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介导蛋白质聚集和细胞毒性的蛋白质使阿尔茨海默病患者的海马体有别于正常对照。

Proteins that mediate protein aggregation and cytotoxicity distinguish Alzheimer's hippocampus from normal controls.

作者信息

Ayyadevara Srinivas, Balasubramaniam Meenakshisundaram, Parcon Paul A, Barger Steven W, Griffin W Sue T, Alla Ramani, Tackett Alan J, Mackintosh Samuel G, Petricoin Emanuel, Zhou Weidong, Shmookler Reis Robert J

机构信息

McClellan Veterans Medical Center, Central Arkansas Veterans Healthcare Service, Little Rock, AR, 72205, USA.

Department of Geriatrics, University of Arkansas for Medical Sciences, Little Rock, AR, 72205, USA.

出版信息

Aging Cell. 2016 Oct;15(5):924-39. doi: 10.1111/acel.12501. Epub 2016 Jul 23.

Abstract

Neurodegenerative diseases are distinguished by characteristic protein aggregates initiated by disease-specific 'seed' proteins; however, roles of other co-aggregated proteins remain largely unexplored. Compact hippocampal aggregates were purified from Alzheimer's and control-subject pools using magnetic-bead immunoaffinity pulldowns. Their components were fractionated by electrophoretic mobility and analyzed by high-resolution proteomics. Although total detergent-insoluble aggregates from Alzheimer's and controls had similar protein content, within the fractions isolated by tau or Aβ1-42 pulldown, the protein constituents of Alzheimer-derived aggregates were more abundant, diverse, and post-translationally modified than those from controls. Tau- and Aβ-containing aggregates were distinguished by multiple components, and yet shared >90% of their protein constituents, implying similar accretion mechanisms. Alzheimer-specific protein enrichment in tau-containing aggregates was corroborated for individuals by three analyses. Five proteins inferred to co-aggregate with tau were confirmed by precise in situ methods, including proximity ligation amplification that requires co-localization within 40 nm. Nematode orthologs of 21 proteins, which showed Alzheimer-specific enrichment in tau-containing aggregates, were assessed for aggregation-promoting roles in C. elegans by RNA-interference 'knockdown'. Fifteen knockdowns (71%) rescued paralysis of worms expressing muscle Aβ, and 12 (57%) rescued chemotaxis disrupted by neuronal Aβ expression. Proteins identified in compact human aggregates, bound by antibody to total tau, were thus shown to play causal roles in aggregation based on nematode models triggered by Aβ1-42 . These observations imply shared mechanisms driving both types of aggregation, and/or aggregate-mediated cross-talk between tau and Aβ. Knowledge of protein components that promote protein accrual in diverse aggregate types implicates common mechanisms and identifies novel targets for drug intervention.

摘要

神经退行性疾病的特征是由疾病特异性“种子”蛋白引发的特征性蛋白质聚集体;然而,其他共聚集蛋白的作用在很大程度上仍未得到探索。使用磁珠免疫亲和下拉法从阿尔茨海默病患者和对照受试者样本中纯化致密的海马聚集体。通过电泳迁移率对其成分进行分级分离,并通过高分辨率蛋白质组学进行分析。尽管来自阿尔茨海默病患者和对照的总去污剂不溶性聚集体具有相似的蛋白质含量,但在通过tau或Aβ1-42下拉分离的组分中,来自阿尔茨海默病患者的聚集体的蛋白质成分比来自对照的更丰富、更多样化且经过翻译后修饰。含tau和含Aβ的聚集体由多种成分区分,但仍有>90%的蛋白质成分相同,这意味着它们的积聚机制相似。通过三项分析证实了个体中含tau聚集体中阿尔茨海默病特异性蛋白质的富集。通过精确的原位方法证实了五种推断与tau共聚集的蛋白质,包括需要在40nm内共定位的邻近连接扩增。对21种蛋白质的线虫直系同源物进行了评估,这些蛋白质在含tau聚集体中显示出阿尔茨海默病特异性富集,通过RNA干扰“敲低”来研究它们在秀丽隐杆线虫中的聚集促进作用。15种敲低(71%)挽救了表达肌肉Aβ的蠕虫的麻痹,12种(57%)挽救了由神经元Aβ表达破坏的趋化性。因此,基于由Aβ1-42引发的线虫模型,在与总tau抗体结合的致密人类聚集体中鉴定出的蛋白质在聚集过程中起因果作用。这些观察结果意味着驱动两种聚集类型的共同机制,和/或tau与Aβ之间的聚集介导的相互作用。了解促进不同聚集类型中蛋白质积聚的蛋白质成分,揭示了共同机制并确定了药物干预的新靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4965/5013017/498d5dd6395d/ACEL-15-924-g001.jpg

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