mass = Dict{String,Float64}( x.gene_product => x.mass for From 5e052c2e5014f5641b10e3e9d68aa9b348df1df7 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 15 Jan 2025 16:00:43 +0100 Subject: [PATCH 26/45] cleanify --- docs/src/examples/07a-srba.jl | 29 ++++++++--------------------- 1 file changed, 8 insertions(+), 21 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index ab763de9..2f5e7f97 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -235,19 +235,8 @@ function with_srba_constraints(ct, mu; ribosome_aa_per_second = 12) 0, ) #+ - # Compute the total gene product and ribosome production mass (which can + # Compute the total ribosome production mass (which can # serve as minimization objective) - rbatree *= - :total_enzyme_mass^C.Constraint( - C.sum( - ( - C.value(v) * e_coli_gp_mass[string(k)] for - (k, v) in rbatree.gene_product_amounts - ), - init = zero(C.LinearValue), - ), - ) - rbatree *= :total_ribosome_mass^C.Constraint( C.sum( @@ -258,10 +247,6 @@ function with_srba_constraints(ct, mu; ribosome_aa_per_second = 12) init = zero(C.LinearValue), ), ) - rbatree *= - :total_mass^C.Constraint( - rbatree.total_ribosome_mass.value + rbatree.total_enzyme_mass.value, - ) #+ return rbatree end @@ -271,22 +256,24 @@ end # Here we use screen to efficiently run all the simulations through the # expectably viable growth range -mus = range(0.1, 1.3, 20) # simulate at these growth rates +mus = range(0.1, 1.0, 10) # simulate at these growth rates @time res = screen(mus, workers = [1]) do mu - rba_constraints = with_srba_constraints(ct, mu, ribosome_aa_per_second = 12 * 3.46) + rba_constraints = with_srba_constraints(ct, mu, ribosome_aa_per_second = 12) sol = optimized_values( rba_constraints; - objective = rba_constraints.total_mass.value, - optimizer = HiGHS.Optimizer, + objective = rba_constraints.gene_product_capacity.total.value + + rba_constraints.total_ribosome_mass.value, sense = Minimal, + optimizer = HiGHS.Optimizer, ) isnothing(sol) && return nothing return (; mu, + membrane_mass = sol.gene_product_capacity.membrane, ribosome_mass = sol.total_ribosome_mass, enzyme_mass = sol.total_enzyme_mass, - total_mass = sol.total_mass, + total_mass = sol.gene_product_capacity.total, ac_flux = sol.fluxes.EX_ac_e, glc_flux = sol.fluxes.EX_glc__D_e, o2_flux = sol.fluxes.EX_o2_e, From 52712a79e17688808c31e16c64370889009eccd6 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 15 Jan 2025 16:29:22 +0100 Subject: [PATCH 27/45] ok well --- docs/src/examples/07a-srba.jl | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 2f5e7f97..1506a0fd 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -69,7 +69,7 @@ e_coli_rxn_isozymes = Dict{String,Dict{String,Isozyme}}() for x in CSV.File(joinpath(data_dir, "e_coli_isozyme_gp.tsv"), delim = '\t') haskey(e_coli_rxn_kcat_isozyme, x.reaction) || continue rxn = get!(e_coli_rxn_isozymes, x.reaction, Dict{String,Isozyme}()) - iso = get!(rxn, x.isozyme, e_coli_rxn_kcat_isozyme[x.reaction]) + iso = get!(rxn, x.isozyme, deepcopy(e_coli_rxn_kcat_isozyme[x.reaction])) iso.gene_product_stoichiometry[x.gene_product] = x.stoichiometry end From 68ade436fea8dcf1b20f9a328a65fd7538d12ebd Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 15 Jan 2025 16:29:36 +0100 Subject: [PATCH 28/45] fixify the capacities a bit --- docs/src/examples/07a-srba.jl | 9 +++++---- 1 file changed, 5 insertions(+), 4 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 1506a0fd..9762d45e 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -248,6 +248,8 @@ function with_srba_constraints(ct, mu; ribosome_aa_per_second = 12) ), ) #+ + # Add the ribosome mass into the total capacity bound + rbatree.gene_product_capacity.total.value += rbatree.total_ribosome_mass.value return rbatree end @@ -256,14 +258,13 @@ end # Here we use screen to efficiently run all the simulations through the # expectably viable growth range -mus = range(0.1, 1.0, 10) # simulate at these growth rates +mus = range(0.1, 1.2, 10) # simulate at these growth rates @time res = screen(mus, workers = [1]) do mu rba_constraints = with_srba_constraints(ct, mu, ribosome_aa_per_second = 12) sol = optimized_values( rba_constraints; - objective = rba_constraints.gene_product_capacity.total.value + - rba_constraints.total_ribosome_mass.value, + objective = rba_constraints.gene_product_capacity.total.value, sense = Minimal, optimizer = HiGHS.Optimizer, ) @@ -272,7 +273,7 @@ mus = range(0.1, 1.0, 10) # simulate at these growth rates mu, membrane_mass = sol.gene_product_capacity.membrane, ribosome_mass = sol.total_ribosome_mass, - enzyme_mass = sol.total_enzyme_mass, + enzyme_mass = sol.gene_product_capacity.total - sol.total_ribosome_mass, total_mass = sol.gene_product_capacity.total, ac_flux = sol.fluxes.EX_ac_e, glc_flux = sol.fluxes.EX_glc__D_e, From d0638dfa756add35d4f2cd9775bd2d6695aeddba Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Thu, 16 Jan 2025 21:19:37 +0100 Subject: [PATCH 29/45] finalize the algebra (add `inject_interface` to extend stoichiometries "to the right") --- src/builders/interface.jl | 32 ++++++++++++++++++++++++++++++++ 1 file changed, 32 insertions(+) diff --git a/src/builders/interface.jl b/src/builders/interface.jl index 3d0fed2b..55cba4b4 100644 --- a/src/builders/interface.jl +++ b/src/builders/interface.jl @@ -100,3 +100,35 @@ Overload of [`interface_constraints`](@ref) for general key-value containers. interface_constraints(kv; kwargs...) = interface_constraints(kv...; kwargs...) export interface_constraints + +""" +$(TYPEDSIGNATURES) + +Glue an interface made of additional variables into a constraint system that +lacks one. Returns a tuple of a "module" and its "interface", usable in +[`interface_constraint`](@ref). + +The values in `interface` are injected into `constraints` that have the same +"path" in the constraint tree. Attempts to inject into missing `constraints` +and mismatches between leaf constraints and subtrees are ignored. The output +consists of the extended `constraints` and `interface` with renumbered +variables (in particular, numbering of original variables in `constraints` is +retained). Constraints in both trees retain their bounds. + +In metabolic modeling terms, this adds interfaces that contribute to any +constrained quantity in a model. For example, one may conveniently create new +exchange reactions to contribute to an existing metabolite balance, which can +in turn be used as an interface in a more complex model. +""" +function inject_interface(constraints::C.ConstraintTree, interface::C.ConstraintTree) + go(cs::C.ConstraintTree, iface::C.ConstraintTree) = + C.ConstraintTree(k => haskey(iface, k) ? go(v, iface[k]) : v for (k, v) in cs) + go(cs::C.Constraint, iface::C.Constraint) = + C.Constraint(value = cs.value + iface.value, bound = cs.bound) + go(_, _) = cs # any non-matching interface is simply ignored + + interface_ = C.incr_var_idxs(interface, C.var_count(constraints)) + return (go(constraints, interface_), interface_) +end + +export inject_interface From d32d98f36f9ded31869d99d6a83e264a10aff55c Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Thu, 16 Jan 2025 21:24:45 +0100 Subject: [PATCH 30/45] fix comment a little bit --- src/builders/interface.jl | 4 ++-- 1 file changed, 2 insertions(+), 2 deletions(-) diff --git a/src/builders/interface.jl b/src/builders/interface.jl index 55cba4b4..c24d9646 100644 --- a/src/builders/interface.jl +++ b/src/builders/interface.jl @@ -105,8 +105,8 @@ export interface_constraints $(TYPEDSIGNATURES) Glue an interface made of additional variables into a constraint system that -lacks one. Returns a tuple of a "module" and its "interface", usable in -[`interface_constraint`](@ref). +lacks variables to support one. Returns a tuple of a "module" and its +"interface", usable in [`interface_constraint`](@ref). The values in `interface` are injected into `constraints` that have the same "path" in the constraint tree. Attempts to inject into missing `constraints` From e0a34d241d289af843ca0f0705ae8792539b332c Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Thu, 16 Jan 2025 21:43:06 +0100 Subject: [PATCH 31/45] add a multiplier to the inject (simplifies creation of exchanges) --- src/builders/interface.jl | 22 ++++++++++++++-------- 1 file changed, 14 insertions(+), 8 deletions(-) diff --git a/src/builders/interface.jl b/src/builders/interface.jl index c24d9646..cdd239a1 100644 --- a/src/builders/interface.jl +++ b/src/builders/interface.jl @@ -108,23 +108,29 @@ Glue an interface made of additional variables into a constraint system that lacks variables to support one. Returns a tuple of a "module" and its "interface", usable in [`interface_constraint`](@ref). -The values in `interface` are injected into `constraints` that have the same -"path" in the constraint tree. Attempts to inject into missing `constraints` -and mismatches between leaf constraints and subtrees are ignored. The output -consists of the extended `constraints` and `interface` with renumbered -variables (in particular, numbering of original variables in `constraints` is -retained). Constraints in both trees retain their bounds. +First, `interface` variables are renumbered to not collide with `constraints`. +The values in `interface` are then multiplied by `multiplier` (by default 1) +and injected into `constraints` that have the same "path" in the constraint +tree. Attempts to inject into missing `constraints` and mismatches between leaf +constraints and subtrees are ignored. The output consists of the extended +`constraints` and the renumbered `interface` (in particular, numbering of +the original variables in `constraints` is retained). Constraints in both trees +retain their bounds. In metabolic modeling terms, this adds interfaces that contribute to any constrained quantity in a model. For example, one may conveniently create new exchange reactions to contribute to an existing metabolite balance, which can in turn be used as an interface in a more complex model. """ -function inject_interface(constraints::C.ConstraintTree, interface::C.ConstraintTree) +function inject_interface( + constraints::C.ConstraintTree, + interface::C.ConstraintTree; + multiplier = 1, +) go(cs::C.ConstraintTree, iface::C.ConstraintTree) = C.ConstraintTree(k => haskey(iface, k) ? go(v, iface[k]) : v for (k, v) in cs) go(cs::C.Constraint, iface::C.Constraint) = - C.Constraint(value = cs.value + iface.value, bound = cs.bound) + C.Constraint(value = cs.value + multiplier * iface.value, bound = cs.bound) go(_, _) = cs # any non-matching interface is simply ignored interface_ = C.incr_var_idxs(interface, C.var_count(constraints)) From d400c7c0f665f5a70dfafaf662938b9e9aa30ff4 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 10:16:02 +0100 Subject: [PATCH 32/45] add the missing AAs for simplicity --- docs/src/examples/data/e_coli_gp_aa.tsv | 32 +++++++++++++++++++++++++ 1 file changed, 32 insertions(+) diff --git a/docs/src/examples/data/e_coli_gp_aa.tsv b/docs/src/examples/data/e_coli_gp_aa.tsv