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解释巨大轴索神经病中中间丝的积聚。

Explaining intermediate filament accumulation in giant axonal neuropathy.

作者信息

Opal Puneet, Goldman Robert D

机构信息

Department of Cell and Molecular Biology; Northwestern University Feinberg School of Medicine; Chicago, IL USA ; Davee Department of Neurology; Northwestern University Feinberg School of Medicine; Chicago, IL USA.

Department of Cell and Molecular Biology; Northwestern University Feinberg School of Medicine; Chicago, IL USA.

出版信息

Rare Dis. 2013 Jun 17;1:e25378. doi: 10.4161/rdis.25378. eCollection 2013.

Abstract

Giant axonal neuropathy (GAN)(1) is a rare autosomal recessive neurological disorder caused by mutations in the GAN gene that encodes gigaxonin, a member of the BTB/Kelch family of E3 ligase adaptor proteins.(1) This disease is characterized by the aggregation of Intermediate Filaments (IF)-cytoskeletal elements that play important roles in cell physiology including the regulation of cell shape, motility, mechanics and intra-cellular signaling. Although a range of cell types are affected in GAN, neurons display the most severe pathology, with neuronal intermediate filament accumulation and aggregation; this in turn causes axonal swellings or "giant axons." A mechanistic understanding of GAN IF pathology has eluded researchers for many years. In a recent study(1) we demonstrate that the normal function of gigaxonin is to regulate the degradation of IF proteins via the proteasome. Our findings present the first direct link between GAN mutations and IF pathology; moreover, given the importance of IF aggregations in a wide range of disease conditions, our findings could have wider ramifications.

摘要

巨大轴索神经病(GAN)是一种罕见的常染色体隐性神经疾病,由编码发动蛋白(一种E3连接酶衔接蛋白的BTB/Kelch家族成员)的GAN基因突变引起。这种疾病的特征是中间丝(IF)细胞骨架成分聚集,这些成分在细胞生理过程中发挥重要作用,包括调节细胞形状、运动、力学和细胞内信号传导。尽管GAN会影响多种细胞类型,但神经元表现出最严重的病理变化,有神经元中间丝积累和聚集;这进而导致轴突肿胀或“巨大轴突”。多年来,研究人员一直未能从机制上理解GAN的IF病理。在最近的一项研究中,我们证明发动蛋白的正常功能是通过蛋白酶体调节IF蛋白的降解。我们的发现首次揭示了GAN突变与IF病理之间的直接联系;此外,鉴于IF聚集在多种疾病状态中的重要性,我们的发现可能会产生更广泛的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe47/3927486/c0ccfa07cf8e/rdis-1-e25378-g1.jpg

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