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Expression of the inclusion body myopathy 3 mutation in Drosophila depresses myosin function and stability and recapitulates muscle inclusions and weakness

机译:果蝇中包涵体肌病3突变的表达降低了肌球蛋白的功能和稳定性,并概括了肌包涵和无力

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Hereditary myosin myopathies are characterized by variable clinical features. Inclusion body myopathy 3 (IBM-3) is an autosomal dominant disease associated with a missense mutation (E706K) in the myosin heavy chain IIa gene. Adult patients experience progressive muscle weakness. Biopsies reveal dystrophic changes, rimmed vacuoles with cytoplasmic inclusions, and focal disorganization of myofilaments. We constructed a transgene encoding E706K myosin and expressed it in Drosophila (E701K) indirect flight and jump muscles to establish a novel homozygous organism with homogeneous populations of fast IBM-3 myosin and muscle fibers. Flight and jump abilities were severely reduced in homozygotes. ATPase and actin sliding velocity of the mutant myosin were depressed >80% compared with wild-type myosin. Light scattering experiments and electron microscopy revealed that mutant myosin heads bear a dramatic propensity to collapse and aggregate. Thus E706K (E701K) myosin appears far more labile than wild-type myosin. Furthermore, mutant fly fibers exhibit ultrastructural hallmarks seen in patients, including cytoplasmic inclusions containing aberrant proteinaceous structures and disorganized muscle filaments. Our Drosophila model reveals the unambiguous consequences of the IBM-3 lesion on fast muscle myosin and fibers. The abnormalities observed in myosin function and muscle ultrastructure likely contribute to muscle weakness observed in our flies and patients.
机译:遗传性肌球蛋白肌病的特征是可变的临床特征。包涵体肌病3(IBM-3)是一种常染色体显性遗传疾病,与肌球蛋白重链IIa基因的错义突变(E706K)相关。成年患者经历进行性肌肉无力。活检显示营养不良性改变,带有胞质内含物的边缘空泡以及肌丝的局灶性紊乱。我们构建了一个编码E706K肌球蛋白的转基因,并在果蝇(E701K)间接飞行和跳跃肌肉中表达它,从而建立了一种新型的纯合生物,具有快速IBM-3肌球蛋白和肌肉纤维的均质种群。纯合子的飞行和跳跃能力严重降低。与野生型肌球蛋白相比,突变型肌球蛋白的ATP酶和肌动蛋白滑动速度降低> 80%。光散射实验和电子显微镜显示,突变型肌球蛋白头具有明显的坍塌和聚集倾向。因此,E706K(E701K)肌球蛋白似乎比野生型肌球蛋白更不稳定。此外,突变的蝇纤维表现出在患者中观察到的超微结构特征,包括含有异常蛋白质结构和紊乱的肌肉细丝的胞质内含物。我们的果蝇模型揭示了IBM-3病变对快肌肌球蛋白和纤维的明确影响。在肌球蛋白功能和肌肉超微结构中观察到的异常可能导致我们的苍蝇和患者中观察到的肌肉无力。

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