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人类HIV-1 gp120包膜糖蛋白的分子运动

Molecular motions of human HIV-1 gp120 envelope glycoproteins.

作者信息

Liu Shu-Qun, Liu Shi-Xi, Fu Yun-Xin

机构信息

Laboratory for Conservation and Utilization of Bio-resources, Yunnan University, Kunming 650091, People's Republic of China.

出版信息

J Mol Model. 2008 Sep;14(9):857-70. doi: 10.1007/s00894-008-0327-7. Epub 2008 Jul 2.

Abstract

The HIV-1 gp120 exterior envelope glycoprotein undergoes a series of conformational rearrangements while sequentially interacting with the receptor CD4 and the coreceptor CCR5 or CXCR4 on the surface of host cells to initiate virus entry. Both the crystal structures of the HIV-1 gp120 core bound by CD4 and antigen 17b, and the SIV gp120 core pre-bound by CD4 are known. Despite the wealth of knowledge on these static snapshots of molecular conformations, the details of molecular motions crucial to intervention remain elusive. We presented a comprehensive comparative analysis of dynamic behavior of gp120 in its CD4-complexed, CD4-free and CD4-unliganded states based on the homology models with modeled V3 and V4 loops. CONCOORD computer simulation was utilized to generate ensembles of feasible protein structures, which were subsequently analyzed by essential dynamics technique to identify preferred concerted motions. The revealed collective fluctuations are dominated by complex motional modes such as rotation/twisting, flexing/closing, and shortness/elongation between or within the inner, outer, and bridging-sheet domains. An attempt has been made to relate these modes to receptor/coreceptor association and neutralization avoidance. Covariance web analysis revealed four subdomains that undergo concerted motion in gp120. The structural components in gp120 that move in concert with CD4 were also identified, which may be the suitable target for inhibitor design to interrupt CD4-gp120 interaction. The differences in B-factors between the three gp120 states revealed certain structural regions that could be related either to CD4 association or to subsequent dissociation of gp120 from gp41. These dynamics data provide new insights into the structure-function relationship of gp120 and may aid in structure-based anti-HIV vaccine design.

摘要

HIV-1 gp120外膜糖蛋白在与宿主细胞表面的受体CD4和共受体CCR5或CXCR4依次相互作用以启动病毒进入的过程中会经历一系列构象重排。HIV-1 gp120核心与CD4和抗原17b结合的晶体结构以及预先与CD4结合的SIV gp120核心的晶体结构均已为人所知。尽管对这些分子构象的静态快照已有丰富的了解,但对于干预至关重要的分子运动细节仍不清楚。我们基于具有模拟V3和V4环的同源模型,对gp120在其与CD4复合、无CD4和未结合CD4状态下的动态行为进行了全面的比较分析。利用CONCOORD计算机模拟生成可行的蛋白质结构集合,随后通过主成分动力学技术进行分析,以识别优先的协同运动。所揭示的集体波动主要由复杂的运动模式主导,例如内、外和桥接片层结构域之间或内部的旋转/扭转、弯曲/闭合以及缩短/伸长。已尝试将这些模式与受体/共受体结合及中和逃避联系起来。协方差网络分析揭示了gp120中经历协同运动的四个亚结构域。还确定了gp120中与CD4协同移动的结构成分,这可能是设计抑制剂以中断CD4-gp120相互作用的合适靶点。三种gp120状态之间的B因子差异揭示了某些可能与CD4结合或与gp120随后从gp41解离相关的结构区域。这些动力学数据为gp120的结构-功能关系提供了新的见解,并可能有助于基于结构的抗HIV疫苗设计。

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