Estrogen and testosterone in concert with EFNB3 regulate vascular smooth muscle cell contractility and blood pressure

Author:

Wang Yujia1,Wu Zenghui1,Thorin Eric2,Tremblay Johanne1,Lavoie Julie L.13,Luo Hongyu1,Peng Junzheng1,Qi Shijie1,Wu Tao4,Chen Fei4,Shen Jianzhong4,Hu Shenjiang4,Wu Jiangping15

Affiliation:

1. Research Centre, Centre Hospitalier de l'Université de Montréal (CRCHUM), Montreal, Quebec, Canada;

2. Montreal Heart Institute, Montreal, Quebec, Canada;

3. Département de Kinésiologie, Université de Montréal, Montreal, Quebec, Canada;

4. Institute of Cardiology, First Affiliated Hospital, Zhejiang University Medical College, Hangzhou, China; and

5. Nephrology Service, CRCHUM, Montreal, Quebec, Canada

Abstract

EPH kinases and their ligands, ephrins (EFNs), have vital and diverse biological functions, although their function in blood pressure (BP) control has not been studied in detail. In the present study, we report that Efnb3 gene knockout (KO) led to increased BP in female but not male mice. Vascular smooth muscle cells (VSMCs) were target cells for EFNB3 function in BP regulation. The deletion of EFNB3 augmented contractility of VSMCs from female but not male KO mice, compared with their wild-type (WT) counterparts. Estrogen augmented VSMC contractility while testosterone reduced it in the absence of EFNB3, although these sex hormones had no effect on the contractility of VSMCs from WT mice. The effect of estrogen on KO VSMC contractility was via a nongenomic pathway involving GPER, while that of testosterone was likely via a genomic pathway, according to VSMC contractility assays and GPER knockdown assays. The sex hormone-dependent contraction phenotypes in KO VSMCs were reflected in BP in vivo. Ovariectomy rendered female KO mice normotensive. At the molecular level, EFNB3 KO in VSMCs resulted in reduced myosin light chain kinase phosphorylation, an event enhancing sensitivity to Ca2+ flux in VSMCs. Our investigation has revealed previously unknown EFNB3 functions in BP regulation and show that EFNB3 might be a hypertension risk gene in certain individuals.

Funder

Gouvernement du Canada | Canadian Institutes of Health Research (Instituts de recherche en santé du Canada)

Heart and Stroke Foundation of Quebec

Gouvernement du Canada | Natural Sciences and Engineering Research Council of Canada (Conseil de Recherches en Sciences Naturelles et en Génie du Canada)

Juvenile Diabetes Research Foundation

Fonds de Recherche du Québec - Santé (Fonds de la recherche en sante du Quebec)

J.Louis Levesque Foundation

Fonds de Recherche du Quebec-Santé - for transfusional and hemovigilance

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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