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离子霉素通过刺激储存调节性阳离子内流增强钙离子内流,而非通过对质膜的直接作用。

Ionomycin enhances Ca2+ influx by stimulating store-regulated cation entry and not by a direct action at the plasma membrane.

作者信息

Morgan A J, Jacob R

机构信息

Vascular Biology Research Centre, King's College London, University of London, Kensington, U.K.

出版信息

Biochem J. 1994 Jun 15;300 ( Pt 3)(Pt 3):665-72. doi: 10.1042/bj3000665.

Abstract

In fura-2-loaded ECV304 cells ionomycin elicited a saturable biphasic change in intracellular Ca2+ concentration ([Ca2+]i), where the initial phase represented mobilization of intracellular stores and the sustained component represented Ca2+ influx. To examine whether ionomycin could stimulate influx via a store-dependent mechanism. Mn2+ entry was monitored by the quenching of fura-2 fluorescence: influx was enhanced even after ionomycin wash-out, provided that internal stores were not refilled with Ca2+. Moreover, the maximal rate of histamine-stimulated Mn2+ entry was unaffected by ionomycin, suggesting a common route of entry. The Ca(2+)-entry blocker SK&F 96365 inhibited both the ionomycin-induced Mn2+ entry and the sustained [Ca2+]i response to the ionophore (leaving the initial peak [Ca2+]i response unaffected). In other experiments, although addition of ionomycin further increased the plateau phase induced by 100 microM histamine, the increase was completely abolished by pretreatment with the store Ca(2+)-ATPase inhibitor cyclopiazonic acid (CPA). Furthermore, in store-depleted cells, re-addition of 1 mM extracellular Ca2+ (in the presence of CPA plus histamine) led to a rapid rise in [Ca2+]i, dependent on Ca2+ influx, with kinetics that were not enhanced by ionomycin. These data suggest that ionomycin acts primarily at the level of the internal Ca2+ stores, so that, at the concentrations used here (< or = 1 microM), it increases Ca2+ (and Mn2+) influx via activation of endogenous entry pathways and not by plasmalemmal translocation.

摘要

在负载fura-2的ECV304细胞中,离子霉素引起细胞内Ca2+浓度([Ca2+]i)出现饱和双相变化,其中初始阶段代表细胞内储存钙的动员,持续成分代表Ca2+内流。为了研究离子霉素是否能通过储存依赖机制刺激内流,通过fura-2荧光淬灭监测Mn2+内流:即使在离子霉素洗脱后,只要内部储存钙未重新填充,内流就会增强。此外,组胺刺激的Mn2+内流的最大速率不受离子霉素影响,提示存在共同的内流途径。Ca(2+)内流阻滞剂SK&F 96365抑制离子霉素诱导的Mn2+内流以及对离子载体的持续[Ca2+]i反应(初始峰值[Ca2+]i反应不受影响)。在其他实验中,尽管添加离子霉素进一步增加了由100 microM组胺诱导的平台期,但该增加被储存钙ATP酶抑制剂环匹阿尼酸(CPA)预处理完全消除。此外,在储存耗尽的细胞中,重新添加1 mM细胞外Ca2+(在CPA加组胺存在下)导致[Ca2+]i迅速升高,依赖于Ca2+内流,其动力学不受离子霉素增强。这些数据表明离子霉素主要作用于细胞内Ca2+储存水平,因此,在此处使用的浓度(≤1 microM)下,它通过激活内源性内流途径增加Ca2+(和Mn2+)内流,而不是通过质膜转运。

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