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Differential dependence of store-operated and excitation-coupled Ca2+ entry in skeletal muscle on STIM1 and Orai1

机译:STIM1和Orai1在骨骼肌中的存储操作和激发耦合的Ca2 +进入的差异依赖性

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摘要

In non-excitable cells, agonist-induced depletion of intracellular Ca2+ stores triggers Ca2+ influx via a process termed store-operated Ca2+ entry (SOCE). In T-lymphocytes, stromal interaction molecule 1 (STIM1) acts as the intra-store Ca2+ sensor and Orai1 functions as the Ca2+-permeable SOCE channel activated by STIM1 following store depletion. Two functionally distinct Ca2+ entry pathways exist in skeletal muscle; one activated by store depletion (SOCE) and a second by sustained/repetitive depolarization that does not require store depletion (excitation-coupled Ca2+ entry, ECCE). However, the role of STIM1 and Orai1 in coordinating SOCE and ECCE activity in skeletal muscle and whether these two Ca2+ entry pathways represent distinct molecular entities or two different activation mechanisms of the same channel complex is unknown. Here we address these issues using siRNA-mediated STIM1 knockdown, dominant-negative Orai1, and permeation-defective Orai1 to determine the role of STIM1 and Orai1 in store-operated and excitation-coupled Ca2+ entry in skeletal myotubes. SOCE and ECCE activity were quantified from both intracellular Ca2+ measurements and Mn2+ quench assays. We found that STIM1 siRNA reduced STIM1 protein by more than 90% and abolished SOCE activity, while expression of siRNA-resistant hSTIM1 fully restored SOCE. SOCE was also abolished by dominant-negative Orai1 (E106Q) and markedly reduced by expression of a permeation-defective Orai1 (E190Q). In contrast, ECCE was unaffected by STIM1 knockdown, E106Q expression or E190Q expression. These results are the first to demonstrate that SOCE in skeletal muscle requires both STIM1 and Orai1 and that SOCE and ECCE represent two distinct molecular entities.
机译:在非兴奋性细胞中,激动剂诱导的细胞内Ca 2 + 储存耗竭通过称为存储操作的Ca 2 + 的过程触发Ca 2 + 涌入。 sup>条目(SOCE)。在T淋巴细胞中,基质相互作用分子1(STIM1)充当店内Ca 2 + 传感器,而Orai1充当Ca 2 + 渗透性SOCE通道,该通道被激活存储耗尽后的STIM1。骨骼肌中存在两个功能上不同的Ca 2 + 进入途径。一种是通过存储耗尽(SOCE)激活的,另一种是通过不需要存储耗尽的持续/重复去极化激活的(耦合的Ca 2 + 进入,ECCE)。然而,尚不清楚STIM1和Orai1在协调骨骼肌中SOCE和ECCE活性中的作用以及这两个Ca 2 + 进入途径是否代表不同的分子实体或同一通道复合物的两种不同的激活机制。在这里,我们使用siRNA介导的STIM1敲低,优势阴性Orai1和渗透缺陷型Orai1来解决这些问题,以确定STIM1和Orai1在存储操作和激发耦合的Ca 2 + 条目中的作用骨骼肌管。通过细胞内Ca 2 + 测量和Mn 2 + 猝灭测定来定量SOCE和ECCE活性。我们发现,STIM1 siRNA使STIM1蛋白减少了90%以上,并且废除了SOCE活性,而抗siRNA的hSTIM1的表达完全恢复了SOCE。显性阴性Orai1(E106Q)也废除了SOCE,而渗透缺陷型Orai1(E190Q)的表达显着降低了SOCE。相反,ECCE不受STIM1敲低,E106Q表达或E190Q表达的影响。这些结果首次证明骨骼肌中的SOCE同时需要STIM1和Orai1,并且SOCE和ECCE代表两个不同的分子实体。

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