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The Terminal Oxidase Cytochrome bd Promotes Sulfide-resistant Bacterial Respiration and Growth.
Forte, Elena; Borisov, Vitaliy B; Falabella, Micol; Colaço, Henrique G; Tinajero-Trejo, Mariana; Poole, Robert K; Vicente, João B; Sarti, Paolo; Giuffrè, Alessandro.
Afiliação
  • Forte E; Department of Biochemical Sciences and Istituto Pasteur- Fondazione Cenci Bolognetti, Sapienza University of Rome, Italy.
  • Borisov VB; Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Leninskie Gory, Moscow 119991, Russian Federation.
  • Falabella M; Department of Biochemical Sciences and Istituto Pasteur- Fondazione Cenci Bolognetti, Sapienza University of Rome, Italy.
  • Colaço HG; Metabolism &Genetics Group, Research Institute for Medicines (iMed.ULisboa), Faculty of Pharmacy, University of Lisbon, Portugal.
  • Tinajero-Trejo M; Cell Biology Program, The Hospital for Sick Children, Toronto, ON, Canada.
  • Poole RK; Department of Molecular Biology and Biotechnology, The University of Sheffield, Sheffield S10 2TN, United Kingdom.
  • Vicente JB; Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Oeiras, Portugal.
  • Sarti P; Department of Biochemical Sciences and Istituto Pasteur- Fondazione Cenci Bolognetti, Sapienza University of Rome, Italy.
  • Giuffrè A; CNR Institute of Molecular Biology and Pathology, Rome, Italy.
Sci Rep ; 6: 23788, 2016 Mar 31.
Article em En | MEDLINE | ID: mdl-27030302
ABSTRACT
Hydrogen sulfide (H2S) impairs mitochondrial respiration by potently inhibiting the heme-copper cytochrome c oxidase. Since many prokaryotes, including Escherichia (E.) coli, generate H2S and encounter high H2S levels particularly in the human gut, herein we tested whether bacteria can sustain sulfide-resistant O2-dependent respiration. E. coli has three respiratory oxidases, the cyanide-sensitive heme-copper bo3 enzyme and two bd oxidases much less sensitive to cyanide. Working on the isolated enzymes, we found that, whereas the bo3 oxidase is inhibited by sulfide with half-maximal inhibitory concentration IC50 = 1.1 ± 0.1 µM, under identical experimental conditions both bd oxidases are insensitive to sulfide up to 58 µM. In E. coli respiratory mutants, both O2-consumption and aerobic growth proved to be severely impaired by sulfide when respiration was sustained by the bo3 oxidase alone, but unaffected by ≤200 µM sulfide when either bd enzyme acted as the only terminal oxidase. Accordingly, wild-type E. coli showed sulfide-insensitive respiration and growth under conditions favouring the expression of bd oxidases. In all tested conditions, cyanide mimicked the functional effect of sulfide on bacterial respiration. We conclude that bd oxidases promote sulfide-resistant O2-consumption and growth in E. coli and possibly other bacteria. The impact of this discovery is discussed.
Assuntos

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Oxirredutases / Regulação Bacteriana da Expressão Gênica / Citocromos / Proteínas de Escherichia coli / Complexo de Proteínas da Cadeia de Transporte de Elétrons / Escherichia coli / Sulfeto de Hidrogênio Idioma: En Revista: Sci Rep Ano de publicação: 2016 Tipo de documento: Article País de afiliação: Itália

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Oxirredutases / Regulação Bacteriana da Expressão Gênica / Citocromos / Proteínas de Escherichia coli / Complexo de Proteínas da Cadeia de Transporte de Elétrons / Escherichia coli / Sulfeto de Hidrogênio Idioma: En Revista: Sci Rep Ano de publicação: 2016 Tipo de documento: Article País de afiliação: Itália