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内质网钙库耗竭诱导神经元c-fos mRNA水平变化的时间分析:将细胞质钙活性钳制在静息水平的影响。

Temporal analysis of changes in neuronal c-fos mRNA levels induced by depletion of endoplasmic reticulum calcium stores: effect of clamping cytoplasmic calcium activity at resting levels.

作者信息

Gissel C, Doutheil J, Paschen W

机构信息

Max-Planck-Institute for Neurological Research, Department of Experimental Neurology, Köln, Germany.

出版信息

J Neurochem. 1997 Dec;69(6):2538-45. doi: 10.1046/j.1471-4159.1997.69062538.x.

Abstract

Activation of immediate early gene expression is a key event in stress-induced neuronal cell injury. To study whether changes in cytoplasmic calcium activity are necessary to activate neuronal immediate early gene expression, endoplasmic reticulum (ER) calcium stores of primary neurons were depleted by exposing cells to thapsigargin (Tg), an irreversible inhibitor of ER Ca2+-ATPase. Tg-induced rise in [Ca2+]i and the effect of loading neurons with the cell-permeable calcium chelator BAPTA-AM on this increase in [Ca2+]i were measured in fura-2-loaded cells by fluorescence microscopy. Changes in c-fos mRNA levels were evaluated by quantitative PCR. Tg treatment of neurons produced a pronounced rise in c-fos mRNA levels (approximately 10-fold more than DMSO) which peaked at 1 h after exposure. The Tg-induced rise in c-fos mRNA content was unchanged (hippocampal neurons) or even increased further (cortical neurons) by preloading cells with BAPTA before incubation with Tg. It is concluded that in neuronal cells an increase in cytoplasmic calcium activity is not a prerequisite for a rise in mRNA levels of c-fos. Thus, stress-induced changes in mRNA levels of immediate early genes of neurons may also result from disturbances in ER calcium homeostasis and not necessarily by an overload of cells with calcium ions. The results of the present series of experiments cast further doubt on the widely accepted hypothesis that the stress-induced cytoplasmic overload of neurons with calcium ions is the primary event triggering cell injury.

摘要

即刻早期基因表达的激活是应激诱导神经元细胞损伤中的关键事件。为了研究细胞质钙活性的变化对于激活神经元即刻早期基因表达是否必要,通过将原代神经元暴露于毒胡萝卜素(Tg)(一种内质网Ca2 + -ATP酶的不可逆抑制剂)来耗尽内质网(ER)钙储备。通过荧光显微镜在负载fura-2的细胞中测量Tg诱导的[Ca2 +]i升高以及用细胞可渗透的钙螯合剂BAPTA-AM加载神经元对这种[Ca2 +]i升高的影响。通过定量PCR评估c-fos mRNA水平的变化。用Tg处理神经元导致c-fos mRNA水平显著升高(比二甲基亚砜高约10倍),在暴露后1小时达到峰值。在与Tg孵育前用BAPTA预加载细胞,Tg诱导的c-fos mRNA含量升高未改变(海马神经元)或甚至进一步增加(皮质神经元)。得出的结论是,在神经元细胞中,细胞质钙活性的增加不是c-fos mRNA水平升高的先决条件。因此,应激诱导的神经元即刻早期基因mRNA水平的变化也可能源于内质网钙稳态的紊乱,而不一定是细胞钙离子过载。本系列实验的结果进一步质疑了广泛接受的假说,即应激诱导的神经元细胞质钙离子过载是触发细胞损伤的主要事件。

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