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Nuclear defects in skeletal muscle from a Dynamin 2-linked centronuclear myopathy mouse model

机译:Dynamin 2连接的中心核肌病小鼠模型骨骼肌的核缺陷

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Dynamin 2 (DNM2) is a key protein of the endocytosis and intracellular membrane trafficking machinery. Mutations in the DNM2 gene cause autosomal dominant centronuclear myopathy (CNM) and a knock-in mouse model expressing the most frequent human DNM2 mutation in CNM (Knock In-Dnm2R465W/+) develops a myopathy sharing similarities with human disease. Using isolated muscle fibres from Knock In-Dnm2R465W/+ mice, we investigated number, spatial distribution and morphology of myonuclei. We showed a reduction of nuclear number from 20 weeks of age in Tibialis anterior muscle from heterozygous mice. This reduction is associated with a decrease in the satellite cell content in heterozygous muscles. The concomitant reduction of myonuclei number and cross-section area in the heterozygous fibres contributes to largely maintain myonuclear density and volume of myonuclear domain. Moreover, we identified signs of impaired spatial nuclear distribution including alteration of distance from myonuclei to their nearest neighbours and change in orientation of the nuclei. This study highlights reduction of number of myonuclei, a key regulator of the myofiber size, as a new pathomechanism underlying muscle atrophy in the dominant centronuclear myopathy. In addition, this study opens a new line of investigation which could prove particularly important on satellite cells in dominant centronuclear myopathy.
机译:动力蛋白2(DNM2)是内吞和细胞内膜运输机制的关键蛋白。 DNM2基因中的突变会引起常染色体显性遗传性中心核肌病(CNM),表达CNM中最常见的人类DNM2突变的敲入小鼠模型(Knock In-Dnm2R465W / +)会导致一种与人类疾病相似的肌病。使用来自敲敲In-Dnm2R465W / +小鼠的分离的肌纤维,我们研究了肌核的数量,空间分布和形态。我们显示杂合小鼠的胫骨前肌从20周龄起核数减少。这种减少与杂合肌肉中卫星细胞含量的减少有关。杂合纤维中肌核数目和横截面积的同时减少有助于很大程度上维持肌核密度和肌核结构域的体积。此外,我们发现了空间核分布受损的迹象,包括从肌核到其最近邻居的距离改变以及核的方向改变。这项研究强调了减少肌纤维的数量,肌纤维是肌纤维大小的关键调节因子,是占优势的中心核肌病中肌肉萎缩的一种新的发病机制。此外,这项研究开辟了一条新的研究路线,可能对显性中心核肌病的卫星细胞特别重要。

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