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首页> 外文期刊>The journal of clinical investigation >Dynamic distribution of muscle-specific calpain in mice has a key role in physical-stress adaptation and is impaired in muscular dystrophy
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Dynamic distribution of muscle-specific calpain in mice has a key role in physical-stress adaptation and is impaired in muscular dystrophy

机译:小鼠中肌肉特异性钙蛋白酶的动态分布在身体压力适应中起关键作用,并在肌肉营养不良中受损

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Limb-girdle muscular dystrophy type 2A (LGMD2A) is a genetic disease that is caused by mutations in the calpain 3 gene ( CAPN3 ), which encodes the skeletal muscle–specific calpain, calpain 3 (also known as p94). However, the precise mechanism by which p94 functions in the pathogenesis of this disease remains unclear. Here, using p94 knockin mice (termed herein p94KI mice) in which endogenous p94 was replaced with a proteolytically inactive but structurally intact p94:C129S mutant protein, we have demonstrated that stretch-dependent p94 distribution in sarcomeres plays a crucial role in the pathogenesis of LGMD2A. The p94KI mice developed a progressive muscular dystrophy, which was exacerbated by exercise. The exercise-induced muscle degeneration in p94KI mice was associated with an inefficient redistribution of p94:C129S in stretched sarcomeres. Furthermore, the p94KI mice showed impaired adaptation to physical stress, which was accompanied by compromised upregulation of muscle ankyrin-repeat protein-2 and hsp upon exercise. These findings indicate that the stretch-induced dynamic redistribution of p94 is dependent on its protease activity and essential to protect muscle from degeneration, particularly under conditions of physical stress. Furthermore, our data provide direct evidence that loss of p94 protease activity can result in LGMD2A and molecular insight into how this could occur.
机译:2A型肢带型肌营养不良症(LGMD2A)是由calpain 3基因(CAPN3)突变引起的遗传病,该基因编码骨骼肌特异的钙蛋白酶,钙蛋白酶3(也称为p94)。但是,p94在这种疾病的发病机理中起作用的确切机制仍不清楚。在这里,使用p94敲入小鼠(在本文中称为p94KI小鼠),其中内源性p94被蛋白水解失活但结构完整的p94:C129S突变蛋白替代,我们证明了在肉瘤中拉伸依赖性p94分布在其发病机理中起关键作用LGMD2A。 p94KI小鼠发展为进行性肌营养不良,运动会加剧这种营养不良。运动诱发的p94KI小鼠肌肉变性与拉伸的肉瘤中p94:C129S的无效重新分布有关。此外,p94KI小鼠显示出对身体压力的适应性受损,并伴有运动后肌肉锚蛋白重复蛋白2和hsp的上调。这些发现表明,p94的拉伸诱导的动态重新分布取决于其蛋白酶的活性,并且是保护肌肉免于变性的必要条件,特别是在物理压力条件下。此外,我们的数据提供了直接的证据,证明p94蛋白酶活性的丧失可能导致LGMD2A的发生,以及分子对这种情况如何发生的见解。

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