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Survival motor neuron protein deficiency impairs myotube formation by altering myogenic gene expression and focal adhesion dynamics

机译:存活的运动神经元蛋白缺乏症通过改变成肌基因表达和粘着斑动态来损害肌管形成

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摘要

While spinal muscular atrophy (SMA) is characterized by motor neuron degeneration, it is unclear whether and how much survival motor neuron (SMN) protein deficiency in muscle contributes to the pathophysiology of the disease. There is increasing evidence from patients and SMA model organisms that SMN deficiency causes intrinsic muscle defects. Here we investigated the role of SMN in muscle development using muscle cell lines and primary myoblasts. Formation of multinucleate myotubes by SMN-deficient muscle cells is inhibited at a stage preceding plasma membrane fusion. We found increased expression and reduced induction of key muscle development factors, such as MyoD and myogenin, with differentiation of SMN-deficient cells. In addition, SMN-deficient muscle cells had impaired cell migration and altered organization of focal adhesions and the actin cytoskeleton. Partially restoring SMN inhibited the premature expression of muscle differentiation markers, corrected the cytoskeletal abnormalities and improved myoblast fusion. These findings are consistent with a role for SMN in myotube formation through effects on muscle differentiation and cell motility. Published by Oxford University Press 2014. This work is written by (a) US Government employee(s) and is in the public domain in the US.
机译:虽然脊髓性肌萎缩症(SMA)的特征是运动神经元变性,但尚不清楚肌肉中运动神经元(SMN)蛋白质缺乏症是否以及在这种病征中占多少。来自患者和SMA模型生物的证据越来越多,SMN缺乏会引起内在的肌肉缺陷。在这里,我们调查了SMN在使用肌肉细胞系和原代成肌细胞的肌肉发育中的作用。由SMN缺陷的肌肉细胞形成的多核肌管在质膜融合之前的一个阶段被抑制。我们发现SMN缺陷细胞的分化增加了关键肌肉发育因子(如MyoD和肌生成素)的表达并降低了其诱导作用。此外,SMN缺陷的肌肉细胞损害了细胞迁移,并改变了粘着斑和肌动蛋白细胞骨架的组织。部分恢复SMN可以抑制肌肉分化标记物的过早表达,纠正细胞骨架异常并改善成肌细胞融合。这些发现与SMN通过影响肌肉分化和细胞运动而在肌管形成中的作用一致。由牛津大学出版社2014年出版。本作品由美国政府雇员撰写,在美国属于公共领域。

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