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Probing intrinsic dynamics and conformational transition of HIV gp120 by molecular dynamics simulation

机译:分子动力学仿真探测HIV GP120的内在动力学和构象转变

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The HIV envelope glycoprotein gp120 has evolved two distinct conformational states to balance viral infection and immune escape. One is a closed state resistant to most neutralization antibodies, and the other is an open state responsible for the binding of the receptor and coreceptors. Although the structures of gp120 in these two conformational states have been determined, a detailed molecular mechanism involving intrinsic dynamics and conformational transition is still elusive. In this study, μs-scale molecular dynamics simulation is performed to probe molecular dynamics and conformational transition away from the open state and approach the closed state. Our results reveal that open gp120 shows a larger structural deviation, higher conformational flexibility, and more conformational diversity than the form in the closed state, providing a structural explanation for receptor or coreceptor affinity at the open state and the neutralization resistance of closed conformation. Seven regions with greatly decreased coupled motions in the open states have been observed by dynamic cross-correlation analysis, indicating that conformational transition can be mainly attributed to the relaxation of intrinsic dynamics. Three conformations characterized by the structural orientations of the V1/V2 region and the V3 loop, suggesting gp120 is intrinsically dynamic from the open state to the closed state. Taken together, these findings shed light on the understanding of the conformational control mechanism of HIV.
机译:HIV包络糖蛋白GP120已经进化了两个不同的构象状态,以平衡病毒感染和免疫逸出。一种是对大多数中和抗体的抗性抗性状态,另一个是负责受体和团簇的结合的开放状态。尽管已经确定了这两个构象状态的GP120的结构,但涉及内在动力学和构象过渡的详细分子机制仍然难以捉摸。在该研究中,进行μS级分子动力学模拟以探测分子动力学和远离开放状态的构象过渡并接近闭合状态。我们的结果表明,开放的GP120显示出比闭合状态下的形式更大的结构偏差,更高的构象灵活性,更高的构象多样性,为在开放状态和闭合构象的中和阻力下提供了对受体或团簇亲和力的结构解释。通过动态互相关分析观察到七个具有大大降低的开放状态耦合运动的区域,表明构象过渡可以主要归因于内在动力学的松弛。以V1 / V2区域和V3环的结构取向为特征的三个构象,建议GP120从打开状态到闭合状态是本质上动态的。连同,这些发现阐明了对艾滋病毒的构象控制机制的理解。

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