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神经细胞体中钙离子缓冲剂分布不均匀。

Non-uniform Ca2+ buffer distribution in a nerve cell body.

作者信息

Tillotson D, Gorman A L

出版信息

Nature. 1980 Aug 21;286(5775):816-7. doi: 10.1038/286816a0.

Abstract

In nerve cells, Ca2+ influx through voltage-dependent channels in the membrane causes a transient rise in the intracellular, free Ca2+ concentration. Such changes have been shown to be important for the release of transmitter at the axon terminal and for the control of the movement of ions through channels in the soma membrane. The transient behaviour of the rise in Ca2+ concentration can, in part, be explained by the presence of sequestering systems in the cell which tend to limit the magnitude and duration of changes in internal Ca2+ (refs 7--10). It is possible that systems involved in buffering changes in internal Ca2+ are not distributed uniformly throughout the cell. This is particularly likely in the cell body, where a significant portion of the cytoplasm is occupied by the nucleus, whose buffering capacity may differ from that of other cellular regions. We report here that in the soma of a molluscan pacemaker neurone, the machinery responsible for short-term buffering of Ca2+ ions is localized near the inner surface of the plasma membrane.

摘要

在神经细胞中,通过膜上电压依赖性通道的Ca2+内流会导致细胞内游离Ca2+浓度短暂升高。这种变化已被证明对于轴突末梢神经递质的释放以及控制离子通过胞体膜上通道的移动非常重要。Ca2+浓度升高的瞬态行为部分可以通过细胞中存在的螯合系统来解释,这些系统倾向于限制细胞内Ca2+变化的幅度和持续时间(参考文献7 - 10)。参与缓冲细胞内Ca2+变化的系统可能并非均匀分布于整个细胞。在细胞体中尤其如此,其中很大一部分细胞质被细胞核占据,其缓冲能力可能与其他细胞区域不同。我们在此报告,在软体动物起搏神经元的胞体中,负责Ca2+离子短期缓冲的机制定位于质膜内表面附近。

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