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Regulation of Rac1 and Reactive Oxygen Species Production in Response to Infection of Gastrointestinal Epithelia

Generation of reactive oxygen species (ROS) during infection is an immediate host defense leading to microbial killing. APE1 is a multifunctional protein induced by ROS and after induction, protects against ROS-mediated DNA damage. Rac1 and NAPDH oxidase (Nox1) are important contributors of ROS gene...

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Autores principales: den Hartog, Gerco, Chattopadhyay, Ranajoy, Ablack, Amber, Hall, Emily H., Butcher, Lindsay D., Bhattacharyya, Asima, Eckmann, Lars, Harris, Paul R., Das, Soumita, Ernst, Peter B., Crowe, Sheila E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4711900/
https://www.ncbi.nlm.nih.gov/pubmed/26761793
http://dx.doi.org/10.1371/journal.ppat.1005382
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author den Hartog, Gerco
Chattopadhyay, Ranajoy
Ablack, Amber
Hall, Emily H.
Butcher, Lindsay D.
Bhattacharyya, Asima
Eckmann, Lars
Harris, Paul R.
Das, Soumita
Ernst, Peter B.
Crowe, Sheila E.
author_facet den Hartog, Gerco
Chattopadhyay, Ranajoy
Ablack, Amber
Hall, Emily H.
Butcher, Lindsay D.
Bhattacharyya, Asima
Eckmann, Lars
Harris, Paul R.
Das, Soumita
Ernst, Peter B.
Crowe, Sheila E.
author_sort den Hartog, Gerco
collection PubMed
description Generation of reactive oxygen species (ROS) during infection is an immediate host defense leading to microbial killing. APE1 is a multifunctional protein induced by ROS and after induction, protects against ROS-mediated DNA damage. Rac1 and NAPDH oxidase (Nox1) are important contributors of ROS generation following infection and associated with gastrointestinal epithelial injury. The purpose of this study was to determine if APE1 regulates the function of Rac1 and Nox1 during oxidative stress. Gastric or colonic epithelial cells (wild-type or with suppressed APE1) were infected with Helicobacter pylori or Salmonella enterica and assessed for Rac1 and NADPH oxidase-dependent superoxide production. Rac1 and APE1 interactions were measured by co-immunoprecipitation, confocal microscopy and proximity ligation assay (PLA) in cell lines or in biopsy specimens. Significantly greater levels of ROS were produced by APE1-deficient human gastric and colonic cell lines and primary gastric epithelial cells compared to control cells after infection with either gastric or enteric pathogens. H. pylori activated Rac1 and Nox1 in all cell types, but activation was higher in APE1 suppressed cells. APE1 overexpression decreased H. pylori-induced ROS generation, Rac1 activation, and Nox1 expression. We determined that the effects of APE1 were mediated through its N-terminal lysine residues interacting with Rac1, leading to inhibition of Nox1 expression and ROS generation. APE1 is a negative regulator of oxidative stress in the gastrointestinal epithelium during bacterial infection by modulating Rac1 and Nox1. Our results implicate APE1 in novel molecular interactions that regulate early stress responses elicited by microbial infections.
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spelling pubmed-47119002016-01-26 Regulation of Rac1 and Reactive Oxygen Species Production in Response to Infection of Gastrointestinal Epithelia den Hartog, Gerco Chattopadhyay, Ranajoy Ablack, Amber Hall, Emily H. Butcher, Lindsay D. Bhattacharyya, Asima Eckmann, Lars Harris, Paul R. Das, Soumita Ernst, Peter B. Crowe, Sheila E. PLoS Pathog Research Article Generation of reactive oxygen species (ROS) during infection is an immediate host defense leading to microbial killing. APE1 is a multifunctional protein induced by ROS and after induction, protects against ROS-mediated DNA damage. Rac1 and NAPDH oxidase (Nox1) are important contributors of ROS generation following infection and associated with gastrointestinal epithelial injury. The purpose of this study was to determine if APE1 regulates the function of Rac1 and Nox1 during oxidative stress. Gastric or colonic epithelial cells (wild-type or with suppressed APE1) were infected with Helicobacter pylori or Salmonella enterica and assessed for Rac1 and NADPH oxidase-dependent superoxide production. Rac1 and APE1 interactions were measured by co-immunoprecipitation, confocal microscopy and proximity ligation assay (PLA) in cell lines or in biopsy specimens. Significantly greater levels of ROS were produced by APE1-deficient human gastric and colonic cell lines and primary gastric epithelial cells compared to control cells after infection with either gastric or enteric pathogens. H. pylori activated Rac1 and Nox1 in all cell types, but activation was higher in APE1 suppressed cells. APE1 overexpression decreased H. pylori-induced ROS generation, Rac1 activation, and Nox1 expression. We determined that the effects of APE1 were mediated through its N-terminal lysine residues interacting with Rac1, leading to inhibition of Nox1 expression and ROS generation. APE1 is a negative regulator of oxidative stress in the gastrointestinal epithelium during bacterial infection by modulating Rac1 and Nox1. Our results implicate APE1 in novel molecular interactions that regulate early stress responses elicited by microbial infections. Public Library of Science 2016-01-13 /pmc/articles/PMC4711900/ /pubmed/26761793 http://dx.doi.org/10.1371/journal.ppat.1005382 Text en © 2016 den Hartog 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
den Hartog, Gerco
Chattopadhyay, Ranajoy
Ablack, Amber
Hall, Emily H.
Butcher, Lindsay D.
Bhattacharyya, Asima
Eckmann, Lars
Harris, Paul R.
Das, Soumita
Ernst, Peter B.
Crowe, Sheila E.
Regulation of Rac1 and Reactive Oxygen Species Production in Response to Infection of Gastrointestinal Epithelia
title Regulation of Rac1 and Reactive Oxygen Species Production in Response to Infection of Gastrointestinal Epithelia
title_full Regulation of Rac1 and Reactive Oxygen Species Production in Response to Infection of Gastrointestinal Epithelia
title_fullStr Regulation of Rac1 and Reactive Oxygen Species Production in Response to Infection of Gastrointestinal Epithelia
title_full_unstemmed Regulation of Rac1 and Reactive Oxygen Species Production in Response to Infection of Gastrointestinal Epithelia
title_short Regulation of Rac1 and Reactive Oxygen Species Production in Response to Infection of Gastrointestinal Epithelia
title_sort regulation of rac1 and reactive oxygen species production in response to infection of gastrointestinal epithelia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4711900/
https://www.ncbi.nlm.nih.gov/pubmed/26761793
http://dx.doi.org/10.1371/journal.ppat.1005382
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