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Universality and diversity of folding mechanics for three-helix bundle proteins

机译:三螺旋束蛋白折叠机制的普遍性和多样性

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摘要

In this study we evaluate, at full atomic detail, the folding processes of two small helical proteins, the B domain of protein A and the Villin headpiece. Folding kinetics are studied by performing a large number of ab initio Monte Carlo folding simulations using a single transferable all-atom potential. Using these trajectories, we examine the relaxation behavior, secondary structure formation, and transition-state ensembles (TSEs) of the two proteins and compare our results with experimental data and previous computational studies. To obtain a detailed structural information on the folding dynamics viewed as an ensemble process, we perform a clustering analysis procedure based on graph theory. Moreover, rigorous pfold analysis is used to obtain representative samples of the TSEs and a good quantitative agreement between experimental and simulated Φ values is obtained for protein A. Φ values for Villin also are obtained and left as predictions to be tested by future experiments. Our analysis shows that the two-helix hairpin is a common partially stable structural motif that gets formed before entering the TSE in the studied proteins. These results together with our earlier study of Engrailed Homeodomain and recent experimental studies provide a comprehensive, atomic-level picture of folding mechanics of three-helix bundle proteins.
机译:在这项研究中,我们以完整的原子细节评估了两个小螺旋蛋白,蛋白A的B结构域和维林头饰的折叠过程。通过使用单个可转移的全原子电势执行大量从头算起的蒙特卡洛折叠模拟,研究了折叠动力学。使用这些轨迹,我们检查了两种蛋白质的弛豫行为,二级结构形成和过渡态集成(TSE),并将我们的结果与实验数据和先前的计算研究进行了比较。为了获得被视为整体过程的折叠动力学的详细结构信息,我们执行基于图论的聚类分析程序。此外,使用严格的pfold分析来获得TSE的代表性样品,并获得了蛋白A的实验Φ值和模拟Φ值之间的良好定量一致性。还获得了Villin的Φ值,并将其作为预测结果供以后的实验测试。我们的分析表明,两螺旋发夹是在研究的蛋白质中进入TSE之前形成的常见的部分稳定的结构基序。这些结果与我们对Engrailed Homeodomain的较早研究以及最近的实验研究一起,提供了三螺旋束蛋白质折叠机理的全面,原子级的图像。

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