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直接观察淀粉样蛋白自组装中的成核和生长。

Direct observation of nucleation and growth in amyloid self-assembly.

机构信息

The Center for Fundamental and Applied Molecular Evolution and the Center for Chemical Evolution, Department of Chemistry, Emory University, 1515 Dickey Drive, Atlanta, Georgia 30322, USA.

出版信息

J Am Chem Soc. 2010 May 12;132(18):6306-8. doi: 10.1021/ja910964c.

Abstract

Access to native protein structure depends on precise polypeptide folding and assembly pathways. Identifying folding missteps that may lead to the nearly 40 protein misfolding diseases could feature prominently in the development of intervention strategies. Accordingly, we have investigated the earliest steps of assembly by the folding nucleus of the Alzheimer's disease Abeta peptide with real-time imaging and fluorescence correlation spectroscopy. These analyses reveal the immediate formation of large micrometer size clusters maintaining properties of intermolecular molten globules. These dynamic unstructured aggregates serve as the nucleating sites for amyloid growth and, as with native protein folding, appear important for backbone desolvation. The resulting amyloid nucleus however is able to template monomer addition from solution at rates from 2K peptides/s at millimolar peptide concentrations. This direct observation of amyloid assembly unifies several divergent models that currently exist for protein misfolding.

摘要

对天然蛋白质结构的获取取决于精确的多肽折叠和组装途径。鉴定可能导致近 40 种蛋白质错误折叠疾病的折叠错误,可能是开发干预策略的重要特征。因此,我们通过实时成像和荧光相关光谱法研究了阿尔茨海默病 Abeta 肽折叠核的最早组装步骤。这些分析揭示了立即形成的大尺寸微米级簇,保持了分子间的无规卷曲状态。这些动态的无规聚集物作为淀粉样蛋白生长的成核位点,与天然蛋白质折叠一样,对骨架去溶剂化似乎很重要。然而,所得的淀粉样核能够以从溶液中添加单体的速率从 2K 个肽/秒在毫摩尔肽浓度下进行模板化。这种对淀粉样蛋白组装的直接观察统一了目前存在的几种用于蛋白质错误折叠的不同模型。

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