Deep research report on HdrA-like subunit Q72DT0 (DVU_0849)
Gene Ontology annotation based on UniProtKB/Swiss-Prot keyword mapping
Combined Automated Annotation using Multiple IEA Methods
Bacterial Interactomes: Interacting Protein Partners Share Similar Function and Are Validated in Independent Assays More Frequently Than Previously Reported.
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High-throughput AP-MS study identifying 459 high-confidence PPIs in D. vulgaris
"We have identified 459 high confidence PPIs from D. vulgaris and 391 from Escherichia coli"
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Interactomes enriched in same-operon pairs, consistent with QmoB interactions with QmoA and Q72DS8
"our interactomes are much more enriched in protein pairs that are encoded in the same operon, have similar functions"
Quantitative Tagless Copurification: A Method to Validate and Identify Protein-Protein Interactions.
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Independent validation of D. vulgaris PPIs using tagless copurification
"We also identify 200 high confidence D. vulgaris PPIs based on tagless copurification and colocalization in the genome"
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Qmo - APS reductase alpha subunit association detected
"Qmo oxidoreductase and adenyl sulfate reductase alpha subunit"
The genome sequence of the anaerobic, sulfate-reducing bacterium Desulfovibrio vulgaris Hildenborough.
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Genome sequence of D. vulgaris Hildenborough; the abstract highlights its c-type cytochrome network
"The 3,570,858 base pair (bp) genome sequence reveals a network of novel c-type cytochromes"
The membrane QmoABC complex interacts directly with the dissimilatory adenosine 5′-phosphosulfate reductase in sulfate reducing bacteria
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QmoA and QmoB are the cytoplasmic subunits of QmoABC
"The QmoABC complex has one membrane (QmoC) and two cytoplasmic subunits (QmoAB)"
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QmoB has an MvhD-like domain in addition to HdrA similarity; its function remains unknown
"the function of QmoB remains enigmatic"
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qmoABC is required for sulfate respiration in D. vulgaris Hildenborough
"In Desulfovibrio vulgaris Hildenborough a deletion mutant of the qmoABC genes could not grow with sulfate as electron acceptor"
Combining metabolic flux analysis with proteomics to shed light on the metabolic flexibility: the case of Desulfovibrio vulgaris Hildenborough
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Q72DT0 (DVU_0849) is QmoB, detected in the DvH proteome
"Quinone oxidoreductase, QmoABC complex, subunit B QmoB Q72DT0 DVU_0849"
Membrane protein complex of APS reductase and Qmo is present in Desulfovibrio vulgaris and Desulfovibrio alaskensis.
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A membrane complex containing four Qmo subunits, and a Qmo-Apr complex, detected in D. vulgaris
"a unique band was observed that contained all four Qmo subunits"