index 4c9ee3aa..d606a65e 100644 --- a/docs/src/examples/data/e_coli_gp_aa.tsv +++ b/docs/src/examples/data/e_coli_gp_aa.tsv @@ -74,6 +74,7 @@ b0074 61 27 30 29 6 22 41 35 15 39 36 27 13 15 12 30 23 2 14 46 b0075 1 4 1 0 0 1 0 3 2 3 5 0 1 1 0 3 1 0 0 2 b0076 25 15 12 12 4 24 23 10 13 12 32 11 11 15 17 26 13 4 8 27 b0077 47 24 17 30 6 33 29 49 19 29 53 23 23 12 28 31 34 9 19 59 +b0078 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b0080 34 32 10 21 3 15 25 14 8 13 39 12 6 12 18 17 16 3 11 25 b0081 9 11 4 8 3 11 13 9 4 6 25 5 5 3 6 8 7 3 3 9 b0082 30 30 9 18 0 11 29 25 5 21 31 14 9 10 16 17 14 3 4 17 @@ -150,6 +151,7 @@ b0154 52 18 14 22 10 8 28 46 8 20 36 11 19 21 24 16 22 1 14 36 b0155 58 23 12 11 3 14 17 57 6 37 67 13 18 27 21 15 29 6 9 30 b0156 6 2 6 10 3 4 6 14 0 5 9 5 3 6 4 10 7 0 4 10 b0157 21 11 3 9 2 1 5 22 3 17 25 5 11 7 10 4 14 4 4 29 +b0158 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b0159 32 6 9 12 5 8 15 22 7 18 23 11 4 8 6 12 9 0 4 21 b0160 34 46 16 24 6 19 46 21 19 25 63 23 11 21 21 32 19 10 23 26 b0161 45 13 34 22 2 31 16 53 1 30 42 28 15 14 19 41 25 0 5 38 @@ -289,6 +291,9 @@ b0306 22 12 9 11 9 7 16 19 3 12 25 16 9 7 10 16 8 1 6 21 b0307 45 35 17 23 11 19 31 38 17 32 33 26 15 14 20 21 25 7 13 33 b0308 26 14 10 9 6 15 22 15 2 14 26 9 3 5 9 16 7 1 5 17 b0310 11 9 13 10 6 11 13 7 2 27 19 15 8 9 7 16 13 3 10 13 +b0311 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 +b0312 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 +b0314 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b0315 20 12 16 16 5 19 23 24 14 31 35 19 9 21 19 23 18 4 9 25 b0316 25 18 14 14 4 18 17 19 7 29 31 12 6 14 12 14 29 4 9 14 b0317 17 3 4 1 3 4 3 26 1 6 18 3 4 14 2 16 12 8 4 16 @@ -368,6 +373,7 @@ b0397 112 62 36 46 8 157 88 39 27 36 145 42 10 20 25 51 76 15 11 42 b0398 34 24 12 23 5 28 26 22 18 24 45 9 4 12 20 24 27 4 11 28 b0399 11 22 5 13 1 7 24 15 7 11 20 7 12 9 14 9 12 3 5 22 b0400 22 37 22 11 3 20 32 30 15 17 62 17 12 17 21 21 25 11 8 28 +b0401 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b0402 40 17 15 6 2 9 14 47 8 52 42 14 21 32 18 29 23 14 14 40 b0403 51 40 21 45 7 41 27 45 22 21 57 19 15 26 37 26 23 22 21 38 b0404 15 20 9 15 1 7 11 4 8 6 23 1 8 11 12 13 5 7 6 11 @@ -709,8 +715,14 @@ b0770 47 6 18 8 1 1 11 48 5 42 67 23 21 25 19 29 28 16 15 47 b0771 69 28 41 37 12 26 47 71 16 54 57 37 20 23 35 49 44 7 27 53 b0772 42 23 36 27 3 23 12 37 4 20 24 12 6 16 24 30 31 6 14 37 b0773 13 6 5 16 1 2 3 18 8 6 10 5 5 8 10 10 10 4 4 14 +b0774 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 +b0775 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 +b0776 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 +b0777 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 +b0778 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b0779 50 52 21 40 1 32 67 42 11 42 74 31 20 23 34 30 34 0 23 46 b0780 24 19 15 15 1 9 19 27 9 23 44 10 9 3 14 18 14 1 6 22 +b0781 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b0782 18 12 5 9 2 7 13 12 5 11 12 6 3 7 7 11 13 2 2 13 b0783 23 10 3 9 3 4 12 10 6 9 13 10 8 3 4 7 11 1 1 14 b0784 12 3 1 7 0 4 5 5 2 1 9 2 2 6 4 2 6 1 0 9 @@ -755,6 +767,7 @@ b0823 80 44 34 51 13 40 52 59 27 50 82 35 18 25 32 40 40 10 29 49 b0824 31 13 8 17 11 11 19 20 11 16 39 16 5 10 18 9 19 3 9 14 b0825 35 6 3 11 2 13 8 18 3 13 25 11 7 5 11 10 13 1 5 20 b0826 29 13 10 15 9 13 13 22 3 13 30 7 10 7 8 12 11 0 6 18 +b0827 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b0828 47 15 10 14 5 8 25 39 6 13 31 9 13 7 10 16 19 1 8 25 b0829 60 52 14 26 4 43 42 41 17 41 70 15 21 17 35 36 21 3 11 54 b0830 66 14 25 27 1 27 22 28 6 22 40 37 11 25 31 30 36 11 21 32 @@ -801,6 +814,7 @@ b0871 66 25 17 28 10 20 38 48 18 32 55 29 20 20 27 33 23 5 14 44 b0872 30 20 9 17 11 10 19 20 4 11 26 11 9 10 17 16 30 7 13 32 b0873 54 22 22 35 14 24 27 50 13 32 66 22 13 21 22 23 32 7 18 33 b0874 29 12 11 5 3 9 7 24 5 32 58 4 11 16 10 22 10 4 5 22 +b0875 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b0876 37 64 20 30 5 16 39 34 21 30 73 14 16 21 25 36 19 10 10 32 b0877 25 30 11 7 7 17 27 16 9 18 41 16 14 15 14 22 16 5 11 9 b0878 41 20 12 23 0 31 20 22 2 24 39 27 7 3 15 9 29 2 8 37 @@ -1131,6 +1145,7 @@ b1220 32 26 37 25 0 33 27 41 9 9 51 12 7 19 23 29 26 14 15 29 b1221 19 13 8 14 0 7 18 11 6 12 31 14 10 2 9 12 11 1 1 17 b1222 54 47 21 28 11 49 40 30 16 22 84 15 19 13 20 38 34 7 8 42 b1223 53 17 10 12 5 16 7 48 3 31 51 14 16 45 20 40 25 11 7 32 +b1224 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b1225 37 30 23 31 17 19 37 36 9 29 40 35 15 18 33 23 23 9 22 26 b1226 31 13 4 19 1 18 19 11 8 10 35 8 4 8 9 11 8 2 7 10 b1227 17 12 3 6 2 9 4 21 9 15 33 6 12 18 7 13 9 6 8 15 @@ -1171,6 +1186,7 @@ b1266 35 18 8 10 6 19 22 21 17 16 28 9 5 6 13 13 17 8 5 17 b1267 7 13 9 13 3 9 14 15 3 14 21 12 7 8 14 10 13 0 6 15 b1268 42 41 25 34 10 22 26 59 14 43 78 22 10 36 29 36 27 16 28 33 b1269 18 38 11 14 3 9 24 30 4 14 28 15 3 5 12 15 12 4 6 26 +b1270 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b1271 23 17 12 14 4 20 10 20 3 10 27 8 11 6 13 13 16 4 7 14 b1272 36 23 12 16 1 21 29 21 8 16 35 29 12 10 8 17 13 5 7 30 b1273 6 3 4 5 0 3 8 5 4 4 9 6 2 4 2 2 8 0 2 6 @@ -1574,6 +1590,7 @@ b1688 38 15 6 10 3 11 9 35 4 35 59 6 14 12 20 12 20 13 5 43 b1689 12 9 7 7 3 8 8 4 4 10 9 5 4 5 3 3 5 4 4 4 b1690 37 16 11 5 6 8 6 33 7 38 52 10 17 34 17 32 29 6 19 21 b1691 41 10 16 6 7 7 9 32 2 42 50 17 20 34 17 34 17 4 21 35 +b1692 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b1693 34 10 4 18 0 8 17 11 6 19 22 16 11 8 8 17 17 1 5 20 b1694 45 23 17 35 6 22 29 54 9 46 49 31 11 21 24 20 33 2 14 40 b1695 37 22 18 20 7 16 30 29 5 24 30 19 19 15 14 17 24 5 15 17 @@ -1590,6 +1607,9 @@ b1705 3 5 1 5 0 4 2 4 2 4 9 6 1 0 4 4 7 0 2 0 b1706 42 39 16 33 2 22 29 32 16 11 58 8 15 21 20 37 26 12 17 22 b1707 13 9 12 9 6 19 14 12 8 20 33 7 3 15 11 12 13 3 6 12 b1708 8 11 7 10 3 10 2 14 5 9 15 6 4 7 6 11 10 3 4 9 +b1709 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 +b1710 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 +b1711 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b1712 6 10 5 6 0 3 11 7 0 3 10 10 2 6 5 5 4 0 1 5 b1713 70 53 31 52 13 24 65 62 17 50 84 35 14 19 37 32 36 8 14 79 b1714 28 24 15 19 1 13 24 23 11 16 31 11 10 20 17 13 22 2 7 20 @@ -1748,6 +1768,7 @@ b1868 20 20 7 11 3 17 17 12 13 12 31 9 3 15 23 10 19 8 6 16 b1869 12 10 3 2 2 2 5 9 5 7 20 1 11 7 2 8 2 5 7 11 b1870 22 15 12 16 4 8 18 14 9 17 23 9 9 14 9 18 8 2 5 15 b1871 21 20 11 19 3 14 21 21 11 16 42 15 8 12 18 15 16 11 8 21 +b1872 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b1873 42 10 11 24 10 20 23 25 15 18 30 27 10 11 11 26 22 5 12 14 b1874 31 16 7 14 6 8 16 22 8 14 24 7 11 6 11 14 8 1 6 18 b1875 13 11 7 8 3 7 19 11 9 14 22 6 2 5 14 14 9 6 1 7 @@ -1972,6 +1993,7 @@ b2128 38 10 2 3 0 11 6 21 2 24 33 4 4 13 16 11 13 4 4 24 b2129 24 28 9 16 2 19 23 24 9 13 43 5 10 12 11 18 12 2 3 25 b2130 52 16 8 10 5 15 3 32 5 26 76 6 9 17 18 18 17 11 6 35 b2131 43 6 11 15 0 20 15 24 2 11 36 22 4 8 16 16 18 6 9 23 +b2132 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b2133 44 33 22 43 6 19 37 43 24 25 58 37 14 26 24 26 28 5 23 34 b2134 41 15 18 12 1 10 8 12 7 13 31 21 15 10 16 23 24 2 9 22 b2135 16 6 6 2 3 3 6 18 7 12 31 2 7 11 7 11 11 7 10 19 @@ -2293,6 +2315,7 @@ b2475 18 16 7 19 4 28 13 36 5 10 20 11 10 11 11 20 16 4 9 19 b2476 15 14 11 19 3 6 22 17 1 7 30 20 9 12 7 10 8 2 7 17 b2478 31 13 13 17 5 8 14 23 9 18 30 13 9 7 13 15 23 1 5 25 b2479 22 9 9 9 3 9 12 8 8 14 19 4 6 5 9 15 13 2 2 12 +b2480 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b2481 24 10 8 8 16 16 12 12 6 6 20 7 2 5 13 11 10 3 1 15 b2482 89 27 11 15 9 16 17 51 16 43 113 14 33 37 27 47 29 16 12 50 b2483 33 14 3 6 4 9 12 26 5 20 63 6 12 21 12 20 18 7 4 20 @@ -2671,6 +2694,7 @@ b2897 5 10 5 9 2 1 8 3 3 8 8 3 6 4 4 3 1 2 1 2 b2898 40 19 13 19 2 16 25 21 4 10 37 16 10 14 15 15 19 7 4 20 b2899 22 4 3 3 3 5 3 20 8 20 38 9 6 9 5 15 8 4 13 21 b2900 4 5 2 9 2 6 9 5 2 8 7 6 2 8 2 3 14 0 3 6 +b2901 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b2902 32 12 13 9 4 13 13 27 3 14 21 7 6 6 5 15 15 1 7 24 b2903 112 46 36 52 13 47 55 71 32 57 88 34 34 28 48 48 49 7 29 71 b2904 17 1 3 11 1 1 17 8 2 5 12 6 2 2 5 12 5 2 5 12 @@ -2812,6 +2836,7 @@ b3053 88 81 20 61 9 58 83 50 21 41 127 23 27 30 35 46 48 21 26 51 b3054 50 26 14 21 3 24 35 28 17 19 56 17 6 11 17 21 21 10 11 26 b3055 13 12 12 12 0 13 11 13 3 8 28 14 5 1 7 13 16 5 4 16 b3056 39 36 7 26 5 16 31 28 14 14 46 15 8 16 27 12 24 8 8 32 +b3057 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b3058 15 7 7 8 1 3 12 5 1 10 9 6 2 4 2 6 4 3 2 15 b3059 20 9 3 5 5 3 4 24 3 17 25 10 5 11 12 13 9 9 4 14 b3060 21 19 10 14 6 21 23 18 8 20 38 14 7 8 13 19 14 6 11 20 @@ -3068,6 +3093,7 @@ b3332 27 20 17 23 2 34 13 10 8 18 43 9 6 15 13 20 19 5 11 14 b3333 26 16 13 15 4 30 25 13 15 14 53 19 8 11 21 32 23 14 12 23 b3334 13 4 6 5 1 10 12 7 6 14 18 10 2 3 6 8 13 5 2 8 b3335 25 5 3 8 6 7 2 19 5 16 40 6 4 13 9 6 13 9 12 17 +b3336 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b3338 99 20 76 52 13 38 35 68 10 32 42 54 15 20 59 76 56 31 35 66 b3339 27 23 7 24 3 8 37 41 11 29 28 23 11 14 20 10 30 1 10 37 b3340 67 36 27 42 3 24 62 59 15 50 43 44 23 24 33 29 38 6 19 60 @@ -3140,6 +3166,7 @@ b3408 5 6 1 3 1 2 4 4 1 4 10 4 2 2 5 7 4 1 2 7 b3409 74 34 30 33 12 27 32 59 12 57 99 22 29 38 29 53 41 9 23 60 b3410 8 6 2 2 4 7 6 5 0 4 10 3 5 0 4 6 2 2 0 2 b3411 26 16 5 20 5 15 17 12 10 18 37 15 14 13 14 22 10 2 11 10 +b3412 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b3413 18 25 4 7 12 13 5 10 9 6 36 5 3 4 15 14 16 8 1 16 b3414 18 7 7 13 4 11 17 15 4 9 20 8 6 6 9 8 10 0 7 12 b3415 49 7 9 10 3 5 12 46 6 44 57 17 26 22 22 24 25 5 7 42 @@ -3263,6 +3290,7 @@ b3547 42 11 12 9 4 11 10 40 3 31 58 16 12 27 8 34 24 6 11 33 b3548 19 9 15 14 0 16 9 15 3 9 22 3 7 6 7 22 23 9 11 13 b3549 14 8 7 9 8 13 12 13 5 10 11 11 5 9 8 10 9 4 6 15 b3550 14 8 5 5 2 12 9 7 4 9 14 5 6 6 8 4 5 8 5 10 +b3551 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b3552 29 12 11 9 1 6 6 30 1 11 18 12 6 1 7 20 16 0 6 17 b3553 40 14 15 18 4 11 22 19 14 15 36 13 10 11 13 14 19 2 6 28 b3554 29 7 8 14 2 29 4 13 2 7 21 10 6 12 13 16 16 2 6 19 @@ -3425,6 +3453,8 @@ b3716 10 7 1 3 4 1 6 14 4 20 23 4 4 6 8 12 6 1 4 17 b3717 10 6 6 16 13 10 21 17 6 7 14 10 2 14 8 7 6 5 9 8 b3718 20 7 11 12 2 8 16 23 8 14 26 14 8 9 11 9 15 1 9 17 b3719 37 17 20 25 0 17 15 30 6 25 27 19 12 15 26 19 24 6 15 34 +b3721 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 +b3722 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b3724 17 17 7 22 5 14 18 12 6 20 21 13 13 7 3 14 10 0 5 17 b3725 19 13 12 15 4 14 16 16 4 18 27 16 8 12 10 14 17 2 9 11 b3726 38 13 9 3 1 8 11 21 2 27 41 10 17 13 12 16 22 9 5 18 @@ -3636,6 +3666,7 @@ b3962 40 26 21 25 8 20 28 43 21 36 36 17 12 15 15 26 24 2 21 30 b3963 28 25 5 8 0 12 22 13 3 12 21 7 9 13 4 19 10 2 6 15 b3964 12 6 5 2 2 4 3 8 1 8 16 3 4 8 6 8 5 1 4 13 b3965 33 23 19 21 5 22 27 12 11 21 39 16 13 14 15 18 19 3 13 22 +b3966 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 