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Solution Structure Conformational Dynamics and CD4-Induced Activation in Full-Length Glycosylated Monomeric HIV gp120

机译:全长糖基化的单体HIV gp120中的溶液结构构象动力学和CD4诱导的活化

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摘要

The gp120 subunit of the HIV Env glycoprotein is responsible for receptor interactions leading to viral entry and is a primary target for neutralizing antibodies. Most structural studies have focused on the heavily truncated, deglycosylated gp120 core, leaving fundamental aspects of the glycoprotein that are responsible for immune evasion and receptor-induced activation unresolved. Here we investigate full-length, glycosylated HIV gp120 in unliganded and CD4-bound forms by using small-angle X-ray scattering to visualize global structural reorganization and hydrogen/deuterium exchange to track changes in local conformational dynamics. The studies revealed unliganded full-length gp120 to be considerably more dynamic, particularly at the CD4 binding site, than suggested by previous studies of the subunit core alone. The large V1/V2 loops, previously unmapped, are positioned to mask the coreceptor binding site in an orientation that recapitulates that observed in the Env trimer. CD4 binding shifts V1/V2 to unmask the coreceptor binding site and triggers profound dynamic changes in gp120 spanning from the binding site to the gp41-interactive face of gp120. These findings provide further insights on the structural basis of Env antigenicity and immunogenicity and of allosteric effects upon receptor binding.
机译:HIV Env糖蛋白的gp120亚基负责导致病毒进入的受体相互作用,并且是中和抗体的主要靶标。大多数结构研究都集中在重截短的,去糖基化的gp120核心上,而糖蛋白的负责免疫逃逸和受体诱导的激活的基本方面尚未解决。在这里,我们通过使用小角度X射线散射来可视化全局结构重组和氢/氘交换以追踪局部构象动力学的变化,研究未配体和CD4结合形式的全长,糖基化的HIV gp120。研究表明,与以前对单独亚基核心的研究相比,未配体的全长gp120具有更大的动态性,尤其是在CD4结合位点。以前未映射的大V1 / V2环定位为掩盖共受体结合位点,其方向概括了在Env三聚体中观察到的方向。 CD4结合使V1 / V2移位,以掩盖共受体结合位点,并触发gp120中从结合位点到gp120的gp41互动面的深刻动态变化。这些发现为Env抗原性和免疫原性的结构基础以及对受体结合的变构作用提供了进一步的见解。

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