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首页> 外文期刊>Biophysical Journal >Folding network of villin headpiece subdomain.
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Folding network of villin headpiece subdomain.

机译:villin头饰子域折叠网络。

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摘要

Protein folding is a complex multidimensional process that is difficult to illustrate by the traditional analyses based on one- or two-dimensional profiles. Analyses based on transition networks have become an alternative approach that has the potential to reveal detailed features of protein folding dynamics. However, due to the lack of successful reversible folding of proteins from conventional molecular-dynamics simulations, this approach has rarely been utilized. Here, we analyzed the folding network from several 10 mus conventional molecular-dynamics reversible folding trajectories of villin headpiece subdomain (HP35). The folding network revealed more complexity than the traditional two-dimensional map and demonstrated a variety of conformations in the unfolded state, intermediate states, and the native state. Of note, deep enthalpic traps at the unfolded state were observed on the folding landscape. Furthermore, in contrast to the clear separation of the native state and the primary intermediate state shown on the two-dimensional map, the two states were mingled on the folding network, and prevalent interstate transitions were observed between these two states. A more complete picture of the folding mechanism of HP35 emerged when the traditional and network analyses were considered together.
机译:蛋白质折叠是一个复杂的多维过程,很难通过基于一维或二维轮廓的传统分析来说明。基于过渡网络的分析已成为一种替代方法,它有可能揭示蛋白质折叠动力学的详细特征。然而,由于缺乏常规分子动力学模拟的成功的蛋白质可逆折叠,这种方法很少被使用。在这里,我们从维尔林头件子域(HP35)的几种10微米常规分子动力学可逆折叠轨迹分析了折叠网络。与传统的二维地图相比,折叠网络显示出更多的复杂性,并且在展开状态,中间状态和原始状态下展示了各种构象。值得注意的是,在折叠景观上观察到处于展开状态的深层焓陷阱。此外,与二维图上显示的原始状态和主要中间状态的清晰分离相反,这两个状态混合在折叠网络中,并且在这两个状态之间观察到普遍的状态间转变。当传统分析和网络分析一起考虑时,出现了HP35折叠机制的更完整描述。

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