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A Th17 cell-intrinsic glutathione/mitochondrial-IL-22 axis protects against intestinal inflammation

Although the intestinal tract is a major site of reactive oxygen species (ROS) generation, the mechanisms by which antioxidant defense in gut T cells contribute to intestinal homeostasis are currently unknown. Here we show, using T cell-specific ablation of the catalytic subunit of glutamate cystein...

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Autores principales: Bonetti, Lynn, Horkova, Veronika, Longworth, Joseph, Guerra, Luana, Kurniawan, Henry, Franchina, Davide G., Soriano-Baguet, Leticia, Grusdat, Melanie, Spath, Sabine, Koncina, Eric, Ewen, Anouk, Binsfeld, Carole, Verschueren, Charlène, Gérardy, Jean-Jacques, Kobayashi, Takumi, Dostert, Catherine, Farinelle, Sophie, Härm, Janika, Chen, Ying, Harris, Isaac S., Lang, Philipp A., Vasiliou, Vasilis, Waisman, Ari, Letellier, Elisabeth, Becher, Burkhard, Mittelbronn, Michel, Brenner, Dirk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10363291/
https://www.ncbi.nlm.nih.gov/pubmed/37489135
http://dx.doi.org/10.1101/2023.07.06.547932
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author Bonetti, Lynn
Horkova, Veronika
Longworth, Joseph
Guerra, Luana
Kurniawan, Henry
Franchina, Davide G.
Soriano-Baguet, Leticia
Grusdat, Melanie
Spath, Sabine
Koncina, Eric
Ewen, Anouk
Binsfeld, Carole
Verschueren, Charlène
Gérardy, Jean-Jacques
Kobayashi, Takumi
Dostert, Catherine
Farinelle, Sophie
Härm, Janika
Chen, Ying
Harris, Isaac S.
Lang, Philipp A.
Vasiliou, Vasilis
Waisman, Ari
Letellier, Elisabeth
Becher, Burkhard
Mittelbronn, Michel
Brenner, Dirk
author_facet Bonetti, Lynn
Horkova, Veronika
Longworth, Joseph
Guerra, Luana
Kurniawan, Henry
Franchina, Davide G.
Soriano-Baguet, Leticia
Grusdat, Melanie
Spath, Sabine
Koncina, Eric
Ewen, Anouk
Binsfeld, Carole
Verschueren, Charlène
Gérardy, Jean-Jacques
Kobayashi, Takumi
Dostert, Catherine
Farinelle, Sophie
Härm, Janika
Chen, Ying
Harris, Isaac S.
Lang, Philipp A.
Vasiliou, Vasilis
Waisman, Ari
Letellier, Elisabeth
Becher, Burkhard
Mittelbronn, Michel
Brenner, Dirk
author_sort Bonetti, Lynn
collection PubMed
description Although the intestinal tract is a major site of reactive oxygen species (ROS) generation, the mechanisms by which antioxidant defense in gut T cells contribute to intestinal homeostasis are currently unknown. Here we show, using T cell-specific ablation of the catalytic subunit of glutamate cysteine ligase (Gclc), that the ensuing loss of glutathione (GSH) impairs the production of gut-protective IL-22 by Th17 cells within the lamina propria. Although Gclc ablation does not affect T cell cytokine secretion in the gut of mice at steady-state, infection with C. rodentium increases ROS, inhibits mitochondrial gene expression and mitochondrial function in Gclc-deficient Th17 cells. These mitochondrial deficits affect the PI3K/AKT/mTOR pathway, leading to reduced phosphorylation of the translation repressor 4E-BP1. As a consequence, the initiation of translation is restricted, resulting in decreased protein synthesis of IL-22. Loss of IL-22 results in poor bacterial clearance, enhanced intestinal damage, and high mortality. ROS-scavenging, reconstitution of IL-22 expression or IL-22 supplementation in vivo prevent the appearance of these pathologies. Our results demonstrate the existence of a previously unappreciated role for Th17 cell-intrinsic GSH coupling to promote mitochondrial function, IL-22 translation and signaling. These data reveal an axis that is essential for maintaining the integrity of the intestinal barrier and protecting it from damage caused by gastrointestinal infection.
