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Early macrophage response to obesity encompasses Interferon Regulatory Factor 5 regulated mitochondrial architecture remodelling

  • L. Orliaguet
  • , T. Ejlalmanesh
  • , A. Humbert
  • , R. Ballaire
  • , M. Diedisheim
  • , J. B. Julla
  • , D. Chokr
  • , J. Cuenco
  • , J. Michieletto
  • , J. Charbit
  • , D. Lindén
  • , J. Boucher
  • , C. Potier
  • , A. Hamimi
  • , S. Lemoine
  • , C. Blugeon
  • , P. Legoix
  • , S. Lameiras
  • , L. G. Baudrin
  • , S. Baulande
  • A. Soprani, F. A. Castelli, F. Fenaille, J. P. Riveline, E. Dalmas, J. Rieusset, J. F. Gautier, N. Venteclef, F. Alzaid

Research output: Contribution to journalArticlepeer-review

16 Scopus citations

Abstract

Adipose tissue macrophages (ATM) adapt to changes in their energetic microenvironment. Caloric excess, in a range from transient to diet-induced obesity, could result in the transition of ATMs from highly oxidative and protective to highly inflammatory and metabolically deleterious. Here, we demonstrate that Interferon Regulatory Factor 5 (IRF5) is a key regulator of macrophage oxidative capacity in response to caloric excess. ATMs from mice with genetic-deficiency of Irf5 are characterised by increased oxidative respiration and mitochondrial membrane potential. Transient inhibition of IRF5 activity leads to a similar respiratory phenotype as genomic deletion, and is reversible by reconstitution of IRF5 expression. We find that the highly oxidative nature of Irf5-deficient macrophages results from transcriptional de-repression of the mitochondrial matrix component Growth Hormone Inducible Transmembrane Protein (GHITM) gene. The Irf5-deficiency-associated high oxygen consumption could be alleviated by experimental suppression of Ghitm expression. ATMs and monocytes from patients with obesity or with type-2 diabetes retain the reciprocal regulatory relationship between Irf5 and Ghitm. Thus, our study provides insights into the mechanism of how the inflammatory transcription factor IRF5 controls physiological adaptation to diet-induced obesity via regulating mitochondrial architecture in macrophages.

Original languageEnglish
Pages (from-to)5089
Number of pages1
JournalNature Communications
Volume13
Issue number1
DOIs
StatePublished - 30 Aug 2022

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Funding Agency

  • Kuwait Foundation for the Advancement of Sciences

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