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A Strain-Specific Inhibitor of Receptor-Bound HIV-1 Targets a Pocket near the Fusion Peptide

机译:受体结合HIV-1的应变特异性抑制剂靶向融合肽附近的口袋

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Disruption of viral fusion represents a viable, albeit under-explored, target for HIV therapeutics. Here, while studying the receptor-bound envelope glycoprotein conformation by cryoelectron microscopy (cryo-EM), we identify a pocket near the base of the trimer containing a bound detergent molecule and perform in silico drug screening by using a library of drug-like and commercially available molecules. After down-selection, we solve cryo-EM structures that validate the binding of two small molecule hits in very similar manners to the predicted binding poses, including interactions with aromatic residues within the fusion peptide. One of the molecules demonstrates low micromolar inhibition of the autologous virus by using a very rare phenylalanine in the fusion peptide and stabilizing the surrounding region. This work demonstrates that small molecules can target the fusion process, providing an additional target for anti-HIV therapeutics, and highlights the need to explore how fusion peptide sequence variations affect receptor-mediated conformational states across diverse HIV strains.
机译:病毒融合的破坏代表了迄今为止的艾滋病毒治疗剂的可行性靶标。这里,在通过冷冻电子显微镜(Cryo-em)研究受体 - 结合的包膜糖蛋白构象,我们识别靠近含有结合的洗涤剂分子的三聚体的底部的口袋,并通过使用药物类似的文库在硅药物筛选中进行市售分子。在选择后,我们解决了在非常相似的方式中验证两种小分子击中的Cryo-EM结构,以预测的结合姿势,包括与融合肽内的芳族残基的相互作用。其中一种分子通过在融合肽中使用非常稀有的苯丙氨酸并稳定周围区域来表现出自体病毒的低微量摩擦抑制。这项工作表明,小分子可以靶向融合过程,为抗HIV治疗剂提供额外的靶标,并突出探讨融合肽序列变异如何影响各种HIV菌株的受体介导的构象状态的需要。

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