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TRPC 介导的钙信号转导及其对细胞功能的调控。

TRPC-mediated Ca signaling and control of cellular functions.

机构信息

Gottfried-Schatz-Research-Center - Biophysics, Medical University of Graz, Neue Stiftingtalstrasse 6/D04, 8010, Graz, Austria.

Institute for Biophysics, Johannes Kepler University Linz, Gruberstrasse 40, 4020 Linz, Austria.

出版信息

Semin Cell Dev Biol. 2019 Oct;94:28-39. doi: 10.1016/j.semcdb.2019.02.001. Epub 2019 Mar 2.

Abstract

Canonical members of the TRP superfamily of ion channels have long been recognized as key elements of Ca handling in a plethora of cell types. The emerging role of TRPC channels in human physiopathology has generated considerable interest in their pharmacological targeting, which requires detailed understanding of their molecular function. Although consent has been reached that receptor-phospholipase C (PLC) pathways and generation of lipid mediators constitute the prominent upstream signaling process that governs channel activity, multimodal sensing features of TRPC complexes have been demonstrated repeatedly. Downstream signaling by TRPC channels is similarly complex and involves the generation of local and global cellular Ca rises, which are well-defined in space and time to govern specific cellular functions. These TRPC-mediated Ca signals rely in part on Ca permeation through the channels, but are essentially complemented by secondary mechanisms such as Ca mobilization from storage sites and Na/Ca exchange, which involve coordinated interaction with signaling partners. Consequently, the control of cell functions by TRPC molecules is critically determined by dynamic assembly and subcellular targeting of the TRPC complexes. The very recent availability of high-resolution structure information on TRPC channel complexes has paved the way towards a comprehensive understanding of signal transduction by TRPC channels. Here, we summarize current concepts of cation permeation in TRPC complexes, TRPC-mediated shaping of cellular Ca signals and the associated control of specific cell functions.

摘要

TRP 超家族离子通道的规范成员一直被认为是众多细胞类型中钙处理的关键要素。TRPC 通道在人类生理病理学中的新兴作用引起了人们对其药理学靶向的极大兴趣,这需要对其分子功能有详细的了解。尽管已经达成共识,即受体-磷脂酶 C(PLC)途径和脂质介质的产生构成了控制通道活性的主要上游信号转导过程,但 TRPC 复合物的多模态传感特性已被反复证明。TRPC 通道的下游信号转导同样复杂,涉及局部和全局细胞 Ca 升高的产生,这些升高在空间和时间上都得到了很好的定义,以控制特定的细胞功能。这些由 TRPC 介导的 Ca 信号部分依赖于 Ca 通过通道的渗透,但本质上由二次机制补充,例如从储存部位动员 Ca 和 Na/Ca 交换,这涉及与信号伙伴的协调相互作用。因此,TRPC 分子对细胞功能的控制取决于 TRPC 复合物的动态组装和亚细胞靶向。最近获得的 TRPC 通道复合物的高分辨率结构信息为全面理解 TRPC 通道的信号转导铺平了道路。在这里,我们总结了 TRPC 复合物中阳离子渗透、TRPC 介导的细胞 Ca 信号形成以及相关的特定细胞功能控制的当前概念。

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