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钙微区:组织与功能

Calcium microdomains: organization and function.

作者信息

Berridge Michael J

机构信息

Babraham Institute, Babraham, Cambridge, UK.

出版信息

Cell Calcium. 2006 Nov-Dec;40(5-6):405-12. doi: 10.1016/j.ceca.2006.09.002. Epub 2006 Oct 9.

Abstract

Microdomains of Ca(2+), which are formed at sites where Ca(2+) enters the cytoplasm either at the cell surface or at the internal stores, are a key element of Ca(2+) signalling. The term microdomain includes the elementary events that are the basic building blocks of Ca(2+) signals. As Ca(2+) enters the cytoplasm, it produces a local plume of Ca(2+) that has been given different names (sparks, puffs, sparklets and syntillas). These elementary events can combine to produce larger microdomains. The significance of these localized domains of Ca(2+) is that they can regulate specific cellular processes in different regions of the cell. Such microdomains are particularly evident in neurons where both pre- and postsynaptic events are controlled by highly localized pulses of Ca(2+). The ability of single neurons to process enormous amounts of information depends upon such miniaturization of the Ca(2+) signalling system. Control of cardiac cell contraction and gene transcription provides another example of how the parallel processing of Ca(2+) signalling can occur through microdomains of intracellular Ca(2+).

摘要

钙离子微区是钙离子信号传导的关键要素,它在钙离子于细胞表面或细胞内储存部位进入细胞质的位点形成。“微区”这一术语包括作为钙离子信号基本构建单元的基本事件。当钙离子进入细胞质时,会产生局部的钙离子羽流,它有不同的名称(钙火花、钙 puff、钙小火花和钙小体)。这些基本事件可以组合形成更大的微区。这些局部钙离子区域的意义在于它们能够调节细胞不同区域的特定细胞过程。这种微区在神经元中尤为明显,在神经元中,突触前和突触后事件均由高度局部化的钙离子脉冲控制。单个神经元处理大量信息的能力取决于钙离子信号系统的这种小型化。心脏细胞收缩和基因转录的调控提供了另一个例子,说明钙离子信号的并行处理是如何通过细胞内钙离子微区发生的。

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