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Mutant BIN1-Dynamin 2 complexes dysregulate membrane remodeling in the pathogenesis of centronuclear myopathy

机译:突变体Bin1-Dynamin 2复合物在Centronuclear肌病发病机制中失调膜重塑

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摘要

Membrane remodeling is required for dynamic cellular processes such as cell division, polarization, and motility. BAR domain proteins and dynamins are key molecules in membrane remodeling that work together for membrane deformation and fission. In striated muscles, sarcolemmal invaginations termed T-tubules are required for excitation–contraction coupling. BIN1 and DNM2, which encode a BAR domain protein BIN1 and dynamin 2, respectively, have been reported to be causative genes of centronuclear myopathy (CNM), a hereditary degenerative disease of skeletal muscle, and deformation of T-tubules is often observed in the CNM patients. However, it remains unclear how BIN1 and dynamin 2 are implicated in T-tubule biogenesis and how mutations in these molecules cause CNM to develop. Here, using an in cellulo reconstitution assay, we demonstrate that dynamin 2 is required for stabilization of membranous structures equivalent to T-tubules. GTPase activity of wild-type dynamin 2 is suppressed through interaction with BIN1, whereas that of the disease-associated mutant dynamin 2 remains active due to lack of the BIN1-mediated regulation, thus causing aberrant membrane remodeling. Finally, we show that in cellulo aberrant membrane remodeling by mutant dynamin 2 variants is correlated with their enhanced membrane fission activities, and the results can explain severity of the symptoms in patients. Thus, this study provides molecular insights into dysregulated membrane remodeling triggering the pathogenesis of DNM2-related CNM.
机译:动态蜂窝方法如细胞分裂,极化和运动性需要膜重塑。酒吧结构域蛋白质和发电机是膜重塑的关键分子,用于膜变形和裂变。在横纹状的肌肉中,激发收缩偶联需要称为T-管的SARCOMMAL invagination。据报道,分别编码条形蛋白蛋白BIN1和发动机2的BIN1和DNM2是Centronuclear肌病病变(CNM)的致病基因,骨骼肌的遗传性退行性疾病,并且通常观察到T型管的变形CNM患者。然而,仍然不明确于Bin1和Dynamin 2如何涉及T-管生物发生以及这些分子中的突变如何产生CNM。这里,使用在纤维素重构测定中,我们证明了动力学2需要稳定与T小管相当的膜状结构。通过与BIN1的相互作用抑制野生型发作动发球2的GTPase活性,而疾病相关突变动力学2的疾病导致由于缺乏宾1介导的调节,因此仍然活跃,因此引起异常膜重塑。最后,我们表明,在突变体发育中的纤维素异常膜重塑中,与其增强的膜裂变活动相关,结果可以解释患者症状的严重程度。因此,该研究提供了触发DNM2相关CNM的发病机制的失调膜重塑的分子见解。

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