Deficient Caveolin-1 Synthesis in Adipocytes Stimulates Systemic Insulin-Independent Glucose Uptake via Extracellular Vesicles

Author:

Crewe Clair123,Chen Shiuhwei1,Bu Dawei1,Gliniak Christy M.1,Wernstedt Asterholm Ingrid4ORCID,Yu Xin Xin1,Joffin Nolwenn1,de Souza Camila O.1,Funcke Jan-Bernd1,Oh Da Young1,Varlamov Oleg5,Robino Jacob J.5,Gordillo Ruth1,Scherer Philipp E.16ORCID

Affiliation:

1. 1Touchstone Diabetes Center, Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, TX

2. 2Department of Cell Biology and Physiology, Washington University School of Medicine, St. Louis, MO

3. 3Division of Endocrinology, Metabolism and Lipid Research, Department of Internal Medicine, Washington University School of Medicine, St. Louis, MO

4. 4Department of Physiology (Metabolic Physiology Research Unit), Institute of Neuroscience and Physiology, Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden

5. 5Division of Cardiometabolic Health, Oregon National Primate Research Center, Oregon Health & Science University, Beaverton, OR

6. 6Department of Cell Biology, University of Texas Southwestern Medical Center, Dallas, TX

Abstract

Caveolin-1 (cav1) is an important structural and signaling component of plasma membrane invaginations called caveolae and is abundant in adipocytes. As previously reported, adipocyte-specific ablation of the cav1 gene (ad-cav1 knockout [KO] mouse) does not result in elimination of the protein, as cav1 protein traffics to adipocytes from neighboring endothelial cells. However, this mouse is a functional KO because adipocyte caveolar structures are depleted. Compared with controls, ad-cav1KO mice on a high-fat diet (HFD) display improved whole-body glucose clearance despite complete loss of glucose-stimulated insulin secretion, blunted insulin-stimulated AKT activation in metabolic tissues, and partial lipodystrophy. The cause is increased insulin-independent glucose uptake by white adipose tissue (AT) and reduced hepatic gluconeogenesis. Furthermore, HFD-fed ad-cav1KO mice display significant AT inflammation, fibrosis, mitochondrial dysfunction, and dysregulated lipid metabolism. The glucose clearance phenotype of the ad-cav1KO mice is at least partially mediated by AT small extracellular vesicles (AT-sEVs). Injection of control mice with AT-sEVs from ad-cav1KO mice phenocopies ad-cav1KO characteristics. Interestingly, AT-sEVs from ad-cav1KO mice propagate the phenotype of the AT to the liver. These data indicate that ad-cav1 is essential for healthy adaptation of the AT to overnutrition and prevents aberrant propagation of negative phenotypes to other organs by EVs.

Funder

Diabetes Research & Wellness Foundation

Novo Nordisk

Swedish Diabetes Foundation

Swedish Research Council

National Institutes of Health

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

Reference31 articles.

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4. Caveolin-1 (CAV-1) up regulation in metabolic syndrome: all roads leading to the same end;de Souza;Mol Biol Rep,2020

5. Expression of caveolin-1 in human adipose tissue is upregulated in obesity and obesity-associated type 2 diabetes mellitus and related to inflammation;Catalán;Clin Endocrinol (Oxf),2008

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