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肌醇三磷酸介导的钙信号的调节及空间方面

Regulatory and spatial aspects of inositol trisphosphate-mediated calcium signals.

作者信息

Horne J H

机构信息

Department of Biology, California Institute of Technology, Pasadena, USA.

出版信息

Cell Biochem Biophys. 1999;30(2):267-86. doi: 10.1007/BF02738070.

Abstract

Hormones that act to release Ca2+ from intracellular stores initiate a signaling cascade that culminates in the production of inositol 1,4,5-trisphosphate (InsP3). The Ca2+ response mediated by InsP3 is not a sustained increase in the cytosolic Ca2+ concentration, but rather a series of periodic spikes that manifest as waves in larger cells. In vitro studies have determined that the key positive feedback parameter driving spikes and waves is a highly localized direct Ca(2+)-activation of InsP3-gated Ca2+ channels. Advances in fluorescent Ca2+ imaging have facilitated the resolution of individual positive feedback units. These studies have revealed that there are several modes of channel coupling underlying global Ca2+ signals; single channel openings or Ca2+ "blips," synchronized clusters of channels or Ca2+ "puffs," and cell wide calcium waves. It appears that the channel clusters that produce Ca2+ puffs are synchronized by the highly localized positive feedback that was predicted by the in vitro studies of channel regulation. Localization of InsP3-induced Ca2+ signals has been shown to be important for activation of several cellular processes including uni-directional salt flow and mitochondrial activation.

摘要

作用于从细胞内储存库释放Ca2+的激素会启动一个信号级联反应,最终产生肌醇1,4,5-三磷酸(InsP3)。由InsP3介导的Ca2+反应不是胞质Ca2+浓度的持续增加,而是一系列周期性尖峰,在较大的细胞中表现为波。体外研究已确定驱动尖峰和波的关键正反馈参数是InsP3门控Ca2+通道的高度局部直接Ca(2+)激活。荧光Ca2+成像技术的进步有助于分辨单个正反馈单元。这些研究表明,在全局Ca2+信号的基础上存在几种通道耦合模式;单通道开放或Ca2+“尖峰”、通道同步簇或Ca2+“ puff”以及全细胞钙波。似乎产生Ca2+ puff的通道簇是由通道调节的体外研究所预测的高度局部正反馈同步的。InsP3诱导的Ca2+信号的定位已被证明对包括单向盐流和线粒体激活在内的几种细胞过程的激活很重要。

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