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Visualization of Early Events in Acetic Acid Denaturation of HIV-1 Protease: A Molecular Dynamics Study

机译:可视化HIV-1蛋白酶醋酸变性的早期事件:分子动力学研究。

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摘要

Protein denaturation plays a crucial role in cellular processes. In this study, denaturation of HIV-1 Protease (PR) was investigated by all-atom MD simulations in explicit solvent. The PR dimer and monomer were simulated separately in 9 M acetic acid (9 M AcOH) solution and water to study the denaturation process of PR in acetic acid environment. Direct visualization of the denaturation dynamics that is readily available from such simulations has been presented. Our simulations in 9 M AcOH reveal that the PR denaturation begins by separation of dimer into intact monomers and it is only after this separation that the monomer units start denaturing. The denaturation of the monomers is flagged off by the loss of crucial interactions between the α-helix at C-terminal and surrounding β-strands. This causes the structure to transit from the equilibrium dynamics to random non-equilibrating dynamics. Residence time calculations indicate that denaturation occurs via direct interaction of the acetic acid molecules with certain regions of the protein in 9 M AcOH. All these observations have helped to decipher a picture of the early events in acetic acid denaturation of PR and have illustrated that the α-helix and the β-sheet at the C-terminus of a native and functional PR dimer should maintain both the stability and the function of the enzyme and thus present newer targets for blocking PR function.
机译:蛋白质变性在细胞过程中起着至关重要的作用。在这项研究中,通过在明确溶剂中的全原子MD模拟研究了HIV-1蛋白酶(PR)的变性。分别在9 M乙酸(9 M AcOH)溶液和水中模拟PR二聚体和单体,以研究PR在乙酸环境中的变性过程。已经提出了变性动力学的直接可视化,其可以从这种模拟中容易地获得。我们在9 M AcOH中的模拟表明PR变性是通过将二聚体分离成完整的单体而开始的,只有在这种分离之后,单体单元才开始变性。单体的变性因C端的α螺旋与周围的β链之间的关键相互作用的丧失而被标记出来。这导致结构从平衡动力学过渡到随机的非平衡动力学。停留时间的计算表明,变性是通过乙酸分子与9 M AcOH中蛋白质某些区域的直接相互作用而发生的。所有这些观察结果有助于破译PR的乙酸变性的早期事件,并说明在天然和功能性PR二聚体C端的α-螺旋和β-折叠应该同时保持稳定性和稳定性。酶的功能,因此提出了新的阻断PR功能的靶标。

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