免疫原
蛋白质亚单位
冠状病毒
脂质双层融合
生物
蛋白质结构
病毒学
生物物理学
化学
抗体
计算生物学
2019年冠状病毒病(COVID-19)
病毒
遗传学
医学
生物化学
疾病
病理
传染病(医学专业)
单克隆抗体
基因
作者
Eduardo Olmedillas,Roshan R. Rajamanickam,Ruben Diaz Avalos,Fernanda A Sosa,Michelle Zandonatti,Stephanie Harkins,Sujan Shresta,Kathryn M. Hastie,Erica Ollmann Saphire
标识
DOI:10.1101/2023.12.14.571764
摘要
ABSTRACT The 800 million human infections with SARS-CoV-2 and the likely emergence of new variants and additional coronaviruses necessitate a better understanding of the essential spike glycoprotein and the development of immunogens that foster broader and more durable immunity. The S2 fusion subunit is more conserved in sequence, is essential to function, and would be a desirable immunogen to boost broadly reactive antibodies. It is, however, unstable in structure and in its wild-type form, cannot be expressed alone without irreversible collapse into a six-helix bundle. In addition to the irreversible conformational changes of fusion, biophysical measurements indicate that spike also undergoes a reversible breathing action. However, spike in an open, “breathing” conformation has not yet been visualized at high resolution. Here we describe an S2-only antigen, engineered to remain in its relevant, pre-fusion viral surface conformation in the absence of S1. We also describe a panel of natural human antibodies specific for S2 from vaccinated and convalescent individuals. One of these mAbs, from a convalescent individual, afforded a high-resolution cryo-EM structure of the prefusion S2. The structure reveals a complex captured in an “open” conformation with greater stabilizing intermolecular interactions at the base and a repositioned fusion peptide. Together, this work provides an antigen for advancement of next-generation “booster” immunogens and illuminates the likely breathing adjustments of the coronavirus spike.
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