首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Gene transfer establishes primacy of striated vs. smooth muscle sarcoglycan complex in limb-girdle muscular dystrophy
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Gene transfer establishes primacy of striated vs. smooth muscle sarcoglycan complex in limb-girdle muscular dystrophy

机译:基因转移确立了横纹肌与平滑肌的首要地位 肢带型肌营养不良症的肌糖复合物

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摘要

Limb-girdle muscular dystrophy types 2E and F are characterized by skeletal muscle weakness and often cardiomyopathy and are due to mutations in the genes encoding β- and δ-sarcoglycan. We previously demonstrated that loss of sarcoglycans in smooth muscle leads to constrictions of the microvasculature that contributes to the cardiac phenotype. It is unclear how vasculature abnormalities affect skeletal muscle. We injected recombinant β- or δ-sarcoglycan adenoviruses into skeletal muscles of corresponding null mice. We hypothesized that the adenoviruses would not transduce vascular smooth muscle, and we would only target skeletal muscle. Indeed, sustained expression of intact sarcoglycan–sarcospan complex was noted at the sarcolemma, neuromuscular junction, myotendinous junction, and in peripheral nerve, but not in vascular smooth muscle. Gene transfer of the corresponding deleted sarcoglycan gene preserved sarcolemmal integrity, prevented pathological dystrophy and hypertrophy, and protected against exercised-induced damage. We conclude that vascular dysfunction is not a primary cause of β- and δ-sarcoglycan-deficient muscular dystrophy. In addition, we show successful functional rescue of entire muscles after adenovirus-mediated gene delivery. Thus, virus-mediated gene transfer of sarcoglycans to skeletal muscle in combination with pharmacological prevention of cardiomyopathy constitute promising therapeutic strategies for limb-girdle muscular dystrophies.
机译:肢带型肌营养不良症2E和F型的特征是骨骼肌无力,通常是心肌病,并且是由于编码β-和δ-肌聚糖的基因突变引起的。我们先前证明,平滑肌中糖聚糖的丢失会导致导致心脏表型的微脉管系统收缩。目前尚不清楚脉管系统异常如何影响骨骼肌。我们将重组β-或δ-糖聚糖腺病毒注射入相应空小鼠的骨骼肌中。我们假设腺病毒不会转导血管平滑肌,而我们只会靶向骨骼肌。确实,在肌膜,神经肌肉接头,肌腱接头和周围神经中发现了完整的糖聚糖-肌膜复合物的持续表达,但在血管平滑肌中却没有观察到这种表达。相应缺失的糖聚糖基因的基因转移可保留肌膜完整性,防止病理性营养不良和肥大,并防止运动引起的损伤。我们得出的结论是,血管功能障碍不是β-和δ-糖聚糖缺陷型肌营养不良症的主要原因。此外,我们还展示了成功的整个肌肉功能恢复 腺病毒介导的基因传递。因此,病毒介导的基因转移 肌糖对骨骼肌的结合及药理预防 心肌病的治疗构成四肢腰带的有希望的治疗策略 肌肉营养不良。

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