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首页> 外文期刊>Human Molecular Genetics >Expression of the neuropathy-associated MTMR2 gene rescues MTM1-associated myopathy
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Expression of the neuropathy-associated MTMR2 gene rescues MTM1-associated myopathy

机译:神经病相关MTMR2基因的表达拯救了MTM1相关的肌病

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Myotubularins (MTMs) are active or dead phosphoinositides phosphatases defining a large protein family conserved through evolution and implicated in different neuromuscular diseases. Loss-of-function mutations in MTM1 cause the severe congenital myopathy called myotubular myopathy (or X-linked centronuclear myopathy) while mutations in the MTM1-related protein MTMR2 cause a recessive Charcot-Marie-Tooth peripheral neuropathy. Here we aimed to determine the functional specificity and redundancy of MTM1 and MTMR2, and to assess their abilities to compensate for a potential therapeutic strategy. Using molecular investigations and heterologous expression of human MTMs in yeast cells and in Mtm1 knockout mice, we characterized several naturally occurring MTMR2 isoforms with different activities. We identified the N-terminal domain as responsible for functional differences between MTM1 and MTMR2. An N-terminal extension observed in MTMR2 is absent in MTM1, and only the short MTMR2 isoform lacking this N-terminal extension behaved similarly to MTM1 in yeast and mice. Moreover, adeno-associated virus-mediated exogenous expression of several MTMR2 isoforms ameliorates the myopathic phenotype owing to MTM1 loss, with increased muscle force, reduced myofiber atrophy, and reduction of the intracellular disorganization hallmarks associated with myotubular myopathy. Noteworthy, the short MTMR2 isoform provided a better rescue when compared with the long MTMR2 isoform. In conclusion, these results point to the molecular basis for MTMs functional specificity. They also provide the proof-of-concept that expression of the neuropathy-associated MTMR2 gene improves the MTM1-associated myopathy, thus identifying MTMR2 as a novel therapeutic target for myotubular myopathy.
机译:Myotubularins(MTMS)是活性或死磷酸钠磷酸磷酸酶,其磷酸酶定义通过演化保守的大蛋白质系列,并涉及不同的神经肌肉疾病。 MTM1中的功能丧失突变导致严重的先天性肌病(或X-Lixed Centronuclecat病变),而MTM1相关蛋白质MTMR2中的突变导致隐性Charcot-Marie-Toother外周神经病变。在这里,我们旨在确定MTM1和MTMR2的功能特异性和冗余,并评估其补偿潜在治疗策略的能力。利用酵母细胞和MTM1敲除小鼠的人MTMS的分子研究和异源表达,我们用不同活性表征了几种天然存在的MTMR2同种型。我们将N末端域标识为MTM1和MTMR2之间的功能差异负责。在MTMR2中观察到的N-末端延伸在MTM1中不存在,并且只有缺乏该n末端延伸的短MTMR2同种型表现为酵母和小鼠中的MTM1。此外,由于MTM1损失,腺瘤相关病毒介导的几种MTMR2同种型的外源表达改善了肌动力,肌肉力增加,减少肌无力萎缩,以及减少与肌瘤肌病相关的细胞内紊乱标志。值得注意的是,与长MTMR2同种型相比,短MTMR2同种型提供更好的救援。总之,这些结果指出了MTM函数特异性的分子基础。它们还提供了概念的证据,即神经病变相关的MTMR2基因的表达改善了MTM1相关的肌病,从而鉴定MTMR2作为肌瘤肌病的新疗法靶标。

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