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The intracellular innate immune sensor NLRP12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth

Inflammatory bowel diseases involve the dynamic interplay of host genetics, microbiome and inflammatory response. Here, we report that NLRP12, a negative regulator of innate immunity, is reduced in human ulcerative colitis by comparing monozygotic twins and other patient cohorts. In parallel, Nlrp12...

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Autores principales: Chen, Liang, Wilson, Justin E., Koenigsknecht, Mark J., Chou, Wei-Chun, Montgomery, Stephanie A., Truax, Agnieszka D., Brickey, W. June, Packey, Christopher D., Maharshak, Nitsan, Matsushima, Glenn K., Plevy, Scott E., Young, Vincent B., Sartor, R. Balfour, Ting, Jenny P-Y
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5395345/
https://www.ncbi.nlm.nih.gov/pubmed/28288099
http://dx.doi.org/10.1038/ni.3690
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author Chen, Liang
Wilson, Justin E.
Koenigsknecht, Mark J.
Chou, Wei-Chun
Montgomery, Stephanie A.
Truax, Agnieszka D.
Brickey, W. June
Packey, Christopher D.
Maharshak, Nitsan
Matsushima, Glenn K.
Plevy, Scott E.
Young, Vincent B.
Sartor, R. Balfour
Ting, Jenny P-Y
author_facet Chen, Liang
Wilson, Justin E.
Koenigsknecht, Mark J.
Chou, Wei-Chun
Montgomery, Stephanie A.
Truax, Agnieszka D.
Brickey, W. June
Packey, Christopher D.
Maharshak, Nitsan
Matsushima, Glenn K.
Plevy, Scott E.
Young, Vincent B.
Sartor, R. Balfour
Ting, Jenny P-Y
author_sort Chen, Liang
collection PubMed
description Inflammatory bowel diseases involve the dynamic interplay of host genetics, microbiome and inflammatory response. Here, we report that NLRP12, a negative regulator of innate immunity, is reduced in human ulcerative colitis by comparing monozygotic twins and other patient cohorts. In parallel, Nlrp12-deficiency in mice caused increased colonic basal inflammation, leading to a less-diverse microbiome, loss of protective gut commensal strains (Lachnospiraceae) and increased colitogenic strains (Erysipelotrichaceae). Dysbiosis and colitis susceptibility associated with Nlrp12-deficency were reversed equally by treatment with antibodies targeting inflammatory cytokines or by administration of beneficial commensal Lachnospiraceae isolates. Fecal transplants from specific pathogen free reared mice into germ-free Nlrp12-deficient mice showed that NLRP12 and the microbiome each contribute to immune signaling that culminates in colon inflammation. These findings reveal a feed-forward loop where NLRP12 promotes specific commensals that can reverse gut inflammation, while cytokine blockade during NLRP12-deficiency can reverse dysbiosis.
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spelling pubmed-53953452017-09-13 The intracellular innate immune sensor NLRP12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth Chen, Liang Wilson, Justin E. Koenigsknecht, Mark J. Chou, Wei-Chun Montgomery, Stephanie A. Truax, Agnieszka D. Brickey, W. June Packey, Christopher D. Maharshak, Nitsan Matsushima, Glenn K. Plevy, Scott E. Young, Vincent B. Sartor, R. Balfour Ting, Jenny P-Y Nat Immunol Article Inflammatory bowel diseases involve the dynamic interplay of host genetics, microbiome and inflammatory response. Here, we report that NLRP12, a negative regulator of innate immunity, is reduced in human ulcerative colitis by comparing monozygotic twins and other patient cohorts. In parallel, Nlrp12-deficiency in mice caused increased colonic basal inflammation, leading to a less-diverse microbiome, loss of protective gut commensal strains (Lachnospiraceae) and increased colitogenic strains (Erysipelotrichaceae). Dysbiosis and colitis susceptibility associated with Nlrp12-deficency were reversed equally by treatment with antibodies targeting inflammatory cytokines or by administration of beneficial commensal Lachnospiraceae isolates. Fecal transplants from specific pathogen free reared mice into germ-free Nlrp12-deficient mice showed that NLRP12 and the microbiome each contribute to immune signaling that culminates in colon inflammation. These findings reveal a feed-forward loop where NLRP12 promotes specific commensals that can reverse gut inflammation, while cytokine blockade during NLRP12-deficiency can reverse dysbiosis. 2017-03-13 2017-05 /pmc/articles/PMC5395345/ /pubmed/28288099 http://dx.doi.org/10.1038/ni.3690 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
spellingShingle Article
Chen, Liang
Wilson, Justin E.
Koenigsknecht, Mark J.
Chou, Wei-Chun
Montgomery, Stephanie A.
Truax, Agnieszka D.
Brickey, W. June
Packey, Christopher D.
Maharshak, Nitsan
Matsushima, Glenn K.
Plevy, Scott E.
Young, Vincent B.
Sartor, R. Balfour
Ting, Jenny P-Y
The intracellular innate immune sensor NLRP12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth
title The intracellular innate immune sensor NLRP12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth
title_full The intracellular innate immune sensor NLRP12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth
title_fullStr The intracellular innate immune sensor NLRP12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth
title_full_unstemmed The intracellular innate immune sensor NLRP12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth
title_short The intracellular innate immune sensor NLRP12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth
title_sort intracellular innate immune sensor nlrp12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5395345/
https://www.ncbi.nlm.nih.gov/pubmed/28288099
http://dx.doi.org/10.1038/ni.3690
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