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Insights into the molecular mechanism underlying CD4-dependency and neutralization sensitivity of HIV-1: a comparative molecular dynamics study on gp120s from isolates with different phenotypes

机译:HIV-1依赖于CD4依赖性和中和敏感性的分子机制的见解:不同表型与分离株的对比分子动力学研究

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摘要

The envelope (Env) of HIV-1 plays critical roles in viral infection and immune evasion. Although structures of prefusion Env have been determined and phenotypes relevant to the CD4 dependency and the neutralization sensitivity for various HIV-1 isolates have been identified, the detailed structural dynamics and energetics underlying these two phenotypes have remained elusive. In this study, two unliganded structural models of gp120, one from the CD4-dependent, neutralization-resistant isolate H061.14 and the other from the CD4-independent, neutralization-sensitive R2 strain, were constructed, and subsequently were subjected to multiple-replica molecular dynamics (MD) simulations followed by free energy landscape (FEL) construction. Comparative analyses of MD trajectories reveal that during simulations R2-gp120 demonstrated larger structural fluctuations/deviations and higher global conformational flexibility than H061.14-gp120. Close comparison of local conformational flexibility shows that some of the structural regions involving direct interactions with gp41 and adjacent gp120 subunits in the context of the closed trimeric Env exhibit significantly higher flexibility in R2-gp120 than in H061.14-gp120, thus likely increasing the probability for R2-Env to open the trimer crown and prime gp41 fusogenic properties without induction by CD4. Collective motions derived from principal component analysis (PCA) reveal that R2-gp120 is prone to spontaneous transition to the neutralization-sensitive CD4-bound state while H061.14-gp120 tends to maintain the neutralization-resistant unliganded state. Finally, comparison between FELs reveals that R2-gp120 has larger conformational entropy, richer conformational diversity, and lower thermostability than H061.14-gp120, thus explaining why R2-gp120 is more structurally unstable and conformationally flexible, and has a higher propensity to transition to the CD4-bound state than H061.14-gp120. The present results reveal that the differences in dynamics and energetics between R2-gp120 and H061.14-gp120 impart Env trimers with distinct capacities to sample different states (i.e., R2-Env samples more readily the open state while H061.14-Env is more inclined to maintain the closed state), thus shedding light on the molecular mechanism underlying the HIV-1 phenotype associated with CD4 dependency/neutralization sensitivity.
机译:HIV-1的包络(ENV)在病毒感染和免疫逃避中起重要作用。尽管已经确定了预熔env的结构,并且已经确定了与CD4依赖性相关的表型以及各种HIV-1分离株的中和灵敏度,但这两个表型的详细结构动态和能量依赖性难以捉摸。在该研究中,构建了两种来自CD4依赖性的中和抗性的分离物H061.14的GP120的两个可解除的结构模型,其中来自CD4无关中和敏感的R2菌株,随后进行多重复制分子动力学(MD)模拟,后跟自由能景观(FEL)施工。 MD轨迹的比较分析表明,在仿真期间,R2-GP120展示了比H061.14-GP120更大的结构波动/偏差和更高的全局构象灵活性。近距离比较局部构象灵活性表明,一些结构区域涉及与GP41的直接相互作用和相邻的GP120亚基在封闭的三聚体ENV的上下文中,在R2-GP120中的灵活性显着更高,而不是H061.14-GP120,因此可能增加了R2-ENV的概率在不受CD4的情况下打开三聚冠和Prime GP41的致密性性质。来自主成分分析(PCA)的集体运动表明,R2-GP120容易发生到中和敏感性CD4结合状态的自发过渡,而H061.14-GP120倾向于保持中和抗性的耐用状态。最后,FELS之间的比较显示R2-GP120具有较大的构象熵,更丰富的构象分集和比H061.14-GP120更低的热稳定性,因此解释了R2-GP120更具结构性不稳定和柔性柔性的原因,并且具有更高的转变倾向到CD4绑定的状态比H061.14-GP120。目前的结果表明,R2-GP120和H061.14-GP120之间的动态和能量学的差异赋予env三聚体,以不同的能力来采样不同状态(即,R2-env样品更容易打开状态,而H061.14-ENV是更倾向于保持关闭状态),从而在与CD4依赖性/中和敏感性相关的HIV-1表型相关的分子机制上脱落。

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  • 来源
    《RSC Advances》 |2018年第26期|共14页
  • 作者单位

    Yunnan Univ State Key Lab Conservat &

    Utilizat Bioresources Kunming Yunnan Peoples R China;

    Yunnan Univ State Key Lab Conservat &

    Utilizat Bioresources Kunming Yunnan Peoples R China;

    Yunnan Agr Univ Dept Appl Math Kunming Yunnan Peoples R China;

    Dali Univ Coll Agr &

    Biol Sci Dali Peoples R China;

    Yunnan Univ State Key Lab Conservat &

    Utilizat Bioresources Kunming Yunnan Peoples R China;

    Yunnan Univ State Key Lab Conservat &

    Utilizat Bioresources Kunming Yunnan Peoples R China;

    Yunnan Univ State Key Lab Conservat &

    Utilizat Bioresources Kunming Yunnan Peoples R China;

    Yunnan Univ State Key Lab Conservat &

    Utilizat Bioresources Kunming Yunnan Peoples R China;

    Yunnan Univ State Key Lab Conservat &

    Utilizat Bioresources Kunming Yunnan Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;
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