Cargando…
Rewiring the altered tryptophan metabolism as a novel therapeutic strategy in inflammatory bowel diseases
OBJECTIVE: The extent to which tryptophan (Trp) metabolism alterations explain or influence the outcome of inflammatory bowel diseases (IBDs) is still unclear. However, several Trp metabolism end-products are essential to intestinal homeostasis. Here, we investigated the role of metabolites from the...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BMJ Publishing Group
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10314090/ https://www.ncbi.nlm.nih.gov/pubmed/36270778 http://dx.doi.org/10.1136/gutjnl-2022-327337 |
_version_ | 1785067248292986880 |
---|---|
author | Michaudel, Chloé Danne, Camille Agus, Allison Magniez, Aurélie Aucouturier, Anne Spatz, Madeleine Lefevre, Antoine Kirchgesner, Julien Rolhion, Nathalie Wang, Yazhou Lavelle, Aonghus Galbert, Chloé Da Costa, Gregory Poirier, Maxime Lapière, Alexia Planchais, Julien Nádvorník, Petr Illes, Peter Oeuvray, Cyriane Creusot, Laura Michel, Marie-Laure Benech, Nicolas Bourrier, Anne Nion-Larmurier, Isabelle Landman, Cecilia Richard, Mathias L Emond, Patrick Seksik, Philippe Beaugerie, Laurent Arguello, Rafael Rose Moulin, David Mani, Sridhar Dvorák, Zdenek Bermúdez-Humarán, Luis G Langella, Philippe Sokol, Harry |
author_facet | Michaudel, Chloé Danne, Camille Agus, Allison Magniez, Aurélie Aucouturier, Anne Spatz, Madeleine Lefevre, Antoine Kirchgesner, Julien Rolhion, Nathalie Wang, Yazhou Lavelle, Aonghus Galbert, Chloé Da Costa, Gregory Poirier, Maxime Lapière, Alexia Planchais, Julien Nádvorník, Petr Illes, Peter Oeuvray, Cyriane Creusot, Laura Michel, Marie-Laure Benech, Nicolas Bourrier, Anne Nion-Larmurier, Isabelle Landman, Cecilia Richard, Mathias L Emond, Patrick Seksik, Philippe Beaugerie, Laurent Arguello, Rafael Rose Moulin, David Mani, Sridhar Dvorák, Zdenek Bermúdez-Humarán, Luis G Langella, Philippe Sokol, Harry |
author_sort | Michaudel, Chloé |
collection | PubMed |
description | OBJECTIVE: The extent to which tryptophan (Trp) metabolism alterations explain or influence the outcome of inflammatory bowel diseases (IBDs) is still unclear. However, several Trp metabolism end-products are essential to intestinal homeostasis. Here, we investigated the role of metabolites from the kynurenine pathway. DESIGN: Targeted quantitative metabolomics was performed in two large human IBD cohorts (1069 patients with IBD). Dextran sodium sulphate-induced colitis experiments in mice were used to evaluate effects of identified metabolites. In vitro, ex vivo and in vivo experiments were used to decipher mechanisms involved. Effects on energy metabolism were evaluated by different methods including Single Cell mEtabolism by profiling Translation inHibition. RESULTS: In mice and humans, intestinal inflammation severity negatively correlates with the amount of xanthurenic (XANA) and kynurenic (KYNA) acids. Supplementation with XANA or KYNA decreases colitis severity through effects on intestinal epithelial cells and T cells, involving Aryl hydrocarbon Receptor (AhR) activation and the rewiring of cellular energy metabolism. Furthermore, direct modulation of the endogenous tryptophan metabolism, using the recombinant enzyme aminoadipate aminotransferase (AADAT), responsible for the generation of XANA and KYNA, was protective in rodent colitis models. CONCLUSION: Our study identified a new mechanism linking Trp metabolism to intestinal inflammation and IBD. Bringing back XANA and KYNA has protective effects involving AhR and the rewiring of the energy metabolism in intestinal epithelial cells and CD4(+) T cells. This study paves the way for new therapeutic strategies aiming at pharmacologically correcting its alterations in IBD by manipulating the endogenous metabolic pathway with AADAT. |
format | Online Article Text |
id | pubmed-10314090 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | BMJ Publishing Group |
record_format | MEDLINE/PubMed |
spelling | pubmed-103140902023-07-02 Rewiring the altered tryptophan metabolism as a novel therapeutic strategy in inflammatory bowel diseases Michaudel, Chloé Danne, Camille Agus, Allison Magniez, Aurélie Aucouturier, Anne Spatz, Madeleine Lefevre, Antoine Kirchgesner, Julien Rolhion, Nathalie Wang, Yazhou Lavelle, Aonghus Galbert, Chloé Da Costa, Gregory Poirier, Maxime Lapière, Alexia Planchais, Julien Nádvorník, Petr Illes, Peter Oeuvray, Cyriane Creusot, Laura Michel, Marie-Laure Benech, Nicolas Bourrier, Anne Nion-Larmurier, Isabelle Landman, Cecilia Richard, Mathias L Emond, Patrick Seksik, Philippe Beaugerie, Laurent Arguello, Rafael Rose Moulin, David Mani, Sridhar Dvorák, Zdenek Bermúdez-Humarán, Luis G Langella, Philippe Sokol, Harry Gut Inflammatory Bowel Disease OBJECTIVE: The extent to which tryptophan (Trp) metabolism alterations explain or influence the outcome of inflammatory bowel diseases (IBDs) is still unclear. However, several Trp metabolism end-products are essential to intestinal homeostasis. Here, we investigated the role of metabolites from the kynurenine pathway. DESIGN: Targeted quantitative metabolomics was performed in two large human IBD cohorts (1069 patients with IBD). Dextran sodium sulphate-induced colitis experiments in mice were used to evaluate effects of identified metabolites. In vitro, ex vivo and in vivo experiments were used to decipher mechanisms involved. Effects on energy metabolism were evaluated by different methods including Single Cell mEtabolism by profiling Translation inHibition. RESULTS: In mice and humans, intestinal inflammation severity negatively correlates with the amount of xanthurenic (XANA) and