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培养的小脑星形胶质细胞中胞质Ca2+升高对渗透压敏感性牛磺酸释放和细胞体积调节的增强作用。

Potentiation of the osmosensitive taurine release and cell volume regulation by cytosolic Ca2+ rise in cultured cerebellar astrocytes.

作者信息

Cardin Velia, Lezama Ruth, Torres-Márquez M Eugenia, Pasantes-Morales Herminia

机构信息

Department of Biophysics, Institute of Cell Physiology, National University of Mexico, Mexico City, Mexico.

出版信息

Glia. 2003 Nov;44(2):119-28. doi: 10.1002/glia.10271.

Abstract

Hyposmolarity (-30%) in cultured cerebellar astrocytes raised cytosolic Ca2+ concentration ([Ca2+]i) from 160 to 400 nM and activated the osmosensitive taurine release (OTR) pathway. Although OTR is essentially [Ca2+]i-independent, further increase in [Ca2+]i by ionomycin strongly enhanced OTR, with a more robust effect at low and mild osmolarity reductions. Ionomycin did not affect isosmotic taurine efflux. OTR was decreased by tyrphostin A25 and increased by ortho-vanadate, suggesting a modulation by tyrosine kinase or phosphorylation state. Inhibition of phosphatidylinositol-3-kinase activity by wortmannin markedly decreased OTR and the ionomycin increase. Conversely, OTR and the ionomycin effect were independent of ERK1/ERK2 activation. OTR and its potentiation by ionomycin differed in their sensitivity to CaM and CaMK blockers and in the requirement of an intact cytoskeleton for the ionomycin effect, but not for normal OTR. Changes in the actin cytoskeleton organization elicited by hyposmolarity were not observed in ionomycin-treated cells, which may permit the operation of CaM/CaMK pathways involved in the OTR potentiation by [Ca2+]i rise. OTR potentiation by [Ca2+]i requires the previous or simultaneous activation/operation of the taurine release mechanism and is not modifying its set point, but rather increasing the effectiveness of the pathway, resulting in a more efficient volume regulation. This may have a beneficial effect in pathological situations with concurrent swelling and [Ca2+]i elevation in astrocytes.

摘要

培养的小脑星形胶质细胞中的低渗(-30%)使胞质Ca2+浓度([Ca2+]i)从160 nM升高至400 nM,并激活了渗透敏感性牛磺酸释放(OTR)途径。尽管OTR本质上不依赖于[Ca2+]i,但离子霉素使[Ca2+]i进一步升高会强烈增强OTR,在低渗和轻度渗透压降低时作用更强。离子霉素不影响等渗条件下牛磺酸的外流。酪氨酸磷酸化抑制剂A25可降低OTR,而原钒酸盐可增加OTR,提示其受酪氨酸激酶或磷酸化状态的调节。渥曼青霉素抑制磷脂酰肌醇-3-激酶活性可显著降低OTR以及离子霉素引起的增加。相反,OTR和离子霉素的作用与ERK1/ERK2激活无关。OTR及其被离子霉素增强的作用在对钙调蛋白和钙/钙调蛋白依赖性蛋白激酶阻滞剂的敏感性以及离子霉素作用对完整细胞骨架的需求方面存在差异,但正常OTR则不然。在离子霉素处理的细胞中未观察到低渗引起的肌动蛋白细胞骨架组织变化,这可能允许[Ca2+]i升高所涉及的钙调蛋白/钙/钙调蛋白依赖性蛋白激酶途径发挥作用。[Ca2+]i增强OTR需要牛磺酸释放机制先前或同时被激活/运作,且不是改变其设定点,而是提高途径的有效性,从而实现更有效的体积调节。这在星形胶质细胞同时肿胀和[Ca2+]i升高的病理情况下可能具有有益作用。

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