Anti-microbial signaling pathways are normally triggered by innate immune receptors when detecting pathogenic microbes to provide protective immunity. Here we show that the inflammasome sensor Nlrp1 aggravates DSS-induced experimental mouse colitis by limiting beneficial, butyrate-producing Clostridiales in the gut. The colitis-protective effects of Nlrp1 deficiency are thus reversed by vancomycin treatment, but recapitulated with butyrate supplementation in wild-type mice. Moreover, an activating mutation in Nlrp1a increases IL-18 and IFNγ production, and decreases colonic butyrate to exacerbate colitis. We also show that, in patients with ulcerative colitis, increased NLRP1 in inflamed regions of the colon is associated with increased IFN-γ. In this context, NLRP1, IL-18 or IFN-γ expression negatively correlates with the abundance of Clostridiales in human rectal mucosal biopsies. Our data identify the NLRP1 inflammasome to be a key negative regulator of protective, butyrate-producing commensals, which therefore promotes inflammatory bowel disease.
NLRP1 restricts butyrate producing commensals to exacerbate inflammatory bowel disease.
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作者:Tye Hazel, Yu Chien-Hsiung, Simms Lisa A, de Zoete Marcel R, Kim Man Lyang, Zakrzewski Martha, Penington Jocelyn S, Harapas Cassandra R, Souza-Fonseca-Guimaraes Fernando, Wockner Leesa F, Preaudet Adele, Mielke Lisa A, Wilcox Stephen A, Ogura Yasunori, Corr Sinead C, Kanojia Komal, Kouremenos Konstantinos A, De Souza David P, McConville Malcolm J, Flavell Richard A, Gerlic Motti, Kile Benjamin T, Papenfuss Anthony T, Putoczki Tracy L, Radford-Smith Graham L, Masters Seth L
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2018 | 起止号: | 2018 Sep 13; 9(1):3728 |
| doi: | 10.1038/s41467-018-06125-0 | ||
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