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Bacterial SBP56 identified as a Cu-dependent methanethiol oxidase widely distributed in the biosphere.
Eyice, Özge; Myronova, Nataliia; Pol, Arjan; Carrión, Ornella; Todd, Jonathan D; Smith, Tom J; Gurman, Stephen J; Cuthbertson, Adam; Mazard, Sophie; Mennink-Kersten, Monique Ash; Bugg, Timothy Dh; Andersson, Karl Kristoffer; Johnston, Andrew Wb; Op den Camp, Huub Jm; Schäfer, Hendrik.
Afiliação
  • Eyice Ö; School of Life Sciences, University of Warwick, Coventry, UK.
  • Myronova N; School of Biological and Chemical Sciences, Queen Mary University of London, London, UK.
  • Pol A; School of Life Sciences, University of Warwick, Coventry, UK.
  • Carrión O; Department of Microbiology, Institute for Water and Wetland Research, Faculty of Science, Radboud University, Nijmegen, The Netherlands.
  • Todd JD; School of Biological Sciences, University of East Anglia, Norwich, UK.
  • Smith TJ; School of Biological Sciences, University of East Anglia, Norwich, UK.
  • Gurman SJ; Department of Biosciences and Chemistry, Sheffield Hallam University, Sheffield, UK.
  • Cuthbertson A; Department of Physics and Astronomy, University of Leicester, Leicester, UK.
  • Mazard S; School of Life Sciences, University of Warwick, Coventry, UK.
  • Mennink-Kersten MA; School of Life Sciences, University of Warwick, Coventry, UK.
  • Bugg TD; Department of Microbiology, Institute for Water and Wetland Research, Faculty of Science, Radboud University, Nijmegen, The Netherlands.
  • Andersson KK; Department of Chemistry, University of Warwick, Coventry, UK.
  • Johnston AW; Department of Bioscience, University of Oslo, Oslo, Norway.
  • Op den Camp HJ; School of Biological Sciences, University of East Anglia, Norwich, UK.
  • Schäfer H; Department of Microbiology, Institute for Water and Wetland Research, Faculty of Science, Radboud University, Nijmegen, The Netherlands.
ISME J ; 12(1): 145-160, 2018 01.
Article em En | MEDLINE | ID: mdl-29064480
ABSTRACT
Oxidation of methanethiol (MT) is a significant step in the sulfur cycle. MT is an intermediate of metabolism of globally significant organosulfur compounds including dimethylsulfoniopropionate (DMSP) and dimethylsulfide (DMS), which have key roles in marine carbon and sulfur cycling. In aerobic bacteria, MT is degraded by a MT oxidase (MTO). The enzymatic and genetic basis of MT oxidation have remained poorly characterized. Here, we identify for the first time the MTO enzyme and its encoding gene (mtoX) in the DMS-degrading bacterium Hyphomicrobium sp. VS. We show that MTO is a homotetrameric metalloenzyme that requires Cu for enzyme activity. MTO is predicted to be a soluble periplasmic enzyme and a member of a distinct clade of the Selenium-binding protein (SBP56) family for which no function has been reported. Genes orthologous to mtoX exist in many bacteria able to degrade DMS, other one-carbon compounds or DMSP, notably in the marine model organism Ruegeria pomeroyi DSS-3, a member of the Rhodobacteraceae family that is abundant in marine environments. Marker exchange mutagenesis of mtoX disrupted the ability of R. pomeroyi to metabolize MT confirming its function in this DMSP-degrading bacterium. In R. pomeroyi, transcription of mtoX was enhanced by DMSP, methylmercaptopropionate and MT. Rates of MT degradation increased after pre-incubation of the wild-type strain with MT. The detection of mtoX orthologs in diverse bacteria, environmental samples and its abundance in a range of metagenomic data sets point to this enzyme being widely distributed in the environment and having a key role in global sulfur cycling.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Oxirredutases / Compostos de Sulfidrila / Proteínas de Bactérias / Hyphomicrobium / Rhodobacteraceae / Proteínas de Ligação a Selênio Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Oxirredutases / Compostos de Sulfidrila / Proteínas de Bactérias / Hyphomicrobium / Rhodobacteraceae / Proteínas de Ligação a Selênio Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2018 Tipo de documento: Article