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首页> 外文期刊>Progress in Neurobiology: An International Review Journal >The TRP family of cation channels: probing and advancing the concepts on receptor-activated calcium entry.
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The TRP family of cation channels: probing and advancing the concepts on receptor-activated calcium entry.

机译:TRP阳离子通道家族:探索并推进有关受体激活钙进入的概念。

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摘要

Stimulation of membrane receptors linked to a phospholipase C and the subsequent production of the second messengers diacylglycerol and inositol-1,4,5-trisphosphate (InsP(3)) is a signaling pathway of fundamental importance in eukaryotic cells. Signaling downstream of these initial steps involves mobilization of Ca(2+) from intracellular stores and Ca(2+) influx through the plasma membrane. For this influx, several contrasting mechanisms may be responsible but particular relevance is attributed to the induction of Ca(2+) influx as consequence of depletion of intracellular calcium stores. This phenomenon (frequently named store-operated calcium entry, SOCE), in turn, may be brought about by various signals, including soluble cytosolic factors, interaction of proteins of the endoplasmic reticulum with ion channels in the plasma membrane, and a secretion-like coupling involving translocation of channels to the plasma membrane. Experimental approaches to analyze these mechanisms have been considerably advanced by the discovery of mammalian homologs of the Drosophila cation channel transient receptor potential (TRP). Some members of the TRP family can be expressed to Ca(2+)-permeable channels that enable SOCE; other members form channels activated independently of stores. TRP proteins may be an essential part of endogenous Ca(2+) entry channels but so far expression of most TRP cDNAs has not resulted in restitution of channels found in any mammalian cells, suggesting the requirement for further unknown subunits. A major exception is CaT1, a TRP channel demonstrated to provide Ca(2+)-selective, store-operated currents identical to those characterized in several cell types. Ongoing and future research on TRP channels will be crucial to understand the molecular basis of receptor-mediated Ca(2+) entry, with respect to the structure of the entry channels as well as to the mechanisms of its activation and regulation.
机译:刺激与磷脂酶C相关的膜受体的刺激以及第二信使二酰基甘油和肌醇1,4,5-三磷酸(InsP(3))的后续生产是真核细胞中至关重要的信号通路。这些初始步骤的下游信号涉及从细胞内存储动员Ca(2+)和通过质膜流入Ca(2+)。对于这种涌入,可能有几种不同的机制负责,但特别相关的是归因于Ca(2+)涌入引起的细胞内钙存储消耗的结果。反过来,这种现象(通常称为储存钙离子进入,称为SOCE)可能是由各种信号引起的,包括可溶性胞溶因子,内质网蛋白与质膜离子通道的相互作用以及类似分泌的信号。偶联涉及通道向质膜的移位。通过发现果蝇阳离子通道瞬时受体电位(TRP)的哺乳动物同系物,分析这些机制的实验方法已大大提高。 TRP家族的某些成员可以表达为启用SOCE的Ca(2+)渗透通道。其他成员形成独立于商店激活的渠道。 TRP蛋白可能是内源Ca(2+)进入通道的重要组成部分,但到目前为止,大多数TRP cDNA的表达尚未导致在任何哺乳动物细胞中发现的通道恢复原位,这表明需要进一步的未知亚基。一个主要的例外是CaT1,这是一个TRP通道,被证明可提供与几种细胞类型中表征的电流相同的Ca(2+)选择性,存储操作电流。 TRP通道的正在进行和未来的研究对于理解受体介导的Ca(2+)进入的分子基础,进入通道的结构以及其激活和调节机制至关重要。

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