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Enhanced excitation-coupled Ca(2+) entry induces nuclear translocation of NFAT and contributes to IL-6 release from myotubes from patients with central core disease

机译:增强的激发耦合Ca(2+)进入诱导NFaT核转位并促成中心核心疾病患者肌管中IL-6的释放

摘要

Prolonged depolarization of skeletal muscle cells induces entry of extracellular calcium into muscle cells, an event referred to as excitation-coupled calcium entry. Skeletal muscle excitation-coupled calcium entry relies on the interaction between the 1,4-dihydropyridine receptor on the sarcolemma and the ryanodine receptor on the sarcoplasmic reticulum membrane. In this study, we directly measured excitation-coupled calcium entry by total internal reflection fluorescence microscopy in human skeletal muscle myotubes harbouring mutations in the RYR1 gene linked to malignant hyperthermia (MH) and central core disease (CCD). We found that excitation-coupled calcium entry is strongly enhanced in cells from patients with CCD compared with individuals with MH and controls. Furthermore, excitation-coupled calcium entry induces generation of reactive nitrogen species and enhances nuclear localization of NFATc1, which in turn may be responsible for the increased IL-6 released by myotubes from patients with CCD.
机译:骨骼肌细胞长时间去极化会诱导细胞外钙进入肌细胞,这一事件称为激发耦合钙进入。骨骼肌兴奋耦合钙的进入依赖于肌膜上的1,4-二氢吡啶受体与肌质网膜上的ryanodine受体之间的相互作用。在这项研究中,我们通过全内反射荧光显微镜直接测量了人骨骼肌肌管中激发耦合钙的进入,这些人骨骼肌肌管具有与恶性高热(MH)和中枢核心疾病(CC​​D)相关的RYR1基因突变。我们发现,与MH和对照组相比,CCD患者的细胞中激发偶联钙的进入被大大增强。此外,激发耦合的钙进入诱导了反应性氮的产生并增强了NFATc1的核定位,这反过来可能是由CCD患者肌管释放的IL-6增加的原因。

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