b3967 36 16 6 12 5 7 23 17 6 11 37 10 6 10 19 11 17 2 7 27 b3972 30 14 17 15 6 22 23 28 11 18 31 16 4 11 17 14 16 7 10 32 b3974 18 19 14 19 0 12 21 13 9 20 39 18 7 13 16 21 17 5 12 23 @@ -4226,3 +4257,4 @@ b4755 4 4 1 5 1 1 2 3 1 2 5 4 1 2 2 2 1 0 4 2 b4756 6 6 2 2 1 1 5 1 1 3 7 3 1 3 0 1 2 2 4 5 b4757 0 3 3 2 0 1 0 1 1 1 2 2 1 1 2 2 2 1 0 1 ribosome 738 408 291 381 86 328 425 545 168 448 801 335 209 288 327 430 400 115 210 526 +s0001 28 17 12 15 4 13 17 21 7 18 32 14 9 12 13 17 16 5 8 21 From f004b14470cec8f4f0096334ec56a72640bb8f1f Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 14:10:41 +0100 Subject: [PATCH 33/45] WIP: sRBA work --- docs/src/examples/07a-srba.jl | 460 ++++++++++++++++++++-------------- 1 file changed, 266 insertions(+), 194 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 9762d45e..317a27e6 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -15,63 +15,74 @@ # limitations under the License. #src # # Simplified resource balance analysis -# Resource balance analysis models are an extension of enzyme constrained -# models. They can incorporate translation, transcription and replication -# effects to dramatically increase the realism of a metabolic model. To -# demonstrate the ease of incrementally building complex models in COBREXA, we -# will build a simplified resource balance analysis model from the ground up, -# primarily focussing on translation extensions to an enzyme constrained flux -# balance analysis model. +# +# Resource balance analysis (RBA) models are extensions of enzyme constrained +# models that additionally incorporate other cellular mechanisms, such as +# translation, transcription and replication. This requires much more +# mechanistic knowledge about the processes, but also dramatically improves the +# predictive capability of the model. +# +# Here we demonstrate the approach to build such extensions in COBREXA, using a +# simplified RBA model that accounts for the major translation costs (synthesis +# of proteins and ribosomes). +# +# For comprehensiveness, we use the full genome-scale model of E. coli +# (iML1515): using COBREXA -# In contrast to the previous examples, we will use the iML1515 model of _E. -# coli_, which is the latest, full-scale genome-scale metabolic model of the -# organism. - download_model( "http://bigg.ucsd.edu/static/models/iML1515.json", "iML1515.json", "b0f9199f048779bb08a14dfa6c09ec56d35b8750d2f99681980d0f098355fbf5", ) -# In additional to COBREXA, the optimization solver, and the model format -# package, we will use ConstraintTrees to simplify the RBA model construction -# process: +# We use several packages as usual; additionally we import `ConstraintTrees` +# for later modifications. import AbstractFBCModels as A import JSONFBCModels -import ConstraintTrees as C import HiGHS +import ConstraintTrees as C -# ## Collect data for RBA model +# ## Data and parameters for the RBA model +# +# For the purposes of this example, COBREXA comes with example data for the +# whole iML1515 model, aggregated from several publications and databases. In +# this section we simply load the data into suitable Julia structures. Other +# data formats may work just as well. +# +# The loading is hidden by default for brevity: +# +#md # ```@raw html +#md #
Loading the RBA model parameters +#md # ``` import CSV -import Statistics: mean -data_dir = joinpath(dirname(pathof(COBREXA)), "..", "docs", "src", "examples", "data") +data_dir = joinpath(dirname(pathof(COBREXA)), "..", "docs", "src", "examples", "data"); e_coli_gp_mass = Dict{String,Float64}( x.gene_product => x.mass for x in CSV.File(joinpath(data_dir, "e_coli_gp_mass.tsv"), delim = '\t') -) +); -kcat_scale = 3600 / 1e3 +kcat_scale = 3600 / 1e3; e_coli_rxn_kcat_isozyme = Dict{String,Isozyme}( x.reaction => Isozyme( kcat_forward = x.kcat * kcat_scale, kcat_reverse = x.kcat * kcat_scale, gene_product_stoichiometry = Dict(), ) for x in CSV.File(joinpath(data_dir, "e_coli_reaction_kcat.tsv"), delim = '\t') -) +); -e_coli_rxn_isozymes = Dict{String,Dict{String,Isozyme}}() +e_coli_rxn_isozymes = Dict{String,Dict{String,Isozyme}}(); for x in CSV.File(joinpath(data_dir, "e_coli_isozyme_gp.tsv"), delim = '\t') haskey(e_coli_rxn_kcat_isozyme, x.reaction) || continue rxn = get!(e_coli_rxn_isozymes, x.reaction, Dict{String,Isozyme}()) iso = get!(rxn, x.isozyme, deepcopy(e_coli_rxn_kcat_isozyme[x.reaction])) iso.gene_product_stoichiometry[x.gene_product] = x.stoichiometry -end +end; e_coli_gp_aas = Dict{String,Dict{Symbol,Int}}( begin @@ -80,203 +91,264 @@ e_coli_gp_aas = Dict{String,Dict{Symbol,Int}}( delete!(d, :gene_product) gp => d end for x in CSV.File(joinpath(data_dir, "e_coli_gp_aa.tsv"), delim = '\t') -) +); + +amino_acids = Set(Symbol(aa) for (k, v) in e_coli_gp_aas for (aa, _) in v); + +#md # ```@raw html +#md #
+#md # ``` +# +# In the end, we have gene product weight data (just like in the [enzyme-constrained model example](05b-enzyme-constrained-models.md)): + +e_coli_gp_mass + +# ... as well as isozyme data with kcats: + +e_coli_rxn_isozymes + +# We additionally need a list of amino acids in the model: + +amino_acids -amino_acids = Set(aa for (k, v) in e_coli_gp_aas for (aa, _) in v) +# ...together with a list of how much amino acids there are in which gene product: -# assume some constants (these can be found via https://bionumbers.hms.harvard.edu ) -aas_in_ribosome = sum(values(e_coli_gp_aas["ribosome"])) -atp_polymerization_cost = 4.2 -protein_polymerization_atp_per_gDW = 12.0 +e_coli_gp_aas + +# To make the RBA problem working, we also need to assume some constant parameters (many of such can be found via https://bionumbers.hms.harvard.edu): + +atp_polymerization_cost = 4.2; +protein_polymerization_atp_per_gDW = 0.012; # TODO explain this one +ribosome_speed_aa_per_hour = 12.0 * 3600; +ribosome_molar_mass = 2700.0; + +# We also need a stoichiometry for "energy consumption" reaction, which we will +# use to simulate the energy cost of translation: +energy_stoichiometry = Dict(:atp_c => -1, :h2o_c => -1, :adp_c => 1, :h_c => 1, :pi_c => 1) # ## Model assembly +# ### Enzyme-constrained base model +# +# First, we load the model in a format that is suitable for doing small +# changes: +model = load_model("iML1515.json") -# First, load the model -model = load_model("iML1515.json", A.CanonicalModel.Model) - -# We remove the biomass reactions, as these are handled differently in RBA. -# However, we will save biomass composition for later use. -biomass = model.reactions["BIOMASS_Ec_iML1515_core_75p37M"] -# remove the biomass functions for rba -delete!(model.reactions, "BIOMASS_Ec_iML1515_WT_75p37M") -delete!(model.reactions, "BIOMASS_Ec_iML1515_core_75p37M") - -# apply a few quirks to enforce glucose-consuming metabolism -model.reactions["EX_glc__D_e"].lower_bound = -1000 -model.reactions["EX_glc__D_e"].upper_bound = 1000 -delete!.(Ref(model.reactions), ["EX_for_e", "EX_pyr_e", "EX_5dglcn_e", "EX_lac__D_e"]); - -# identify membrane reactions (transporting stuff between compartments) -membrane_rids = [ - rid for (rid, r) in model.reactions if - length(unique(last.(split.(keys(r.stoichiometry), "_")))) != 1 -] - -# identify membrane proteins as the ones catalyzing the membrane reactions from above -membrane_gids = unique( - g for - rid in membrane_rids if !isnothing(A.reaction_gene_association_dnf(model, rid)) for - gs in A.reaction_gene_association_dnf(model, rid) for g in gs +# We will requre some access to the stoichiometry of the biomass reaction (in +# essence, we copy a part of it, but replace the part that uses amino acids as +# a building material, and slightly enhance the energy consumption part). So we +# save it here: +biomass = Dict( + Symbol(k) => v for + (k, v) in A.reaction_stoichiometry(model, "BIOMASS_Ec_iML1515_core_75p37M") ) -# Now we build an enzyme constrained metabolic model using COBREXA. Note, we -# assume two capacity limitations here: 1) a total capacity bound, and a -# membrane capacity bound. -total_capacity = 550.0 -membrane_frac = 0.20 # fraction of total proteome that is allowed to be membrane associated - -# use COBREXA's built in function to lay the foundation of the RBA model -ct = enzyme_constrained_flux_balance_constraints( +# We can create the enzyme-constrained model for iML1515. This will be extended +# later. +ec_constraints = enzyme_constrained_flux_balance_constraints( model; reaction_isozymes = e_coli_rxn_isozymes, gene_product_molar_masses = e_coli_gp_mass, - capacity = Tuple{String,Vector{String},Float64}[ - ("membrane", membrane_gids, float(total_capacity * membrane_frac)), - ("total", A.genes(model), float(total_capacity)), - ], + capacity = 550.0, ) -# How ATP gets consumed (this is used to power the RBA processes). -energy_stoichiometry = Dict(:atp_c => -1, :h2o_c => -1, :adp_c => 1, :h_c => 1, :pi_c => 1) +# Before we continue, we apply a small quirk to remove an artificial limit on +# the glucose intake. (The limit is required to prevent "infinite" growth in +# simplistic FBA-style analysis; in our case the enzyme capacity serves as a +# sufficient and more realistic limiter.) +ec_constraints.fluxes.EX_glc__D_e.bound.lower = -1000 -# We now need to extend the enzyme constrained model with further resource -# allocation constraints. Since RBA models are bilinear, it is simpler to create -# a function that builds a model at a specific growth rate, transforming the -# problem into a linear one. Future extensions of cobrexa will allow parameters -# to be inserted into models directly, obviating the need for this -# function-based appraoch. The function belows glues the sRBA constraint system -# to the given ecRBA model at a specific growth rate. -function with_srba_constraints(ct, mu; ribosome_aa_per_second = 12) - #+ - # First, attach new variables for ribosome production (recall ribosomes are - # required to make proteins, and ribosomes themselves) - rbatree = - ct + - :ribosomes^C.variables(; - keys = [collect(keys(ct.gene_product_amounts)); :ribosome], - bounds = C.Between(0, Inf), - ) +# To avoid the model from growing in unexpected modes, we will constraint the +# original biomass reaction to zero: +ec_constraints.fluxes.BIOMASS_Ec_iML1515_core_75p37M.bound = C.EqualTo(0) +ec_constraints.fluxes.BIOMASS_Ec_iML1515_WT_75p37M.bound = C.EqualTo(0) + +# ### RBA translation machinery + +# First, a common issue with RBA formulations is that the biomass-based growth +# formula depends on the determined optimal composition of the enzyme pool and +# actual production of metabolites; which makes the underlying constrained +# problem quadratic. +# +# A common way to dodge the need for quadratic solvers is to solve the problem +# for a fixed growth rate, which we do here. Alternatively, one might state the +# full quadratic problem and solve it, with some performance cost stemming from +# use of QP solvers. +# +# Let's first make a utility function that prepares the connection and new +# variables atop a given enzyme-constrained model: +function with_translation_variables(ec_constraints::C.ConstraintTree) #+ - # we are going to modify a few parts locally so let's make a copy of them - # to not change the base model (ct) - rbatree = C.ConstraintTree( - rbatree..., - :flux_stoichiometry => deepcopy(rbatree.flux_stoichiometry), - :gene_product_capacity => deepcopy(rbatree.gene_product_capacity), + # Create a "resource pool" and connect it to the stoichiometry of the + # intracellular (and other) metabolites. (This effectively creates new + # exchange reactions in `ec_constraints`.) + resources = C.variables( + keys = Symbol.