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c-Maf-dependent regulatory T cells mediate immunological tolerance to a gut pathobiont

Both microbial and host genetic factors contribute to the pathogenesis of autoimmune disease(1–4). Accumulating evidence suggests that microbial species that potentiate chronic inflammation, as in inflammatory bowel disease (IBD), often also colonize healthy individuals. These microbes, including th...

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Autores principales: Xu, Mo, Pokrovskii, Maria, Ding, Yi, Yi, Ren, Au, Christy, Harrison, Oliver J., Galan, Carolina, Belkaid, Yasmine, Bonneau, Richard, Littman, Dan R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5814346/
https://www.ncbi.nlm.nih.gov/pubmed/29414937
http://dx.doi.org/10.1038/nature25500
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author Xu, Mo
Pokrovskii, Maria
Ding, Yi
Yi, Ren
Au, Christy
Harrison, Oliver J.
Galan, Carolina
Belkaid, Yasmine
Bonneau, Richard
Littman, Dan R.
author_facet Xu, Mo
Pokrovskii, Maria
Ding, Yi
Yi, Ren
Au, Christy
Harrison, Oliver J.
Galan, Carolina
Belkaid, Yasmine
Bonneau, Richard
Littman, Dan R.
author_sort Xu, Mo
collection PubMed
description Both microbial and host genetic factors contribute to the pathogenesis of autoimmune disease(1–4). Accumulating evidence suggests that microbial species that potentiate chronic inflammation, as in inflammatory bowel disease (IBD), often also colonize healthy individuals. These microbes, including the Helicobacter species, have the propensity to induce pathogenic T cells and are collectively referred to as pathobionts(4–6). However, an understanding of how such T cells are constrained in healthy individuals is lacking. Here we report that host tolerance to a potentially pathogenic bacterium, Helicobacter hepaticus (H. hepaticus), is mediated by induction of RORγt(+)Foxp3(+) regulatory T cells (iT(reg)) that selectively restrain pro-inflammatory T(H)17 cells and whose function is dependent on the transcription factor c-Maf. Whereas H. hepaticus colonization of wild-type mice promoted differentiation of RORγt-expressing microbe-specific iT(reg) in the large intestine, in disease-susceptible IL-10-deficient animals there was instead expansion of colitogenic T(H)17 cells. Inactivation of c-Maf in the T(reg) compartment likewise impaired differentiation and function, including IL-10 production, of bacteria-specific iT(reg), resulting in accumulation of H. hepaticus-specific inflammatory T(H)17 cells and spontaneous colitis. In contrast, RORγt inactivation in T(reg) only had a minor effect on bacterial-specific T(reg)-T(H)17 balance, and did not result in inflammation. Our results suggest that pathobiont-dependent IBD is driven by microbiota-reactive T cells that have escaped this c-Maf-dependent mechanism of iT(reg)-T(H)17 homeostasis.
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spelling pubmed-58143462018-08-07 c-Maf-dependent regulatory T cells mediate immunological tolerance to a gut pathobiont Xu, Mo Pokrovskii, Maria Ding, Yi Yi, Ren Au, Christy Harrison, Oliver J. Galan, Carolina Belkaid, Yasmine Bonneau, Richard Littman, Dan R. Nature Article Both microbial and host genetic factors contribute to the pathogenesis of autoimmune disease(1–4). Accumulating evidence suggests that microbial species that potentiate chronic inflammation, as in inflammatory bowel disease (IBD), often also colonize healthy individuals. These microbes, including the Helicobacter species, have the propensity to induce pathogenic T cells and are collectively referred to as pathobionts(4–6). However, an understanding of how such T cells are constrained in healthy individuals is lacking. Here we report that host tolerance to a potentially pathogenic bacterium, Helicobacter hepaticus (H. hepaticus), is mediated by induction of RORγt(+)Foxp3(+) regulatory T cells (iT(reg)) that selectively restrain pro-inflammatory T(H)17 cells and whose function is dependent on the transcription factor c-Maf. Whereas H. hepaticus colonization of wild-type mice promoted differentiation of RORγt-expressing microbe-specific iT(reg) in the large intestine, in disease-susceptible IL-10-deficient animals there was instead expansion of colitogenic T(H)17 cells. Inactivation of c-Maf in the T(reg) compartment likewise impaired differentiation and function, including IL-10 production, of bacteria-specific iT(reg), resulting in accumulation of H. hepaticus-specific inflammatory T(H)17 cells and spontaneous colitis. In contrast, RORγt inactivation in T(reg) only had a minor effect on bacterial-specific T(reg)-T(H)17 balance, and did not result in inflammation. Our results suggest that pathobiont-dependent IBD is driven by microbiota-reactive T cells that have escaped this c-Maf-dependent mechanism of iT(reg)-T(H)17 homeostasis. 2018-02-07 2018-02-15 /pmc/articles/PMC5814346/ /pubmed/29414937 http://dx.doi.org/10.1038/nature25500 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms Reprints and permissions information is available at www.nature.com/reprints.
spellingShingle Article
Xu, Mo
Pokrovskii, Maria
Ding, Yi
Yi, Ren
Au, Christy
Harrison, Oliver J.
Galan, Carolina
Belkaid, Yasmine
Bonneau, Richard
Littman, Dan R.
c-Maf-dependent regulatory T cells mediate immunological tolerance to a gut pathobiont
title c-Maf-dependent regulatory T cells mediate immunological tolerance to a gut pathobiont
title_full c-Maf-dependent regulatory T cells mediate immunological tolerance to a gut pathobiont
title_fullStr c-Maf-dependent regulatory T cells mediate immunological tolerance to a gut pathobiont
title_full_unstemmed c-Maf-dependent regulatory T cells mediate immunological tolerance to a gut pathobiont
title_short c-Maf-dependent regulatory T cells mediate immunological tolerance to a gut pathobiont
title_sort c-maf-dependent regulatory t cells mediate immunological tolerance to a gut pathobiont
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5814346/
https://www.ncbi.nlm.nih.gov/pubmed/29414937
http://dx.doi.org/10.1038/nature25500
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