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绵羊朊病毒蛋白的微秒展开动力学揭示了与经典瘙痒病易感性相关的中间态。

Microsecond unfolding kinetics of sheep prion protein reveals an intermediate that correlates with susceptibility to classical scrapie.

机构信息

Department of Physiology, Michigan State University, East Lansing, Michigan, USA.

出版信息

Biophys J. 2011 Sep 7;101(5):1221-30. doi: 10.1016/j.bpj.2011.07.024.

Abstract

The microsecond folding and unfolding kinetics of ovine prion proteins (ovPrP) were measured under various solution conditions. A fragment comprising residues 94-233 of the full-length ovPrP was studied for four variants with differing susceptibilities to classical scrapie in sheep. The observed biexponential unfolding kinetics of ovPrP provides evidence for an intermediate species. However, in contrast to previous results for human PrP, there is no evidence for an intermediate under refolding conditions. Global analysis of the kinetic data, based on a sequential three-state mechanism, quantitatively accounts for all folding and unfolding data as a function of denaturant concentration. The simulations predict that an intermediate accumulates under both folding and unfolding conditions, but is observable only in unfolding experiments because the intermediate is optically indistinguishable from the native state. The relative population of intermediates in two ovPrP variants, both transiently and under destabilizing equilibrium conditions, correlates with their propensities for classical scrapie. The variant susceptible to classical scrapie has a larger population of the intermediate state than the resistant variant. Thus, the susceptible variant should be favored to undergo the PrP(C) to PrP(Sc) conversion and oligomerization.

摘要

绵羊朊病毒蛋白(ovPrP)的微秒折叠和展开动力学在各种溶液条件下进行了测量。研究了全长 ovPrP 的残基 94-233 组成的四个变体,这些变体对绵羊经典瘙痒病的敏感性不同。观察到 ovPrP 的双指数展开动力学为中间态提供了证据。然而,与之前人类 PrP 的结果不同,在复性条件下没有中间态的证据。基于顺序三态机制的动力学数据分析的全局分析,定量地将所有折叠和展开数据作为变性剂浓度的函数进行了描述。模拟预测,在折叠和展开条件下都会积累中间态,但只能在展开实验中观察到,因为中间态在光学上与天然状态无法区分。两种 ovPrP 变体在瞬态和失稳平衡条件下中间态的相对丰度与其对经典瘙痒病的易感性相关。易感性变体比抗性变体具有更多的中间态。因此,易感变体应该有利于进行 PrP(C)到 PrP(Sc)的转换和寡聚化。

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