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溶液中β-发夹肽的热力学和动力学表征:在显式水中通过分子动力学模拟进行扩展相空间采样。

Thermodynamic and kinetic characterization of a beta-hairpin peptide in solution: an extended phase space sampling by molecular dynamics simulations in explicit water.

作者信息

Daidone Isabella, Amadei Andrea, Di Nola Alfredo

机构信息

Department of Chemistry, University of Rome La Sapienza,Rome, Italy.

出版信息

Proteins. 2005 May 15;59(3):510-8. doi: 10.1002/prot.20427.

Abstract

The folding of the amyloidogenic H1 peptide MKHMAGAAAAGAVV taken from the syrian hamster prion protein is explored in explicit aqueous solution at 300 K using long time scale all-atom molecular dynamics simulations for a total simulation time of 1.1 mus. The system, initially modeled as an alpha-helix, preferentially adopts a beta-hairpin structure and several unfolding/refolding events are observed, yielding a very short average beta-hairpin folding time of approximately 200 ns. The long time scale accessed by our simulations and the reversibility of the folding allow to properly explore the configurational space of the peptide in solution. The free energy profile, as a function of the principal components (essential eigenvectors) of motion, describing the main conformational transitions, shows the characteristic features of a funneled landscape, with a downhill surface toward the beta-hairpin folded basin. However, the analysis of the peptide thermodynamic stability, reveals that the beta-hairpin in solution is rather unstable. These results are in good agreement with several experimental evidences, according to which the isolated H1 peptide adopts very rapidly in water beta-sheet structure, leading to amyloid fibril precipitates [Nguyen et al., Biochemistry 1995;34:4186-4192; Inouye et al., J Struct Biol 1998;122:247-255]. Moreover, in this article we also characterize the diffusion behavior in conformational space, investigating its relations with folding/unfolding conditions.

摘要

利用长时间尺度的全原子分子动力学模拟,在300 K的明确水溶液中研究了取自叙利亚仓鼠朊病毒蛋白的淀粉样生成H1肽MKHMAGAAAAGAVV的折叠情况,总模拟时间为1.1微秒。该系统最初被建模为α螺旋,优先采用β发夹结构,并观察到几次展开/重新折叠事件,产生了非常短的平均β发夹折叠时间,约为200纳秒。我们模拟所达到的长时间尺度以及折叠的可逆性,使得能够恰当地探索该肽在溶液中的构象空间。作为描述主要构象转变的运动主成分(基本特征向量)的函数的自由能分布,显示出漏斗状景观的特征,具有朝向β发夹折叠盆地的下坡表面。然而,对该肽热力学稳定性的分析表明,溶液中的β发夹相当不稳定。这些结果与几个实验证据非常吻合,根据这些证据,分离的H1肽在水中非常迅速地采用β片层结构,导致淀粉样原纤维沉淀[Nguyen等人,《生物化学》1995年;34:4186 - 4192;Inouye等人,《结构生物学杂志》1998年;122:247 - 255]。此外,在本文中我们还表征了构象空间中的扩散行为,研究其与折叠/展开条件的关系。

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