( + collect(union(amino_acids, keys(energy_stoichiometry), keys(biomass))) + ), ) + (cs, rs) = + inject_interface(ec_constraints, :flux_stoichiometry^resources, multiplier = -1) #+ - # Connect amino-acid production to its consumption for gene products. - # - # (The conversion factor 0.001 is required to convert the units from mol to - # mmol, which is assumed in AA-related constraints.) - for aa in amino_acids - rbatree.flux_stoichiometry[aa].value -= - mu * - 0.001 * - ( - sum( - e_coli_gp_aas[g][aa] * c.value for - (g, c) in rbatree.gene_product_amounts if - haskey(e_coli_gp_aas, g) && haskey(e_coli_gp_aas[g], aa); - init = zero(C.LinearValue), - ) + sum( - e_coli_gp_aas["ribosome"][String(aa)] * C.value(c) for - (_, c) in rbatree.ribosomes if - haskey(e_coli_gp_aas["ribosome"], String(aa)); - init = zero(C.LinearValue), - ) - ) + # Also add a single new variable for the production of ribosomes by + # ribosomes. + return cs * :resources^rs.flux_stoichiometry + + :ribosome_production^C.variable(; bound = (0, Inf)) +end + +# To make the construction nicer, we'll make a helper for summing up +# constraint-tree values: +sum_values(x...) = C.sum(x..., init = zero(C.LinearValue)) + +# ...and another helper for adding values in constraint trees together: +add_trees(ts...) = + C.preduce(ts, init = C.ConstraintTree()) do t1, t2 + z(::Missing) = zero(C.LinearValue) + z(x) = C.value(x) + return C.merge(t1, t2) do c1, c2 + C.Constraint(z(c1) + z(c2)) + end end + +# Since we have to solve the problem for multiple growth rates to be able to +# scan for optimum, we will wrap the growth-dependent part in a reusable +# function: +function translation_constraints( + resources::C.ConstraintTree, + ribos_required_for_ribos::C.Constraint, + gene_product_amounts::C.ConstraintTree, + growth::Float64, +) #+ - # Make a modified biomass reaction which is adjusted for growth (mu), - # and additionally consumes the energy metabolites required for the - # polymerization. - for (mid, v) in biomass.stoichiometry - k = Symbol(mid) - k in amino_acids && continue - offset = - haskey(energy_stoichiometry, k) ? - -energy_stoichiometry[k] * protein_polymerization_atp_per_gDW : 0.0 - rbatree.flux_stoichiometry[k].value += mu * (v + offset) + # First we can calculate how much amino acids we need to build the expected + # amount of gene products: + aas_required_for_gps = C.imap(gene_product_amounts) do (i,), gp + C.ConstraintTree( + aa => C.Constraint(gp.value * v * growth) for + (aa, v) in e_coli_gp_aas[String(i)] + ) end #+ - # Consume energy (ATP) for all polymerization. - for (k, kk) in energy_stoichiometry - rbatree.flux_stoichiometry[k].value += - (kk * mu * 0.001 * atp_polymerization_cost) * sum( - sum(values(e_coli_gp_aas[g])) * C.value(c) for - (g, c) in rbatree.gene_product_amounts if haskey(e_coli_gp_aas, g); - init = C.zero(C.LinearValue), - ) - #+ - # ribosome synthesis also costs energy - rbatree.flux_stoichiometry[k].value += - (kk * mu * 0.001 * atp_polymerization_cost * aas_in_ribosome) * - sum(C.value(x) for x in values(rbatree.ribosomes); init = C.zero(C.LinearValue)) - end + # This allows us to calculate how much ribosome we have to produce to make + # the production of all of the above enzymes possible: + ribo_required_for_gps = C.ConstraintTree( + i => C.Constraint( + sum_values(aa.value for (_, aa) in aas) / ribosome_speed_aa_per_hour, + ) for (i, aas) in aas_required_for_gps + ) #+ - # Use and consume ribosomes for protein synthesis. - # (the conversion below is: ribosome elongation rate amino acids/second => amino acids/hr) - kr = ribosome_aa_per_second * 3600 - aa_sum(g) = haskey(e_coli_gp_aas, g) ? sum(values(e_coli_gp_aas[g])) : 300 - rbatree *= - :protein_synthesis^C.ConstraintTree( - g => - C.Constraint(kr * rbatree.ribosomes[g].value - mu * c.value * aa_sum(g), 0) - for (g, c) in rbatree.gene_product_amounts - ) + # Now we know the total amount of ribosome to produce (both for the above + # protein production and for production of ribosomes itself) so we can see + # how much amino acids in total are required for production of ribosomes: + total_ribos_required = + ribos_required_for_ribos.value + + sum_values(c.value for (_, c) in ribo_required_for_gps) + aas_required_for_ribos = C.ConstraintTree( + aa => C.Constraint(total_ribos_required * v) for + (aa, v) in e_coli_gp_aas["ribosome"] + ) #+ - # add the equation for ribosome synthesis by themselves - rbatree *= - :ribosome_balance^C.Constraint( - kr * rbatree.ribosomes[:ribosome].value - - (mu * aas_in_ribosome) * - sum(C.value.(values(rbatree.ribosomes)); init = zero(C.LinearValue)), - 0, - ) + # Now we solve a "rocket equation" -- the ribosomes need to produce both + # the protein-producing ribosomes and themselves, so we add a constraint + # that ensures there's enough ribosomes for both. + ribosome_balance_constraint = equal_value_constraint( + sum_values(aa.value for (_, aa) in aas_required_for_ribos) * growth, #TODO is growth required here? + ribos_required_for_ribos * ribosome_speed_aa_per_hour, + ) #+ - # Compute the total ribosome production mass (which can - # serve as minimization objective) - rbatree *= - :total_ribosome_mass^C.Constraint( - C.sum( - ( - C.value(v) * e_coli_gp_mass["ribosome"] for - v in values(rbatree.ribosomes) - ), - init = zero(C.LinearValue), - ), - ) + # With the AA requirements solved, we can estimate how much energy we need + # for polymerization of the proteins and ribosomes: + energy_required = + atp_polymerization_cost * + sum_values(aa.value for (_, aas) in aas_required_for_gps for (_, aa) in aas) + + sum_values(v.value for (_, v) in aas_required_for_ribos) #+ - # Add the ribosome mass into the total capacity bound - rbatree.gene_product_capacity.total.value += rbatree.total_ribosome_mass.value - return rbatree + # With all that in hand, we can put together the final resource consumption + # equation: + resource_consumption = add_trees( + C.values(aas_required_for_gps)..., + aas_required_for_ribos, + C.map(stoi -> -stoi * energy_required, C.Tree{Int}(energy_stoichiometry), C.Value), + ) + resource_stoichiometry = C.imap(resources) do (resource,), input + if resource in amino_acids + equal_value_constraint(resource_consumption[resource], input) + elseif resource in keys(energy_stoichiometry) + equal_value_constraint( + -resource_consumption[resource].value * energy_stoichiometry[resource] - + growth * biomass[resource] - + growth * + energy_stoichiometry[resource] * + protein_polymerization_atp_per_gDW, + input, + ) + else + C.Constraint(input.value, -growth * biomass[resource]) + end + end + #+ + # Finaly, let's wrap all the constraints and some useful derived helper + # values in one big tree: + return :resource_stoichiometry^resource_stoichiometry * + :ribosome_balance^ribosome_balance_constraint * + :gene_product_production^ribo_required_for_gps * + :total_ribosome_mass^C.Constraint( + ribosome_molar_mass * ( + sum_values(v.value for (_, v) in ribo_required_for_gps) + + ribos_required_for_ribos.value + ), + ) * + :amino_acid_use^(ribo_required_for_gps * :ribosome^aas_required_for_ribos) * + :polymerization_energy^C.Constraint(energy_required) * + :translation_resource_consumption^resource_consumption end +# ## Running the resource-balanced simulation -# ## Run the simulations -# Here we use screen to efficiently run all the simulations through the -# expectably viable growth range +# With the above functions, assembling a resource-balanced model amounts to +# adding new variables and connecting them with the rest of the +# enzyme-constrained model. We assemble a model for growth value of 0.6 +# gDW/gDWh: +rb_constraints = with_translation_variables(ec_constraints) +rb_constraints *= translation_constraints( + rb_constraints.resources, + rb_constraints.ribosome_production, + rb_constraints.gene_product_amounts, + 0.001, +) -mus = range(0.1, 1.2, 10) # simulate at these growth rates +# The model may be slightly under-constrained for less-than-extreme values of +# growth; to obtain a realistic solution for we can ask the solver to minimize +# the mass of used resources. Accordingly, we re-constraint the total mass of +# the model: +rb_constraints.gene_product_capacity.total_capacity.bound = nothing +rb_constraints.total_capacity = C.Constraint( + rb_constraints.gene_product_capacity.total_capacity.value + + rb_constraints.total_ribosome_mass.value, + (0.0, 550.0), +) -@time res = screen(mus, workers = [1]) do mu - rba_constraints = with_srba_constraints(ct, mu, ribosome_aa_per_second = 12) - sol = optimized_values( - rba_constraints; - objective = rba_constraints.gene_product_capacity.total.value, - sense = Minimal, - optimizer = HiGHS.Optimizer, - ) - isnothing(sol) && return nothing - return (; - mu, - membrane_mass = sol.gene_product_capacity.membrane, - ribosome_mass = sol.total_ribosome_mass, - enzyme_mass = sol.gene_product_capacity.total - sol.total_ribosome_mass, - total_mass = sol.gene_product_capacity.total, - ac_flux = sol.fluxes.EX_ac_e, - glc_flux = sol.fluxes.EX_glc__D_e, - o2_flux = sol.fluxes.EX_o2_e, - ) -end +# We can optimize the model now, minimizing the mass: +res = optimized_values( + rb_constraints, + objective = rb_constraints.total_capacity.value, + sense = Minimal, + optimizer = HiGHS.Optimizer, + settings = [unsilence], +) + +# The model can be used to observe various interesting effects. For example, +# how much building material is required to reach such growth? +res.total_capacity + +# What is the resource composition used for building up biomass? +res.resources + +# How much of that comes into and out of translation? +res.translation_resource_consumption + +# How much arginine is used to build the ribosomes? +res.amino_acid_use.ribosome.arg__L_c + +# This solution is not necessarily optimal though. To find an optimal growth, +# one may use e.g. [`screen`](@ref) to run the same simulation over many growth +# values, and pick the largest feasible growth. From c2efab83ba339d232cb4edb728b7e0a52f751116 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 14:27:56 +0100 Subject: [PATCH 34/45] fix a stupid mistake Don't modify CTs, kids. I told you. --- docs/src/examples/07a-srba.jl | 4 +++- 1 file changed, 3 insertions(+), 1 deletion(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 317a27e6..a30508f9 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -154,8 +154,10 @@ ec_constraints = enzyme_constrained_flux_balance_constraints( # Before we continue, we apply a small quirk to remove an artificial limit on # the glucose intake. (The limit is required to prevent "infinite" growth in # simplistic FBA-style analysis; in our case the enzyme capacity serves as a -# sufficient and more realistic limiter.) +# sufficient and more realistic limiter. We have to unblock both the +# bidirectional reaction and the "reversed" view, since both carry the bound.) ec_constraints.fluxes.EX_glc__D_e.bound.lower = -1000 +ec_constraints.fluxes_reverse.EX_glc__D_e.bound.upper = 1000 # To avoid the model from growing in unexpected modes, we will constraint the # original biomass reaction to zero: From 3e844327c3e38681a34ea8b49faa61be84621321 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 16:08:05 +0100 Subject: [PATCH 35/45] make the sRBA work by fixing units of AAs --- docs/src/examples/07a-srba.jl | 68 +++++++++++++++++++---------------- 1 file changed, 38 insertions(+), 30 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index a30508f9..04bb9351 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -117,8 +117,8 @@ e_coli_gp_aas # To make the RBA problem working, we also need to assume some constant parameters (many of such can be found via https://bionumbers.hms.harvard.edu): -atp_polymerization_cost = 4.2; -protein_polymerization_atp_per_gDW = 0.012; # TODO explain this one +atp_polymerization_cost = 0.042; +protein_polymerization_atp_per_gDW = 12.0; ribosome_speed_aa_per_hour = 12.0 * 3600; ribosome_molar_mass = 2700.0; @@ -225,7 +225,7 @@ function translation_constraints( # amount of gene products: aas_required_for_gps = C.imap(gene_product_amounts) do (i,), gp C.ConstraintTree( - aa => C.Constraint(gp.value * v * growth) for + aa => C.Constraint(gp.value * v * growth * 0.001) for (aa, v) in e_coli_gp_aas[String(i)] ) end @@ -253,8 +253,8 @@ function translation_constraints( # the protein-producing ribosomes and themselves, so we add a constraint # that ensures there's enough ribosomes for both. ribosome_balance_constraint = equal_value_constraint( - sum_values(aa.value for (_, aa) in aas_required_for_ribos) * growth, #TODO is growth required here? - ribos_required_for_ribos * ribosome_speed_aa_per_hour, + sum_values(aa.value for (_, aa) in aas_required_for_ribos), #TODO maybe *growth is required here. Check units. + ribos_required_for_ribos.value * ribosome_speed_aa_per_hour, ) #+ # With the AA requirements solved, we can estimate how much energy we need @@ -264,44 +264,51 @@ function translation_constraints( sum_values(aa.value for (_, aas) in aas_required_for_gps for (_, aa) in aas) + sum_values(v.value for (_, v) in aas_required_for_ribos) #+ - # With all that in hand, we can put together the final resource consumption - # equation: + # With all that in hand, we can put together the final resource consumption: resource_consumption = add_trees( C.values(aas_required_for_gps)..., aas_required_for_ribos, C.map(stoi -> -stoi * energy_required, C.Tree{Int}(energy_stoichiometry), C.Value), ) + #+ + # ...and make a stoichiometry out of that, with exact cases for amino acids + # (these are completely replaced in the original biomass), energy + # metabolites (these are partially re-used from the original biomass, but + # with an adjustment that tries to remove the polymerization cost portion + # in the original model), and everything other scaled for growth: resource_stoichiometry = C.imap(resources) do (resource,), input - if resource in amino_acids + if resource in amino_acids # AA case equal_value_constraint(resource_consumption[resource], input) - elseif resource in keys(energy_stoichiometry) + elseif resource in keys(energy_stoichiometry) # energy case equal_value_constraint( - -resource_consumption[resource].value * energy_stoichiometry[resource] - - growth * biomass[resource] - - growth * - energy_stoichiometry[resource] * - protein_polymerization_atp_per_gDW, + -growth * ( + biomass[resource] - + energy_stoichiometry[resource] * protein_polymerization_atp_per_gDW + ) - + resource_consumption[resource].value * energy_stoichiometry[resource], input, ) - else + else # everything else C.Constraint(input.value, -growth * biomass[resource]) end end #+ # Finaly, let's wrap all the constraints and some useful derived helper # values in one big tree: - return :resource_stoichiometry^resource_stoichiometry * - :ribosome_balance^ribosome_balance_constraint * - :gene_product_production^ribo_required_for_gps * - :total_ribosome_mass^C.Constraint( - ribosome_molar_mass * ( - sum_values(v.value for (_, v) in ribo_required_for_gps) + - ribos_required_for_ribos.value - ), - ) * - :amino_acid_use^(ribo_required_for_gps * :ribosome^aas_required_for_ribos) * - :polymerization_energy^C.Constraint(energy_required) * - :translation_resource_consumption^resource_consumption + return C.ConstraintTree( + :resource_stoichiometry => resource_stoichiometry, + :ribosome_balance => ribosome_balance_constraint, + :gene_product_production => ribo_required_for_gps, + :total_ribosome_mass => C.Constraint( + ribosome_molar_mass * ( + sum_values(v.value for (_, v) in ribo_required_for_gps) + + ribos_required_for_ribos.value + ), + ), + :amino_acid_use => (aas_required_for_gps * :ribosome^aas_required_for_ribos), + :polymerization_energy => C.Constraint(energy_required), + :translation_resource_consumption => resource_consumption, + ) end # ## Running the resource-balanced simulation @@ -315,7 +322,7 @@ rb_constraints *= translation_constraints( rb_constraints.resources, rb_constraints.ribosome_production, rb_constraints.gene_product_amounts, - 0.001, + 0.9, ) # The model may be slightly under-constrained for less-than-extreme values of @@ -341,11 +348,12 @@ res = optimized_values( # The model can be used to observe various interesting effects. For example, # how much building material is required to reach such growth? res.total_capacity +@test isapprox(res.total_capacity, 538.778495150974, atol = TEST_TOLERANCE) #src # What is the resource composition used for building up biomass? -res.resources +sort(collect(res.resources), by = last) -# How much of that comes into and out of translation? +# How much of that comes into (and out of) translation? res.translation_resource_consumption # How much arginine is used to build the ribosomes? From b58c27fdcc3b59c0f6af3a45934afc0642e0db3f Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 17:06:55 +0100 Subject: [PATCH 36/45] clean up the eccFBA example --- docs/src/examples/07b-community-ecfba.jl | 505 +++++++---------------- 1 file changed, 144 insertions(+), 361 deletions(-) diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 1ebc140a..4a668452 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -14,23 +14,26 @@ # See the License for the specific language governing permissions and #src # limitations under the License. #src -# # Enzyme constrained community flux balance analysis -# In this example we will demonstrate how to merge two enzyme constrained models -# together, and run community flux balance analysis simulation on them. The goal -# is to compare the optimal community abundance of models using cFBA and ec-cFBA -# simulations, illustrating the superiority of the latter approach. The specific -# communities simulated here will be _E.coli_ auxotrophic co-cultures. Each -# community member is dependent on the other through an amino acid knockout. The -# simulations are based on the experimental work in *Mee, Michael T., et al. -# "Syntrophic exchange in synthetic microbial communities." Proceedings of the -# National Academy of Sciences 111.20 (2014)*. Finally, the predicted abundances -# using the two modeling approaches will be compared to experimental data. +# # Enzyme-constrained communities +# +# This example demonstrates a simple way to create enzyme-constrained community +# models. We use the genome-scale iML1515 E. coli model to simulate a community +# of 2 auxtrophic organisms (both of which exhibit no growth in isolation due +# to the lack of the amino acid), and observe how they can save each other by +# supplying themselves amino-acids. Such analysis easily extends to more +# auxtrophes and even communities of several different species. +# +# The simulations are, very roughly, replicating the logic of the experimental +# work by *Mee, Michael T., et al. "Syntrophic exchange in synthetic microbial +# communities." Proceedings of the National Academy of Sciences 111.20 (2014)*. + +# As usual, we start by loading packages and downloading models: using COBREXA - -# Like the previous tutorial, we will use the iML1515 model of _E. -# coli_, which is the latest, full-scale genome-scale metabolic model of the -# organism. +import AbstractFBCModels as A +import JSONFBCModels +import ConstraintTrees as C +import HiGHS download_model( "http://bigg.ucsd.edu/static/models/iML1515.json", @@ -38,374 +41,154 @@ download_model( "b0f9199f048779bb08a14dfa6c09ec56d35b8750d2f99681980d0f098355fbf5", ) -# In additional to COBREXA, the optimization solver, and the model format -# package, we will use ConstraintTrees to simplify the model construction -# process: +# ## Collecting data and parameters +# +# Enzyme-constrained models require parameters for protein molar masses and +# reaction turnover numbers (kcats). COBREXA supplies prepared example data for +# the iML1515 model; in this section we summarize the loading of the data into +# Julia structures from the used format. Other formats will work just as well. +# +# The loading is hidden by default for brevity: +# +#md # ```@raw html +#md #
Loading the model parameters +#md # ``` -import AbstractFBCModels as A -import JSONFBCModels -import ConstraintTrees as C -import HiGHS +import CSV -# ## Collect data for enzyme constrained models -# Like in the previous example, we will spend some time gathering the necessary -# data to build the wild type enzyme constrained metabolic models. +data_dir = joinpath(dirname(pathof(COBREXA)), "..", "docs", "src", "examples", "data"); + +e_coli_gp_mass = Dict{String,Float64}( + x.gene_product => x.mass for + x in CSV.File(joinpath(data_dir, "e_coli_gp_mass.tsv"), delim = '\t') +); + +kcat_scale = 3600 / 1e3; +e_coli_rxn_kcat_isozyme = Dict{String,Isozyme}( + x.reaction => Isozyme( + kcat_forward = x.kcat * kcat_scale, + kcat_reverse = x.kcat * kcat_scale, + gene_product_stoichiometry = Dict(), + ) for x in CSV.File(joinpath(data_dir, "e_coli_reaction_kcat.tsv"), delim = '\t') +); + +e_coli_rxn_isozymes = Dict{String,Dict{String,Isozyme}}(); +for x in CSV.File(joinpath(data_dir, "e_coli_isozyme_gp.tsv"), delim = '\t') + haskey(e_coli_rxn_kcat_isozyme, x.reaction) || continue + rxn = get!(e_coli_rxn_isozymes, x.reaction, Dict{String,Isozyme}()) + iso = get!(rxn, x.isozyme, deepcopy(e_coli_rxn_kcat_isozyme[x.reaction])) + iso.gene_product_stoichiometry[x.gene_product] = x.stoichiometry +end; #md # ```@raw html -#md #
Data for reaction turnover numbers +#md #
