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Recent Breakthroughs in the Molecular Mechanism of Capacitative Calcium Entry (With Thoughts on How We Got Here)

机译:电容性钙离子进入的分子机理的最新突破(对我们如何进入这里的思考)

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摘要

Activation of phospholipase C by G-protein-coupled receptors results in release of intracellular Ca2+ and activation of Ca2+ channels in the plasma membrane. The intracellular release of Ca2+ is signaled by the second messenger, inositol 1,4,5-trisphosphate. Ca2+ entry involves signaling from depleted intracellular stores to plasma membrane Ca2+ channels, a process referred to as capacitative calcium entry or store-operated calcium entry. The electrophysiological current associated with capacitative calcium entry is the calcium-release-activated calcium current, or Icrac. In the twenty years since the inception of the concept of capacitative calcium entry, a variety of activation mechanisms have been proposed, and there has been considerable interest in the possibility of transient receptor potential channels functioning as store-operated channels. However, in the past two years, two major players in both the signaling and permeation mechanisms for store-operated channels have been discovered: Stim1 (and possibly Stim2) and the Orai proteins. Activation of store-operated channels involves an endoplasmic reticulum Ca2+ sensor called Stim1. Stim1 acts by redistributing within a small component of the endoplasmic reticulum, approaching the plasma membrane, but does not appear to translocate into the plasma membrane. Stim1, either directly or indirectly, signals to plasma membrane Orai proteins which constitute pore-forming subunits of store-operated channels.
机译:G蛋白偶联受体激活磷脂酶C导致细胞内Ca 2 + 的释放和质膜中Ca 2 + 通道的激活。 Ca 2 + 在细胞内的释放是由第二种信使肌醇1,4,5-三磷酸酯指示的。 Ca 2 + 进入涉及从耗尽的细胞内存储到质膜Ca 2 + 通道的信号传导,这一过程称为电容性钙进入或存储操作性钙进入。与电容性钙进入相关的电生理电流是钙释放激活的钙电流或Icrac。自从容性钙进入概念问世以来的二十年中,已经提出了多种激活机制,并且瞬态受体电位通道可作为存储操作通道的可能性引起了人们的极大兴趣。但是,在过去的两年中,已经发现了存储操作通道的信号传导和渗透机制的两个主要参与者:Stim1(可能还有Stim2)和Orai蛋白。存储操作通道的激活涉及一个称为Stim1的内质网Ca 2 + 传感器。 Stim1的作用是在内质网的一小部分内重新分布,接近质膜,但似乎没有转移到质膜中。 Stim1直接或间接地向质膜Orai蛋白发出信号,该蛋白构成存储操作通道的成孔亚基。

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    James W. Putney Jr.;

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  • 年(卷),期 -1(42),2
  • 年度 -1
  • 页码 103–110
  • 总页数 14
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