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Live-cell imaging of ER-PM contact architecture by a novel TIRFM approach reveals extension of junctions in response to store-operated Ca2+-entry

机译:通过一种新颖的方法TIRFM ER-PM接触架构的活细胞成像揭示结的扩展响应于池操纵的Ca 2+ -entry

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Nanometer-spaced appositions between endoplasmic reticulum and plasma membrane (ER-PM junctions) stabilized by membrane-joining protein complexes are critically involved in cellular Ca(2+)-handling and lipid trafficking. ER-PM junctional architecture and plasticity associated with inter-membrane communication are as yet barely understood. Here, we introduce a method to precisely characterize ER-PM junction morphology and dynamics with high temporal resolution and minimal disturbance of junctional intermembrane communication. We show that expression of soluble cytosolic fluorophores in combination with TIRFM enables to delineate ER and PM distance in the range of 10-150?nm. Live-cell imaging of sub-plasmalemmal structures in RBL-2H3 mast cells by this method, designated as fluorescence density mapping (FDM), revealed profound dynamics of ER-PM contact sites in response to store-depletion. We report the existence of a Ca(2+)-dependent process that expands the junctional ER to enlarge its contact surface with the PM, thereby promoting and stabilizing STIM1-Orai1 competent ER-PM junctions.
机译:通过膜连接蛋白复合物稳定的内质网和血浆膜(ER-PM结)之间的纳米间隔环状均可涉及细胞Ca(2 +) - 处理和脂质贩运。与膜间通信相关的ER-PM结架和可塑性尚未理解。在这里,我们介绍一种精确地表征ER-PM结形态和动力学的方法,具有高时间分辨率和近距离互相通信的最小扰动。我们表明可溶性胞质荧光团与TiRFM组合的表达能够描绘ER和PM距离在10-150℃的范围内。通过这种方法将副质模结构的亚质急性结构的活细胞成像,被称为荧光密度映射(FDM),响应于储存耗尽,显示了ER-PM接触位点的深刻动态。我们报告了CA(2 +) - 依赖过程的存在,该过程扩展了连接ER以扩大其接触表面与PM,从而促进和稳定肌肉溶液的态度1个主管ER-PM结。

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