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钠钙交换体的活性在很大程度上调节了低渗应激诱导的大鼠小脑星形胶质细胞内钙离子信号。渗透压对交换活性的影响。

The activity of the Na+/Ca2+ exchanger largely modulates the Ca2+i signal induced by hypo-osmotic stress in rat cerebellar astrocytes. The effect of osmolarity on exchange activity.

作者信息

Rojas Héctor, Ramos Magaly, Benaim Gustavo, Caputo Carlo, DiPolo Reinaldo

机构信息

Laboratorio de Fisiología Celular, Centro de Biofísica y Bioquímica, Instituto Venezolano de Investigaciones Científicas, Apartado 21827, Caracas 1020A.

出版信息

J Physiol Sci. 2008 Aug;58(4):277-9. doi: 10.2170/physiolsci.RP009208. Epub 2008 Jul 19.

Abstract

We recently demonstrated that rat cerebellar Type-1 astrocytes express a very active Na(+)/Ca(2+) exchanger highly colocalized with ryanodine receptors (RyRs), which in turn play a key role in glutamate-induced Ca(2+) signaling through a calcium-induced calcium release (CICR) mechanism. In this work we have explored whether the Na(+)/Ca(2+) exchanger has any role in the Ca(2+)(i) signal induced by hypo-osmotic stress in these cells, using microspectrofluorometric measurements with Fura-2, pharmacological tools, and confocal microscopy image analysis. We present evidence for the first time that the increase in Ca(2+) in rat cerebellar Type-1 astrocytes, resulting from moderate hypotonic shock, is mediated by Ca(2+) release from ryanodine-operated Ca(2+)(i) stores, and that the magnitude of the intracellular Ca(2+) signal induced by hypotonicity in the short term (up to 240 s) is small and controlled by the activity of the Na(+)/Ca(2+) exchanger operating in its extrusion mode. With longer times in the hypotonic medium, intracellular Ca(2+) store depletion leads to Ca(2+) entry through store-operated Ca(2+) channels. We found it interesting that the activity of the Na(+)/Ca(2+) exchanger measured during this reverse mode operation (Ca(2+) entry in exchange for internal Na(+)) was found to be greatly increased in hypotonic solutions and decreased in hypertonic ones. The buffering of the Ca(2+) rise induced by hypo-osmotic stress may prevent excessive increases in Ca(2+), which otherwise might impair the normal function of this glial cell.

摘要

我们最近证明,大鼠小脑1型星形胶质细胞表达一种非常活跃的Na⁺/Ca²⁺交换体,它与ryanodine受体(RyRs)高度共定位,而RyRs通过钙诱导钙释放(CICR)机制在谷氨酸诱导的Ca²⁺信号传导中起关键作用。在这项工作中,我们使用Fura-2进行显微分光荧光测量、药理学工具和共聚焦显微镜图像分析,探讨了Na⁺/Ca²⁺交换体在这些细胞的低渗应激诱导的Ca²⁺(i)信号中是否起作用。我们首次提供证据表明,中度低渗休克导致大鼠小脑1型星形胶质细胞中[Ca²⁺](i)的增加是由ryanodine操纵的Ca²⁺(i)储存库释放Ca²⁺介导的,并且在短期内(长达240秒)低渗诱导的细胞内Ca²⁺信号的幅度很小,并由以其外向模式运行的Na⁺/Ca²⁺交换体的活性控制。在低渗培养基中放置较长时间后,细胞内Ca²⁺储存库耗竭导致Ca²⁺通过储存库操纵的Ca²⁺通道进入。我们发现有趣的是,在这种反向模式操作(Ca²⁺进入以交换内部Na⁺)期间测量的Na⁺/Ca²⁺交换体的活性在低渗溶液中大大增加,而在高渗溶液中降低。低渗应激诱导的[Ca²⁺](i)升高的缓冲作用可能会防止[Ca²⁺](i)过度增加,否则可能会损害这种神经胶质细胞的正常功能。

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