Notch activation shifts the fate decision of senescent progenitors toward myofibrogenesis in human adipose tissue

Author:

Boulet Nathalie1ORCID,Briot Anaïs1,Jargaud Valentin1,Estève David1,Rémaury Anne2,Belles Chloé1,Viana Pénélope1,Fontaine Jessica1,Murphy Lucie1,Déon Catherine2,Guillemot Marie3,Pech Catherine3,Veeranagouda Yaligara2,Didier Michel2,Decaunes Pauline1,Mouisel Etienne4,Carpéné Christian1,Iacovoni Jason S.5,Zakaroff‐Girard Alexia1,Grolleau Jean‐Louis6,Galitzky Jean1,Ledoux Séverine7,Guillemot Jean‐Claude2,Bouloumié Anne1

Affiliation:

1. Metabolic and Cardiovascular Research Institute, Team Dinamix INSERM UMR1297 and Université de Toulouse Toulouse France

2. Sanofi, Research & Development Translational Sciences, Biochemistry Team Chilly‐Mazarin cedex France

3. Sanofi, Research & Development Exploratory Unit, Proteomic Team Toulouse France

4. Metabolic and Cardiovascular Research Institute, Team MetaDiab INSERM UMR1297 and Université de Toulouse Toulouse France

5. Metabolic and Cardiovascular Research Institute, Bioinformatic Core Facility INSERM UMR1297 and Université de Toulouse Toulouse France

6. Plastic, reconstructive and aesthetic surgery CHU Toulouse Rangueil Toulouse France

7. Center of Obesity, Explorations fonctionnelles, Louis Mourier Hospital (APHP) Université Paris Diderot Colombes France

Abstract

AbstractSenescence is a key event in the impairment of adipose tissue (AT) function with obesity and aging but the underlying molecular and cellular players remain to be fully defined, particularly with respect to the human AT progenitors. We have found distinct profiles of senescent progenitors based on AT location between stroma from visceral versus subcutaneous AT. In addition to flow cytometry, we characterized the location differences with transcriptomic and proteomic approaches, uncovering the genes and developmental pathways that are underlying replicative senescence. We identified key components to include INBHA as well as SFRP4 and GREM1, antagonists for the WNT and BMP pathways, in the senescence‐associated secretory phenotype and NOTCH3 in the senescence‐associated intrinsic phenotype. Notch activation in AT progenitors inhibits adipogenesis and promotes myofibrogenesis independently of TGFβ. In addition, we demonstrate that NOTCH3 is enriched in the premyofibroblast progenitor subset, which preferentially accumulates in the visceral AT of patients with an early obesity trajectory. Herein, we reveal that NOTCH3 plays a role in the balance of progenitor fate determination preferring myofibrogenesis at the expense of adipogenesis. Progenitor NOTCH3 may constitute a tool to monitor replicative senescence and to limit AT dysfunction in obesity and aging.

Funder

Fondation pour la Recherche Médicale

Institut National de la Santé et de la Recherche Médicale

Publisher

Wiley

Subject

Cell Biology,Aging

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