首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Membrane Repair Defects in Muscular Dystrophy Are Linked to Altered Interaction between MG53 Caveolin-3 and Dysferlin
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Membrane Repair Defects in Muscular Dystrophy Are Linked to Altered Interaction between MG53 Caveolin-3 and Dysferlin

机译:肌营养不良的膜修复缺陷与MG53Caveolin-3和Dysferlin之间相互作用的改变有关

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摘要

Defective membrane repair can contribute to the progression of muscular dystrophy. Although mutations in caveolin-3 (Cav3) and dysferlin are linked to muscular dystrophy in human patients, the molecular mechanism underlying the functional interplay between Cav3 and dysferlin in membrane repair of muscle physiology and disease has not been fully resolved. We recently discovered that mitsugumin 53 (MG53), a muscle-specific TRIM (Tri-partite motif) family protein (TRIM72), contributes to intracellular vesicle trafficking and is an essential component of the membrane repair machinery in striated muscle. Here we show that MG53 interacts with dysferlin and Cav3 to regulate membrane repair in skeletal muscle. MG53 mediates active trafficking of intracellular vesicles to the sarcolemma and is required for movement of dysferlin to sites of cell injury during repair patch formation. Mutations in Cav3 (P104L, R26Q) that cause retention of Cav3 in Golgi apparatus result in aberrant localization of MG53 and dysferlin in a dominant-negative fashion, leading to defective membrane repair. Our data reveal that a molecular complex formed by MG53, dysferlin, and Cav3 is essential for repair of muscle membrane damage and also provide a therapeutic target for treatment of muscular and cardiovascular diseases that are linked to compromised membrane repair.
机译:膜修复缺陷可能导致肌肉营养不良。尽管Caveolin-3(Cav3)和dysferlin的突变与人类患者的肌营养不良症有关,但Cav3和dysferlin之间的功能相互作用在肌肉生理和疾病的膜修复中的分子机制尚未完全解决。我们最近发现,mitsugumin 53(MG53)是一种肌肉特异性TRIM(三部分基序)家族蛋白(TRIM72),有助于细胞内小泡运输,并且是横纹肌膜修复机制的重要组成部分。在这里,我们显示MG53与dysferlin和Cav3相互作用以调节骨骼肌的膜修复。 MG53介导细胞内囊泡向肌膜的主动转运,并且在修复贴片形成过程中,dysferlin移动至细胞损伤部位是必需的。导致Cav3保留在高尔基体中的Cav3(P104L,R26Q)突变导致MG53和dysferlin异常定位为显性阴性,从而导致膜修复缺陷。我们的数据表明,由MG53,dysferlin和Cav3形成的分子复合物对于修复肌肉膜损伤至关重要,并且还为治疗与受损的膜修复相关的肌肉和心血管疾病提供了治疗靶标。

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