Pflugers Arch. 2014 May;466(5):987-1001. doi: 10.1007/s00424-013-1361-6.
Stromal interaction molecule 1 (STIM1) mediates Ca2+ movements from the extracellular space to the cytosol through a store-operated Ca2+ entry (SOCE) mechanism in various cells including skeletal muscle cells. In the present study, to reveal the unidentified functional role of the STIM1 C terminus from 449 to 671 amino acids in skeletal muscle, binding assays and quadrupole time-of-flight mass spectrometry were used to identify proteins binding in this region along with proteins that mediate skeletal muscle contraction and relaxation. STIM1 binds to sarcoplasmic/endoplasmic reticulum Ca2+-ATPase 1a (SERCA1a) via this region (called STIM1-SBR). The binding was confirmed in endogenous full-length STIM1 in rabbit skeletal muscle and mouse primary skeletal myotubes via co-immunoprecipitation assay and immunocytochemistry. STIM1 knockdown in mouse primary skeletal myotubes decreased Ca2+ uptake from the cytosol to the sarcoplasmic reticulum (SR) through SERCA1a only at micromolar cytosolic Ca2+ concentrations, suggesting that STIM1 could be required for the full activity of SERCA1a possibly during the relaxation of skeletal muscle. Various Ca2+ imaging experiments using myotubes expressing STIM1-SBR suggest that STIM1 is involved in intracellular Ca2+ distributions between the SR and the cytosol via regulating SERCA1a activity without affecting SOCE. Therefore, in skeletal muscle, STIM1 could play an important role in regulating Ca2+ movements between the SR and the cytosol.
基质相互作用分子 1(STIM1)通过储存操作的钙进入(SOCE)机制在各种细胞中(包括骨骼肌细胞)介导细胞外空间到细胞质中的钙移动。在本研究中,为了揭示 STIM1 从 449 到 671 个氨基酸的 C 末端在骨骼肌中的未识别功能作用,使用结合测定和四极杆飞行时间质谱来鉴定与介导骨骼肌收缩和松弛的蛋白质结合的该区域中的蛋白质。STIM1 通过该区域(称为 STIM1-SBR)与肌浆/内质网 Ca2+-ATPase 1a(SERCA1a)结合。通过共免疫沉淀测定和免疫细胞化学在兔骨骼肌和小鼠原代骨骼肌肌管中的内源性全长 STIM1 中证实了结合。在小鼠原代骨骼肌肌管中敲低 STIM1 仅在微摩尔细胞质 Ca2+浓度下通过 SERCA1a 减少细胞质到肌浆网(SR)的 Ca2+摄取,表明 STIM1 可能是 SERCA1a 完全活性所必需的,可能在骨骼肌松弛期间。使用表达 STIM1-SBR 的肌管进行的各种 Ca2+成像实验表明,STIM1 通过调节 SERCA1a 活性而不影响 SOCE,参与 SR 和细胞质之间的细胞内 Ca2+分布。因此,在骨骼肌中,STIM1 可能在调节 SR 和细胞质之间的 Ca2+移动中发挥重要作用。