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肌营养不良蛋白缺陷型肌肉中,SH3和富含半胱氨酸结构域3以及连接素1与二氢吡啶受体的解离

Dissociation of SH3 and cysteine-rich domain 3 and junctophilin 1 from dihydropyridine receptor in dystrophin-deficient muscles.

作者信息

Ashida Yuki, Himori Koichi, Tokuda Nao, Naito Azuma, Yamauchi Nao, Takenaka-Ninagawa Nana, Aoki Yoshitsugu, Sakurai Hidetoshi, Yamada Takashi

机构信息

Graduate School of Health Sciences, Sapporo Medical University, Sapporo, Japan.

Japan Society for the Promotion of Science, Tokyo, Japan.

出版信息

Am J Physiol Cell Physiol. 2022 Sep 1;323(3):C885-C895. doi: 10.1152/ajpcell.00163.2022. Epub 2022 Aug 1.

Abstract

The disruption of excitation-contraction (EC) coupling and subsequent reduction in Ca release from the sarcoplasmic reticulum (SR) have been shown to account for muscle weakness seen in patients with Duchenne muscular dystrophy (DMD). Here, we examined the mechanisms underlying EC uncoupling in skeletal muscles from mdx52 and DMD-null/NSG mice, animal models for DMD, focusing on the SH3 and cysteine-rich domain 3 (STAC3) and junctophilin 1 (JP1), which link the dihydropyridine receptor (DHPR) in the transverse tubule and the ryanodine receptor 1 in the SR. The isometric plantarflexion torque normalized to muscle weight of whole plantar flexor muscles was depressed in mdx52 and DMD-null/NSG mice compared with their control mice. This was accompanied by increased autolysis of calpain-1, decreased levels of STAC3 and JP1 content, and dissociation of STAC3 and JP1 from DHPR-α in gastrocnemius muscles. Moreover, in vitro mechanistic experiments demonstrated that STAC3 and JP1 underwent Ca-dependent proteolysis that was less pronounced in dystrophin-deficient muscles where calpastatin, the endogenous calpain inhibitor, was upregulated. Eccentric contractions further enhanced autolysis of calpain-1 and proteolysis of STAC3 and JP1 that were associated with severe torque depression in gastrocnemius muscles from DMD-null/NSG mice. These data suggest that Ca-dependent proteolysis of STAC3 and JP1 may be an essential factor causing muscle weakness due to EC coupling failure in dystrophin-deficient muscles. The mechanisms underlying the disruption of excitation-contraction (EC) coupling in dystrophin-deficient muscles are not well understood. Here, using animal models for Duchenne muscular dystrophies (DMD), we show a Ca-dependent protease (calpain-1)-mediated proteolysis of SH3 and cysteine-rich domain 3 (STAC3) and junctophilin 1 (JP1), essential EC coupling proteins, in dystrophin-deficient muscle, and highlighting the dissociation of STAC3 and JP1 from dihydropyridine receptor as a causative factor in EC uncoupling of dystrophic muscles.

摘要

兴奋-收缩(EC)偶联的破坏以及随后肌浆网(SR)中钙释放的减少已被证明是杜氏肌营养不良症(DMD)患者肌肉无力的原因。在此,我们研究了DMD动物模型mdx52和DMD基因敲除/NSG小鼠骨骼肌中EC解偶联的潜在机制,重点关注连接横管中的二氢吡啶受体(DHPR)和SR中的兰尼碱受体1的SH3和富含半胱氨酸结构域3(STAC3)以及连接蛋白1(JP1)。与对照小鼠相比,mdx52和DMD基因敲除/NSG小鼠全足底屈肌归一化至肌肉重量的等长足底屈曲扭矩降低。这伴随着钙蛋白酶-1自溶增加、STAC3和JP1含量水平降低以及腓肠肌中STAC3和JP1与DHPR-α解离。此外,体外机制实验表明,STAC3和JP1经历了钙依赖性蛋白水解,而在肌营养不良蛋白缺陷的肌肉中这种水解不太明显,在这些肌肉中内源性钙蛋白酶抑制剂钙蛋白酶抑制蛋白上调。离心收缩进一步增强了钙蛋白酶-1的自溶以及STAC3和JP1的蛋白水解,这与DMD基因敲除/NSG小鼠腓肠肌中严重的扭矩降低有关。这些数据表明,STAC3和JP1的钙依赖性蛋白水解可能是肌营养不良蛋白缺陷肌肉中由于EC偶联失败导致肌肉无力的一个重要因素。肌营养不良蛋白缺陷肌肉中兴奋-收缩(EC)偶联破坏的潜在机制尚不完全清楚。在此,我们使用杜氏肌营养不良症(DMD)的动物模型,展示了钙依赖性蛋白酶(钙蛋白酶-1)介导的肌营养不良蛋白缺陷肌肉中EC偶联必需蛋白SH3和富含半胱氨酸结构域3(STAC3)以及连接蛋白1(JP1)的蛋白水解,并强调STAC3和JP1与二氢吡啶受体的解离是营养不良肌肉EC解偶联的一个致病因素。

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