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Intermediate filament protein accumulation in motor neurons derived from giant axonal neuropathy iPSCs rescued by restoration of gigaxonin

机译:巨轴索蛋白修复挽救的巨大轴索神经病性iPSC产生的运动神经元中的中间丝蛋白积累

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摘要

Giant axonal neuropathy (GAN) is a progressive neurodegenerative disease caused by autosomal recessive mutations in the GAN gene resulting in a loss of a ubiquitously expressed protein, gigaxonin. Gene replacement therapy is a promising strategy for treatment of the disease; however, the effectiveness and safety of gigaxonin reintroduction have not been tested in human GAN nerve cells. Here we report the derivation of induced pluripotent stem cells (iPSCs) from three GAN patients with different GAN mutations. Motor neurons differentiated from GAN iPSCs exhibit accumulation of neurofilament (NF-L) and peripherin (PRPH) protein and formation of PRPH aggregates, the key pathological phenotypes observed in patients. Introduction of gigaxonin either using a lentiviral vector or as a stable transgene resulted in normalization of NEFL and PRPH levels in GAN neurons and disappearance of PRPH aggregates. Importantly, overexpression of gigaxonin had no adverse effect on survival of GAN neurons, supporting the feasibility of gene replacement therapy. Our findings demonstrate that GAN iPSCs provide a novel model for studying human GAN neuropathologies and for the development and testing of new therapies in relevant cell types.
机译:巨大轴突神经病(GAN)是由GAN基因的常染色体隐性突变引起的进行性神经退行性疾病,导致普遍表达的蛋白gigaxonin丢失。基因替代疗法是治疗该疾病的一种有前途的策略。然而,尚未在人的GAN神经细胞中测试过放回gigaxonin的有效性和安全性。在这里,我们报告了来自具有不同GAN突变的三名GAN患者的诱导多能干细胞(iPSCs)的衍生。从GAN iPSCs分化出来的运动神经元表现出神经丝(NF-L)和周围蛋白(PRPH)蛋白的积累以及PRPH聚集体的形成,这是患者观察到的关键病理表型。使用慢病毒载体或作为稳定的转基因引入gigaxonin会导致GAN神经元中的NEFL和PRPH水平正常化,并且PRPH聚集体消失。重要的是,吉加索宁的过表达对GAN神经元的存活没有不利影响,支持基因替代疗法的可行性。我们的发现表明,GAN iPSC为研究人类GAN神经病理学以及开发和测试相关细胞类型的新疗法提供了一种新颖的模型。

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