Aryl hydrocarbon receptor ligand production by the gut microbiota is decreased in celiac disease leading to intestinal inflammation
Author(s) -
Bruno Lamas,
Leticia Hernández-Galán,
Heather J. Galipeau,
Marco Constante,
Alexandra Clarizio,
Jennifer Jury,
Natália Martins Breyner,
Alberto Caminero,
G H Rueda,
Christina L. Hayes,
Justin L. McCarville,
Miriam Bermudez Brito,
Julien Planchais,
Nathalie Rolhion,
Joseph A. Murray,
Philippe Langella,
Linda M. P. Loonen,
Jerry M. Wells,
Přemysl Berčík,
Harry Sokol,
Elena F. Verdú
Publication year - 2020
Publication title -
science translational medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.819
H-Index - 216
eISSN - 1946-6242
pISSN - 1946-6234
DOI - 10.1126/scitranslmed.aba0624
Subject(s) - aryl hydrocarbon receptor , gut flora , lactobacillus reuteri , immunology , intestinal permeability , nod , biology , endocrinology , lactobacillus , biochemistry , transcription factor , gene , diabetes mellitus , fermentation
Metabolism of tryptophan by the gut microbiota into derivatives that activate the aryl hydrocarbon receptor (AhR) contributes to intestinal homeostasis. Many chronic inflammatory conditions, including celiac disease involving a loss of tolerance to dietary gluten, are influenced by cues from the gut microbiota. We investigated whether AhR ligand production by the gut microbiota could influence gluten immunopathology in nonobese diabetic (NOD) mice expressing DQ8, a celiac disease susceptibility gene. NOD/DQ8 mice, exposed or not exposed to gluten, were subjected to three interventions directed at enhancing AhR pathway activation. These included a high-tryptophan diet, gavage with Lactobacillus reuteri hat produces AhR ligands or treatment with an AhR agonist. We investigated intestinal permeability, gut microbiota composition determined by 16 S rRNA gene sequencing, AhR pathway activation in intestinal contents, and small intestinal pathology and inflammatory markers. In NOD/DQ8 mice, a high-tryptophan diet modulated gut microbiota composition and enhanced AhR ligand production. AhR pathway activation by an enriched tryptophan diet, treatment with the AhR ligand producer L. reuteri , or pharmacological stimulation using 6-formylindolo (3,2-b) carbazole (Ficz) decreased immunopathology in NOD/DQ8 mice exposed to gluten. We then determined AhR ligand production by the fecal microbiota and AhR activation in patients with active celiac disease compared to nonceliac control individuals. Patients with active celiac disease demonstrated reduced AhR ligand production and lower intestinal AhR pathway activation. These results highlight gut microbiota-dependent modulation of the AhR pathway in celiac disease and suggest a new therapeutic strategy for treating this disorder.
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