首页> 美国卫生研究院文献>Cell Regulation >Modulation of Myoblast Fusion by Caveolin-3 in Dystrophic Skeletal Muscle Cells: Implications for Duchenne Muscular Dystrophy and Limb-Girdle Muscular Dystrophy-1C
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Modulation of Myoblast Fusion by Caveolin-3 in Dystrophic Skeletal Muscle Cells: Implications for Duchenne Muscular Dystrophy and Limb-Girdle Muscular Dystrophy-1C

机译:在营养不良的骨骼肌细胞中由Caveolin-3调节成肌细胞融合:对杜兴肌营养不良和肢带肌营养不良1C的影响。

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摘要

Caveolae are vesicular invaginations of the plasma membrane. Caveolin-3 is the principal structural component of caveolae in skeletal muscle cells in vivo. We have recently generated caveolin-3 transgenic mice and demonstrated that overexpression of wild-type caveolin-3 in skeletal muscle fibers is sufficient to induce a Duchenne-like muscular dystrophy phenotype. In addition, we have shown that caveolin-3 null mice display mild muscle fiber degeneration and T-tubule system abnormalities. These data are consistent with the mild phenotype observed in Limb-girdle muscular dystrophy-1C (LGMD-1C) in humans, characterized by a ∼95% reduction of caveolin-3 expression. Thus, caveolin-3 transgenic and null mice represent valid mouse models to study Duchenne muscular dystrophy (DMD) and LGMD-1C, respectively, in humans. Here, we derived conditionally immortalized precursor skeletal muscle cells from caveolin-3 transgenic and null mice. We show that overexpression of caveolin-3 inhibits myoblast fusion to multinucleated myotubes and lack of caveolin-3 enhances the fusion process. M-cadherin and microtubules have been proposed to mediate the fusion of myoblasts to myotubes. Interestingly, we show that M-cadherin is downregulated in caveolin-3 transgenic cells and upregulated in caveolin-3 null cells. For the first time, variations of M-cadherin expression have been linked to a muscular dystrophy phenotype. In addition, we demonstrate that microtubules are disorganized in caveolin-3 null myotubes, indicating the importance of the cytoskeleton network in mediating the phenotype observed in these cells. Taken together, these results propose caveolin-3 as a key player in myoblast fusion and suggest that defects of the fusion process may represent additional molecular mechanisms underlying the pathogenesis of DMD and LGMD-1C in humans.
机译:小窝是质膜的囊泡内陷。 Caveolin-3是体内骨骼肌细胞中小窝的主要结构成分。我们最近已经产生了caveolin-3转基因小鼠,并证明了骨骼肌纤维中野生型caveolin-3的过表达足以诱导类似杜兴氏肌营养不良的表型。此外,我们已经表明,caveolin-3 null小鼠表现出轻度的肌肉纤维变性和T管系统异常。这些数据与在人的肢带型肌营养不良症1C(LGMD-1C)中观察到的轻度表型一致,其特征是Caveolin-3表达降低了约95%。因此,caveolin-3转基因小鼠和无效小鼠代表分别用于研究人的Duchenne肌营养不良症(DMD)和LGMD-1C的有效小鼠模型。在这里,我们从cavolin-3转基因小鼠和空小鼠中获得了条件永生的前体骨骼肌细胞。我们表明,caveolin-3的过表达抑制成肌细胞融合到多核肌管,而caveolin-3的缺乏增强了融合过程。已经提出了M-钙粘着蛋白和微管来介导成肌细胞与肌管的融合。有趣的是,我们表明M-钙粘着蛋白在Caveolin-3转基因细胞中被下调,而在Caveolin-3空细胞中被上调。第一次,M-钙粘着蛋白表达的变化已与肌肉营养不良表型相关联。此外,我们证明微管在caveolin-3空肌管中杂乱无章,表明细胞骨架网络在介导这些细胞中观察到的表型的重要性。两者合计,这些结果提出小窝蛋白3作为成肌细胞融合的关键参与者,并表明融合过程的缺陷可能代表了人类DMD和LGMD-1C发病机理的其他分子机制。

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