Tonic interferon restricts pathogenic IL-17-driven inflammatory disease via balancing the microbiome

Author:

Marié Isabelle J.,Brambilla Lara,Azzouz Doua,Chen Ze,Baracho Gisele,Arnett Azlann,Li Haiyan S.,Liu Weiguo,Cimmino Luisa,Chattopadhyay Pratip,Silverman Gregg,Watowich Stephanie S.ORCID,Khor BernardORCID,Levy David E.ORCID

Abstract

AbstractMaintenance of immune homeostasis involves a synergistic relationship between the host and the microbiome. Canonical interferon (IFN) signaling controls responses to acute microbial infection, through engagement of the STAT1 transcription factor. However, the contribution of tonic levels of IFN to immune homeostasis in absence of acute infection remains largely unexplored. We report that STAT1 KO mice spontaneously developed an inflammatory disease marked by myeloid hyperplasia and splenic accumulation of hematopoietic stem cells. Moreover, these animals developed inflammatory bowel disease. Profiling gut bacteria revealed a profound dysbiosis in absence of tonic IFN signaling, which triggered expansion of TH17 cells and loss of splenic Treg cells. Resolution of dysbiosis by antibiotic treatment averted the TH17 bias, and blocking IL17 signaling prevented myeloid expansion and splenic stem cell accumulation. Thus, tonic IFNs regulate gut microbial ecology, which is crucial for maintaining physiologic immune homeostasis and preventing inflammation.

Publisher

Cold Spring Harbor Laboratory

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