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VEO-IBD NOX1 variant highlights a structural region essential for NOX/DUOX catalytic activity

Inflammatory bowel diseases (IBD) are chronic intestinal disorders that result from an inappropriate inflammatory response to the microbiota in genetically susceptible individuals, often triggered by environmental stressors. Part of this response is the persistent inflammation and tissue injury asso...

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Autores principales: Ward, Josie, Zhang, Suisheng, Sikora, Adam, Michalski, Radoslaw, Yin, Yuting, D'Alessio, Aurora, McLoughlin, Rachel M., Jaquet, Vincent, Fieschi, Franck, Knaus, Ulla G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10571032/
https://www.ncbi.nlm.nih.gov/pubmed/37820403
http://dx.doi.org/10.1016/j.redox.2023.102905
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author Ward, Josie
Zhang, Suisheng
Sikora, Adam
Michalski, Radoslaw
Yin, Yuting
D'Alessio, Aurora
McLoughlin, Rachel M.
Jaquet, Vincent
Fieschi, Franck
Knaus, Ulla G.
author_facet Ward, Josie
Zhang, Suisheng
Sikora, Adam
Michalski, Radoslaw
Yin, Yuting
D'Alessio, Aurora
McLoughlin, Rachel M.
Jaquet, Vincent
Fieschi, Franck
Knaus, Ulla G.
author_sort Ward, Josie
collection PubMed
description Inflammatory bowel diseases (IBD) are chronic intestinal disorders that result from an inappropriate inflammatory response to the microbiota in genetically susceptible individuals, often triggered by environmental stressors. Part of this response is the persistent inflammation and tissue injury associated with deficiency or excess of reactive oxygen species (ROS). The NADPH oxidase NOX1 is highly expressed in the intestinal epithelium, and inactivating NOX1 missense mutations are considered a risk factor for developing very early onset IBD. Albeit NOX1 has been linked to wound healing and host defence, many questions remain about its role in intestinal homeostasis and acute inflammatory conditions. Here, we used in vivo imaging in combination with inhibitor studies and germ-free conditions to conclusively identify NOX1 as essential superoxide generator for microbiota-dependent peroxynitrite production in homeostasis and during early endotoxemia. NOX1 loss-of-function variants cannot support peroxynitrite production, suggesting that the gut barrier is persistently weakened in these patients. One of the loss-of-function NOX1 variants, NOX1 p. Asn122His, features replacement of an asparagine residue located in a highly conserved HxxxHxxN motif. Modelling the NOX1-p22(phox) complex revealed near the distal heme an internal pocket restricted by His119 and Asn122 that is part of the oxygen reduction site. Functional studies in several human NADPH oxidases show that substitution of asparagine with amino acids with larger side chains is not tolerated, while smaller side chains can support catalytic activity. Thus, we identified a previously unrecognized structural feature required for the electron transfer mechanism in human NADPH oxidases.
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spelling pubmed-105710322023-10-14 VEO-IBD NOX1 variant highlights a structural region essential for NOX/DUOX catalytic activity Ward, Josie Zhang, Suisheng Sikora, Adam Michalski, Radoslaw Yin, Yuting D'Alessio, Aurora McLoughlin, Rachel M. Jaquet, Vincent Fieschi, Franck Knaus, Ulla G. Redox Biol Research Paper Inflammatory bowel diseases (IBD) are chronic intestinal disorders that result from an inappropriate inflammatory response to the microbiota in genetically susceptible individuals, often triggered by environmental stressors. Part of this response is the persistent inflammation and tissue injury associated with deficiency or excess of reactive oxygen species (ROS). The NADPH oxidase NOX1 is highly expressed in the intestinal epithelium, and inactivating NOX1 missense mutations are considered a risk factor for developing very early onset IBD. Albeit NOX1 has been linked to wound healing and host defence, many questions remain about its role in intestinal homeostasis and acute inflammatory conditions. Here, we used in vivo imaging in combination with inhibitor studies and germ-free conditions to conclusively identify NOX1 as essential superoxide generator for microbiota-dependent peroxynitrite production in homeostasis and during early endotoxemia. NOX1 loss-of-function variants cannot support peroxynitrite production, suggesting that the gut barrier is persistently weakened in these patients. One of the loss-of-function NOX1 variants, NOX1 p. Asn122His, features replacement of an asparagine residue located in a highly conserved HxxxHxxN motif. Modelling the NOX1-p22(phox) complex revealed near the distal heme an internal pocket restricted by His119 and Asn122 that is part of the oxygen reduction site. Functional studies in several human NADPH oxidases show that substitution of asparagine with amino acids with larger side chains is not tolerated, while smaller side chains can support catalytic activity. Thus, we identified a previously unrecognized structural feature required for the electron transfer mechanism in human NADPH oxidases. Elsevier 2023-09-27 /pmc/articles/PMC10571032/ /pubmed/37820403 http://dx.doi.org/10.1016/j.redox.2023.102905 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Ward, Josie
Zhang, Suisheng
Sikora, Adam
Michalski, Radoslaw
Yin, Yuting
D'Alessio, Aurora
McLoughlin, Rachel M.
Jaquet, Vincent
Fieschi, Franck
Knaus, Ulla G.
VEO-IBD NOX1 variant highlights a structural region essential for NOX/DUOX catalytic activity
title VEO-IBD NOX1 variant highlights a structural region essential for NOX/DUOX catalytic activity
title_full VEO-IBD NOX1 variant highlights a structural region essential for NOX/DUOX catalytic activity
title_fullStr VEO-IBD NOX1 variant highlights a structural region essential for NOX/DUOX catalytic activity
title_full_unstemmed VEO-IBD NOX1 variant highlights a structural region essential for NOX/DUOX catalytic activity
title_short VEO-IBD NOX1 variant highlights a structural region essential for NOX/DUOX catalytic activity
title_sort veo-ibd nox1 variant highlights a structural region essential for nox/duox catalytic activity
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10571032/
https://www.ncbi.nlm.nih.gov/pubmed/37820403
http://dx.doi.org/10.1016/j.redox.2023.102905
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