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Impairment of protein degradation in myofibrillar myopathy caused by FLNC/filamin C mutations

机译:FLNC /纤维蛋白C突变导致肌原纤维肌病蛋白降解受损

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摘要

Myofibrillar myopathy caused by FLNC/filamin C mutations is characterized by disintegration of myofibrils and a massive formation of protein aggregates within skeletal muscle fibers. We performed immunofluorescence studies in skeletal muscle sections from filaminopathy patients to detect disturbances of protein quality control mechanisms. Our analyses revealed altered expression of chaperone proteins and components of proteasomal and autophagic degradation pathways in abnormal muscle fibers that harbor protein deposits but not in neighboring muscle fibers without pathological protein aggregation. These findings suggest a dysfunction of protein stabilizing and degrading mechanisms that leads to a pathological accumulation of protein aggregates in abnormal fibers. Accordingly, a pharmacological modulation of chaperone activity may be a promising therapeutic strategy to prevent protein aggregation and to reduce disease progression. Newly established filaminopathy cell culture models provide a suitable basis for testing such pharmacological approaches.
机译:由FLNC /纤维蛋白C突变引起的肌原纤维肌病的特征是肌原纤维的分解和骨骼肌纤维内大量蛋白质聚集的形成。我们对纤维蛋白病患者的骨骼肌切片进行了免疫荧光研究,以检测蛋白质质量控​​制机制的异常。我们的分析显示,伴侣蛋白的表达发生变化,并且蛋白酶体和自噬降解途径的组分在具有蛋白质沉积物的异常肌肉纤维中发生改变,但在没有病理性蛋白质聚集的情况下在邻近的肌肉纤维中没有发生改变。这些发现表明蛋白质稳定和降解机制的功能障碍导致异常聚集的蛋白质聚集体的病理性积累。因此,伴侣活性的药理学调节可能是防止蛋白质聚集并减少疾病进展的有前途的治疗策略。新建立的丝虫病细胞培养模型为测试此类药理学方法提供了合适的基础。

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