Type I interferon sensing unlocks dormant adipocyte inflammatory potential

Author:

Chan Calvin C.ORCID,Damen Michelle S. M. A.ORCID,Moreno-Fernandez Maria E.ORCID,Stankiewicz Traci E.,Cappelletti Monica,Alarcon Pablo C.ORCID,Oates Jarren R.ORCID,Doll Jessica R.ORCID,Mukherjee RajibORCID,Chen XiaotingORCID,Karns Rebekah,Weirauch Matthew T.ORCID,Helmrath Michael A.,Inge Thomas H.ORCID,Divanovic SenadORCID

Abstract

AbstractWhite adipose tissue inflammation, in part via myeloid cell contribution, is central to obesity pathogenesis. Mechanisms regulating adipocyte inflammatory potential and consequent impact of such inflammation in disease pathogenesis remain poorly defined. We show that activation of the type I interferon (IFN)/IFNα receptor (IFNAR) axis amplifies adipocyte inflammatory vigor and uncovers dormant gene expression patterns resembling inflammatory myeloid cells. IFNβ-sensing promotes adipocyte glycolysis, while glycolysis inhibition impeded IFNβ-driven intra-adipocyte inflammation. Obesity-driven induction of the type I IFN axis and activation of adipocyte IFNAR signaling contributes to obesity-associated pathogenesis in mice. Notably, IFNβ effects are conserved in human adipocytes and detection of the type I IFN/IFNAR axis-associated signatures positively correlates with obesity-driven metabolic derangements in humans. Collectively, our findings reveal a capacity for the type I IFN/IFNAR axis to regulate unifying inflammatory features in both myeloid cells and adipocytes and hint at an underappreciated contribution of adipocyte inflammation in disease pathogenesis.

Funder

U.S. Department of Health & Human Services | National Institutes of Health

American Diabetes Association

American Heart Association

Cincinnati Children's Hospital Medical Center ARC -- Pediatric Diabetes and Obesity Center

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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