Department of Biology, University of Rome Tor Vergata, Via Della Ricerca Scientifica, Rome, Italy.
J Biomol Struct Dyn. 2013 Apr;31(4):403-13. doi: 10.1080/07391102.2012.703068. Epub 2012 Aug 9.
The HIV's envelope glycoprotein gp120 plays a major role in the entry of the virus into the host cell, through its successive interactions with the cell surface CD4 receptor and a co-receptor (CCR5 or CXCR4). The choice of a specific co-receptor by gp120 has an important consequence on HIV infection and pathogenesis. The third variable region within gp120, the V3 loop, is the principal determinant of the co-receptor usage by gp120. Here, we report the long time molecular dynamics simulations of four gp120 structures, having a V3 loop charge of +3 and +5, from both R5 and X4 specific strains of HIV. The results of the study highlight the properties of the V3 loop that can be critical for dictating the co-receptor recognition and selection in structural context. In detail, we observe that the structural orientation of the V3 loop in the 3D space is modulated by its net charge, whilst its co-receptor choice is likely dictated by a combined effect of both the electrostatics of the loop and its conformational variability at the level of its central crown region.
HIV 的包膜糖蛋白 gp120 通过其与细胞表面 CD4 受体和共受体(CCR5 或 CXCR4)的连续相互作用,在病毒进入宿主细胞中起主要作用。gp120 对特定共受体的选择对 HIV 感染和发病机制有重要影响。gp120 中的第三个可变区,即 V3 环,是 gp120 共受体使用的主要决定因素。在这里,我们报告了来自 R5 和 X4 特异性 HIV 株的四个 gp120 结构的长时间分子动力学模拟,这些结构的 V3 环带有+3 和+5 的电荷。该研究的结果强调了 V3 环的特性,这些特性对于在结构背景下决定共受体的识别和选择至关重要。具体来说,我们观察到 V3 环在 3D 空间中的结构取向是由其净电荷调制的,而其共受体的选择可能是由环的静电作用及其在中央冠状区域的构象变异性的综合影响决定的。