Adipocyte endothelin B receptor activation inhibits adiponectin production and causes insulin resistance in obese mice

Author:

Rivera‐Gonzalez Osvaldo1,Mills Megumi F.1,Konadu Bridget D.1,Wilson Natalie A.1,Murphy Hayley A.1,Newberry Madison K.1,Hyndman Kelly A.2,Garrett Michael R.3,Webb David J.4,Speed Joshua S.1ORCID

Affiliation:

1. Department of Physiology and Biophysics University of Mississippi Medical Center Jackson Mississippi USA

2. Division of Nephrology, Department of Medicine University of Alabama at Birmingham Birmingham Alabama USA

3. Department of Pharmacology and Toxicology University of Mississippi Medical Center Jackson Mississippi USA

4. University/British Heart Foundation Centre for Cardiovascular Science, Queen's Medical Research Institute University of Edinburgh Edinburgh UK

Abstract

AbstractAimsEndothelin‐1 (ET‐1) is elevated in patients with obesity and adipose tissue of obese mice fed high‐fat diet (HFD); however, its contribution to the pathophysiology of obesity is not fully understood. Genetic loss of endothelin type B receptors (ETB) improves insulin sensitivity in rats and leads to increased circulating adiponectin, suggesting that ETB activation on adipocytes may contribute to obesity pathophysiology. We hypothesized that elevated ET‐1 in obesity promotes insulin resistance by reducing the secretion of insulin sensitizing adipokines, via ETB receptor.MethodsMale adipocyte‐specific ETB receptor knockout (adETBKO), overexpression (adETBOX), or control littermates were fed either normal diet (NMD) or high‐fat diet (HFD) for 8 weeks.ResultsRNA‐sequencing of epididymal adipose (eWAT) indicated differential expression of over 5500 genes (p < 0.05) in HFD compared to NMD controls, and changes in 1077 of these genes were attenuated in HFD adETBKO mice. KEGG analysis indicated significant increase in metabolic signaling pathway. HFD adETBKO mice had significantly improved glucose and insulin tolerance compared to HFD control. In addition, adETBKO attenuated changes in plasma adiponectin, insulin, and leptin that is observed in HFD versus NMD control mice. Treatment of primary adipocytes with ET‐1 caused a reduction in adiponectin production that was attenuated in cells pretreated with an ETB antagonist.ConclusionThese data indicate elevated ET‐1 in adipose tissue of mice fed HFD inhibits adiponectin production and causes insulin resistance through activation of the ETB receptor on adipocytes.

Publisher

Wiley

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