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T cell fate following Salmonella infection is determined by a STING-IRF1 signaling axis in mice.


ABSTRACT: The innate immune response following infection with entero-invasive bacterial species is triggered upon release of cyclic di-guanylate monophosphate (c-di-GMP) into the host cell cytosol. Bacterial c-di-GMP activates the intracellular Sensor Stimulator of Interferon Genes (STING), encoded by Tmem173 in mice. Here we identify Interferon Regulatory Factor (IRF) 1 as a critical effector of STING-mediated microbial DNA sensing that is responsible for TH17 cell generation in the mucosal immune system. We find that STING activation induces IRF1-dependent transcriptional programs in dendritic cells (DCs) that define T cell fate determination, including induction of Gasdermin D, IL-1 family member cytokines, and enzymes for eicosanoid synthesis. Our results show that IRF1-dependent transcriptional programs in DCs are a prerequisite for antigen-specific TH17 subspecification in response to microbial c-di-GMP and Salmonella typhimurium infection. Our identification of a STING-IRF1 signaling axis for adaptive host defense control will aid further understanding of infectious disease mechanisms.

SUBMITTER: Park SM 

PROVIDER: S-EPMC6906324 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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T cell fate following <i>Salmonella</i> infection is determined by a STING-IRF1 signaling axis in mice.

Park Sung-Moo SM   Omatsu Tatsushi T   Zhao Yun Y   Yoshida Naohiro N   Shah Pankaj P   Zagani Rachid R   Reinecker Hans-Christian HC  

Communications biology 20191211


The innate immune response following infection with entero-invasive bacterial species is triggered upon release of cyclic di-guanylate monophosphate (c-di-GMP) into the host cell cytosol. Bacterial c-di-GMP activates the intracellular Sensor Stimulator of Interferon Genes (STING), encoded by <i>Tmem173</i> in mice. Here we identify Interferon Regulatory Factor (IRF) 1 as a critical effector of STING-mediated microbial DNA sensing that is responsible for T<sub>H</sub>17 cell generation in the muc  ...[more]

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