首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Calcium entry-calcium refilling (CECR) coupling between store-operated Ca(2+) entry and sarco/endoplasmic reticulum Ca(2+)-ATPase.
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Calcium entry-calcium refilling (CECR) coupling between store-operated Ca(2+) entry and sarco/endoplasmic reticulum Ca(2+)-ATPase.

机译:钙进入钙补充(CECR)耦合之间存储操作的Ca(2+)入口和肌/内质网Ca(2 +)-ATPase。

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摘要

Cross-talk between subcellular organelles is essential for cellular Ca(2+) homeostasis. We have studied the effects of knocking down STIM1, the Ca(2+) sensor of the endoplasmic reticulum (ER), on several homeostatic Ca(2+)-handling mechanisms, including plasma membrane Ca(2+) entry and transport by ER, mitochondria and nucleus. We have used targeted aequorins to selectively measure calcium fluxes in different organelles. Actions of STIM1 were extremely selective, restricted to store operated Ca(2+) channels (SOC) and Ca(2+) uptake by the ER. No interactions with uptake or release of Ca(2+) by mitochondria or nucleus were detected. Ca(2+) exit from the ER, including passive leak, release via inositol 1,4,5-trisphosphate and ryanodine receptors, was unaffected. STIM1 knock-down inhibited ER Ca(2+) uptake in intact but not in permeabilized cells, suggesting a privileged calcium entry-calcium refilling (CECR) coupling between plasma membrane SOC and ER calcium pump in the intact cell. As a result a large part of the entering Ca(2+) is taken up into the ER without reaching the bulk cytosol. The tightness of CECR, as measured by the slope of the stimulus-signal strength function, was comparable to classic excitation-response coupling mechanisms, such as excitation-contraction, excitation-secretion or excitation-transcription coupling.
机译:亚细胞器之间的串扰对细胞Ca(2+)稳态至关重要。我们已经研究了敲低内质网(ER)的Ca(2+)传感器STIM1对几种稳态Ca(2+)处理机制,包括质膜Ca(2+)进入和转运的影响,线粒体和细胞核。我们已经使用靶向水母发光蛋白来选择性地测量不同细胞器中的钙通量。 STIM1的动作具有极高的选择性,仅限于存储操作的Ca(2+)通道(SOC)和ER对Ca(2+)的吸收。没有与线粒体或细胞核吸收或释放Ca(2+)的相互作用。 Ca(2+)从ER,包括被动泄漏,通过肌醇1,4,5-三磷酸和ryanodine受体释放释放不受影响。 STIM1敲低抑制完整但未透化的细胞中的ER Ca(2+)吸收,表明完整细胞中质膜SOC和ER钙泵之间的特权钙进入钙再填充(CECR)耦合。结果,进入的Ca(2+)的大部分被吸收到ER中,而没有到达大量的胞质溶胶。通过刺激信号强度函数的斜率测得的CECR的紧密度可与经典的激发-反应耦合机制(例如激发-收缩,激发-分泌或激发-转录耦合)相媲美。

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