IL-18-induced HIF-1α in ILC3s ameliorates the inflammation of C. rodentium-induced colitis

Summary: Group 3 innate lymphoid cells (ILC3s) are vital for defending tissue barriers from invading pathogens. Hypoxia influences the production of intestinal ILC3-derived cytokines by activating HIF. Yet, the mechanisms governing HIF-1α in ILC3s and other innate RORγt+ cells during in vivo infecti...

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Main Authors: Ana Valle-Noguera, Lucía Sancho-Temiño, Raquel Castillo-González, Cristina Villa-Gómez, María José Gomez-Sánchez, Anne Ochoa-Ramos, Patricia Yagüe-Fernández, Blanca Soler Palacios, Virginia Zorita, Berta Raposo-Ponce, José María González-Granado, Julián Aragonés, Aránzazu Cruz-Adalia
Format: Article
Language:English
Published: Elsevier 2023-12-01
Series:Cell Reports
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Online Access:http://www.sciencedirect.com/science/article/pii/S2211124723015206
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Summary:Summary: Group 3 innate lymphoid cells (ILC3s) are vital for defending tissue barriers from invading pathogens. Hypoxia influences the production of intestinal ILC3-derived cytokines by activating HIF. Yet, the mechanisms governing HIF-1α in ILC3s and other innate RORγt+ cells during in vivo infections are poorly understood. In our study, transgenic mice with specific Hif-1a gene inactivation in innate RORγt+ cells (RAG1KO HIF-1α▵Rorc) exhibit more severe colitis following Citrobacter rodentium infection, primarily due to the inability to upregulate IL-22. We find that HIF-1α▵Rorc mice have impaired IL-22 production in ILC3s, while non-ILC3 innate RORγt+ cells, also capable of producing IL-22, remain unaffected. Furthermore, we show that IL-18, induced by Toll-like receptor 2, selectively triggers IL-22 in ILC3s by transcriptionally upregulating HIF-1α, revealing an oxygen-independent regulatory pathway. Our results highlight that, during late-stage C. rodentium infection, IL-18 induction in the colon promotes IL-22 through HIF-1α in ILC3s, which is crucial for protection against this pathogen.
ISSN:2211-1247