Shalygin Alexey, Skopin Anton, Kalinina Vera, Zimina Olga, Glushankova Lyuba, Mozhayeva Galina N, Kaznacheyeva Elena
From the Institute of Cytology, Russian Academy of Sciences, 4 Tikhoretsky Avenue, St. Petersburg 194064, Russia.
From the Institute of Cytology, Russian Academy of Sciences, 4 Tikhoretsky Avenue, St. Petersburg 194064, Russia.
J Biol Chem. 2015 Feb 20;290(8):4717-4727. doi: 10.1074/jbc.M114.601856. Epub 2014 Dec 22.
The endoplasmic reticulum calcium sensors stromal interaction molecules 1 and 2 (STIM1 and STIM2) are key modulators of store-operated calcium entry. Both these sensors play a major role in physiological functions in normal tissue and in pathology, but available data on native STIM2-regulated plasma membrane channels are scarce. Only a few studies have recorded STIM2-induced CRAC (calcium release-activated calcium) currents. On the other hand, many cell types display store-operated currents different from CRAC. The STIM1 protein regulates not only CRAC but also transient receptor potential canonical (TRPC) channels, but it has remained unclear whether STIM2 is capable of regulating store-operated non-CRAC channels. Here we present for the first time experimental evidence for the existence of endogenous non-CRAC STIM2-regulated channels. As shown in single-channel patch clamp experiments on HEK293 cells, selective activation of native STIM2 proteins or STIM2 overexpression results in store-operated activation of Imin channels, whereas STIM1 activation blocks this process. Changes in the ratio between active STIM2 and STIM1 proteins can switch the regulation of Imin channels between store-operated and store-independent modes. We have previously characterized electrophysiological properties of different Ca(2+) influx channels coexisting in HEK293 cells. The results of this study show that STIM1 and STIM2 differ in the ability to activate these store-operated channels; Imin channels are regulated by STIM2, TRPC3-containing INS channels are induced by STIM1, and TRPC1-composed Imax channels are activated by both STIM1 and STIM2. These new data about cross-talk between STIM1 and STIM2 and their different roles in store-operated channel activation are indicative of an additional level in the regulation of store-operated calcium entry pathways.
内质网钙传感器基质相互作用分子1和2(STIM1和STIM2)是储存式钙内流的关键调节因子。这两种传感器在正常组织的生理功能和病理过程中都发挥着重要作用,但关于天然STIM2调节的质膜通道的现有数据却很少。仅有少数研究记录了STIM2诱导的CRAC(钙释放激活钙)电流。另一方面,许多细胞类型表现出不同于CRAC的储存式电流。STIM1蛋白不仅调节CRAC,还调节瞬时受体电位香草酸亚型(TRPC)通道,但STIM2是否能够调节储存式非CRAC通道仍不清楚。在此,我们首次提供了内源性非CRAC STIM2调节通道存在的实验证据。如在HEK293细胞上进行的单通道膜片钳实验所示,天然STIM2蛋白的选择性激活或STIM2过表达会导致Imin通道的储存式激活,而STIM1激活则会阻断这一过程。活性STIM2与STIM1蛋白比例的变化可在储存式和非储存式模式之间切换Imin通道的调节。我们之前已经对共存于HEK293细胞中的不同Ca(2+)内流通道的电生理特性进行了表征。本研究结果表明,STIM1和STIM2在激活这些储存式通道的能力上存在差异;Imin通道由STIM2调节,含TRPC3的INS通道由STIM1诱导,由TRPC1组成的Imax通道则由STIM1和STIM2共同激活。这些关于STIM1与STIM2之间相互作用及其在储存式通道激活中不同作用的新数据表明,在储存式钙内流途径的调节中存在一个额外的层面。