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Deep Mutational Scanning of SARS-CoV-2 Receptor Binding Domain Reveals Constraints on Folding and ACE2 Binding

机译:SARS-COV-2受体结合结构域的深静脉扫描揭示了对折叠和ACE2结合的约束

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摘要

The receptor binding domain (RBD) of the SARS-CoV-2 spike glycoprotein mediates viral attachment to ACE2 receptor and is a major determinant of host range and a dominant target of neutralizing antibodies. Here, we experimentally measure how all amino acid mutations to the RBD affect expression of folded protein and its affinity for ACE2. Most mutations are deleterious for RBD expression and ACE2 binding, and we identify constrained regions on the RBD's surface that may be desirable targets for vaccines and antibody-based therapeutics. But a substantial number of mutations are well tolerated or even enhance ACE2 binding, including at ACE2 interface residues that vary across SARS-related coronaviruses. However, we find no evidence that these ACE2-affinity-enhancing mutations have been selected in current SARS-CoV-2 pandemic isolates. We present an interactive visualization and open analysis pipeline to facilitate use of our dataset for vaccine design and functional annotation of mutations observed during viral surveillance.
机译:SARS-CoV-2棘突糖蛋白的受体结合域(RBD)介导病毒与ACE2受体的附着,是宿主范围的主要决定因素,也是中和抗体的主要靶点。在这里,我们通过实验测量RBD的所有氨基酸突变如何影响折叠蛋白的表达及其对ACE2的亲和力。大多数突变对RBD表达和ACE2结合有害,我们发现RBD表面的限制区域可能是疫苗和抗体治疗的理想靶点。但相当数量的突变具有良好的耐受性,甚至增强了ACE2结合,包括在不同SARS相关冠状病毒的ACE2界面残基上。然而,我们没有发现证据表明这些ACE2亲和力增强突变已在当前SARS-CoV-2大流行分离株中被选择。我们提供了一个交互式可视化和开放分析管道,以便于使用我们的数据集进行疫苗设计,并对病毒监测期间观察到的突变进行功能注释。

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