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Loss-of-function mutation in Hippo suppressed enlargement of lysosomes and neurodegeneration caused by dFIG4 knockdown

机译:河马功能丧失突变抑制了dFIG4敲低引起的溶酶体增大和神经变性

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摘要

Charcot–Marie–Tooth disease (CMT) is the most common hereditary neuropathy, and more than 80 CMT-causing genes have been identified to date. CMT4J is caused by a loss-of-function mutation in the Factor-Induced-Gene 4 (FIG4) gene, the product of which plays important roles in endosome–lysosome homeostasis. We hypothesized that Mammalian sterile 20-like kinase (MST) 1 and 2, tumor-suppressor genes, are candidate modifiers of CMT4J. We therefore examined the interaction between dFIG4 and Hippo (hpo), Drosophila counterparts of FIG4 and MSTs, respectively, using the Drosophila CMT4J model with the knockdown of dFIG4. The loss-of-function allele of hpo improved the rough eye morphology, locomotive dysfunction accompanied by structural defects in the presynaptic terminals of motoneurons, and the enlargement of lysosomes caused by the knockdown of dFIG4. Therefore, we identified hpo as a modifier of phenotypes induced by the knockdown of dFIG4. These results in Drosophila may provide an insight into the pathogenesis of CMT4J and contribute toward the development of disease-modifying therapy for CMT. We also identified the regulation of endosome–lysosome homeostasis as a novel probable function of Hippo/MST.
机译:Charcot–Marie–Tooth病(CMT)是最常见的遗传性神经病,迄今为止已鉴定出80多种引起CMT的基因。 CMT4J是由因子诱导基因4(FIG4)基因的功能丧失突变引起的,该基因的产物在内体-溶酶体稳态中起重要作用。我们假设哺乳动物无菌20样激酶(MST)1和2,肿瘤抑制基因,是CMT4J的候选修饰符。因此,我们使用果蝇CMT4J模型和dFIG4的敲除,分别检查了dFIG4和Hippo(hpo),果蝇对应物和MST之间的相互作用。 hpo的功能丧失等位基因改善了运动神经元的突触前末端中的粗略眼形,机车功能障碍并伴有结构缺陷,以及由dFIG4敲低引起的溶酶体增大。因此,我们确定了hpo是dFIG4敲低诱导的表型修饰因子。果蝇的这些结果可能为CMT4J的发病机理提供见解,并有助于开发CMT的疾病缓解疗法。我们还确定了内体-溶酶体稳态的调节是Hippo / MST的一种可能的新功能。

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