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Antibody potency relates to the ability to recognize the closed, pre-fusion form of HIV Env

机译:抗体效力与识别HIV Env封闭的融合前形式的能力有关

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HIV’s envelope glycoprotein ( Env ) is the sole target for neutralizing antibodies. The structures of many broadly neutralizing antibodies (bNAbs) in complex with truncated Env subunits or components have been reported. However, their interaction with the intact Env trimer, and the structural determinants that underlie neutralization resistance in this more native context are less well understood. Here we use hydrogen/deuterium exchange to examine the interactions between a panel of bNAbs and native-like Env trimers (SOSIP.664 trimers). Highly potent bNAbs cause only localized effects at their binding interface, while the binding of less potent antibodies is associated with elaborate changes throughout the trimer. In conjunction with binding kinetics, our results suggest that poorly neutralizing antibodies can only bind when the trimer transiently samples an open state. We propose that the kinetics of such opening motions varies among isolates, with Env from neutralization-sensitive viruses opening more frequently than Env from resistant viruses.
机译:HIV的包膜糖蛋白(Env)是中和抗体的唯一目标。与截短的Env亚基或成分复合的许多广泛中和抗体(bNAb)的结构已有报道。但是,它们与完整的Env三聚体的相互作用以及在这种更天然的背景下抗中和作用的结构决定因素还不太清楚。在这里,我们使用氢/氘交换来检查一组bNAb与天然类似的Env三聚体(SOSIP.664三聚体)之间的相互作用。高效的bNAb仅在其结合界面处引起局部作用,而效价较低的抗体的结合与整个三聚体的精细变化有关。结合结合动力学,我们的结果表明,中和性差的抗体仅在三聚体瞬时取样为开放状态时才能结合。我们提出这种打开运动的动力学在分离物中是不同的,来自中和敏感病毒的Env比来自抗性病毒的Env更频繁地打开。

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