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Proteomic analysis of oxidatively modified proteins in Alzheimer's disease brain: insights into neurodegeneration.

机译:阿尔茨海默氏病大脑中氧化修饰蛋白的蛋白质组学分析:对神经变性的见解。

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Identification of oxidized proteins in Alzheimer's disease (AD) brain is hypothesized to lead to new insights into mechanisms of neurodegeneration and synapse loss in this dementing disorder that are associated with oxidative stress. Previous studies had shown increased oxidation of proteins in AD brain, but identifying those particular proteins that were specifically oxidized using standard immunochemical methods is a daunting task when one considers how many proteins there are in brain. To address this issue, proteomics has been used to identify specifically modified proteins in AD brain. This review outlines the nature of proteomics, the proteins identified in AD brain that are specifically oxidatively modified, and provides rational consequences related to neurodegeneration and synapse loss as sequelae to loss of function, due to oxidation and consistent with the known pathological and biochemical alteration in AD brain. The use of proteomics to learn about disease mechanisms is still embryonic, but the emerging techniques of proteomics represent a promising means to elucidate mechanisms of disease at the protein level. There are limitations to proteomics, and these, too, are discussed.
机译:据推测,在阿尔茨海默氏病(AD)大脑中氧化蛋白的鉴定可导致对这种与氧化应激相关的痴呆症的神经变性和突触丧失机制的新见解。先前的研究表明,AD大脑中蛋白质的氧化增加,但是,当人们考虑大脑中有多少蛋白质时,鉴定那些使用标准免疫化学方法特异性氧化的特定蛋白质是一项艰巨的任务。为了解决这个问题,蛋白质组学已被用于鉴定AD脑中经过特殊修饰的蛋白质。这篇综述概述了蛋白质组学的性质,蛋白质组学是在AD脑中鉴定出的经过专门氧化修饰的蛋白质,并提供了与神经变性和突触丧失有关的合理后果,这些后果是由于氧化而导致的功能丧失的后遗症,并且与已知的病理和生化改变相一致。 AD大脑。蛋白质组学用于了解疾病机制的研究仍处于萌芽状态,但是新兴的蛋白质组学技术代表了一种在蛋白质水平阐明疾病机制的有前途的手段。蛋白质组学存在局限性,对此也进行了讨论。

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