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无钙环境下单内皮细胞中钙库耗竭的机制

Mechanisms of Ca2+ store depletion in single endothelial cells in a Ca(2+)-free environment.

作者信息

Paltauf-Doburzynska J, Frieden M, Graier W F

机构信息

Department of Medical Biochemistry, Karl-Franzens University of Graz, Austria.

出版信息

Cell Calcium. 1999 May;25(5):345-53. doi: 10.1054/ceca.1999.0038.

Abstract

Depletion of agonist-sensitive Ca2+ stores results in activation of capacitative Ca2+ entry (CCE) in endothelial cells. The proportion of Ca2+ stores contributing to the regulation of CCE is unknown. In fura-2/am loaded single endothelial cells freshly isolated from bovine left circumflex coronary arteries, we investigated whether a resting period in a Ca(2+)-free environment results in emptying of bradykinin-sensitive Ca2+ stores (BsS) and activation of CCE. In a Ca(2+)-free environment, depletion of BsS occurred in a time-dependent manner (59% after 10 min in Ca(2+)-free solution). This effect was prevented by inhibition of the Na(+)-Ca2+ exchange but not by a blockade of ryanodine-sensitive Ca2+ release (RsCR). In contrast to BsS, mitochondrial Ca2+ content remained unchanged in the Ca(2+)-free environment. Remarkably, activity of CCE (monitored as Mn2+ influx) did not increase after depletion of BsS in the Ca(2+)-free environment. In contrast to Mn2+ influx, the effect of re-addition of Ca2+ to elevate bulk Ca2+ concentration ([Ca2+]b) decreased with the time the cells rested in Ca(2+)-free buffer. This decrease was prevented by an inhibition of RsCR. In low Na+ conditions the effect of Ca2+ on [Ca2+]b was reduced while it did not change the time the cells rested in Ca(2+)-free solution. After a 2 min period in low Na+ conditions, ryanodine-induced Ca2+ extrusion was markedly diminished. Inhibition of RsCR re-established the effect of Ca2+ on [Ca2+]b in low Na+ conditions. Collapsing subplasmalemmal Ca2+ stores with nocodazole, increased the effect of Ca2+ on [Ca2+]b. In nocodazole-treated cells, the effect of Ca2+ on [Ca2+]b was not reduced in Ca(2+)-free environment. These data indicate that activation of CCE is not associated with the agonist-sensitive Ca2+ pools that deplete rapidly in a Ca(2+)-free environment. Subplasmalemmal ryanodine-sensitive Ca2+ stores (RsS) are emptied in Ca(2+)-free/low Na+ solution and re-sequester Ca2+ which enters the cells prior an increase in [Ca2+]b occurs. Thus, in endothelial cells there are differences in the functions of various subplasmalemmal Ca2+ stores (i.e. BsS and RsS), which include either activation of CCE or regulation of subplasmalemmal Ca2+.

摘要

激动剂敏感的Ca2+储存库的耗竭会导致内皮细胞中钙池调控性Ca2+内流(CCE)的激活。对CCE调节起作用的Ca2+储存库的比例尚不清楚。在从牛左旋冠状动脉新鲜分离的用fura-2/AM负载的单个内皮细胞中,我们研究了在无Ca2+环境中的静息期是否会导致缓激肽敏感的Ca2+储存库(BsS)排空以及CCE的激活。在无Ca2+环境中,BsS的耗竭呈时间依赖性(在无Ca2+溶液中10分钟后耗竭59%)。这种效应可通过抑制Na+-Ca2+交换来阻止,但不能通过阻断兰尼碱敏感的Ca2+释放(RsCR)来阻止。与BsS相反,线粒体Ca2+含量在无Ca2+环境中保持不变。值得注意的是,在无Ca2+环境中BsS耗竭后,CCE的活性(以Mn2+内流监测)并未增加。与Mn2+内流相反,重新添加Ca2+以提高细胞内总Ca2+浓度([Ca2+]b)的效应会随着细胞在无Ca2+缓冲液中静息时间的延长而降低。这种降低可通过抑制RsCR来阻止。在低Na+条件下,Ca2+对[Ca2+]b的效应降低,而这并不改变细胞在无Ca2+溶液中静息的时间。在低Na+条件下处理2分钟后,兰尼碱诱导的Ca2+外排明显减少。抑制RsCR可在低Na+条件下重新建立Ca2+对[Ca2+]b的效应。用诺考达唑破坏质膜下Ca2+储存库会增加Ca2+对[Ca2+]b的效应。在诺考达唑处理的细胞中,在无Ca2+环境中Ca2+对[Ca2+]b的效应并未降低。这些数据表明,CCE的激活与在无Ca2+环境中迅速耗竭的激动剂敏感Ca2+池无关。质膜下兰尼碱敏感的Ca2+储存库(RsS)在无Ca2+/低Na+溶液中排空,并在[Ca2+]b升高之前重新摄取进入细胞的Ca2+。因此,在内皮细胞中,各种质膜下Ca2+储存库(即BsS和RsS)的功能存在差异,其中包括CCE的激活或质膜下Ca2+的调节。

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