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HET-s朊病毒形成结构域淀粉样蛋白形成的能垒。

Energy barriers for HET-s prion forming domain amyloid formation.

作者信息

Sabaté R, Castillo V, Espargaró A, Saupe Sven J, Ventura S

机构信息

Departament de Bioquímica i Biologia Molecular and Institut de Biotecnologia i de Biomedicina, Universitat Autònoma de Barcelona, Spain.

出版信息

FEBS J. 2009 Sep;276(18):5053-64. doi: 10.1111/j.1742-4658.2009.07202.x. Epub 2009 Aug 4.

DOI:10.1111/j.1742-4658.2009.07202.x
PMID:19682303
Abstract

The prion-forming domain comprising residues 218-289 of the fungal prion HET-s forms infectious amyloid fibrils at physiological pH. Because a high-resolution molecular model for the structure of these fibrils exists, it constitutes an attractive system with which to study the mechanism of amyloid assembly. Understanding aggregation under specific conditions requires a quantitative knowledge of the kinetics and thermodynamics of the self-assembly process. We report here the study of the temperature and agitation dependence of the HET-s(218-289) fibril nucleation (kn) and elongation (ke) rate constants at physiological pH. Over our temperature and agitation range, kn and ke increased 30-fold and three-fold, respectively. Both processes followed the Arrhenius law, allowing calculation of the thermodynamic activation parameters associated with them. The data confirm the nucleation reaction as the rate-limiting step of amyloid fibril formation. The formation of the nucleus appears to depend mainly on enthalpic factors, whereas both enthalpic and entropic effects contribute similarly to the energy barrier to fibril elongation. A kinetic model is proposed in which nucleation depends on the presence of an initially collapsed, but poorly structured, HET-s(218-289) state and in which the fibril tip models the conformation of the incoming monomers without substantial disorganization of its structure during the elongation process.

摘要

真菌朊病毒HET-s中包含218 - 289位残基的朊病毒形成结构域在生理pH值下形成具有传染性的淀粉样原纤维。由于存在这些原纤维结构的高分辨率分子模型,它构成了一个极具吸引力的系统,可用于研究淀粉样蛋白组装机制。了解特定条件下的聚集需要对自组装过程的动力学和热力学有定量的认识。我们在此报告了在生理pH值下,HET-s(218 - 289)原纤维成核(kn)和延伸(ke)速率常数对温度和搅拌的依赖性研究。在我们研究的温度和搅拌范围内,kn和ke分别增加了30倍和3倍。这两个过程均遵循阿仑尼乌斯定律,从而能够计算与之相关的热力学活化参数。数据证实成核反应是淀粉样原纤维形成的限速步骤。核的形成似乎主要取决于焓因素,而焓和熵效应在原纤维延伸的能量屏障中贡献相似。我们提出了一个动力学模型,其中成核取决于最初折叠但结构不佳的HET-s(218 - 289)状态的存在,并且在延伸过程中原纤维尖端模拟进入单体的构象,而其结构没有实质性的紊乱。

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