Human GRK4γ 142V Variant Promotes Angiotensin II Type I Receptor–Mediated Hypertension via Renal Histone Deacetylase Type 1 Inhibition

Author:

Wang Zheng1,Zeng Chunyu1,Villar Van Anthony M.1,Chen Shi-You1,Konkalmatt Prasad1,Wang Xiaoyan1,Asico Laureano D.1,Jones John E.1,Yang Yu1,Sanada Hironobu1,Felder Robin A.1,Eisner Gilbert M.1,Weir Matthew R.1,Armando Ines1,Jose Pedro A.1

Affiliation:

1. From the Division of Pediatric Nephrology, Department of Pediatrics, Georgetown University of School of Medicine, Washington, DC (Z.W.); Department of Cardiology, Daping Hospital, The Third Military Medical University, Chongqing, P.R. China (C.Z.); Chongqing Institute of Cardiology, Chongqing, P.R. China; Division of Nephrology, Department of Medicine (V.A.M.V., X.W., L.D.A., J.E.J., Y.Y., M.R.W., I.A., P.A.J.) and Department of Physiology (P.A.J.), University of Maryland School of Medicine,...

Abstract

The influence of a single gene on the pathogenesis of essential hypertension may be difficult to ascertain, unless the gene interacts with other genes that are germane to blood pressure regulation. G-protein–coupled receptor kinase type 4 ( GRK4 ) is one such gene. We have reported that the expression of its variant hGRK4γ 142V in mice results in hypertension because of impaired dopamine D 1 receptor. Signaling through dopamine D 1 receptor and angiotensin II type I receptor (AT 1 R) reciprocally modulates renal sodium excretion and blood pressure. Here, we demonstrate the ability of the hGRK4γ 142V to increase the expression and activity of the AT 1 R. We show that hGRK4γ 142V phosphorylates histone deacetylase type 1 and promotes its nuclear export to the cytoplasm, resulting in increased AT 1 R expression and greater pressor response to angiotensin II. AT 1 R blockade and the deletion of the Agtr1a gene normalize the hypertension in hGRK4γ 142V mice. These findings illustrate the unique role of GRK4 by targeting receptors with opposite physiological activity for the same goal of maintaining blood pressure homeostasis, and thus making the GRK4 a relevant therapeutic target to control blood pressure.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

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