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首页> 外文期刊>Skeletal Muscle >GRAF1 deficiency blunts sarcolemmal injury repair and exacerbates cardiac and skeletal muscle pathology in dystrophin-deficient mice
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GRAF1 deficiency blunts sarcolemmal injury repair and exacerbates cardiac and skeletal muscle pathology in dystrophin-deficient mice

机译:肌萎缩蛋白缺乏症小鼠缺乏GRAF1钝性肌膜损伤修复并加重了心脏和骨骼肌的病理学

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Background The plasma membranes of striated muscle cells are particularly susceptible to rupture as they endure significant mechanical stress and strain during muscle contraction, and studies have shown that defects in membrane repair can contribute to the progression of muscular dystrophy. The synaptotagmin-related protein, dysferlin, has been implicated in mediating rapid membrane repair through its ability to direct intracellular vesicles to sites of membrane injury. However, further work is required to identify the precise molecular mechanisms that govern dysferlin targeting and membrane repair. We previously showed that the bin–amphiphysin–Rvs (BAR)–pleckstrin homology (PH) domain containing Rho-GAP GTPase regulator associated with focal adhesion kinase-1 (GRAF1) was dynamically recruited to the tips of fusing myoblasts wherein it promoted membrane merging by facilitating ferlin-dependent capturing of intracellular vesicles. Because acute membrane repair responses involve similar vesicle trafficking complexes/events and because our prior studies in GRAF1-deficient tadpoles revealed a putative role for GRAF1 in maintaining muscle membrane integrity, we postulated that GRAF1 might also play an important role in facilitating dysferlin-dependent plasma membrane repair. Methods We used an in vitro laser-injury model to test whether GRAF1 was necessary for efficient muscle membrane repair. We also generated dystrophin/GRAF1 doubledeficient mice by breeding mdx mice with GRAF1 hypomorphic mice. Evans blue dye uptake and extensive morphometric analyses were used to assess sarcolemmal integrity and related pathologies in cardiac and skeletal muscles isolated from these mice. Results Herein, we show that GRAF1 is dynamically recruited to damaged skeletal and cardiac muscle plasma membranes and that GRAF1-depleted muscle cells have reduced membrane healing abilities. Moreover, we show that dystrophin depletion exacerbated muscle damage in GRAF1-deficient mice and that mice with dystrophin/GRAF1 double deficiency phenocopied the severe muscle pathologies observed in dystrophin/dysferlin-double null mice. Consistent with a model that GRAF1 facilitates dysferlin-dependent membrane patching, we found that GRAF1 associates with and regulates plasma membrane deposition of dysferlin. Conclusions Overall, our work indicates that GRAF1 facilitates dysferlin-dependent membrane repair following acute muscle injury. These findings indicate that GRAF1 might play a role in the phenotypic variation and pathological progression of cardiac and skeletal muscle degeneration in muscular dystrophy patients.
机译:背景技术横纹肌细胞的质膜特别容易破裂,因为它们在肌肉收缩过程中会承受明显的机械应力和应变,并且研究表明,膜修复中的缺陷可能会导致肌营养不良症的发展。突触结合蛋白相关蛋白dysferlin通过将细胞内囊泡引导至膜损伤部位而参与介导快速膜修复。但是,需要进一步的工作来确定控制dysferlin靶向和膜修复的精确分子机制。先前我们发现,与黏着斑激酶1(GRAF1)相关的含有Rho-GAP GTPase调节剂的bin-双歧杆菌-Rvs(BAR)-pleckstrin同源性(PH)域被动态募集到融合成肌细胞的尖端,从而促进了膜合并通过促进依赖铁蛋白的细胞内囊泡捕获。由于急性膜修复反应涉及类似的囊泡运输复合物/事件,并且由于我们先前对GRAF1缺乏的t的研究显示GRAF1在维持肌肉膜完整性方面具有假定作用,因此我们推测GRAF1在促进dysferlin依赖性血浆中也可能起重要作用膜修复。方法我们使用体外激光损伤模型测试GRAF1是否对有效的肌膜修复是必需的。我们还通过用GRAF1亚型小鼠繁殖mdx小鼠来生成dystrophin / GRAF1双缺陷小鼠。伊文思蓝染料摄取和广泛的形态分析用于评估从这些小鼠分离的心肌和骨骼肌的肌膜完整性和相关病理。结果在本文中,我们表明GRAF1被动态地募集到受损的骨骼和心肌质膜,而GRAF1耗尽的肌肉细胞则具有降低的膜愈合能力。此外,我们显示肌营养不良蛋白耗竭加剧了GRAF1缺陷小鼠的肌肉损伤,而具有dystrophin / GRAF1双重缺陷的小鼠表现出在dystrophin / dysferlin-double null小鼠中观察到的严重肌肉病变。与GRAF1促进dysferlin依赖性膜修补的模型一致,我们发现GRAF1与dysferlin的质膜沉积相关并对其进行调节。结论总的来说,我们的工作表明GRAF1促进了急性肌肉损伤后dysferlin依赖性膜修复。这些发现表明,GRAF1可能在肌营养不良患者的心脏和骨骼肌变性的表型变异和病理进展中起作用。

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