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亨廷顿舞蹈症患者人类胚胎干细胞的蛋白质组学研究揭示了一种不断演变的病理状况,涉及线粒体功能障碍和代谢紊乱。

Proteomics of Huntington's disease-affected human embryonic stem cells reveals an evolving pathology involving mitochondrial dysfunction and metabolic disturbances.

作者信息

McQuade Leon R, Balachandran Anushree, Scott Heather A, Khaira Simer, Baker Mark S, Schmidt Uli

机构信息

Australian Proteome Analysis Facility, §Australian School of Advanced Medicine, Macquarie University , Sydney, New South Wales 2109, Australia.

出版信息

J Proteome Res. 2014 Dec 5;13(12):5648-59. doi: 10.1021/pr500649m. Epub 2014 Oct 31.

DOI:10.1021/pr500649m
PMID:25316320
Abstract

Huntington's disease (HD) is an autosomal dominant neurodegenerative disorder caused by a mutation in the Huntingtin gene, where excessive (≥ 36) CAG repeats encode for glutamine expansion in the huntingtin protein. Research using mouse models and human pathological material has indicated dysfunctions in a myriad of systems, including mitochondrial and ubiquitin/proteasome complexes, cytoskeletal transport, signaling, and transcriptional regulation. Here, we examined the earliest biochemical and pathways involved in HD pathology. We conducted a proteomics study combined with immunocytochemical analysis of undifferentiated HD-affected and unaffected human embryonic stem cells (hESC). Analysis of 1883 identifications derived from membrane and cytosolic enriched fractions revealed mitochondria as the primary dysfunctional organ in HD-affected pluripotent cells in the absence of significant differences in huntingtin protein. Furthermore, on the basis of analysis of 645 proteins found in neurodifferentiated hESC, we show a shift to transcriptional dysregulation and cytoskeletal abnormalities as the primary pathologies in HD-affected cells differentiating along neural lineages in vitro. We also show this is concomitant with an up-regulation in expression of huntingtin protein in HD-affected cells. This study demonstrates the utility of a model that recapitulates HD pathology and offers insights into disease initiation, etiology, progression, and potential therapeutic intervention.

摘要

亨廷顿舞蹈症(HD)是一种常染色体显性神经退行性疾病,由亨廷顿基因的突变引起,其中过量(≥36)的CAG重复序列编码亨廷顿蛋白中的谷氨酰胺扩展。使用小鼠模型和人类病理材料的研究表明,包括线粒体和泛素/蛋白酶体复合物、细胞骨架运输、信号传导和转录调控在内的众多系统存在功能障碍。在这里,我们研究了HD病理学中最早涉及的生化过程和途径。我们进行了一项蛋白质组学研究,并结合了对未分化的受HD影响和未受影响的人类胚胎干细胞(hESC)的免疫细胞化学分析。对来自膜和胞质富集部分的1883个鉴定结果的分析表明,在亨廷顿蛋白没有显著差异的情况下,线粒体是受HD影响的多能细胞中的主要功能失调器官。此外,基于对神经分化的hESC中发现的645种蛋白质的分析,我们发现在体外沿神经谱系分化的受HD影响的细胞中,转录失调和细胞骨架异常转变为主要病理变化。我们还表明,这与受HD影响的细胞中亨廷顿蛋白表达的上调同时发生。这项研究证明了一个概括HD病理学的模型的实用性,并为疾病的起始、病因、进展和潜在的治疗干预提供了见解。

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