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spelling pubmed-103632912023-07-24 A Th17 cell-intrinsic glutathione/mitochondrial-IL-22 axis protects against intestinal inflammation Bonetti, Lynn Horkova, Veronika Longworth, Joseph Guerra, Luana Kurniawan, Henry Franchina, Davide G. Soriano-Baguet, Leticia Grusdat, Melanie Spath, Sabine Koncina, Eric Ewen, Anouk Binsfeld, Carole Verschueren, Charlène Gérardy, Jean-Jacques Kobayashi, Takumi Dostert, Catherine Farinelle, Sophie Härm, Janika Chen, Ying Harris, Isaac S. Lang, Philipp A. Vasiliou, Vasilis Waisman, Ari Letellier, Elisabeth Becher, Burkhard Mittelbronn, Michel Brenner, Dirk bioRxiv Article Although the intestinal tract is a major site of reactive oxygen species (ROS) generation, the mechanisms by which antioxidant defense in gut T cells contribute to intestinal homeostasis are currently unknown. Here we show, using T cell-specific ablation of the catalytic subunit of glutamate cysteine ligase (Gclc), that the ensuing loss of glutathione (GSH) impairs the production of gut-protective IL-22 by Th17 cells within the lamina propria. Although Gclc ablation does not affect T cell cytokine secretion in the gut of mice at steady-state, infection with C. rodentium increases ROS, inhibits mitochondrial gene expression and mitochondrial function in Gclc-deficient Th17 cells. These mitochondrial deficits affect the PI3K/AKT/mTOR pathway, leading to reduced phosphorylation of the translation repressor 4E-BP1. As a consequence, the initiation of translation is restricted, resulting in decreased protein synthesis of IL-22. Loss of IL-22 results in poor bacterial clearance, enhanced intestinal damage, and high mortality. ROS-scavenging, reconstitution of IL-22 expression or IL-22 supplementation in vivo prevent the appearance of these pathologies. Our results demonstrate the existence of a previously unappreciated role for Th17 cell-intrinsic GSH coupling to promote mitochondrial function, IL-22 translation and signaling. These data reveal an axis that is essential for maintaining the integrity of the intestinal barrier and protecting it from damage caused by gastrointestinal infection. Cold Spring Harbor Laboratory 2023-07-07 /pmc/articles/PMC10363291/ /pubmed/37489135 http://dx.doi.org/10.1101/2023.07.06.547932 Text en https://creativecommons.org/licenses/by-nd/4.0/This work is licensed under a Creative Commons Attribution-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, and only so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Bonetti, Lynn
Horkova, Veronika
Longworth, Joseph
Guerra, Luana
Kurniawan, Henry
Franchina, Davide G.
Soriano-Baguet, Leticia
Grusdat, Melanie
Spath, Sabine
Koncina, Eric
Ewen, Anouk
Binsfeld, Carole
Verschueren, Charlène
Gérardy, Jean-Jacques
Kobayashi, Takumi
Dostert, Catherine
Farinelle, Sophie
Härm, Janika
Chen, Ying
Harris, Isaac S.
Lang, Philipp A.
Vasiliou, Vasilis
Waisman, Ari
Letellier, Elisabeth
Becher, Burkhard
Mittelbronn, Michel
Brenner, Dirk
A Th17 cell-intrinsic glutathione/mitochondrial-IL-22 axis protects against intestinal inflammation
title A Th17 cell-intrinsic glutathione/mitochondrial-IL-22 axis protects against intestinal inflammation
title_full A Th17 cell-intrinsic glutathione/mitochondrial-IL-22 axis protects against intestinal inflammation
title_fullStr A Th17 cell-intrinsic glutathione/mitochondrial-IL-22 axis protects against intestinal inflammation
title_full_unstemmed A Th17 cell-intrinsic glutathione/mitochondrial-IL-22 axis protects against intestinal inflammation
title_short A Th17 cell-intrinsic glutathione/mitochondrial-IL-22 axis protects against intestinal inflammation
title_sort th17 cell-intrinsic glutathione/mitochondrial-il-22 axis protects against intestinal inflammation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10363291/
https://www.ncbi.nlm.nih.gov/pubmed/37489135
http://dx.doi.org/10.1101/2023.07.06.547932
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