Gene Ontology annotation based on UniProtKB/Swiss-Prot keyword mapping
TreeGrafter-generated GO annotations
Combined Automated Annotation using Multiple IEA Methods
The genome sequence of the anaerobic, sulfate-reducing bacterium Desulfovibrio vulgaris Hildenborough
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Genome sequence of D. vulgaris Hildenborough reveals network of c-type cytochromes and novel energy metabolism pathways
"The 3,570,858 base pair (bp) genome sequence reveals a network of novel c-type cytochromes, connecting multiple periplasmic hydrogenases and formate dehydrogenases, as a key feature of its energy metabolism."
Gene Expression by the Sulfate-Reducing Bacterium <i>Desulfovibrio vulgaris</i> Hildenborough Grown on an Iron Electrode under Cathodic Protection Conditions
Antimicrobial effects of free nitrous acid on Desulfovibrio vulgaris: implications for sulfide-induced corrosion of concrete
A proteomic view of <b><i>Desulfovibrio vulgaris</i></b> metabolism as determined by liquid chromatography coupled with tandem mass spectrometry
Combining metabolic flux analysis with proteomics to shed light on the metabolic flexibility: the case of Desulfovibrio vulgaris Hildenborough
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Proteomics table assigns DVU_0850 (Q72DS9) as QmoC, subunit C of the QmoABC quinone oxidoreductase; the FlxABCD-HdrABC complex is encoded at a separate locus (DVU_2399 to DVU_2404) and is a distinct complex
"Quinone oxidoreductase, QmoABC complex, subunit C QmoC Q72DS9 DVU_0850"
Quantitative Tagless Copurification: A Method to Validate and Identify Protein-Protein Interactions.
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Physical interaction between Qmo oxidoreductase and adenyl sulfate reductase alpha subunit validated by tagless co-purification
"many PPIs identified at high confidence by the tagless method but not by our AP-MS screen are supported by physical interaction data from another species: e.g. the interaction between flagella proteins FliS and FlaB1; formate dehydrogenase and a formate dehydrogenase formation protein; HypD and HypE hydrogenase maturation proteins; phosphoribosylformylglycinamidine synthases I and II; and Qmo oxidoreductase and adenyl sulfate reductase alpha subunit"
Deep research report on Q72DS9 (qmoC) function in D. vulgaris