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Mild Functional Differences of Dynamin 2 Mutations Associated to Centronuclear Myopathy and Charcot-Marie-Tooth Peripheral Neuropathy

机译:与中心核肌病和Charcot-Marie-Tooth周围神经病相关的Dynamin 2突变的轻度功能差异

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摘要

The large GTPase dynamin 2 is a key player in membrane and cytoskeletal dynamics mutated in centronuclear myopathy (CNM) and Charcot-Marie Tooth (CMT) neuropathy, two discrete dominant neuromuscular disorders affecting skeletal muscle and peripheral nerves respectively. The molecular basis for the tissue-specific phenotypes observed and the physiopathological mechanisms linked to dynamin 2 mutations are not well established. In this study, we have analyzed the impact of CNM and CMT implicated dynamin 2 mutants using ectopic expression of four CNM and two CMT mutations, and patient fibroblasts harboring two dynamin 2 CNM mutations in established cellular processes of dynamin 2 action. Wild type and CMT mutants were seen in association with microtubules whereas CNM mutants lacked microtubules association and did not disrupt interphase microtubules dynamics. Most dynamin 2 mutants partially decreased clathrin-mediated endocytosis when ectopically expressed in cultured cells; however, experiments in patient fibroblasts suggested that endocytosis is overall not defective. Furthermore, CNM mutants were seen in association with enlarged clathrin stained structures whereas the CMT mutant constructs were associated with clathrin structures that appeared clustered, similar to the structures observed in Dnm1 and Dnm2 double knock-out cells. Other roles of dynamin 2 including its interaction with BIN1 (amphiphysin 2), and its function in Golgi maintenance and centrosome cohesion were not significantly altered. Taken together, these mild functional defects are suggestive of differences between CMT and CNM disease-causing dynamin 2 mutants and suggest that a slight impairment in clathrin-mediated pathways may accumulate over time to foster the respective human diseases.
机译:大的GTPase dynamin 2是在中心核肌病(CNM)和Charcot-Marie Tooth(CMT)神经病(两种分别影响骨骼肌和周围神经的离散性优势神经肌肉疾病)中突变的膜和细胞骨架动力学的关键因素。还没有很好地建立观察到的组织特异性表型的分子基础以及与动力蛋白2突变相关的生理病理机制。在这项研究中,我们使用四个CNM和两个CMT突变的异位表达分析了CNM和CMT牵连的dynamin 2突变体的影响,并且在已建立的dynamin 2作用的细胞过程中,携带两个dynamin 2 CNM突变的患者成纤维细胞。野生型和CMT突变体与微管相关联,而CNM突变体缺乏微管相关联,并且不破坏相间微管动力学。当在培养细胞中异位表达时,大多数dynamin 2突变体可部分减少网格蛋白介导的内吞作用。然而,在患者成纤维细胞中的实验表明,内吞作用总体上没有缺陷。此外,可以看到CNM突变体与网格蛋白染色的结构放大有关,而CMT突变体构建体则与簇状的网格蛋白结构相关,类似于在Dnm1和Dnm2双敲除细胞中观察到的结构。动力蛋白2的其他作用,包括它与BIN1(两性激素2)的相互作用,以及在高尔基体维持和中心体凝聚力中的功能没有显着改变。综上所述,这些轻度的功能缺陷提示CMT和CNM致病的dynamin 2突变体之间存在差异,并暗示随着时间的推移,网格蛋白介导的途径中的轻微损伤可能累积,从而促进了人类疾病的发展。

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