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神经元内的钙离子储存库在小脑颗粒神经元中主要充当“钙离子汇”。

Intraneuronal Ca2+ stores act mainly as a 'Ca2+ sink' in cerebellar granule neurones.

作者信息

Toescu E C

机构信息

Department of Physiology, Birmingham University Medical School, UK.

出版信息

Neuroreport. 1998 Apr 20;9(6):1227-31. doi: 10.1097/00001756-199804200-00049.

Abstract

The role of intracellular Ca2+ stores during depolarization-evoked Ca2+ signals in cultured cerebellar granule neurones was assessed by depletion of the stores with a specific inhibitor of the endoplasmic reticulum Ca2+ pump: thapsigargin (TG, 0.7 microM). The maximal rate of [Ca2+]i increase, measured as the first-order differential of the [Ca2+]i trace, increased directly in proportion to the increasing KCl concentration (in the range 20-90 mM) or, for a given KCl concentration (50 mM), to the levels of pre-stimulation [Ca2+i (range 25-100 nM Ca2+). Both these relationships were unaffected by TG. In contrast, the amplitude of the KCl-evoked response for KCl concentrations > 30 mM (inducing an increase in [Ca2+]i > 400 nM) was increased in the presence of TG.

摘要

通过用内质网Ca2+泵的特异性抑制剂毒胡萝卜素(TG,0.7微摩尔)耗尽细胞内Ca2+储存,评估了培养的小脑颗粒神经元去极化诱发Ca2+信号期间细胞内Ca2+储存的作用。[Ca2+]i增加的最大速率,以[Ca2+]i曲线的一阶导数来衡量,与KCl浓度的增加(在20-90毫摩尔范围内)成正比,或者对于给定的KCl浓度(50毫摩尔),与刺激前[Ca2+i]的水平(25-100纳摩尔Ca2+范围)成正比。这两种关系均不受TG影响。相反,在TG存在的情况下,对于KCl浓度>30毫摩尔(导致[Ca2+]i增加>400纳摩尔)的KCl诱发反应的幅度增加。

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