kynurenic (KYNA) acids. Supplementation with XANA or KYNA decreases colitis severity through effects on intestinal epithelial cells and T cells, involving Aryl hydrocarbon Receptor (AhR) activation and the rewiring of cellular energy metabolism. Furthermore, direct modulation of the endogenous tryptophan metabolism, using the recombinant enzyme aminoadipate aminotransferase (AADAT), responsible for the generation of XANA and KYNA, was protective in rodent colitis models. CONCLUSION: Our study identified a new mechanism linking Trp metabolism to intestinal inflammation and IBD. Bringing back XANA and KYNA has protective effects involving AhR and the rewiring of the energy metabolism in intestinal epithelial cells and CD4(+) T cells. This study paves the way for new therapeutic strategies aiming at pharmacologically correcting its alterations in IBD by manipulating the endogenous metabolic pathway with AADAT. BMJ Publishing Group 2023-07 2022-10-21 /pmc/articles/PMC10314090/ /pubmed/36270778 http://dx.doi.org/10.1136/gutjnl-2022-327337 Text en © Author(s) (or their employer(s)) 2023. Re-use permitted under CC BY-NC. No commercial re-use. See rights and permissions. Published by BMJ. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited, appropriate credit is given, any changes made indicated, and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) . |
spellingShingle | Inflammatory Bowel Disease Michaudel, Chloé Danne, Camille Agus, Allison Magniez, Aurélie Aucouturier, Anne Spatz, Madeleine Lefevre, Antoine Kirchgesner, Julien Rolhion, Nathalie Wang, Yazhou Lavelle, Aonghus Galbert, Chloé Da Costa, Gregory Poirier, Maxime Lapière, Alexia Planchais, Julien Nádvorník, Petr Illes, Peter Oeuvray, Cyriane Creusot, Laura Michel, Marie-Laure Benech, Nicolas Bourrier, Anne Nion-Larmurier, Isabelle Landman, Cecilia Richard, Mathias L Emond, Patrick Seksik, Philippe Beaugerie, Laurent Arguello, Rafael Rose Moulin, David Mani, Sridhar Dvorák, Zdenek Bermúdez-Humarán, Luis G Langella, Philippe Sokol, Harry Rewiring the altered tryptophan metabolism as a novel therapeutic strategy in inflammatory bowel diseases |
title | Rewiring the altered tryptophan metabolism as a novel therapeutic strategy in inflammatory bowel diseases |
title_full | Rewiring the altered tryptophan metabolism as a novel therapeutic strategy in inflammatory bowel diseases |
title_fullStr | Rewiring the altered tryptophan metabolism as a novel therapeutic strategy in inflammatory bowel diseases |
title_full_unstemmed | Rewiring the altered tryptophan metabolism as a novel therapeutic strategy in inflammatory bowel diseases |
title_short | Rewiring the altered tryptophan metabolism as a novel therapeutic strategy in inflammatory bowel diseases |
title_sort | rewiring the altered tryptophan metabolism as a novel therapeutic strategy in inflammatory bowel diseases |
topic | Inflammatory Bowel Disease |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10314090/ https://www.ncbi.nlm.nih.gov/pubmed/36270778 http://dx.doi.org/10.1136/gutjnl-2022-327337 |
work_keys_str_mv | AT michaudelchloe rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT dannecamille rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT agusallison rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT magniezaurelie rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT aucouturieranne rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT spatzmadeleine rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT lefevreantoine rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT kirchgesnerjulien rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT rolhionnathalie rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT wangyazhou rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT lavelleaonghus rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT galbertchloe rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT dacostagregory rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT poiriermaxime rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT lapierealexia rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT planchaisjulien rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT nadvornikpetr rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT illespeter rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT oeuvraycyriane rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT creusotlaura rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT michelmarielaure rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT benechnicolas rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT bourrieranne rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT nionlarmurierisabelle rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT landmancecilia rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT richardmathiasl rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT emondpatrick rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT seksikphilippe rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT beaugerielaurent rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT arguellorafaelrose rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT moulindavid rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT manisridhar rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT dvorakzdenek rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT bermudezhumaranluisg rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT langellaphilippe rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases AT sokolharry rewiringthealteredtryptophanmetabolismasanoveltherapeuticstrategyininflammatoryboweldiseases |