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首页> 外文期刊>Retrovirology >Conformational alterations in the CD4 binding cavity of HIV-1 gp120 influencing gp120-CD4 interactions and fusogenicity of HIV-1 envelopes derived from brain and other tissues
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Conformational alterations in the CD4 binding cavity of HIV-1 gp120 influencing gp120-CD4 interactions and fusogenicity of HIV-1 envelopes derived from brain and other tissues

机译:HIV-1 gp120的CD4结合腔中的构象变化影响gp120-CD4相互作用和源自大脑和其他组织的HIV-1包膜的融合性

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Background CD4-binding site (CD4bs) alterations in gp120 contribute to HIV-1 envelope (Env) mediated fusogenicity and the ability of gp120 to utilize low levels of cell-surface CD4. In a recent study, we constructed three-dimensional models of gp120 to illustrate CD4bs conformations associated with enhanced fusogenicity and enhanced CD4-usage of a modestly-sized panel of blood-derived HIV-1 Envs (n = 16). These conformations were characterized by a wider aperture of the CD4bs cavity, as constrained by the inner-most atoms at the gp120 V1V2 stem and the V5 loop. Here, we sought to provide further validation of the utility of these models for understanding mechanisms that influence Env function, by characterizing the structure-function relationships of a larger panel of Envs derived from brain and other tissues (n = 81). Findings Three-dimensional models of gp120 were generated by our recently validated homology modelling protocol. Analysis of predicted CD4bs structures showed correlations between the aperture width of the CD4bs cavity and ability of the Envs to mediate cell-cell fusion, scavenge low-levels of cell-surface CD4, bind directly to soluble CD4, and bind to the Env mAb IgG1b12 whose epitope overlaps the gp120 CD4bs. These structural alterations in the CD4bs cavity were associated with repositioning of the V5 loop. Conclusions Using a large, independent panel of Envs, we can confirm the utility of three-dimensional gp120 structural models for illustrating CD4bs alterations that can affect Env function. Furthermore, we now provide new evidence that these CD4bs alterations augment the ability of gp120 to interact with CD4 by increasing the exposure of the CD4bs.
机译:gp120中的背景CD4结合位点(CD4bs)改变有助于HIV-1包膜(Env)介导的融合和gp120利用低水平的细胞表面CD4的能力。在最近的一项研究中,我们构建了gp120的三维模型,以说明与适度大小的血液来源的HIV-1 Envs(n = 16)相比,增强的融合性和增强的CD4使用相关的CD4bs构象。这些构象的特征是CD4bs腔的孔径更大,这受gp120 V1V2茎和V5环中最内层原子的约束。在这里,我们试图通过表征从大脑和其他组织(n = 81)获得的更大的Envs面板的结构-功能关系,来进一步验证这些模型对理解影响Env功能的机制的效用。结果通过我们最近验证的同源性建模协议生成了gp120的三维模型。对预测的CD4bs结构的分析表明,CD4bs腔的孔径宽度与Envs介导细胞-细胞融合,清除低水平的细胞表面CD4,直接与可溶性CD4结合以及与Env mAb IgG1b12结合的能力之间存在相关性。其表位与gp120 CD4bs重叠。 CD4bs腔中的这些结构变化与V5环的重新定位有关。结论使用大型独立的Envs面板,我们可以确认三维gp120结构模型在说明可影响Env功能的CD4bs改变中的作用。此外,我们现在提供新的证据,证明这些CD4b的改变通过增加CD4bs的暴露量而增强了gp120与CD4相互作用的能力。

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