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Rapid purification of truncated tau proteins: model approach to purification of functionally active fragments of disordered proteins, implication for neurodegenerative diseases

机译:截短的tau蛋白的快速纯化:纯化无序蛋白的功能活性片段的模型方法,对神经退行性疾病有重要意义

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Truncated tau is of great interest because of its important role in neurofibrillary pathogenesis in Alzheimer's disease (AD). A major obstacle for characterization of detailed biochemical and biological properties of truncated tau species and their fragments has been the lack of reliable and quick purification methods. Uneven distribution of acidic and basic residues in tau determines that the N- and C-terminal tau fragments require entirely different purification conditions. Conventional methods take several days; they do not allow purification of the acidic N-terminal tau fragments and do not prevent aggregation during purification that makes purified truncated tau unusable in functional studies. To prevent these inherent problems, we have designed a two-step, highly efficient purification procedure yielding a fully functional, non-aggregated homogeneous population of truncated tau molecules. Various forms of tau produced in bacteria without the need for a heat pre-treatment step were subjected to anion- and cation-exchange chromatography. Conditions were developed that allowed effective separation and purification of acidic and/or basic tau species. Following the gel filtration step, up to 10 mg of tau proteins with 96% purity was obtained within one working day. Purified truncated tau exhibited an unmodified immunoreactivity and allowed its functional activity analysis. Since many neurodegenerative diseases have implicated similar disordered proteins in their pathogenesis, our procedure will allow their detailed analysis and characterization. (C) 2004 Elsevier Inc. All rights reserved.
机译:截短的tau引起了极大的兴趣,因为它在阿尔茨海默氏病(AD)的神经原纤维发病机理中具有重要作用。表征截短的tau物种及其片段的详细生化和生物学特性的主要障碍是缺乏可靠和快速的纯化方法。 tau中酸性和碱性残基的不均匀分布决定了N和C端tau片段需要完全不同的纯化条件。传统方法需要几天的时间;它们不允许纯化酸性N末端tau片段,也不能阻止纯化过程中的聚集,这会使纯化的截短的tau在功能研究中无法使用。为防止这些固有问题,我们设计了两步高效纯化程序,以产生功能全面,未聚集的截短tau分子。将不需要加热预处理步骤的细菌中产生的各种形式的tau进行阴离子和阳离子交换色谱分析。开发了可以有效分离和纯化酸性和/或碱性tau物种的条件。进行凝胶过滤步骤后,在一个工作日内可获得多达10 mg纯度为96%的tau蛋白。纯化的截短的tau表现出未修饰的免疫反应性,并对其功能活性进行了分析。由于许多神经退行性疾病在其发病机理中都牵涉到相似的无序蛋白,因此我们的程序将对其进行详细的分析和表征。 (C)2004 Elsevier Inc.保留所有权利。

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