#md # ``` +# +# In the end, we have gene product weight data (just like in the +# [enzyme-constrained model example](05b-enzyme-constrained-models.md)): -import CSV -import Statistics: mean - -data_root = joinpath(dirname(pathof(COBREXA)), "..", "docs", "src", "examples", "data") - -# ### Helper functions - -# Checks if reaction has a gene reaction rule assigned to it. -function has_reaction_grr(model, rid) - grr = A.reaction_gene_association_dnf(model, rid) - if isnothing(grr) || isempty(grr) || isnothing(first(grr)) || isempty(first(grr)) - return false - end - return true -end - -# This adds kcats to -# 1] transporters (if the kcat is missing and the transporter has a grr) -# 2] physiological reactions which don't have a kcat (but they get an average -# one if grr is present) -function add_kcats!( - model, - kcat_data; - transporter_kcat = 180.0, - average_kcat = 25.0, - block_brackets = false, -) - for rid in A.reactions(model) - !has_reaction_grr(model, rid) && continue - rxn = A.reaction_stoichiometry(model, rid) - if block_brackets - suffixes = [split(met, "[")[end] for met in keys(rxn)] - else - suffixes = [split(met, "_")[end] for met in keys(rxn)] - end - if length(unique(suffixes)) > 1 - if !haskey(kcat_data, rid) - kcat_data[rid] = transporter_kcat - end - end - end - - for rid in A.reactions(model) - !has_reaction_grr(model, rid) && continue - if !haskey(kcat_data, rid) - kcat_data[rid] = average_kcat - elseif haskey(kcat_data, rid) - continue - end - end - - return nothing -end - -# Finds mass of each gene product in a model -function get_protein_masses(model, proteome_data) - avg_mass = (mean([x[1] for x in values(proteome_data)]),) - return Dict{String,Float64}( - gid => get(proteome_data, gid, avg_mass)[1] for gid in A.genes(model) - ) -end - -# Assemble reaction isozymes from kcat data, Uniprot proteome data, and -# ComplexPortal data. This changes the GRR structure of the model (basically -# making it match the expectations from the data files). In a set of complexes, -# this also gets rid of low confidence complexes if any complex in the set can -# be found in the ComplexPortal. -function get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) - mer_map = Dict( - "Homomonomer" => 1, - "Monomer" => 1, - "Homodimer" => 2, - "Homotrimer" => 3, - "Homotetramer" => 4, - "Homopentamer" => 5, - "Homohexamer" => 6, - "Homoheptamer" => 7, - "Homooctamer" => 8, - "Homodecamer" => 10, - "Homododecamer" => 12, - ) - reaction_isozymes = Dict{String,Dict{String,Isozyme}}() - multi_component_enzymes = [] # for use later - for rid in A.reactions(model) - haskey(kcat_data, rid) || continue # skip if no kcat data available - if has_reaction_grr(model, rid) - grrs = A.reaction_gene_association_dnf(model, rid) - for (i, grr) in enumerate(grrs) - isozyme_id = "isozyme_" * string(i) - d = get!(reaction_isozymes, rid, Dict{String,Isozyme}()) - if length(grr) == 1 # only assign homomers - gid = first(grr) - if haskey(proteome_data, gid) # has uniprot data - idx = proteome_data[gid][2] - ss_counts = [get(mer_map, idx, 1.0)] - else # no data - ss_counts = [1.0] - end - else # assume complexes have uni-stoichiometry, fix in next step - ss_counts = fill(1.0, length(grr)) - push!(multi_component_enzymes, (rid, isozyme_id)) - end - d[isozyme_id] = Isozyme( - gene_product_stoichiometry = Dict(grr .=> ss_counts), - kcat_forward = kcat_data[rid] * scale, - kcat_reverse = kcat_data[rid] * scale, # assume forward and reverse are the same - ) - end - end - end - fixed_multi_component_enzymes = [] - not_fixed_multi_component_enzymes = [] - for (rid, isozyme_id) in multi_component_enzymes - grr = collect(keys(reaction_isozymes[rid][isozyme_id].gene_product_stoichiometry)) - stoichs = [] - for v in values(complex_data) - if length(intersect(collect(keys(v)), grr)) == length(grr) && - length(intersect(collect(keys(v)), grr)) == length(v) - push!(stoichs, v) - end - end - if length(stoichs) == 1 - push!(fixed_multi_component_enzymes, (rid, isozyme_id)) - d = first(stoichs) - for (k, v) in d - if v == 0 - d[k] = 1.0 - end - end - reaction_isozymes[rid][isozyme_id].gene_product_stoichiometry = d - else - push!(not_fixed_multi_component_enzymes, (rid, isozyme_id)) - end - end - for (rid, isozyme_id) in not_fixed_multi_component_enzymes - if rid in first.(fixed_multi_component_enzymes) - delete!(reaction_isozymes[rid], isozyme_id) - end - end - return reaction_isozymes -end - -# ### Data loading -# load data from papers, complex DB, and Uniprot - -proteome_data = begin - x = CSV.File(joinpath(data_root, "e_coli_uniprot.tsv"), delim = '\t') - Dict{String,Tuple{Float64,String}}( - gp => (m, coalesce(k, "")) for (gp, m, k) in zip(x.gene_product, x.mass, x.kind) - ) -end - -# this data is taken from: *Heckmann, David, et al. "Machine learning applied -# to enzyme turnover numbers reveals protein structural correlates and improves -# metabolic models." Nature communications 9.1 (2018): 1-10.* -kcat_data = Dict( - String(r.KcatID) => r.KcatHeckmann for - r in CSV.File(joinpath(data_root, "ecoli_kcats.tsv")) -) +e_coli_gp_mass -complex_data = begin - x = CSV.File(joinpath(data_root, "e_coli_complex.tsv"), delim = '\t') - res = Dict{String,Dict{String,Float64}}() - for c in x.complex - res[c] = Dict{String,Float64}() - end - for (c, gp, s) in zip(x.complex, x.gene_product, x.stoichiometry) - res[c][gp] = s - end - res -end +# ... as well as isozyme data with kcats: -# load the E. coli model as a basis to assemble the data around +e_coli_rxn_isozymes -model = load_model("iML1515.json", A.CanonicalModel.Model) +# ## Model assembly +# +# For simplicity, we will work with the "canonical" Julia-structured view of +# the iML1515: -# Assemble the isozymes and gene product masses increase protein concentrations -# by changing units, convert kcat units from 1/s to k/h -scale = 3600 / 1e3 +wt_model = load_model("iML1515.json", A.CanonicalModel.Model) -# add kcats that are not measured -# https://bionumbers.hms.harvard.edu/bionumber.aspx?id=114686&ver=3&trm=glucose+transport&org= -add_kcats!(model, kcat_data; transporter_kcat = 180.0, average_kcat = 25.0) +# As the usual quirk, we loosen the lower bound on glucose intake that is +# required for plain FBA: +wt_model.reactions["EX_glc__D_e"].lower_bound = -1000.0 -# get uniprot molar masses (units: kDa = kg/mol) -gene_product_molar_masses = get_protein_masses(model, proteome_data) +# Additionally we allow the models isoleucine and methionine uptake: +wt_model.reactions["EX_ile__L_e"].lower_bound = -1000.0 +wt_model.reactions["EX_met__L_e"].lower_bound = -1000.0 -# collect kcats and stoichiometry -reaction_isozymes = - get_reaction_isozymes!(model, kcat_data, proteome_data, complex_data, scale) +# ...and for good manners, we also remove the biomass annotation from the +# biomass reaction that we are not interested in: +wt_model.reactions["BIOMASS_Ec_iML1515_WT_75p37M"].annotations["sbo"] = [] -# apply analysis-specific quirks -gene_product_molar_masses["b1692"] = 54.58 -gene_product_molar_masses["s0001"] = 54.58 +# Let's create these two knockouts-- one incapable of producing isoleucine: -#md # ```@raw html -#md #
-#md # ``` +ile_model = deepcopy(wt_model) +delete!(ile_model.reactions, "THRD_L"); -# ## Build community models -# Now we will focus on building the community models. Since constraints can be -# added incrementally, and are not dependent on the modeling framework, we only -# need to write a general purpose community construction function, which will -# naturally work with either classic FBA or enzyme constrained FBA models. - -# below we create a community assembly function, assuming an input of a wildtype model -function auxotrophe_community(wt, aa_ko; fbc_only = false) - kos = Dict( - :argA => (:ACGS, :arg), - :ilvA => (:THRD_L, :ile), - :metA => (:HSST, :met), - :hisB => (:HISTP, :his), - :proA => (:G5SD, :pro), - :cysE => (:SERAT, :cys), - :thrC => (:THRS, :thr), - :leuB => (:IPMD, :leu), - :trpC => (:IGPS, :trp), - :pheA => (:PPNDH, :phe), - :tyrA => (:PPND, :tyr), - :lysA => (:DAPDC, :lys), - ) - aa_id(aa) = Symbol("EX_", aa, "__L_e") - boundf(id) = begin - ex_id = first(id) - if fbc_only && ex_id == :EX_glc__D_e - C.Between(-50, 0) - else - wt.interface.exchanges[ex_id].bound - end - end - ko_pairs = [ - ko => (deepcopy(wt), deepcopy(wt.interface.exchanges), ko_ab) for - (ko, ko_ab) in aa_ko - ] - x = interface_constraints(ko_pairs...; bound = boundf) - all_kos = first.(aa_ko) # get model ids - x *= # set all growth rates equal - :equalgrowth^all_equal_constraints( - x[first(all_kos)].fluxes.BIOMASS_Ec_iML1515_core_75p37M, - C.ConstraintTree( - ko => x[ko].fluxes.BIOMASS_Ec_iML1515_core_75p37M for ko in all_kos[2:end] - ), - ) - x *= # set objective - :objective^C.Constraint( - x[first(all_kos)].fluxes.BIOMASS_Ec_iML1515_core_75p37M.value, - nothing, - ) - for ko in all_kos - x[ko].fluxes[first(kos[ko])].bound = C.EqualTo(0) - end - all_aa_exs = [aa_id(last(kos[ko])) for ko in all_kos] - for ko in all_kos - for aa_ex in all_aa_exs - if fbc_only - open_bounds_fbc!(x[ko], aa_ex) - else - open_bounds_ecfbc!(x[ko], aa_ex) - end - end - end - x -end - -# simulate a model -function auxotrophe_fba(wt, aa_ko; fbc_only = false) - x = auxotrophe_community(wt, aa_ko; fbc_only) - sol = optimized_values( - x; - optimizer = HiGHS.Optimizer, - objective = x.objective.value, - sense = Maximal, - ) - isnothing(sol) && return nothing - (; mu = sol.objective, (Symbol(aa) => ab for (aa, ab) in aa_ko)...) -end - -# open specific bounds -function open_bounds_fbc!(ct, rxn_id) - ct.fluxes[rxn_id].bound = C.Between(-1000, 1000) - ct.interface.exchanges[rxn_id].bound = C.Between(-1000, 1000) -end - -# since enzyme constrained models add more reactions to the models, the bound opening is more intensive -function open_bounds_ecfbc!(ct, rxn_id) - ct.fluxes[rxn_id].bound = C.Between(-1000, 1000) - ct.fluxes_forward[rxn_id].bound = C.Between(0, 1000) - ct.fluxes_reverse[rxn_id].bound = C.Between(0, 1000) - ct.interface.exchanges[rxn_id].bound = C.Between(-1000, 1000) -end - -# fix some model quirks -function fix_bounds_ecfbc!(ct) - ct.fluxes[:EX_5dglcn_e].bound = C.EqualTo(0.0) - ct.fluxes[:EX_for_e].bound = C.EqualTo(0.0) - ct.fluxes[:EX_pyr_e].bound = C.EqualTo(0.0) -end - -# ## Assemble community models - -# load the basis model -model = load_model("iML1515.json", A.CanonicalModel.Model) - -# identify membrane reactions (transporting stuff between compartments), used in the capacity bounds -membrane_rids = [ - rid for (rid, r) in model.reactions if - length(unique(last.(split.(keys(r.stoichiometry), "_")))) != 1 -] +# ...and another one without the reaction that is required for producing +# methionine: -# these co-cultures will be simulated -aa_pairs = [ - (:metA, :thrC), - (:ilvA, :pheA), - (:argA, :lysA), - (:metA, :proA), - (:argA, :metA), - (:argA, :ilvA), - (:metA, :pheA), - (:ilvA, :lysA), - (:ilvA, :metA), -] +met_model = deepcopy(wt_model) +delete!