Kostiuk P G
Bogomoletz Institute of Physiology, National Academy of Sciences of Ukraine, Yul. Bogomoltsa, 2, Kiev, 252024, Ukraine.
Ross Fiziol Zh Im I M Sechenova. 1997 May-Jun;83(5-6):2-18.
The paper summarises new data about the molecular mechanisms of calcium homeostasis maintenance in nerve cells and generation of intracellular calcium transients--the most general secondary messenger triggering or modulating all steps of neuronal life cycle and its main functions. It describes the low- and high-voltage activated plasmalemmal ion channels injecting Ca2+ into the cell, cytosolic buffering systems which rapidly bind the main part of injected ions, properties of intracellular stores accumulating Ca2+ ions due to the activity of CERCA-pumps and releasing them back into the cytosol via the CICR mechanism, possible participation of mitochondria in this process, extrusion of Ca2+ from the cell by PMCA-pumps. By introducing new techniques, quantitative characteristics are obtained of these mechanisms and of their participation in determining the amplitude and kinetics of calcium signals in different neurons, as well as their changes during ageing and some forms of brain pathology.
本文总结了有关神经细胞中钙稳态维持的分子机制以及细胞内钙瞬变产生的新数据,钙瞬变是触发或调节神经元生命周期所有步骤及其主要功能的最普遍的第二信使。它描述了将Ca2+注入细胞的低电压和高电压激活的质膜离子通道、迅速结合注入离子主要部分的胞质缓冲系统、由于CERCA泵的活性而积累Ca2+离子并通过CICR机制将其释放回胞质溶胶的细胞内储存库的特性、线粒体在这一过程中的可能参与、PMCA泵将Ca2+从细胞中挤出的过程。通过引入新技术,获得了这些机制及其在确定不同神经元中钙信号的幅度和动力学方面的参与情况的定量特征,以及它们在衰老和某些形式的脑病理学过程中的变化。