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IEC-intrinsic IL-1R signaling holds dual roles in regulating intestinal homeostasis and inflammation.


ABSTRACT: Intestinal epithelial cells (IECs) constitute a critical first line of defense against microbes. While IECs are known to respond to various microbial signals, the precise upstream cues regulating diverse IEC responses are not clear. Here, we discover a dual role for IEC-intrinsic interleukin-1 receptor (IL-1R) signaling in regulating intestinal homeostasis and inflammation. Absence of IL-1R in epithelial cells abrogates a homeostatic antimicrobial program including production of antimicrobial peptides (AMPs). Mice deficient for IEC-intrinsic IL-1R are unable to clear Citrobacter rodentium (C. rodentium) but are protected from DSS-induced colitis. Mechanistically, IL-1R signaling enhances IL-22R-induced signal transducer and activator of transcription 3 (STAT3) phosphorylation in IECs leading to elevated production of AMPs. IL-1R signaling in IECs also directly induces expression of chemokines as well as genes involved in the production of reactive oxygen species. Our findings establish a protective role for IEC-intrinsic IL-1R signaling in combating infections but a detrimental role during colitis induced by epithelial damage.

SUBMITTER: Overcast GR 

PROVIDER: S-EPMC10067527 | biostudies-literature | 2023 Jun

REPOSITORIES: biostudies-literature

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IEC-intrinsic IL-1R signaling holds dual roles in regulating intestinal homeostasis and inflammation.

Overcast Garrett R GR   Meibers Hannah E HE   Eshleman Emily M EM   Saha Irene I   Waggoner Lisa L   Patel Krupaben N KN   Jain Viral G VG   Haslam David B DB   Alenghat Theresa T   VanDussen Kelli L KL   Pasare Chandrashekhar C  

The Journal of experimental medicine 20230328 6


Intestinal epithelial cells (IECs) constitute a critical first line of defense against microbes. While IECs are known to respond to various microbial signals, the precise upstream cues regulating diverse IEC responses are not clear. Here, we discover a dual role for IEC-intrinsic interleukin-1 receptor (IL-1R) signaling in regulating intestinal homeostasis and inflammation. Absence of IL-1R in epithelial cells abrogates a homeostatic antimicrobial program including production of antimicrobial pe  ...[more]

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