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The Escherichia coli BtuE Protein Functions as a Resistance Determinant against Reactive Oxygen Species

This work shows that the recently described Escherichia coli BtuE peroxidase protects the bacterium against oxidative stress that is generated by tellurite and by other reactive oxygen species elicitors (ROS). Cells lacking btuE (ΔbtuE) displayed higher sensitivity to K(2)TeO(3) and other oxidative...

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Autores principales: Arenas, Felipe A., Covarrubias, Paulo C., Sandoval, Juan M., Pérez-Donoso, José M., Imlay, James A., Vásquez, Claudio C.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3018469/
https://www.ncbi.nlm.nih.gov/pubmed/21264338
http://dx.doi.org/10.1371/journal.pone.0015979
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author Arenas, Felipe A.
Covarrubias, Paulo C.
Sandoval, Juan M.
Pérez-Donoso, José M.
Imlay, James A.
Vásquez, Claudio C.
author_facet Arenas, Felipe A.
Covarrubias, Paulo C.
Sandoval, Juan M.
Pérez-Donoso, José M.
Imlay, James A.
Vásquez, Claudio C.
author_sort Arenas, Felipe A.
collection PubMed
description This work shows that the recently described Escherichia coli BtuE peroxidase protects the bacterium against oxidative stress that is generated by tellurite and by other reactive oxygen species elicitors (ROS). Cells lacking btuE (ΔbtuE) displayed higher sensitivity to K(2)TeO(3) and other oxidative stress-generating agents than did the isogenic, parental, wild-type strain. They also exhibited increased levels of cytoplasmic reactive oxygen species, oxidized proteins, thiobarbituric acid reactive substances, and lipoperoxides. E. coli ΔbtuE that was exposed to tellurite or H(2)O(2) did not show growth changes relative to wild type cells either in aerobic or anaerobic conditions. Nevertheless, the elimination of btuE from cells deficient in catalases/peroxidases (Hpx(−)) resulted in impaired growth and resistance to these toxicants only in aerobic conditions, suggesting that BtuE is involved in the defense against oxidative damage. Genetic complementation of E. coli ΔbtuE restored toxicant resistance to levels exhibited by the wild type strain. As expected, btuE overexpression resulted in decreased amounts of oxidative damage products as well as in lower transcriptional levels of the oxidative stress-induced genes ibpA, soxS and katG.
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spelling pubmed-30184692011-01-24 The Escherichia coli BtuE Protein Functions as a Resistance Determinant against Reactive Oxygen Species Arenas, Felipe A. Covarrubias, Paulo C. Sandoval, Juan M. Pérez-Donoso, José M. Imlay, James A. Vásquez, Claudio C. PLoS One Research Article This work shows that the recently described Escherichia coli BtuE peroxidase protects the bacterium against oxidative stress that is generated by tellurite and by other reactive oxygen species elicitors (ROS). Cells lacking btuE (ΔbtuE) displayed higher sensitivity to K(2)TeO(3) and other oxidative stress-generating agents than did the isogenic, parental, wild-type strain. They also exhibited increased levels of cytoplasmic reactive oxygen species, oxidized proteins, thiobarbituric acid reactive substances, and lipoperoxides. E. coli ΔbtuE that was exposed to tellurite or H(2)O(2) did not show growth changes relative to wild type cells either in aerobic or anaerobic conditions. Nevertheless, the elimination of btuE from cells deficient in catalases/peroxidases (Hpx(−)) resulted in impaired growth and resistance to these toxicants only in aerobic conditions, suggesting that BtuE is involved in the defense against oxidative damage. Genetic complementation of E. coli ΔbtuE restored toxicant resistance to levels exhibited by the wild type strain. As expected, btuE overexpression resulted in decreased amounts of oxidative damage products as well as in lower transcriptional levels of the oxidative stress-induced genes ibpA, soxS and katG. Public Library of Science 2011-01-10 /pmc/articles/PMC3018469/ /pubmed/21264338 http://dx.doi.org/10.1371/journal.pone.0015979 Text en Arenas et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Arenas, Felipe A.
Covarrubias, Paulo C.
Sandoval, Juan M.
Pérez-Donoso, José M.
Imlay, James A.
Vásquez, Claudio C.
The Escherichia coli BtuE Protein Functions as a Resistance Determinant against Reactive Oxygen Species
title The Escherichia coli BtuE Protein Functions as a Resistance Determinant against Reactive Oxygen Species
title_full The Escherichia coli BtuE Protein Functions as a Resistance Determinant against Reactive Oxygen Species
title_fullStr The Escherichia coli BtuE Protein Functions as a Resistance Determinant against Reactive Oxygen Species
title_full_unstemmed The Escherichia coli BtuE Protein Functions as a Resistance Determinant against Reactive Oxygen Species
title_short The Escherichia coli BtuE Protein Functions as a Resistance Determinant against Reactive Oxygen Species
title_sort escherichia coli btue protein functions as a resistance determinant against reactive oxygen species
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3018469/
https://www.ncbi.nlm.nih.gov/pubmed/21264338
http://dx.doi.org/10.1371/journal.pone.0015979
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