首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Unliganded HIV-1 gp120 core structures assume the CD4-bound conformation with regulation by quaternary interactions and variable loops
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Unliganded HIV-1 gp120 core structures assume the CD4-bound conformation with regulation by quaternary interactions and variable loops

机译:未配体的HIV-1 gp120核心结构假定CD4结合的构象受四元相互作用和可变环调控

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摘要

The HIV-1 envelope (Env) spike (gp1203/gp413) undergoes considerable structural rearrangements to mediate virus entry into cells and to evade the host immune response. Engagement of CD4, the primary human receptor, fixes a particular conformation and primes Env for entry. The CD4-bound state, however, is prone to spontaneous inactivation and susceptible to antibody neutralization. How does unliganded HIV-1 maintain CD4-binding capacity and regulate transitions to the CD4-bound state? To define this mechanistically, we determined crystal structures of unliganded core gp120 from HIV-1 clades B, C, and E. Notably, all of these unliganded HIV-1 structures resembled the CD4-bound state. Conformational fixation with ligand selection and thermodynamic analysis of full-length and core gp120 interactions revealed that the tendency of HIV-1 gp120 to adopt the CD4-bound conformation was restrained by the V1/V2- and V3-variable loops. In parallel, we determined the structure of core gp120 in complex with the small molecule, NBD-556, which specifically recognizes the CD4-bound conformation of gp120. Neutralization by NBD-556 indicated that Env spikes on primary isolates rarely assume the CD4-bound conformation spontaneously, although they could do so when quaternary restraints were loosened. Together, the results suggest that the CD4-bound conformation represents a “ground state” for the gp120 core, with variable loop and quaternary interactions restraining unliganded gp120 from “snapping” into this conformation. A mechanism of control involving deformations in unliganded structure from a functionally critical state (e.g., the CD4-bound state) provides advantages in terms of HIV-1 Env structural diversity and resistance to antibodies and inhibitors, while maintaining elements essential for entry.
机译:HIV-1包膜(Env)尖峰(gp1203 / gp413)进行了大量的结构重排,以介导病毒进入细胞并逃避宿主的免疫反应。主要人类受体CD4的参与固定了特定的构象并引发Env进入。但是,CD4结合状态容易自发失活,容易被抗体中和。未配体的HIV-1如何保持CD4结合能力并调节向CD4结合状态的转变?为了从机械上定义这一点,我们从HIV-1进化枝B,C和E中确定了未配体核心gp120的晶体结构。值得注意的是,所有这些未配体的HIV-1结构都类似于CD4结合状态。配体选择的构象固定以及全长和核心gp120相互作用的热力学分析表明,HIV-1 gp120采用CD4结合构象的趋势受到V1 / V2和V3可变环的抑制。同时,我们确定了核心gp120与小分子NBD-556的复合结构,该分子特异性识别gp120的CD4结合构象。 NBD-556的中和表明,初级隔离株上的Env尖峰很少自发呈现CD4结合的构象,尽管在解除四级限制时可以这样做。总之,结果表明CD4结合的构象代表gp120核心的“基态”,可变的环和四级相互作用抑制了未配体的gp120从“捕捉”到该构象。涉及从功能关键状态(例如,结合CD4的状态)在未配体结构中变形的控制机制在HIV-1 Env结构多样性以及对抗体和抑制剂的抗性方面具有优势,同时保持了进入必需的元件。

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