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Effects of CD4 Binding on Conformational Dynamics, Molecular Motions, and Thermodynamics of HIV-1 gp120

机译:CD4结合对HIV-1 GP120的构象动态,分子运动和热力学的影响

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Human immunodeficiency virus type-1 (HIV-1) infection is triggered by its envelope (Env) glycoprotein gp120 binding to the host-cell receptor CD4. Although structures of Env/gp120 in the liganded state are known, detailed information about dynamics of the liganded gp120 has remained elusive. Two structural models, the CD4-free gp120 and the gp120-CD4 complex, were subjected to mu s-scale multiple-replica molecular dynamics (MD) simulations to probe the effects of CD4 binding on the conformational dynamics, molecular motions, and thermodynamics of gp120. Comparative analyses of MD trajectories in terms of structural deviation and conformational flexibility reveal that CD4 binding effectively suppresses the overall conformational fluctuations of gp120. Despite the largest fluctuation amplitude of the V1/V2 region in both forms of gp120, the presence of CD4 prevents it from approaching the gp120 core. Comparison of the constructed free energy landscapes (FELs) shows that CD4 binding reduces the conformational entropy and conformational diversity while enhancing the stability of gp120. Further comparison of the representative structures extracted from free energy basins/minima of FELs reveals that CD4 binding weakens the reorientation ability of V1/V2 and hence hinders gp120 from transitioning out of the liganded state to the unliganded state. Therefore, locking gp120 conformation via restraining V1/V2 reorientation with small molecules seems to be a promising strategy to control HIV-1 infection. Our computer simulation results support the conformational selection mechanism for CD4 binding to gp120 and facilitate the understanding of HIV-1 immune evasion mechanisms.
机译:人的免疫缺陷病毒型-1(HIV-1)感染由其包络(Env)糖蛋白GP120与宿主细胞受体CD4结合而引发。尽管在配合状态中的env / GP120的结构是已知的,但是关于配体GP120的动态的详细信息仍然难以捉摸。进行两个结构模型,CD4-FAP120和GP120-CD4复合物,进行MU S级多复制分子动力学(MD)模拟,以探测CD4结合对构象动态,分子运动和热力学的影响GP120。在结构偏差和构象灵活性方面的MD轨迹的比较分析表明CD4结合有效地抑制了GP120的整体构象波动。尽管两种形式的GP120中V1 / V2区域的最大波动幅度,但CD4的存在防止其接近GP120核心。构造的自由能景观(FELS)的比较表明CD4结合降低了构象熵和构象多样性,同时提高了GP120的稳定性。进一步比较从自由能盆/最小纤维中提取的代表性结构表明,CD4结合削弱了V1 / V2的重新定位能力,因此阻碍了GP120从配盐状态转移到邻接状态。因此,通过约束V1 / V2利用小分子锁定GP120构象似乎是控制HIV-1感染的有希望的策略。我们的计算机仿真结果支持CD4与GP120结合的构象选择机制,促进了对HIV-1免疫逃避机制的理解。

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