Literature DB >> 25761684

FoF1-ATP synthase of Streptomyces fradiae ATCC 19609: structural, biochemical, and functional characterization.

M G Alekseeva1, T A Mironcheva, D A Mavletova, S M Elizarov, N V Zakharevich, V N Danilenko.   

Abstract

The patterns of protein phosphorylation in inverted membrane vesicles from the strain Streptomyces fradiae ATCC 19609 were investigated to elucidate the mechanisms of regulation of bacterial membrane bound FoF1-ATP synthase. We found for the first time by two-dimensional gel electrophoresis and mass spectrometry that the β- and b-subunits of the FoF1-ATP synthase complex undergo phosphorylation; 20 proteins with known functions were identified. All eight subunits of FoF1-ATP synthase, i.e. α, β, γ, δ, ε, a, b, and c, were cloned into Escherichia coli and expressed as recombinant proteins. Using a crude preparation of serine/threonine protein kinases, we demonstrated the phosphorylation of recombinant γ-, β-, α- and ε-subunits. The β-subunit was phosphorylated both as a recombinant protein and in vesicles. Differential phosphorylation of membrane-bound and recombinant proteins can be attributed to different pools of protein kinases in each preparation; in addition, certain steps of FoF1-ATP synthase assembly and function might be accompanied by individual phosphorylation patterns. The structure of the operon containing all subunits and regulatory protein I was identified. The phylogenetic similarity of FoF1-ATP synthase from Streptomyces fradiae ATCC 19609 with the respective proteins in saprophytic and pathogenic (including Mycobacterium tuberculosis) bacteria was investigated. Thus, bacterial serine/threonine protein kinases are important for the regulation of FoF1-ATP synthase. From the practical standpoint, our results provide a basis for designing targeted antibacterial drugs.

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Year:  2015        PMID: 25761684     DOI: 10.1134/S0006297915030050

Source DB:  PubMed          Journal:  Biochemistry (Mosc)        ISSN: 0006-2979            Impact factor:   2.487


  3 in total

1.  Verification of oligomycin A structure: synthesis and biological evaluation of 33-dehydrooligomycin A.

Authors:  Lyudmila N Lysenkova; Oleg Y Saveljev; Natalya E Grammatikova; Vladimir B Tsvetkov; Olga B Bekker; Valery N Danilenko; Lyubov G Dezhenkova; Eugene E Bykov; Olga A Omelchuk; Alexander M Korolev; Andrey E Shchekotikhin
Journal:  J Antibiot (Tokyo)       Date:  2017-04-19       Impact factor: 2.649

2.  Draft Genome Sequence of Streptomyces fradiae ATCC 19609, a Strain Highly Sensitive to Antibiotics.

Authors:  Olga B Bekker; Ksenia M Klimina; Aleksey A Vatlin; Natalia V Zakharevich; Artem S Kasianov; Valery N Danilenko
Journal:  Genome Announc       Date:  2014-12-04

3.  Draft Genome Sequence of Streptomyces fradiae olg1-1, a Strain Resistant to Nitrone-Oligomycin.

Authors:  Aleksey A Vatlin; Olga B Bekker; Ludmila N Lysenkova; Valery N Danilenko
Journal:  Genome Announc       Date:  2015-10-22
  3 in total

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