Sulfite, produced for instance during amino acid metabolism, is a very reactive and toxic compound. Various detoxification mechanisms exist, but sulfite oxidoreductases (SORs) are one of the major actors in sulfite remediation in bacteria and animals. Here we describe the existence of an operon in the extreme thermophilic bacterium Thermus thermophilus HB8 encoding both a SOR and a diheme c-type cytochrome. The in vitro analysis clearly showed that the newly identified cytochrome c 550 acts as an acceptor of the electrons generated by the SOR enzyme during the oxidation of sulfite. The electrons are then rapidly shuttled via cytochrome c 552 to the terminal ba 3- and caa 3-type oxidases, thereby unveiling a novel electron transfer pathway, linking sulfite oxidation to oxygen reduction in T. thermophilus: sulfite -> SOR HB8 -> cytochrome c 550 -> cytochrome c 552 -> ba 3 oxidase/caa 3 oxidase -> O 2. The description of the complete pathway reveals that electrons generated during sulfite oxidation by the SOR are funneled into the respiratory chain, participating in the energy production of T. thermophilus. © 2011, American Society for Microbiology.

A sulfite respiration pathway from Thermus thermophilus and the key role of newly identified cytochrome c 550

Giuffrè A;
2011

Abstract

Sulfite, produced for instance during amino acid metabolism, is a very reactive and toxic compound. Various detoxification mechanisms exist, but sulfite oxidoreductases (SORs) are one of the major actors in sulfite remediation in bacteria and animals. Here we describe the existence of an operon in the extreme thermophilic bacterium Thermus thermophilus HB8 encoding both a SOR and a diheme c-type cytochrome. The in vitro analysis clearly showed that the newly identified cytochrome c 550 acts as an acceptor of the electrons generated by the SOR enzyme during the oxidation of sulfite. The electrons are then rapidly shuttled via cytochrome c 552 to the terminal ba 3- and caa 3-type oxidases, thereby unveiling a novel electron transfer pathway, linking sulfite oxidation to oxygen reduction in T. thermophilus: sulfite -> SOR HB8 -> cytochrome c 550 -> cytochrome c 552 -> ba 3 oxidase/caa 3 oxidase -> O 2. The description of the complete pathway reveals that electrons generated during sulfite oxidation by the SOR are funneled into the respiratory chain, participating in the energy production of T. thermophilus. © 2011, American Society for Microbiology.
2011
Istituto di Biologia e Patologia Molecolari - IBPM
ba3 oxidase
bacterial enzyme
caa3 oxidase
cytochrome c
cytochrome c550
cytochrome c552
oxidoreductase
sulfite
sulfite oxidoreductase
unclassified drug
article
electron transport
energy yield
in vitro study
nonhuman
open angle glaucoma
oxidation
oxygen consumption
priority journal
protein analysis
protein localization
respiratory chain
Thermus thermophilus
Bacterial Proteins
Cytochrome c Group
Electron Transport
Metabolic Networks and Pathways
Oxidation-Reduction
Oxidoreductases Acting on Sulfur Group Donors
Sulfites
Thermus thermophilus
Animalia
Bacteria (microorganisms)
Thermus thermophilus
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/192409
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