◀ domain architecture  ·  operons  ·  ❔ guide

Operon NC_008346.1:1,021,260–1,024,497

Syntrophomonas wolfei subsp. wolfei Goettingen · 4 genes
4
genes
4
KO-annotated
4
reactions
2
pathways

Activity by pathway — click to expand; ranked by genes involved

Sulfur metabolismMetabolism; Energy metabolism1 genes · 2 rxns
Swg_00902 K06881 nrnA R00188
Adenosine 3',5'-bisphosphate + H2O <=> AMP + Orthophosphate
adenosine-3',5'-bisphosphate 3'-phosphohydrolase
Swg_00902 K06881 nrnA R00508
3'-Phosphoadenylyl sulfate + H2O <=> Adenylyl sulfate + Orthophosphate
3'-phospho-5'-adenylyl sulfate 3'-phosphohydrolase
Riboflavin metabolismMetabolism; Metabolism of cofactors and vitamins1 genes · 2 rxns
Swg_00904 K11753 ribF R00161
ATP + FMN <=> Diphosphate + FAD
ATP:FMN adenylyltransferase
Swg_00904 K11753 ribF R00549
ATP + Riboflavin <=> ADP + FMN
ATP:riboflavin 5'-phosphotransferase

Overview / global maps (every metabolic gene maps here)

Metabolic pathways 2 genes
Microbial metabolism in diverse environments 1 genes
Biosynthesis of secondary metabolites 1 genes

Reaction network — compounds linked by the reactions these genes catalyse

drag nodes · click an edge for the reaction

Genes

LocusProductKOECReactions
Swg_00901 30S ribosome-binding factor RbfA K02834 rbfA
Swg_00902 DHH family phosphoesterase K06881 nrnA 3.1.13.3,3.1.3.7 R00188,R00508
Swg_00903 tRNA pseudouridine(55) synthase TruB K03177 truB, PUS4, TRUB1 5.4.99.25
Swg_00904 bifunctional riboflavin kinase/FAD synthetase K11753 ribF 2.7.1.26,2.7.7.2 R00161,R00549
↑ Top





v1.00 @copyright 2026 UCLA