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The complex folding behavior of HIV-1 -protease monomer revealed by optical-tweezer single-molecule experiments and molecular dynamics simulations

机译:通过光镊单分子实验和分子动力学模拟揭示了HIV-1蛋白酶单体的复杂折叠行为

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摘要

We have used optical tweezers and molecular dynamics simulations to investigate the unfolding and refolding process of a stable monomeric form of HIV-1-protease (PR). We have characterized the behavior under tension of the native state (N), and that of the ensemble of partially folded (PF) conformations the protein visits en route to N, which collectively act as a long-lived state controlling the slow kinetic phase of the folding process. Our results reveal a rich network of unfolding events, where the native state unfolds either in a two-state manner or by populating an intermediate state I, while the PF state unravels through a multitude of pathways, underscoring its structural heterogeneity. Refolding of mechanically denatured HIV-1-PR monomers is also a multiple-pathway process. Molecular dynamics simulations allowed us to gain insight into possible conformations the protein adopts along the unfolding pathways, and provide information regarding possible structural features of the PF state.
机译:我们已经使用光学镊子和分子动力学模拟来研究稳定的单体形式的HIV-1-蛋白酶(PR)的展开和重折叠过程。我们已经表征了蛋白质在天然状态(N)和部分折叠(PF)构象的集合下的行为,该蛋白在到达N的途中会进入蛋白质,这些行为共同充当了控制蛋白质慢动力学阶段的长寿状态。折叠过程。我们的结果揭示了丰富的展开事件网络,其中天然状态以两种状态或通过填充中间状态I展开,而PF状态通过多种途径展开,强调了其结构异质性。机械变性的HIV-1-PR单体的重折叠也是一个多途径的过程。分子动力学模拟使我们能够洞悉蛋白质沿展开路径采用的可能构象,并提供有关PF状态可能的结构特征的信息。

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