(met_model.reactions, "HSST"); -# abundance range to screen through -abundances = [(a, 1 - a) for a in range(0.001, 0.999, length = 10)] +# For brevity, let's make a shortcut that creates enzyme-constrained FBA system +# from the model together with a proper interface for community building: -# parameters fed into screen function below -specs = [ - [(aa1, abun1), (aa2, abun2)] for (aa1, aa2) in aa_pairs for (abun1, abun2) in abundances -] +ecfba_constraints(m, capacity) = enzyme_constrained_flux_balance_constraints( + m, + reaction_isozymes = e_coli_rxn_isozymes, + gene_product_molar_masses = e_coli_gp_mass, + interface = :sbo; + capacity, +) -# ## Simulate cFBA +# We can now create the community by creating each model's constraint tree with +# an interface with [`flux_balance_constraints`](@ref), and connecting them via +# [`interface_constraints`](@ref). We have to pick the model abundances for +# cFBA, so we pick 1:1 abundance ratio. We also have to pick the capacities for +# the enzyme-constrained models (these will be properly dissolved by the +# community FBA formulation), and specify that the community is not allowed to +# exchange either of our two selected amino acids externally (the individual +# models might cheat the auxtrophe community setting by consuming these). + +community_constraints = community_flux_balance_constraints( + [ + "ile_ko" => (ecfba_constraints(ile_model, 100.0), 0.5), + "met_ko" => (ecfba_constraints(met_model, 100.0), 0.5), + ], + ["EX_ile__L_e" => 0.0, "EX_met__L_e" => 0.0], +) -wt = flux_balance_constraints(model; interface = :identifier_prefixes) -open_bounds_fbc!(wt, :EX_glc__D_e) +# ## Simulating the community +# +# Since the community constraints created above form a commpletely normal +# optimization problem, we can optimize them as usual via +# [`optimized_values`](@ref); picking the `community_biomass` value as an +# objective: + +res = optimized_values( + community_constraints, + objective = community_constraints.community_biomass.value, + optimizer = HiGHS.Optimizer, +) -cfba_res = screen(specs, workers = [1]) do spec - auxotrophe_fba(wt, spec; fbc_only = true) -end +# We can observe that the community indeed grows, although not as quickly as +# the WT model normally would: -# ## Simulate ec-cFBA +res.community_biomass +@test isapprox(res.community_biomass, 0.2304879809596633, atol = TEST_TOLERANCE) -wt = simplified_enzyme_constrained_flux_balance_constraints( - model; - reaction_isozymes, - gene_product_molar_masses, - capacity = [("membrane", membrane_rids, 166.0), ("total", A.reactions(model), 500.0)], - interface = :identifier_prefixes, -) -open_bounds_ecfbc!(wt, :EX_glc__D_e) -fix_bounds_ecfbc!(wt) +# One may also observe the "global" community exchanges: +sort(collect(res.community_exchanges), by = last) + +# Appropriately, we can check that the individual community members exchange +# the expected amino acids (the individual values are scaled to the individual +# members' biomasses; in the community view these values would be halved by the +# 0.5 abundances): + +[ + res.met_ko.fluxes.EX_ile__L_e res.met_ko.fluxes.EX_met__L_e + res.ile_ko.fluxes.EX_ile__L_e res.ile_ko.fluxes.EX_met__L_e +] -eccfba_res = screen(specs, workers = [1]) do spec - auxotrophe_fba(wt, spec) -end +# We can see that isoleucine is indeed moving into the isoleucine knockout, and +# methionine into the methionine knockout. (The signs follow the usual exchange +# convention where negative values mean uptake and positive values mean +# secretion.) +# +# Finally, one might be interested in finding the optimal community composition +# for the auxtrophes. [The example on community +# building](04-community-models.md) describes a common way to find the optimal +# abundance ratios via screening. From edf7137925c1f47083446d68e77688f5b277af8c Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 17:24:53 +0100 Subject: [PATCH 37/45] tests are tests --- docs/src/examples/07b-community-ecfba.jl | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 4a668452..54b160fb 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -168,7 +168,7 @@ res = optimized_values( # the WT model normally would: res.community_biomass -@test isapprox(res.community_biomass, 0.2304879809596633, atol = TEST_TOLERANCE) +@test isapprox(res.community_biomass, 0.2304879809596633, atol = TEST_TOLERANCE) #src # One may also observe the "global" community exchanges: sort(collect(res.community_exchanges), by = last) From 907c432a34624e70742a5db3e6b63ced43034eee Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 17:34:33 +0100 Subject: [PATCH 38/45] fix refs --- docs/src/examples/07b-community-ecfba.jl | 15 ++++++++------- 1 file changed, 8 insertions(+), 7 deletions(-) diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 54b160fb..9e8de45f 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -135,13 +135,14 @@ ecfba_constraints(m, capacity) = enzyme_constrained_flux_balance_constraints( ) # We can now create the community by creating each model's constraint tree with -# an interface with [`flux_balance_constraints`](@ref), and connecting them via -# [`interface_constraints`](@ref). We have to pick the model abundances for -# cFBA, so we pick 1:1 abundance ratio. We also have to pick the capacities for -# the enzyme-constrained models (these will be properly dissolved by the -# community FBA formulation), and specify that the community is not allowed to -# exchange either of our two selected amino acids externally (the individual -# models might cheat the auxtrophe community setting by consuming these). +# an interface with [`enzyme_constrained_flux_balance_constraints`](@ref), and +# connecting them via [`community_flux_balance_constraints`](@ref). We have to +# pick the model abundances for cFBA, so we pick 1:1 abundance ratio. We also +# have to pick the capacities for the enzyme-constrained models (these will be +# properly dissolved by the community FBA formulation), and specify that the +# community is not allowed to exchange either of our two selected amino acids +# externally (the individual models might cheat the auxtrophe community setting +# by consuming these). community_constraints = community_flux_balance_constraints( [ From aed82d12dbaf582fd79cb0a27668c3237bb35453 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 17:36:55 +0100 Subject: [PATCH 39/45] kill statistics dep --- Project.toml | 3 +-- docs/Project.toml | 1 - 2 files changed, 1 insertion(+), 3 deletions(-) diff --git a/Project.toml b/Project.toml index a07e79bd..d7b9de3a 100644 --- a/Project.toml +++ b/Project.toml @@ -41,9 +41,8 @@ HiGHS = "87dc4568-4c63-4d18-b0c0-bb2238e4078b" JSONFBCModels = "475c1105-d6ed-49c1-9b32-c11adca6d3e8" SBMLFBCModels = "3e8f9d1a-ffc1-486d-82d6-6c7276635980" SHA = "ea8e919c-243c-51af-8825-aaa63cd721ce" -Statistics = "10745b16-79ce-11e8-11f9-7d13ad32a3b2" Test = "8dfed614-e22c-5e08-85e1-65c5234f0b40" Tulip = "6dd1b50a-3aae-11e9-10b5-ef983d2400fa" [targets] -test = ["Aqua", "CSV", "Clarabel", "Downloads", "HiGHS", "JSONFBCModels", "SBMLFBCModels", "SHA", "Statistics", "Test", "Tulip"] +test = ["Aqua", "CSV", "Clarabel", "Downloads", "HiGHS", "JSONFBCModels", "SBMLFBCModels", "SHA", "Test", "Tulip"] diff --git a/docs/Project.toml b/docs/Project.toml index 550d8c1a..fd6f99d9 100644 --- a/docs/Project.toml +++ b/docs/Project.toml @@ -11,7 +11,6 @@ IterTools = "c8e1da08-722c-5040-9ed9-7db0dc04731e" JSONFBCModels = "475c1105-d6ed-49c1-9b32-c11adca6d3e8" Literate = "98b081ad-f1c9-55d3-8b20-4c87d4299306" SBMLFBCModels = "3e8f9d1a-ffc1-486d-82d6-6c7276635980" -Statistics = "10745b16-79ce-11e8-11f9-7d13ad32a3b2" Tulip = "6dd1b50a-3aae-11e9-10b5-ef983d2400fa" [compat] From f8e0064f07ebd592dec76f7751291a278dedd562 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 17:45:46 +0100 Subject: [PATCH 40/45] fix ref --- src/builders/interface.jl | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) diff --git a/src/builders/interface.jl b/src/builders/interface.jl index cdd239a1..eb35eb4b 100644 --- a/src/builders/interface.jl +++ b/src/builders/interface.jl @@ -106,7 +106,7 @@ $(TYPEDSIGNATURES) Glue an interface made of additional variables into a constraint system that lacks variables to support one. Returns a tuple of a "module" and its -"interface", usable in [`interface_constraint`](@ref). +"interface", usable in [`interface_constraints`](@ref). First, `interface` variables are renumbered to not collide with `constraints`. The values in `interface` are then multiplied by `multiplier` (by default 1) From ef24025e2589cbd0ce31b5f7631bc800183ffdf4 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 20:22:04 +0100 Subject: [PATCH 41/45] this commit proves that 100% test coverage pays off --- src/builders/interface.jl | 2 +- test/misc.jl | 3 +++ 2 files changed, 4 insertions(+), 1 deletion(-) diff --git a/src/builders/interface.jl b/src/builders/interface.jl index eb35eb4b..98ec9fa2 100644 --- a/src/builders/interface.jl +++ b/src/builders/interface.jl @@ -131,7 +131,7 @@ function inject_interface( C.ConstraintTree(k => haskey(iface, k) ? go(v, iface[k]) : v for (k, v) in cs) go(cs::C.Constraint, iface::C.Constraint) = C.Constraint(value = cs.value + multiplier * iface.value, bound = cs.bound) - go(_, _) = cs # any non-matching interface is simply ignored + go(cs, _) = cs # any non-matching interface is simply ignored interface_ = C.incr_var_idxs(interface, C.var_count(constraints)) return (go(constraints, interface_), interface_) diff --git a/test/misc.jl b/test/misc.jl index eda0ecd2..c3de3c14 100644 --- a/test/misc.jl +++ b/test/misc.jl @@ -105,6 +105,9 @@ end @test c.interface_balance.x.value.idxs == [1, 3, 5, 7, 9] @test c.interface_balance.x.value.weights == [1.0, 2.0, 1.0, 3.0, -1.0] + (c, v) = inject_interface(C.variables(keys = [:x, :y]), :x^C.variables(keys = [:x, :y])) + @test issetequal(keys(c), [:x, :y]) + @test c.x isa C.Constraint end @testset "Uncommon bounds in gapfilling" begin From e3e37872200373e01ffde7aead242cbc821898de Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 20:29:03 +0100 Subject: [PATCH 42/45] bump feature (for interface injector) --- Project.toml | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) diff --git a/Project.toml b/Project.toml index d7b9de3a..5b4511fb 100644 --- a/Project.toml +++ b/Project.toml @@ -1,7 +1,7 @@ name = "COBREXA" uuid = "babc4406-5200-4a30-9033-bf5ae714c842" authors = ["The developers of COBREXA.jl"] -version = "2.6.1" +version = "2.7.0" [deps] AbstractFBCModels = "5a4f3dfa-1789-40f8-8221-69268c29937c" From 46eabdde6ca63d811835acb4533259ee4d478b60 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 20:40:52 +0100 Subject: [PATCH 43/45] clean up the new examples --- docs/src/examples/07a-srba.jl | 32 ++++++++++++------------ docs/src/examples/07b-community-ecfba.jl | 10 ++++---- 2 files changed, 21 insertions(+), 21 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index 04bb9351..c14701c8 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -22,9 +22,9 @@ # mechanistic knowledge about the processes, but also dramatically improves the # predictive