GRAF3 serves as a blood volume-sensitive rheostat to control smooth muscle contractility and blood pressure.

Q2 Biochemistry, Genetics and Molecular Biology Small GTPases Pub Date : 2020-05-01 Epub Date: 2018-01-07 DOI:10.1080/21541248.2017.1375602
Xue Bai, Kevin Mangum, Masao Kakoki, Oliver Smithies, Christopher P Mack, Joan M Taylor
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引用次数: 10

Abstract

Vascular resistance is a major determinant of BP and is controlled, in large part, by RhoA-dependent smooth muscle cell (SMC) contraction within small peripheral arterioles and previous studies from our lab indicate that GRAF3 is a critical regulator of RhoA in vascular SMC. The elevated contractile responses we observed in GRAF3 deficient vessels coupled with the hypertensive phenotype provided a mechanistic link for the hypertensive locus recently identified within the GRAF3 gene. On the basis of our previous findings that the RhoA signaling axis also controls SMC contractile gene expression and that GRAF3 expression was itself controlled by this pathway, we postulated that GRAF3 serves as an important counter-regulator of SMC phenotype. Indeed, our new findings presented herein indicate that GRAF3 expression acts as a pressure-sensitive rheostat to control vessel tone by both reducing calcium sensitivity and restraining expression of the SMC-specific contractile proteins that support this function. Collectively, these studies highlight the potential therapeutic value of GRAF3 in the control of human hypertension.

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GRAF3 是对血容量敏感的流变调节器,可控制平滑肌收缩力和血压。
血管阻力是血压的一个主要决定因素,它在很大程度上受外周小动脉中依赖 RhoA 的平滑肌细胞(SMC)收缩的控制,我们实验室以前的研究表明,GRAF3 是血管 SMC 中 RhoA 的一个关键调节因子。我们在 GRAF3 基因缺失的血管中观察到的高收缩反应和高血压表型为最近在 GRAF3 基因中发现的高血压基因座提供了机理上的联系。根据我们之前的发现,RhoA 信号轴也控制 SMC 收缩基因的表达,而 GRAF3 的表达本身也受这一途径的控制,我们推测 GRAF3 是 SMC 表型的重要反调节因子。事实上,我们在本文中介绍的新发现表明,GRAF3 的表达可作为压力敏感的流变器,通过降低钙敏感性和抑制支持这一功能的 SMC 特异性收缩蛋白的表达来控制血管张力。总之,这些研究凸显了 GRAF3 在控制人类高血压方面的潜在治疗价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Small GTPases
Small GTPases Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
6.10
自引率
0.00%
发文量
6
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