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HIV gp120 构象转变和变构通讯中的 CD4 结合障碍。

CD4-binding obstacles in conformational transitions and allosteric communications of HIV gp120.

机构信息

College of Mathematics and Computer Science, Dali University, Dali, China.

State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan University, Kunming, China.

出版信息

Biochim Biophys Acta Biomembr. 2020 Jun 1;1862(6):183217. doi: 10.1016/j.bbamem.2020.183217. Epub 2020 Feb 13.

Abstract

As the only exposed viral protein at the membrane surface of HIV, envelope glycoprotein gp120 is responsible for recognizing host cells and mediating virus-cell membrane fusion. Available structures of gp120 indicate that it exhibits two distinct conformational states, called closed and open states. Although experimental data demonstrates that CD4 binding stabilizes open state of gp120, detailed structural dynamics and kinetics of gp120 during this process remain elusive. Here, two open-state gp120 simulation systems, one without any ligands (ligand-free) and the other complexed with CD4 (CD4-bound), were subjected to microsecond-scale molecular dynamics simulations following the conformational transitions and allosteric pathways of gp120 evaluated by using the Markov state model and a network-based method, respectively. Our results provide an atomic-resolution description of gp120 conformational transitions, suggesting that gp120 is intrinsically dynamic from the open state to closed state, whereas CD4 binding blocks these transitions. Consistent with experimental structures, five metastable conformations with different orientations of the V1/V2 region and V3 loop have been extracted. The binding of CD4 significantly enhances allosteric communications from the CD4-binding site to V3 loop and β20-21 hairpin, resulting in high-affinity interactions with coreceptors and activation of the conformational transitions switcher, respectively. This study will facilitate the structural understanding of the CD4-binding effects on conformational transitions and allosteric pathways of gp120.

摘要

作为 HIV 膜表面唯一暴露的病毒蛋白,包膜糖蛋白 gp120 负责识别宿主细胞并介导病毒-细胞膜融合。gp120 的现有结构表明,它表现出两种截然不同的构象状态,称为封闭状态和开放状态。尽管实验数据表明 CD4 结合稳定了 gp120 的开放状态,但在此过程中 gp120 的详细结构动力学和动力学仍不清楚。在这里,我们对两个开放状态的 gp120 模拟系统进行了微秒尺度的分子动力学模拟,一个没有任何配体(无配体),另一个与 CD4 复合(CD4 结合)。通过使用马尔可夫状态模型和基于网络的方法分别评估 gp120 的构象转变和变构途径,对这些模拟系统进行了评估。我们的结果提供了 gp120 构象转变的原子分辨率描述,表明 gp120 从开放状态到封闭状态本质上是动态的,而 CD4 结合阻止了这些转变。与实验结构一致,已经提取了五个具有不同 V1/V2 区域和 V3 环取向的亚稳态构象。CD4 的结合显著增强了从 CD4 结合位点到 V3 环和β20-21 发夹的变构通讯,分别导致与核心受体的高亲和力相互作用和构象转变开关的激活。这项研究将促进对 CD4 结合对 gp120 构象转变和变构途径的结构理解。

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