Genetic inhibition of CARD9 accelerates the development of atherosclerosis in mice through CD36 dependent-defective autophagy - INRAE - Institut national de recherche pour l’agriculture, l’alimentation et l’environnement
Article Dans Une Revue Nature Communications Année : 2023

Genetic inhibition of CARD9 accelerates the development of atherosclerosis in mice through CD36 dependent-defective autophagy

1 PARCC (UMR_S 970/ U970) - Paris-Centre de Recherche Cardiovasculaire
2 CRSA - Centre de Recherche Saint-Antoine
3 CHU Saint-Antoine [AP-HP]
4 FHU PaCeMM - Paris Center for Microbiome Medicine
5 ICAN - Unité de Recherche sur les Maladies Cardiovasculaires, du Métabolisme et de la Nutrition = Research Unit on Cardiovascular and Metabolic Diseases
6 IHU ICAN - Institut de Cardiométabolisme et Nutrition = Institute of Cardiometabolism and Nutrition [CHU Pitié Salpêtrière]
7 HEGP - Hôpital Européen Georges Pompidou [APHP]
8 Institut Curie [Paris]
9 Hôpital Cochin [AP-HP]
10 Imagine - U1163 - Imagine - Institut des maladies génétiques (IHU)
11 Equipe Inserm U1163 - Epithelial biology and disease - Liliane Bettencourt Chair of Developmental Biology
12 Laboratory of Human Genetics of Infectious Diseases, Necker Branch, INSERM U1163
13 iPSC - Plateforme IPS = Imagine Institute iPSC core facility
14 JMU - Julius-Maximilians-Universität Würzburg = University of Würzburg [Würsburg, Germany]
15 University Hospital of Würzburg
16 HIRI - Helmholtz-Institut für RNA-basierte Infektionsforschung - Helmholtz Institute for RNA‐based Infection Research [Würzburg, Germany]
17 CISPA - Helmholtz Center for Information Security [Saarbrücken]
18 UMCU - University Medical Center [Utrecht]
19 CAM - University of Cambridge [UK]
20 Addenbrooke's Hospital
21 CIC 1436 - Centre d'investigation clinique de Toulouse
22 Institut Cardiomet [CHU Toulouse]
23 MICALIS - MICrobiologie de l'ALImentation au Service de la Santé
Yujiao Zhang
Xiaodan Zhong
  • Fonction : Auteur
Coralie Guérin
Marc Diedisheim
Fanny Lanternier
  • Fonction : Auteur
Michal Mokry
Alain Tedgui
Soraya Taleb
Olivia Lenoir

Résumé

Caspase recruitment-domain containing protein 9 (CARD9) is a key signaling pathway in macrophages but its role in atherosclerosis is still poorly understood. Global deletion of Card9 in Apoe -/- mice as well as hematopoietic deletion in Ldlr -/- mice increases atherosclerosis. The acceleration of atherosclerosis is also observed in Apoe -/- Rag2 -/- Card9 -/- mice, ruling out a role for the adaptive immune system in the vascular phenotype of Card9 deficient mice. Card9 deficiency alters macrophage phenotype through CD36 overexpression with increased IL-1β production, increased lipid uptake, higher cell death susceptibility and defective autophagy. Rapamycin or metformin, two autophagy inducers, abolish intracellular lipid overload, restore macrophage survival and autophagy flux in vitro and finally abolish the pro-atherogenic effects of Card9 deficiency in vivo. Transcriptomic analysis of human CARD9 -deficient monocytes confirms the pathogenic signature identified in murine models. In summary, CARD9 is a key protective pathway in atherosclerosis, modulating macrophage CD36-dependent inflammatory responses, lipid uptake and autophagy.
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hal-04565251 , version 1 (08-08-2024)

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Yujiao Zhang, Marie Vandestienne, Jean-Rémi Lavillegrand, Jeremie Joffre, Icia Santos-Zas, et al.. Genetic inhibition of CARD9 accelerates the development of atherosclerosis in mice through CD36 dependent-defective autophagy. Nature Communications, 2023, 14 (1), pp. 4622. ⟨10.1038/s41467-023-40216-x⟩. ⟨hal-04565251⟩
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