Significance: Cytochrome bd is a ubiquinol:oxygen oxidoreductase of many prokaryotic respiratory chains with a unique structure and functional characteristics. Its primary role is to couple the reduction of molecular oxygen, even at submicromolar concentrations, to water with the generation of a proton motive force used for adenosine triphosphate production. Cytochrome bd is found in many bacterial pathogens and, surprisingly, in bacteria formally denoted as anaerobes. It endows bacteria with resistance to various stressors and is a potential drug target. Recent Advances: We summarize recent advances in the biochemistry, structure, and physiological functions of cytochrome bd in the light of exciting new three-dimensional structures of the oxidase. The newly discovered roles of cytochrome bd in contributing to bacterial protection against hydrogen peroxide, nitric oxide, peroxynitrite, and hydrogen sulfide are assessed. Critical Issues: Fundamental questions remain regarding the precise delineation of electron flow within this multihaem oxidase and how the extraordinarily high affinity for oxygen is accomplished, while endowing bacteria with resistance to other small ligands. Future Directions: It is clear that cytochrome bd is unique in its ability to confer resistance to toxic small molecules, a property that is significant for understanding the propensity of pathogens to possess this oxidase. Since cytochrome bd is a uniquely bacterial enzyme, future research should focus on harnessing fundamental knowledge of its structure and function to the development of novel and effective antibacterial agents.

Bacterial oxidases of the cytochrome bd family: redox enzymes of unique structure, function, and utility as drug targets / Borisov, V. B.; Siletsky, S. A.; Paiardini, A.; Hoogewijs, D.; Forte, E.; Giuffre, A.; Poole, R. K.. - In: ANTIOXIDANTS & REDOX SIGNALING. - ISSN 1523-0864. - 34:16(2021), pp. 1280-1318. [10.1089/ars.2020.8039]

Bacterial oxidases of the cytochrome bd family: redox enzymes of unique structure, function, and utility as drug targets

Paiardini A.;Forte E.;
2021

Abstract

Significance: Cytochrome bd is a ubiquinol:oxygen oxidoreductase of many prokaryotic respiratory chains with a unique structure and functional characteristics. Its primary role is to couple the reduction of molecular oxygen, even at submicromolar concentrations, to water with the generation of a proton motive force used for adenosine triphosphate production. Cytochrome bd is found in many bacterial pathogens and, surprisingly, in bacteria formally denoted as anaerobes. It endows bacteria with resistance to various stressors and is a potential drug target. Recent Advances: We summarize recent advances in the biochemistry, structure, and physiological functions of cytochrome bd in the light of exciting new three-dimensional structures of the oxidase. The newly discovered roles of cytochrome bd in contributing to bacterial protection against hydrogen peroxide, nitric oxide, peroxynitrite, and hydrogen sulfide are assessed. Critical Issues: Fundamental questions remain regarding the precise delineation of electron flow within this multihaem oxidase and how the extraordinarily high affinity for oxygen is accomplished, while endowing bacteria with resistance to other small ligands. Future Directions: It is clear that cytochrome bd is unique in its ability to confer resistance to toxic small molecules, a property that is significant for understanding the propensity of pathogens to possess this oxidase. Since cytochrome bd is a uniquely bacterial enzyme, future research should focus on harnessing fundamental knowledge of its structure and function to the development of novel and effective antibacterial agents.
2021
bacterial cytochromes; cytochrome bd; respiratory chain; terminal oxidase
01 Pubblicazione su rivista::01g Articolo di rassegna (Review)
Bacterial oxidases of the cytochrome bd family: redox enzymes of unique structure, function, and utility as drug targets / Borisov, V. B.; Siletsky, S. A.; Paiardini, A.; Hoogewijs, D.; Forte, E.; Giuffre, A.; Poole, R. K.. - In: ANTIOXIDANTS & REDOX SIGNALING. - ISSN 1523-0864. - 34:16(2021), pp. 1280-1318. [10.1089/ars.2020.8039]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1548792
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