Klishin A, Sedova M, Blatter L A
Department of Physiology, Stritch School of Medicine, Loyola University Chicago, Maywood, Illinois 60153, USA.
Am J Physiol. 1998 Apr;274(4):C1117-28. doi: 10.1152/ajpcell.1998.274.4.C1117.
In vascular endothelial cells, depletion of intracellular Ca2+ stores elicited capacitative Ca2+ entry (CCE) that resulted in biphasic changes of intracellular Ca2+ concentration ([Ca2+]i) with a rapid initial peak of [Ca2+]i followed by a gradual decrease to a sustained plateau level. We investigated the rates of Ca2+ entry, removal, and sequestration during activation of CCE and their respective contributions to the biphasic changes of [Ca2+]i. Ca2+ buffering by mitochondria, removal by Na+/Ca2+ exchange, and a fixed electrical driving force for Ca2+ (voltage-clamp experiments) had little effect on the CCE signal. The rates of entry of Mn2+ and Ba2+, used as unidirectional substitutes for Ca2+ entry through the CCE pathway, were constant and did not follow the concomitant changes of [Ca2+]i. Pharmacological inhibition of the plasma membrane Ca2+ pump, however, abolished the secondary decay phase of the CCE transient. The disparity between the biphasic changes of [Ca2+]i and the constant rate of Ca2+ entry during CCE was the result of a delayed, Ca(2+)-dependent activation of the pump. These results suggest an important modulatory role of the plasma membrane Ca2+ pump in the net cellular gain of Ca2+ during CCE.
在血管内皮细胞中,细胞内钙库的耗竭引发了容量性钙内流(CCE),这导致细胞内钙浓度([Ca2+]i)出现双相变化,即[Ca2+]i最初迅速达到峰值,随后逐渐下降至持续的平台水平。我们研究了CCE激活过程中钙的内流、清除和螯合速率,以及它们对[Ca2+]i双相变化的各自贡献。线粒体对钙的缓冲、钠/钙交换对钙的清除以及钙的固定电驱动力(电压钳实验)对CCE信号影响很小。用作通过CCE途径进行钙内流单向替代物的锰离子和钡离子的内流速率是恒定的,并不随[Ca2+]i的同步变化而变化。然而,质膜钙泵的药理学抑制消除了CCE瞬变的二次衰减阶段。CCE期间[Ca2+]i的双相变化与钙内流恒定速率之间的差异是由于泵的延迟、钙依赖性激活所致。这些结果表明质膜钙泵在CCE期间细胞钙的净获得中具有重要的调节作用。