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采用标准流液相色谱和热聚焦电喷雾离子化技术对症状性尼曼-匹克 C1 型小鼠模型进行定量、无标记蛋白质组学分析。

Quantitative, Label-Free Proteomics in the Symptomatic Niemann-Pick, Type C1 Mouse Model Using Standard Flow Liquid Chromatography and Thermal Focusing Electrospray Ionization.

机构信息

Department of Chemistry, University of Illinois at Chicago, Chicago, IL, 60607, USA.

Agilent Technologies, Cary, NC, 27518, USA.

出版信息

Proteomics. 2019 May;19(9):e1800432. doi: 10.1002/pmic.201800432. Epub 2019 Apr 18.

Abstract

Niemann-Pick disease, type C1 (NPC1) is a fatal, autosomal recessive, neurodegenerative disorder caused by mutations in the NPC1 gene. As a result, there is accumulation of unesterified cholesterol and sphingolipids in the late endosomal/lysosomal system. This abnormal accumulation results in a cascade of pathophysiological events including progressive, cerebellar neurodegeneration, among others. While significant progress has been made to better understand NPC1, the downstream effects of cholesterol storage and the major mechanisms that drive neurodegeneration remain unclear. In the current study, a) the use of a commercial, highly efficient standard flow-ESI platform for protein biomarker identification is implemented and b) protein biomarkers are identified and evaluated at a terminal time point in the NPC1 null mouse model. In this study, alterations are observed in proteins related to fatty acid homeostasis, calcium binding and regulation, lysosomal regulation, and inositol biosynthesis and metabolism, as well as signaling by Rho family GTPases. New observations from this study include altered expression of Pcp2 and Limp2 in Npc1 mutant mice relative to control, with Pcp2 exhibiting multiple isoforms and specific to the cerebella. This study provides valuable insight into pathways altered in the late-stage pathophysiology of NPC1.

摘要

尼曼-皮克病 C1 型(NPC1)是一种致命的常染色体隐性神经退行性疾病,由 NPC1 基因突变引起。结果,未酯化胆固醇和鞘脂在晚期内体/溶酶体系统中积累。这种异常积累导致一连串的病理生理事件,包括进行性小脑神经退行性变等。尽管在更好地理解 NPC1 方面取得了重大进展,但胆固醇储存的下游影响和驱动神经退行性变的主要机制仍不清楚。在本研究中,a)实施了使用商业高效标准流 ESI 平台进行蛋白质生物标志物鉴定,b)在 NPC1 缺失小鼠模型的终末时间点鉴定和评估蛋白质生物标志物。在这项研究中,观察到与脂肪酸稳态、钙结合和调节、溶酶体调节以及肌醇生物合成和代谢以及 Rho 家族 GTP 酶信号相关的蛋白质发生改变。本研究的新发现包括与对照相比,Npc1 突变小鼠中 Pcp2 和 Limp2 的表达发生改变,Pcp2 具有多种同工型,且特异性存在于小脑。本研究为 NPC1 晚期病理生理学改变的途径提供了有价值的见解。

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