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Molecular Clustering of STIM1 with Orai1/CRACM1 at the Plasma Membrane Depends Dynamically on Depletion of Ca2+ Stores and on Electrostatic Interactions

机译:STIM1与Orai1 / CRACM1在质膜上的分子簇动态取决于Ca2 +储存的耗竭和静电相互作用。

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摘要

Activation of store operated Ca2+ entry involves stromal interaction molecule 1 (STIM1), localized to the endoplasmic reticulum (ER), and calcium channel subunit (Orai1/CRACM1), localized to the plasma membrane. Confocal microscopy shows that thapsigargin-mediated depletion of ER Ca2+ stores in RBL mast cells causes a redistribution of STIM1, labeled with monomeric red fluorescent protein (mRFP), to micrometer-scale ER-plasma membrane junctions that contain Orai1/CRACM1, labeled with monomeric Aequorea coerulescens green fluorescent protein (AcGFP). Using fluorescence resonance energy transfer (FRET), we determine that this visualized coredistribution is accompanied by nanoscale interaction of STIM1-mRFP and AcGFP-Orai1/CRACM1. We find that antigen stimulation of immunoglobulin E receptors causes much less Orai1/CRACM1 and STIM1 association, but strong interaction is observed under conditions that prevent refilling of ER stores. Stimulated association monitored by FRET is inhibited by sphingosine derivatives in parallel with inhibition of Ca2+ influx. Similar structural and functional effects are caused by mutation of acidic residues in the cytoplasmic segment of Orai1/CRACM1, suggesting a role for electrostatic interactions via these residues in the coupling of Orai1/CRACM1 to STIM1. Our results reveal dynamic molecular interactions between STIM1 and Orai1/CRACM1 that depend quantitatively on electrostatic interactions and on the extent of store depletion.
机译:存储操作的Ca2 +进入的激活涉及位于内质网(ER)的间质相互作用分子1(STIM1)和位于质膜的钙通道亚基(Orai1 / CRACM1)。共聚焦显微镜显示,thapsigargin介导的RBL肥大细胞中ER Ca2 +储存耗竭导致标记有单体红色荧光蛋白(mRFP)的STIM1重新分布到微米级的ER-质膜连接处,该连接处含有Orai1 / CRACM1,并标记有单体蓝藻equequlescens绿色荧光蛋白(AcGFP)。使用荧光共振能量转移(FRET),我们确定该可视化的核心分布伴随STIM1-mRFP和AcGFP-Orai1 / CRACM1的纳米级相互作用。我们发现,免疫球蛋白E受体的抗原刺激引起的Orai1 / CRACM1和STIM1缔合少得多,但在防止补充ER储存的条件下观察到强烈的相互作用。通过FRET监测的刺激缔合被鞘氨醇衍生物抑制,同时抑制Ca2 +流入。类似的结构和功能效应是由Orai1 / CRACM1胞质片段中酸性残基的突变引起的,这表明通过这些残基进行的静电相互作用在Orai1 / CRACM1与STIM1的偶联中发挥了作用。我们的研究结果揭示了STIM1和Orai1 / CRACM1之间的动态分子相互作用,定量地取决于静电相互作用和存储损耗的程度。

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