capability of the model. # -# Here we demonstrate the approach to build such extensions in COBREXA, using a -# simplified RBA model that accounts for the major translation costs (synthesis -# of proteins and ribosomes). +# Here we demonstrate the approach for building such extensions with COBREXA, +# over a demonstrational simplified RBA model that accounts for the major +# translation costs (synthesis of proteins and ribosomes). # # For comprehensiveness, we use the full genome-scale model of E. coli # (iML1515): @@ -133,7 +133,7 @@ energy_stoichiometry = Dict(:atp_c => -1, :h2o_c => -1, :adp_c => 1, :h_c => 1, # changes: model = load_model("iML1515.json") -# We will requre some access to the stoichiometry of the biomass reaction (in +# We will require some access to the stoichiometry of the biomass reaction (in # essence, we copy a part of it, but replace the part that uses amino acids as # a building material, and slightly enhance the energy consumption part). So we # save it here: @@ -166,18 +166,19 @@ ec_constraints.fluxes.BIOMASS_Ec_iML1515_WT_75p37M.bound = C.EqualTo(0) # ### RBA translation machinery -# First, a common issue with RBA formulations is that the biomass-based growth -# formula depends on the determined optimal composition of the enzyme pool and -# actual production of metabolites; which makes the underlying constrained -# problem quadratic. +# A common issue with RBA formulations is that the biomass-based growth formula +# depends on a determined optimal composition of the enzyme pool and actual +# production of metabolites; which makes the underlying constrained problem +# quadratic. # # A common way to dodge the need for quadratic solvers is to solve the problem -# for a fixed growth rate, which we do here. Alternatively, one might state the -# full quadratic problem and solve it, with some performance cost stemming from -# use of QP solvers. +# for a fixed growth rate, which we is the approach that we choose here. +# Alternatively, one might state the full quadratic problem and solve it, with +# some performance cost stemming from use of QP solvers. # -# Let's first make a utility function that prepares the connection and new -# variables atop a given enzyme-constrained model: +# Let's first make a utility function that prepares the connection to the +# metabolite pool, and adds several useful variables atop a given +# enzyme-constrained model: function with_translation_variables(ec_constraints::C.ConstraintTree) #+ # Create a "resource pool" and connect it to the stoichiometry of the @@ -253,7 +254,7 @@ function translation_constraints( # the protein-producing ribosomes and themselves, so we add a constraint # that ensures there's enough ribosomes for both. ribosome_balance_constraint = equal_value_constraint( - sum_values(aa.value for (_, aa) in aas_required_for_ribos), #TODO maybe *growth is required here. Check units. + sum_values(aa.value for (_, aa) in aas_required_for_ribos), ribos_required_for_ribos.value * ribosome_speed_aa_per_hour, ) #+ @@ -293,7 +294,7 @@ function translation_constraints( end end #+ - # Finaly, let's wrap all the constraints and some useful derived helper + # Finally, let's wrap all the constraints and some useful derived helper # values in one big tree: return C.ConstraintTree( :resource_stoichiometry => resource_stoichiometry, @@ -342,7 +343,6 @@ res = optimized_values( objective = rb_constraints.total_capacity.value, sense = Minimal, optimizer = HiGHS.Optimizer, - settings = [unsilence], ) # The model can be used to observe various interesting effects. For example, diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 9e8de45f..92b90d5b 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -18,10 +18,10 @@ # # This example demonstrates a simple way to create enzyme-constrained community # models. We use the genome-scale iML1515 E. coli model to simulate a community -# of 2 auxtrophic organisms (both of which exhibit no growth in isolation due +# of 2 auxotrophic organisms (both of which exhibit no growth in isolation due # to the lack of the amino acid), and observe how they can save each other by # supplying themselves amino-acids. Such analysis easily extends to more -# auxtrophes and even communities of several different species. +# auxotrophes and even communities of several different species. # # The simulations are, very roughly, replicating the logic of the experimental # work by *Mee, Michael T., et al. "Syntrophic exchange in synthetic microbial @@ -141,7 +141,7 @@ ecfba_constraints(m, capacity) = enzyme_constrained_flux_balance_constraints( # have to pick the capacities for the enzyme-constrained models (these will be # properly dissolved by the community FBA formulation), and specify that the # community is not allowed to exchange either of our two selected amino acids -# externally (the individual models might cheat the auxtrophe community setting +# externally (the individual models might cheat the auxotrophe community setting # by consuming these). community_constraints = community_flux_balance_constraints( @@ -154,7 +154,7 @@ community_constraints = community_flux_balance_constraints( # ## Simulating the community # -# Since the community constraints created above form a commpletely normal +# Since the community constraints created above form a completely normal # optimization problem, we can optimize them as usual via # [`optimized_values`](@ref); picking the `community_biomass` value as an # objective: @@ -190,6 +190,6 @@ sort(collect(res.community_exchanges), by = last) # secretion.) # # Finally, one might be interested in finding the optimal community composition -# for the auxtrophes. [The example on community +# for the auxotrophes. [The example on community # building](04-community-models.md) describes a common way to find the optimal # abundance ratios via screening. From 3eccc623d32f888ead4a09a9f34ab0490fd37d67 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 21:01:24 +0100 Subject: [PATCH 44/45] prevent a few unnecessary outputs in the docs --- docs/src/examples/07a-srba.jl | 16 ++++++++-------- docs/src/examples/07b-community-ecfba.jl | 8 ++++---- 2 files changed, 12 insertions(+), 12 deletions(-) diff --git a/docs/src/examples/07a-srba.jl b/docs/src/examples/07a-srba.jl index c14701c8..be79ba38 100644 --- a/docs/src/examples/07a-srba.jl +++ b/docs/src/examples/07a-srba.jl @@ -156,13 +156,13 @@ ec_constraints = enzyme_constrained_flux_balance_constraints( # simplistic FBA-style analysis; in our case the enzyme capacity serves as a # sufficient and more realistic limiter. We have to unblock both the # bidirectional reaction and the "reversed" view, since both carry the bound.) -ec_constraints.fluxes.EX_glc__D_e.bound.lower = -1000 -ec_constraints.fluxes_reverse.EX_glc__D_e.bound.upper = 1000 +ec_constraints.fluxes.EX_glc__D_e.bound.lower = -1000; +ec_constraints.fluxes_reverse.EX_glc__D_e.bound.upper = 1000; # To avoid the model from growing in unexpected modes, we will constraint the # original biomass reaction to zero: -ec_constraints.fluxes.BIOMASS_Ec_iML1515_core_75p37M.bound = C.EqualTo(0) -ec_constraints.fluxes.BIOMASS_Ec_iML1515_WT_75p37M.bound = C.EqualTo(0) +ec_constraints.fluxes.BIOMASS_Ec_iML1515_core_75p37M.bound = C.EqualTo(0); +ec_constraints.fluxes.BIOMASS_Ec_iML1515_WT_75p37M.bound = C.EqualTo(0); # ### RBA translation machinery @@ -200,7 +200,7 @@ end # To make the construction nicer, we'll make a helper for summing up # constraint-tree values: -sum_values(x...) = C.sum(x..., init = zero(C.LinearValue)) +sum_values(x...) = C.sum(x..., init = zero(C.LinearValue)); # ...and another helper for adding values in constraint trees together: add_trees(ts...) = @@ -210,7 +210,7 @@ add_trees(ts...) = return C.merge(t1, t2) do c1, c2 C.Constraint(z(c1) + z(c2)) end - end + end; # Since we have to solve the problem for multiple growth rates to be able to # scan for optimum, we will wrap the growth-dependent part in a reusable @@ -330,12 +330,12 @@ rb_constraints *= translation_constraints( # growth; to obtain a realistic solution for we can ask the solver to minimize # the mass of used resources. Accordingly, we re-constraint the total mass of # the model: -rb_constraints.gene_product_capacity.total_capacity.bound = nothing +rb_constraints.gene_product_capacity.total_capacity.bound = nothing; rb_constraints.total_capacity = C.Constraint( rb_constraints.gene_product_capacity.total_capacity.value + rb_constraints.total_ribosome_mass.value, (0.0, 550.0), -) +); # We can optimize the model now, minimizing the mass: res = optimized_values( diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index 92b90d5b..c226d745 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -102,15 +102,15 @@ wt_model = load_model("iML1515.json", A.CanonicalModel.Model) # As the usual quirk, we loosen the lower bound on glucose intake that is # required for plain FBA: -wt_model.reactions["EX_glc__D_e"].lower_bound = -1000.0 +wt_model.reactions["EX_glc__D_e"].lower_bound = -1000.0; # Additionally we allow the models isoleucine and methionine uptake: -wt_model.reactions["EX_ile__L_e"].lower_bound = -1000.0 -wt_model.reactions["EX_met__L_e"].lower_bound = -1000.0 +wt_model.reactions["EX_ile__L_e"].lower_bound = -1000.0; +wt_model.reactions["EX_met__L_e"].lower_bound = -1000.0; # ...and for good manners, we also remove the biomass annotation from the # biomass reaction that we are not interested in: -wt_model.reactions["BIOMASS_Ec_iML1515_WT_75p37M"].annotations["sbo"] = [] +wt_model.reactions["BIOMASS_Ec_iML1515_WT_75p37M"].annotations["sbo"] = []; # Let's create these two knockouts-- one incapable of producing isoleucine: From 6a7e3c71d80d9b77bf1d8dcaea67b78e0d348483 Mon Sep 17 00:00:00 2001 From: Mirek Kratochvil Date: Wed, 22 Jan 2025 21:29:15 +0100 Subject: [PATCH 45/45] fix dilution --- docs/src/examples/07b-community-ecfba.jl | 6 +++--- 1 file changed, 3 insertions(+), 3 deletions(-) diff --git a/docs/src/examples/07b-community-ecfba.jl b/docs/src/examples/07b-community-ecfba.jl index c226d745..59041759 100644 --- a/docs/src/examples/07b-community-ecfba.jl +++ b/docs/src/examples/07b-community-ecfba.jl @@ -139,10 +139,10 @@ ecfba_constraints(m, capacity) = enzyme_constrained_flux_balance_constraints( # connecting them via [`community_flux_balance_constraints`](@ref). We have to # pick the model abundances for cFBA, so we pick 1:1 abundance ratio. We also # have to pick the capacities for the enzyme-constrained models (these will be -# properly dissolved by the community FBA formulation), and specify that the +# properly diluted by the community FBA formulation), and specify that the # community is not allowed to exchange either of our two selected amino acids -# externally (the individual models might cheat the auxotrophe community setting -# by consuming these). +# externally (the individual models might cheat the auxotrophe community +# setting by consuming these). community_constraints = community_flux_balance_constraints( [