Metabolic Network model for C. difficile 630

Metabolic model of C.difficile: Genome-scale metabolic models consists of curated biochemical reactions and can be used to investigate genotype to phenotype relationship. These genome-wide models have the potential to predict phenotypes in various environments. icdf834 is an updated metabolic network of C. difficile that builds on iMLTC806cdf and features 1227 reactions, 834 genes, and 807 metabolites. Genes in C. difficile are linked to the reactions based on gene-protein-reaction (GPR) associations. The performance of the icdf834 model is depicted in the form of a receiver operating characteristic (ROC) curve that shows the sensitivity and specificity of the model predictions for gene essentiality. The TnSeq analysis performed under nutrient-rich condition has been used to validate the predictions using the ROC curve.

Metabolic model adapted from: Kashaf, S., Angione, C. & Lió, P. Making life difficult for Clostridium difficile: augmenting the pathogen’s metabolic model with transcriptomic and codon usage data for better therapeutic target characterization. BMC Syst Biol 11, 25 (2017). https://doi.org/10.1186/s12918-017-0395-3

TnSeq Data from: Dembek M, Barquist L, Boinett CJ, et al. High-throughput analysis of gene essentiality and sporulation in Clostridium difficile. mBio. 2015;6(2):e02383. Published 2015 Feb 24. doi:10.1128/mBio.02383-14

Explore Metabolic Reactions

Displaying 921 - 930 of 1227
Desc Reaction GPR Genes Subsystem
ID_720

L-tyrosine 4-methylphenol-lyase (2-iminoacetate-forming)

tyrL[c] + amet[c] + elecacceptred[c] -> 2iac[c] + metL[c] + 5doadn[c] + 4mpo[c] + elecacceptoxi[c] (CD630_17050) or (CD630_21560) CD630_17050, CD630_21560 Thiamine metabolism Bookmark 
ID_468

xylulose-5-phosphate : thiamin diphosphate glycolaldehydetransferase

xyl5p[c] + thmdp[c] <=> dhettp[c] + glyald3p[c] + h[c] (CD630_23220) or (CD630_23210) or (CD630_34600) or (CD630_34590) CD630_23220, CD630_23210, CD630_34600, CD630_34590 Thiamine metabolism Bookmark 
ID_225

ATP:4-methyl-5-(beta-hydroxyethyl)thiazole 2-phosphotransferase

4m5het[c] + atp[c] -> 4m52poet[c] + adp[c] (CD630_16000) or (CD630_21560) CD630_16000, CD630_21560 Thiamine metabolism Bookmark 
ID_214

thiamine-phosphate diphosphorylase

4a2m5dpmp[c] + 4m52poet[c] + h[c] -> thmp[c] + ppi[c] (CD630_16010) or (CD630_17060) CD630_16010, CD630_17060 Thiamine metabolism Bookmark 
ID_636

phosphomethylpyrimidine synthase (2'deoxyadenosine)

5a15primz[c] + amet[c] -> 4a2m5pmp[c] + co[c] + for[c] + metL[c] + dad[c] (CD630_17020) CD630_17020 Thiamine metabolism Bookmark 
ID_668

Phosphomethylpyrimidine synthase (5'deoxyadenosine)

5a15primz[c] + amet[c] -> 4a2m5pmp[c] + co[c] + for[c] + metL[c] + 5doadn[c] (CD630_17020) CD630_17020 Thiamine metabolism Bookmark 
ID_238

1-methylthio-xylulose 5-phosphate sulfo-lyase

mthx5p[c] + 2 h[c] -> 1dxyl5p[c] + ch4s[c] Thiamine metabolism Bookmark 
ID_264

phosphomethylpyrimidine kinase

4a2m5pmp[c] + atp[c] -> 4a2m5dpmp[c] + adp[c] (CD630_13530) or (CD630_15590) CD630_13530, CD630_15990 Thiamine metabolism Bookmark 
ID_228

sedoheptulose-7-phosphate : thiamin diphosphate glycolaldehydetransferase

shl7p[c] + thmdp[c] <=> dhettp[c] + rib5p[c] + h[c] (CD630_23220) or (CD630_23210) or (CD630_34600) or (CD630_34590) CD630_23220, CD630_23210, CD630_34600, CD630_34590 Thiamine metabolism Bookmark 
ID_15

2,3-diaminopropanoate ammonia-lyase (adding water; pyruvate-forming)

23diap[c] + h2o[c] -> pyr[c] + 2 nh3[c] (CD630_20850) or (CD630_31840) CD630_20850, CD630_31840 Thiamine metabolism Bookmark 
CSV