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深入了解 HIV-1 gp120 V3 环的结构、相关运动和静电特性。

Insights into the structure, correlated motions, and electrostatic properties of two HIV-1 gp120 V3 loops.

机构信息

Department of Bioengineering, University of California Riverside, Riverside, California, United States of America.

出版信息

PLoS One. 2012;7(11):e49925. doi: 10.1371/journal.pone.0049925. Epub 2012 Nov 19.

Abstract

The V3 loop of the glycoprotein 120 (gp120) is a contact point for cell entry of HIV-1 leading to infection. Despite sequence variability and lack of specific structure, the highly flexible V3 loop possesses a well-defined role in recognizing and selecting cell-bound coreceptors CCR5 and CXCR4 through a mechanism of charge complementarity. We have performed two independent molecular dynamics (MD) simulations to gain insights into the dynamic character of two V3 loops with slightly different sequences, but significantly different starting crystallographic structures. We have identified highly populated trajectory-specific salt bridges between oppositely charged stem residues Arg9 and Glu25 or Asp29. The two trajectories share nearly identical correlated motions within the simulations, despite their different overall structures. High occupancy salt bridges play a key role in the major cross-correlated motions in both trajectories, and may be responsible for transient structural stability in preparation for coreceptor binding. In addition, the two V3 loops visit conformations with similarities in spatial distributions of electrostatic potentials, despite their inherent flexibility, which may play a role in coreceptor recognition. It is plausible that cooperativity between overall electrostatic potential, charged residue interactions, and correlated motions could be associated with a coreceptor selection and binding.

摘要

糖蛋白 120(gp120)的 V3 环是 HIV-1 进入细胞导致感染的接触点。尽管序列变异性和缺乏特定结构,高度灵活的 V3 环通过电荷互补机制在识别和选择细胞结合的共受体 CCR5 和 CXCR4 方面具有明确的作用。我们进行了两次独立的分子动力学(MD)模拟,以深入了解两个 V3 环的动态特性,它们的序列略有不同,但起始结晶结构有很大差异。我们确定了带相反电荷的茎残基 Arg9 和 Glu25 或 Asp29 之间高度占据的轨迹特异性盐桥。尽管它们的整体结构不同,但两条轨迹在模拟中具有几乎相同的相关运动。高占据盐桥在两条轨迹的主要交叉相关运动中起着关键作用,并且可能负责为与共受体结合做准备的短暂结构稳定性。此外,尽管两个 V3 环具有固有灵活性,但它们具有相似的静电势空间分布构象,这可能在共受体识别中发挥作用。总的来说,静电势、带电残基相互作用和相关运动之间的协同作用可能与共受体的选择和结合有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c62f/3501474/bb3563dfa33e/pone.0049925.g001.jpg

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