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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Free energy landscape and folding mechanism of a beta-hairpin in explicit water: a replica exchange molecular dynamics study.
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Free energy landscape and folding mechanism of a beta-hairpin in explicit water: a replica exchange molecular dynamics study.

机译:β-发夹在显性水中的自由能景观和折叠机制:副本交换分子动力学研究。

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The free energy landscape and the folding mechanism of the C-terminal beta-hairpin of protein G is studied by extensive replica exchange molecular dynamics simulations (40 replicas and 340 ns total simulation time), using the GROMOS96 force field and the SPC explicit water solvent. The study reveals that the system preferentially adopts a beta-hairpin structure at biologically important temperatures, and that the helix content is low at all temperatures studied. Representing the free energy landscape as a function of several types of reaction coordinates, four local minima corresponding to the folded, partially folded, molten globule, and unfolded states are identified. The findings suggest that the folding of the beta-hairpin occurs as the sequence: collapse of hydrophobic core --> formation of H-bond --> formation of the turn. Identifying the folded and molten globule states as the main conformations, the free energy landscape of the beta-hairpin is consistent with a two-state behavior with a broad transition state. The temperature dependence of the folding-unfolding transition is investigated in some detail. The enthalpy and entropy jumps at the folding transition temperature are found to be about three times lower than the experimental estimates, indicating that the folding-unfolding transition in silico is less cooperative than its in vitro counterpart.
机译:使用GROMOS96力场和SPC显式水溶剂,通过广泛的复制品交换分子动力学模拟(40个复制品和340 ns的总模拟时间),研究了蛋白G的C末端β-发夹结构的自由能态和折叠机制。 。研究表明,该系统在生物学上重要的温度下优先采用β-发夹结构,并且在所研究的所有温度下螺旋含量均较低。将自由能态表示为几种反应坐标的函数,可以识别出对应于折叠状态,部分折叠状态,熔融小球状态和未折叠状态的四个局部最小值。这些发现表明,β-发夹的折叠是按以下顺序发生的:疏水性核的塌陷-> H键的形成->转弯的形成。将折叠的和熔融的球状态识别为主要构象,β-发夹的自由能态与具有宽过渡态的两态行为一致。详细研究了折叠-展开转变的温度依赖性。发现折叠转变温度下的焓和熵跳比实验估计值低约三倍,这表明硅树脂的折叠-展开转变比其体外对应物协作性差。

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