首页> 外文期刊>Proteins: Structure, Function, and Genetics >Free-energy landscape of the GB1 hairpin in all-atom explicit solvent simulations with different force fields: Similarities and differences.
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Free-energy landscape of the GB1 hairpin in all-atom explicit solvent simulations with different force fields: Similarities and differences.

机译:在不同力场的全原子显式溶剂模拟中,GB1发夹的自由能态势:异同。

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摘要

Although it is now possible to fold peptides and miniproteins in molecular dynamics simulations, it is well appreciated that force fields are not all transferable to different proteins. Here, we investigate the influence of the protein force field and the solvent model on the folding energy landscape of a prototypical two-state folder, the GB1 hairpin. We use extensive replica-exchange molecular dynamics simulations to characterize the free-energy surface as a function of temperature. Most of these force fields appear similar at a global level, giving a fraction folded at 300 K between 0.2 and 0.8 in all cases, which is a difference in stability of 2.8 kT, and are generally consistent with experimental data at this temperature. The most significant differences appear in the unfolded state, where there are different residual secondary structures which are populated, and the overall dimensions of the unfolded states, which in most of the force fields are too collapsed relative to experimental Forster Resonance Energy Transfer (FRET) data.
机译:尽管现在可以在分子动力学模拟中折叠肽和微蛋白,但众所周知,力场并非都可以转移到不同的蛋白上。在这里,我们研究了蛋白质力场和溶剂模型对原型两态文件夹GB1发夹的折叠能态的影响。我们使用大量的复制-交换分子动力学模拟来表征自由能表面随温度的变化。这些力场中的大多数在全局水平上看起来相似,在所有情况下在300 K时折叠的分数在0.2和0.8之间,这是2.8 kT的稳定性差,并且通常与该温度下的实验数据一致。最显着的差异出现在展开状态,其中存在不同的残余二级结构,以及展开状态的整体尺寸,在大多数力场中,展开状态相对于实验性福斯特共振能量转移(FRET)而言过于坍塌数据。

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