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淀粉样纤维成核的原子理论。

Atomistic theory of amyloid fibril nucleation.

机构信息

Centre for Molecular Nanoscience, University of Leeds, Leeds, LS2 9JT, United Kingdom.

出版信息

J Chem Phys. 2010 Dec 14;133(22):225101. doi: 10.1063/1.3512642.

Abstract

We consider the nucleation of amyloid fibrils at the molecular level when the process takes place by a direct polymerization of peptides or protein segments into β-sheets. Employing the atomistic nucleation theory (ANT), we derive a general expression for the work to form a nanosized amyloid fibril (protofilament) composed of successively layered β-sheets. The application of this expression to a recently studied peptide system allows us to determine the size of the fibril nucleus, the fibril nucleation work, and the fibril nucleation rate as functions of the supersaturation of the protein solution. Our analysis illustrates the unique feature of ANT that the size of the fibril nucleus is a constant integer in a given supersaturation range. We obtain the ANT nucleation rate and compare it with the rates determined previously in the scope of the classical nucleation theory (CNT) and the corrected classical nucleation theory (CCNT). We find that while the CNT nucleation rate is orders of magnitude greater than the ANT one, the CCNT and ANT nucleation rates are in very good quantitative agreement. The results obtained are applicable to homogeneous nucleation, which occurs when the protein solution is sufficiently pure and/or strongly supersaturated.

摘要

当肽或蛋白质片段通过直接聚合形成β-折叠而在分子水平上发生淀粉样原纤维成核时,我们会考虑到这一点。采用原子成核理论(ANT),我们推导出了一个用于形成由连续层状β-折叠组成的纳米级淀粉样原纤维(原纤维)的功的一般表达式。将此表达式应用于最近研究的肽体系,使我们能够确定纤维核的大小、纤维成核功和纤维成核速率作为蛋白质溶液过饱和度的函数。我们的分析说明了 ANT 的独特特征,即在给定的过饱和度范围内,纤维核的大小是一个恒定的整数。我们获得了 ANT 成核速率,并将其与经典成核理论(CNT)和修正经典成核理论(CCNT)范围内先前确定的速率进行了比较。我们发现,虽然 CNT 成核速率比 ANT 成核速率大几个数量级,但 CCNT 和 ANT 成核速率非常吻合。所得结果适用于均相成核,当蛋白质溶液足够纯净和/或过饱和度强时,就会发生均相成核。

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