首页> 外文期刊>Human Molecular Genetics >{varepsilon}-Sarcoglycan compensates for lack of {alpha}-sarcoglycan in a mouse model of limb-girdle muscular dystrophy.
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{varepsilon}-Sarcoglycan compensates for lack of {alpha}-sarcoglycan in a mouse model of limb-girdle muscular dystrophy.

机译:{varepsilon} -Sarcoglycan可以补偿肢带型肌营养不良症的小鼠模型中{alpha} -sarcoglycan的缺乏。

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摘要

Dystrophin and the dystrophin-associated protein (DAP) complex protect the sarcolemma against contraction-induced injury and serve as a mechanical link between the extracellular matrix and the actin cytoskeleton. Some of the functional properties of the DAP complex are mediated by its sarcoglycan (SG) subcomplex, which is composed of alpha-, beta-, gamma- and delta-SGs. Autosomal recessive limb-girdle muscular dystrophy type-2D (LGMD 2D) results from reduction in SG subcomplex levels caused by specific mutations in the muscle-specific alpha-SG gene. epsilon-SG is a widely expressed homolog of the muscle-specific alpha-SG, and expression of epsilon-SG may compensate for the pathologic changes in alpha-SG function. Thus, the goal of the present study was to investigate whether overexpression of epsilon-SG can compensate for dysfunction of alpha-SG. Several transgenic mouse lines that overexpress epsilon-SG in skeletal muscle were established. Overexpression of epsilon-SG in normal mice resulted in substitution of epsilon-SG for alpha-SG in the SG complex of skeletal muscle without any obvious abnormalities. To determine whether an increase in epsilon-SG expression may prevent muscular dystrophy in the context of alpha-SG-deficiency, these epsilon-SG transgenic mice were crossed with alpha-SG deficient mice. alpha-SG-deficient mice overexpressing epsilon-SG exhibited no skeletal muscle cell membrane damage or abnormal contraction. These data suggest that the overexpression of epsilon-SG may represent a therapeutic strategy for treatment of LGMD 2D.
机译:肌营养不良蛋白和肌营养不良蛋白相关蛋白(DAP)复合物可保护肌膜免于收缩引起的损伤,并充当细胞外基质和肌动蛋白细胞骨架之间的机械连接。 DAP复合物的某些功能特性是由其糖聚糖(SG)亚复合物介导的,该亚复合物由α-,β-,γ-和δ-SG组成。常染色体隐性隐性腰带型2D型肌营养不良症(LGMD 2D)是由肌肉特异性α-SG基因的特定突变引起的SG亚复合物水平降低引起的。 epsilon-SG是广泛表达的肌肉特异性alpha-SG的同源物,epsilon-SG的表达可能补偿了alpha-SG功能的病理变化。因此,本研究的目的是研究ε-SG的过度表达是否可以补偿α-SG的功能障碍。建立了几种在骨骼肌中过表达ε-SG的转基因小鼠品系。正常小鼠中ε-SG的过表达导致骨骼肌SG复合物中ε-SG被α-SG替代,而没有任何明显的异常。为了确定在ε-SG缺陷的情况下ε-SG表达的增加是否可以预防肌营养不良,将这些ε-SG转基因小鼠与α-SG缺陷的小鼠杂交。过度表达ε-SG的α-SG缺陷型小鼠未显示骨骼肌细胞膜损伤或异常收缩。这些数据表明ε-SG的过表达可能代表了LGMD 2D的治疗策略。

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