Department of Chemistry, King's College London, SE1 1DB, London, UK.
Structural Biology of Disease Processes Laboratory, The Francis Crick Institute, NW1 1AT, London, UK.
Nat Commun. 2023 Mar 14;14(1):1421. doi: 10.1038/s41467-023-36745-0.
SARS-CoV-2 spike glycoprotein mediates receptor binding and subsequent membrane fusion. It exists in a range of conformations, including a closed state unable to bind the ACE2 receptor, and an open state that does so but displays more exposed antigenic surface. Spikes of variants of concern (VOCs) acquired amino acid changes linked to increased virulence and immune evasion. Here, using HDX-MS, we identified changes in spike dynamics that we associate with the transition from closed to open conformations, to ACE2 binding, and to specific mutations in VOCs. We show that the RBD-associated subdomain plays a role in spike opening, whereas the NTD acts as a hotspot of conformational divergence of VOC spikes driving immune evasion. Alpha, beta and delta spikes assume predominantly open conformations and ACE2 binding increases the dynamics of their core helices, priming spikes for fusion. Conversely, substitutions in omicron spike lead to predominantly closed conformations, presumably enabling it to escape antibodies. At the same time, its core helices show characteristics of being pre-primed for fusion even in the absence of ACE2. These data inform on SARS-CoV-2 evolution and omicron variant emergence.
SARS-CoV-2 刺突糖蛋白介导受体结合和随后的膜融合。它存在于一系列构象中,包括无法结合 ACE2 受体的封闭状态,以及能够结合但显示更多暴露抗原表面的开放状态。关注变体(VOCs)的刺突获得了与毒力增加和免疫逃避相关的氨基酸变化。在这里,我们使用 HDX-MS 鉴定了刺突动力学的变化,我们将这些变化与从封闭构象到开放构象的转变、与 ACE2 结合以及 VOC 中的特定突变联系起来。我们表明,RBD 相关亚结构域在刺突开放中起作用,而 NTD 作为驱动免疫逃避的 VOC 刺突构象发散的热点。阿尔法、贝塔和德尔塔刺突呈现出主要的开放构象,并且 ACE2 结合增加了它们核心螺旋的动力学,为融合做好准备。相反,奥密克戎刺突中的取代导致主要的封闭构象,可能使其能够逃避抗体。同时,其核心螺旋显示出融合前被预先激活的特征,即使在没有 ACE2 的情况下也是如此。这些数据为 SARS-CoV-2 的进化和奥密克戎变体的出现提供了信息。