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促进过极化信号在过表达 TRIC-A 通道的血管平滑肌中的传递。

Facilitated hyperpolarization signaling in vascular smooth muscle-overexpressing TRIC-A channels.

机构信息

Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto 606-8501, Japan.

出版信息

J Biol Chem. 2013 May 31;288(22):15581-9. doi: 10.1074/jbc.M112.435396. Epub 2013 Apr 16.

Abstract

The TRIC channel subtypes, namely TRIC-A and TRIC-B, are intracellular monovalent cation-specific channels and likely mediate counterion movements to support efficient Ca(2+) release from the sarco/endoplasmic reticulum. Vascular smooth muscle cells (VSMCs) contain both TRIC subtypes and two Ca(2+) release mechanisms; incidental opening of ryanodine receptors (RyRs) generates local Ca(2+) sparks to induce hyperpolarization and relaxation, whereas agonist-induced activation of inositol trisphosphate receptors produces global Ca(2+) transients causing contraction. Tric-a knock-out mice develop hypertension due to insufficient RyR-mediated Ca(2+) sparks in VSMCs. Here we describe transgenic mice overexpressing TRIC-A channels under the control of a smooth muscle cell-specific promoter. The transgenic mice developed congenital hypotension. In Tric-a-overexpressing VSMCs from the transgenic mice, the resting membrane potential decreased because RyR-mediated Ca(2+) sparks were facilitated and cell surface Ca(2+)-dependent K(+) channels were hyperactivated. Under such hyperpolarized conditions, L-type Ca(2+) channels were inactivated, and thus, the resting intracellular Ca(2+) levels were reduced in Tric-a-overexpressing VSMCs. Moreover, Tric-a overexpression impaired inositol trisphosphate-sensitive stores to diminish agonist-induced Ca(2+) signaling in VSMCs. These altered features likely reduced vascular tonus leading to the hypotensive phenotype. Our Tric-a-transgenic mice together with Tric-a knock-out mice indicate that TRIC-A channel density in VSMCs is responsible for controlling basal blood pressure at the whole-animal level.

摘要

TRIC 通道亚型,即 TRIC-A 和 TRIC-B,是细胞内单价阳离子特异性通道,可能介导抗衡离子运动,以支持肌浆/内质网中 Ca2+的有效释放。血管平滑肌细胞(VSMCs)包含两种 TRIC 亚型和两种 Ca2+释放机制;偶然开放的兰尼碱受体(RyRs)产生局部 Ca2+火花以诱导超极化和松弛,而激动剂诱导的三磷酸肌醇受体激活则产生全局 Ca2+瞬变导致收缩。由于 VSMCs 中 RyR 介导的 Ca2+火花不足,TRIC-a 敲除小鼠发展为高血压。在这里,我们描述了在平滑肌细胞特异性启动子控制下过表达 TRIC-A 通道的转基因小鼠。这些转基因小鼠表现为先天性低血压。在来自转基因小鼠的过表达 TRIC-A 的 VSMCs 中,由于 RyR 介导的 Ca2+火花被促进并且细胞表面 Ca2+-依赖性 K+通道被过度激活,静息膜电位降低。在这种超极化条件下,L 型 Ca2+通道失活,因此,过表达 TRIC-A 的 VSMCs 中的静息细胞内 Ca2+水平降低。此外,TRIC-A 过表达损害了三磷酸肌醇敏感储存,以减少 VSMCs 中激动剂诱导的 Ca2+信号。这些改变的特征可能降低了血管张力,导致低血压表型。我们的 TRIC-A 转基因小鼠与 TRIC-a 敲除小鼠一起表明,VSMCs 中的 TRIC-A 通道密度负责控制整个动物水平的基础血压。

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