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瞬时受体电位通道蛋白(TRPC)在天然系统中的功能作用:基因敲除和基因敲低研究的启示

Functional role of TRPC proteins in native systems: implications from knockout and knock-down studies.

作者信息

Freichel Marc, Vennekens Rudi, Olausson Jenny, Stolz Susanne, Philipp Stephan E, Weissgerber Petra, Flockerzi Veit

机构信息

Experimentelle und Klinische Pharmakologie und Toxikologie, Universität des Saarlandes, D 66421 Homburg, Germany.

出版信息

J Physiol. 2005 Aug 15;567(Pt 1):59-66. doi: 10.1113/jphysiol.2005.092999. Epub 2005 Jun 23.

Abstract

Available data on transient receptor potential channel (TRPC) protein functions indicate that these proteins represent essential constituents of agonist-activated and phospholipase C-dependent cation entry pathways in primary cells which contribute to the elevation of cytosolic Ca2+. In addition, a striking number of biological functions have already been assigned to the various TRPC proteins, including mechanosensing activity (TRPC1), chemotropic axon guidance (TRPC1 and TRPC3), pheromone sensing and the regulation of sexual and social behaviour (TRPC2), endothelial-dependent regulation of vascular tone, endothelial permeability and neurotransmitter release (TRPC4), axonal growth (TRPC5), modulation of smooth muscle tone in blood vessels and lung and regulation of podocyte structure and function in the kidney (TRPC6). The lack of compounds which specifically block or activate TRPC proteins impairs the analysis of TRPC function in primary cells. We therefore concentrate in this contribution on (i) studies of TRPC-deficient mouse lines, (ii) data obtained by gene-silencing approaches using antisense oligonucleotides or RNA interference, (iii) expression experiments employing dominant negative TRPC constructs, and (iv) recent data correlating mutations of TRPC genes associated with human disease.

摘要

关于瞬时受体电位通道(TRPC)蛋白功能的现有数据表明,这些蛋白是原代细胞中激动剂激活的、依赖磷脂酶C的阳离子进入途径的重要组成部分,有助于胞质Ca2+浓度升高。此外,各种TRPC蛋白已经被赋予了大量生物学功能,包括机械传感活性(TRPC1)、化学趋向性轴突导向(TRPC1和TRPC3)、信息素感知以及性行为和社会行为的调节(TRPC2)、内皮依赖性血管张力调节、内皮通透性和神经递质释放(TRPC4)、轴突生长(TRPC5)、血管和肺中平滑肌张力的调节以及肾脏足细胞结构和功能的调节(TRPC6)。缺乏特异性阻断或激活TRPC蛋白的化合物会妨碍对原代细胞中TRPC功能的分析。因此,在本论文中,我们集中讨论:(i)TRPC基因缺陷小鼠品系的研究;(ii)使用反义寡核苷酸或RNA干扰通过基因沉默方法获得的数据;(iii)采用显性负性TRPC构建体的表达实验;以及(iv)与人类疾病相关的TRPC基因突变的最新数据。

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