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The Transcription Factor ArcA Modulates Salmonella’s Metabolism in Response to Neutrophil Hypochlorous Acid-Mediated Stress

Salmonella Typhimurium, a bacterial pathogen with high metabolic plasticity, can adapt to different environmental conditions; these traits enhance its virulence by enabling bacterial survival. Neutrophils play important roles in the innate immune response, including the production of microbicidal re...

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Autores principales: Pardo-Esté, Coral, Castro-Severyn, Juan, Krüger, Gabriel I., Cabezas, Carolina Elizabeth, Briones, Alan Cristóbal, Aguirre, Camila, Morales, Naiyulin, Baquedano, Maria Soledad, Sulbaran, Yoelvis Noe, Hidalgo, Alejandro A., Meneses, Claudio, Poblete-Castro, Ignacio, Castro-Nallar, Eduardo, Valvano, Miguel A., Saavedra, Claudia P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6906141/
https://www.ncbi.nlm.nih.gov/pubmed/31866961
http://dx.doi.org/10.3389/fmicb.2019.02754
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author Pardo-Esté, Coral
Castro-Severyn, Juan
Krüger, Gabriel I.
Cabezas, Carolina Elizabeth
Briones, Alan Cristóbal
Aguirre, Camila
Morales, Naiyulin
Baquedano, Maria Soledad
Sulbaran, Yoelvis Noe
Hidalgo, Alejandro A.
Meneses, Claudio
Poblete-Castro, Ignacio
Castro-Nallar, Eduardo
Valvano, Miguel A.
Saavedra, Claudia P.
author_facet Pardo-Esté, Coral
Castro-Severyn, Juan
Krüger, Gabriel I.
Cabezas, Carolina Elizabeth
Briones, Alan Cristóbal
Aguirre, Camila
Morales, Naiyulin
Baquedano, Maria Soledad
Sulbaran, Yoelvis Noe
Hidalgo, Alejandro A.
Meneses, Claudio
Poblete-Castro, Ignacio
Castro-Nallar, Eduardo
Valvano, Miguel A.
Saavedra, Claudia P.
author_sort Pardo-Esté, Coral
collection PubMed
description Salmonella Typhimurium, a bacterial pathogen with high metabolic plasticity, can adapt to different environmental conditions; these traits enhance its virulence by enabling bacterial survival. Neutrophils play important roles in the innate immune response, including the production of microbicidal reactive oxygen species (ROS). In addition, the myeloperoxidase in neutrophils catalyzes the formation of hypochlorous acid (HOCl), a highly toxic molecule that reacts with essential biomolecules, causing oxidative damage including lipid peroxidation and protein carbonylation. The bacterial response regulator ArcA regulates adaptive responses to oxygen levels and influences the survival of Salmonella inside phagocytic cells. Here, we demonstrate by whole transcriptomic analyses that ArcA regulates genes related to various metabolic pathways, enabling bacterial survival during HOCl-stress in vitro. Also, inside neutrophils, ArcA controls the transcription of several metabolic pathways by downregulating the expression of genes related to fatty acid degradation, lysine degradation, and arginine, proline, pyruvate, and propanoate metabolism. ArcA also upregulates genes encoding components of the oxidative pathway. These results underscore the importance of ArcA in ATP generation inside the neutrophil phagosome and its participation in bacterial metabolic adaptations during HOCl stress.
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spelling pubmed-69061412019-12-20 The Transcription Factor ArcA Modulates Salmonella’s Metabolism in Response to Neutrophil Hypochlorous Acid-Mediated Stress Pardo-Esté, Coral Castro-Severyn, Juan Krüger, Gabriel I. Cabezas, Carolina Elizabeth Briones, Alan Cristóbal Aguirre, Camila Morales, Naiyulin Baquedano, Maria Soledad Sulbaran, Yoelvis Noe Hidalgo, Alejandro A. Meneses, Claudio Poblete-Castro, Ignacio Castro-Nallar, Eduardo Valvano, Miguel A. Saavedra, Claudia P. Front Microbiol Microbiology Salmonella Typhimurium, a bacterial pathogen with high metabolic plasticity, can adapt to different environmental conditions; these traits enhance its virulence by enabling bacterial survival. Neutrophils play important roles in the innate immune response, including the production of microbicidal reactive oxygen species (ROS). In addition, the myeloperoxidase in neutrophils catalyzes the formation of hypochlorous acid (HOCl), a highly toxic molecule that reacts with essential biomolecules, causing oxidative damage including lipid peroxidation and protein carbonylation. The bacterial response regulator ArcA regulates adaptive responses to oxygen levels and influences the survival of Salmonella inside phagocytic cells. Here, we demonstrate by whole transcriptomic analyses that ArcA regulates genes related to various metabolic pathways, enabling bacterial survival during HOCl-stress in vitro. Also, inside neutrophils, ArcA controls the transcription of several metabolic pathways by downregulating the expression of genes related to fatty acid degradation, lysine degradation, and arginine, proline, pyruvate, and propanoate metabolism. ArcA also upregulates genes encoding components of the oxidative pathway. These results underscore the importance of ArcA in ATP generation inside the neutrophil phagosome and its participation in bacterial metabolic adaptations during HOCl stress. Frontiers Media S.A. 2019-12-05 /pmc/articles/PMC6906141/ /pubmed/31866961 http://dx.doi.org/10.3389/fmicb.2019.02754 Text en Copyright © 2019 Pardo-Esté, Castro-Severyn, Krüger, Cabezas, Briones, Aguirre, Morales, Baquedano, Sulbaran, Hidalgo, Meneses, Poblete-Castro, Castro-Nallar, Valvano and Saavedra. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Pardo-Esté, Coral
Castro-Severyn, Juan
Krüger, Gabriel I.
Cabezas, Carolina Elizabeth
Briones, Alan Cristóbal
Aguirre, Camila
Morales, Naiyulin
Baquedano, Maria Soledad
Sulbaran, Yoelvis Noe
Hidalgo, Alejandro A.
Meneses, Claudio
Poblete-Castro, Ignacio
Castro-Nallar, Eduardo
Valvano, Miguel A.
Saavedra, Claudia P.
The Transcription Factor ArcA Modulates Salmonella’s Metabolism in Response to Neutrophil Hypochlorous Acid-Mediated Stress
title The Transcription Factor ArcA Modulates Salmonella’s Metabolism in Response to Neutrophil Hypochlorous Acid-Mediated Stress
title_full The Transcription Factor ArcA Modulates Salmonella’s Metabolism in Response to Neutrophil Hypochlorous Acid-Mediated Stress
title_fullStr The Transcription Factor ArcA Modulates Salmonella’s Metabolism in Response to Neutrophil Hypochlorous Acid-Mediated Stress
title_full_unstemmed The Transcription Factor ArcA Modulates Salmonella’s Metabolism in Response to Neutrophil Hypochlorous Acid-Mediated Stress
title_short The Transcription Factor ArcA Modulates Salmonella’s Metabolism in Response to Neutrophil Hypochlorous Acid-Mediated Stress
title_sort transcription factor arca modulates salmonella’s metabolism in response to neutrophil hypochlorous acid-mediated stress
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6906141/
https://www.ncbi.nlm.nih.gov/pubmed/31866961
http://dx.doi.org/10.3389/fmicb.2019.02754
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