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Membrane protein complex of APS reductase and Qmo is present in Desulfovibrio vulgaris and Desulfovibrio alaskensis.
Krumholz, Lee R; Wang, Luyao; Beck, David A C; Wang, Tiansong; Hackett, Murray; Mooney, Brian; Juba, Thomas R; McInerney, Michael J; Meyer, Birte; Wall, Judy D; Stahl, David A.
Affiliation
  • Krumholz LR; Institute for Energy and the Environment, University of Oklahoma, Norman, OK 73019, USA.
  • Wang L; Department of Botany and Microbiology, University of Oklahoma, Norman, OK 73019, USA.
  • Beck DAC; Department of Botany and Microbiology, University of Oklahoma, Norman, OK 73019, USA.
  • Wang T; Department of Chemical Engineering, University of Washington, Seattle, WA 98195, USA.
  • Hackett M; eScience Institute, University of Washington, Seattle, WA 98195, USA.
  • Mooney B; Center for Microbial Proteomics, University of Washington, Seattle, WA 98195, USA.
  • Juba TR; Department of Microbiology, University of Washington, Seattle, WA 98195, USA.
  • McInerney MJ; Center for Microbial Proteomics, University of Washington, Seattle, WA 98195, USA.
  • Meyer B; Department of Chemical Engineering, University of Washington, Seattle, WA 98195, USA.
  • Wall JD; Department of Biochemistry, University of Missouri, USA.
  • Stahl DA; Department of Biochemistry, University of Missouri, USA.
Microbiology (Reading) ; 159(Pt 10): 2162-2168, 2013 Oct.
Article in En | MEDLINE | ID: mdl-23842468
ABSTRACT
Due to their adjacent location in the genomes of Desulfovibrio species and their potential for formation of an electron transfer pathway in sulfate-reducing prokaryotes, adenosyl phosphosulfate (APS) reductase (Apr) and quinone-interacting membrane-bound oxidoreductase (Qmo) have been thought to interact together during the reduction of APS. This interaction was recently verified in Desulfovibrio desulfuricans. Membrane proteins of Desulfovibrio vulgaris Hildenborough ΔqmoABCD JW9021, a deletion mutant, were compared to the parent strain using blue-native PAGE to determine whether Qmo formed a complex with Apr or other proteins. In the parent strain of D. vulgaris, a unique band was observed that contained all four Qmo subunits, and another band contained three subunits of Qmo, as well as subunits of AprA and AprB. Similar results were observed with bands excised from membrane preparations of Desulfovibrio alaskensis strain G20. These results are in support of the formation of a physical complex between the two proteins; a result that was further confirmed by the co-purification of QmoA/B and AprA/B from affinity-tagged D. vulgaris Hildenborough strains (AprA, QmoA and QmoB) regardless of which subunit had been tagged. This provides clear evidence for the presence of a Qmo-Apr complex that is at least partially stable in protein extracts of D. vulgaris and D. alaskensis.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: NAD(P)H Dehydrogenase (Quinone) / Desulfovibrio / Oxidoreductases Acting on Sulfur Group Donors / Protein Multimerization / Membrane Proteins Language: En Journal: Microbiology (Reading) Journal subject: MICROBIOLOGIA Year: 2013 Document type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: NAD(P)H Dehydrogenase (Quinone) / Desulfovibrio / Oxidoreductases Acting on Sulfur Group Donors / Protein Multimerization / Membrane Proteins Language: En Journal: Microbiology (Reading) Journal subject: MICROBIOLOGIA Year: 2013 Document type: Article Affiliation country: United States