Deletion of adipocyte NOS3 potentiates high-fat diet-induced hypertension and vascular remodelling via chemerin

Author:

Man Andy W C1ORCID,Zhou Yawen1,Reifenberg Gisela1,Camp Alica1,Münzel Thomas23,Daiber Andreas23ORCID,Xia Ning1,Li Huige13

Affiliation:

1. Department of Pharmacology, Johannes Gutenberg University Medical Center , Langenbeckstr. 1 , 55131 Mainz, Germany

2. Department of Cardiology, Cardiology I, Johannes Gutenberg University Medical Center , Mainz , Germany

3. German Centre for Cardiovascular Research (DZHK), Partner Site Rhine-Main , Mainz , Germany

Abstract

Abstract Aims Obesity is an epidemic that is a critical contributor to hypertension and other cardiovascular diseases. Current paradigms suggest that endothelial nitric oxide synthase (eNOS/NOS3) in the vessel wall is the primary regulator of vascular function and blood pressure. However, recent studies have revealed the presence of eNOS/NOS3 in the adipocytes of white adipose tissues and perivascular adipose tissues (PVATs). The current understanding of the role of adipocyte NOS3 is based mainly on studies using global knockout models. The present study aimed to elucidate the functional significance of adipocyte NOS3 for vascular function and blood pressure control. Methods and results We generated an adipocyte-specific NOS3 knockout mouse line using adiponectin promoter-specific Cre-induced gene inactivation. Control and adipocyte-specific NOS3 knockout (A-NOS3 KO) mice were fed a high-fat diet (HFD). Despite less weight gain, A-NOS3 KO mice exhibited a significant increase in blood pressure after HFD feeding, associated with exacerbated vascular dysfunction and remodelling. A-NOS3 KO mice also showed increased expression of signature markers of inflammation and hypoxia in the PVATs. Among the differentially expressed adipokines, we have observed an upregulation of a novel adipokine, chemerin, in A-NOS3 KO mice. Chemerin was recently reported to link obesity and vascular dysfunction. Treatment with chemerin neutralizing antibody normalized the expression of remodelling markers in the aorta segments cultured in serum from HFD-fed A-NOS3 KO mice ex vivo. Conclusion These data suggest that NOS3 in adipocytes is vital in maintaining vascular homeostasis; dysfunction of adipocyte NOS3 contributes to obesity-induced vascular remodelling and hypertension.

Funder

Deutsche Forschungsgemeinschaft

a TransMed Fellowship of Johannes Gutenberg University Medical Center

German Centre for Cardiovascular Research

DZHK

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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