Cross-reactive coronavirus antibodies with diverse epitope specificities and extra-neutralization functions
Shiakolas, A. R.; Kramer, K. J.; Wrapp, D.; Richardson, S. I.; Schäfer, A.; Wall, S.; Wang, N.; Janowska, K.; Pilewski, K. A.; Venkat, R.; Parks, R.; Manamela, N. P.; Raju, N.; Friedman Fechter, E.; Holt, C. M.; Suryadevara, N.; Chen, R. E.; Martinez, D. R.; Nargi, R. S.; Sutton, R. E.; Ledgerwood, J. E.; Graham, B. S.; Diamond, M. S.; Haynes, B. F.; Acharya, P.; Carnahan, R. H.; Crowe, J. E.; Baric, R. S.; Morris, L.; McLellan, J. S.; Georgiev, I. S.
Show abstract
The continual emergence of novel coronavirus (CoV) strains, like SARS-CoV-2, highlights the critical need for broadly reactive therapeutics and vaccines against this family of viruses. Coronavirus spike (S) proteins share common structural motifs that could be vulnerable to cross-reactive antibody responses. To study this phenomenon in human coronavirus infection, we applied a high-throughput sequencing method called LIBRA-seq (Linking B cell receptor to antigen specificity through sequencing) to a SARS-CoV-1 convalescent donor sample. We identified and characterized a panel of six monoclonal antibodies that cross-reacted with S proteins from the highly pathogenic SARS-CoV-1 and SARS-CoV-2 and demonstrated a spectrum of reactivity against other coronaviruses. Epitope mapping revealed that these antibodies recognized multiple epitopes on SARS-CoV-2 S, including the receptor binding domain (RBD), N-terminal domain (NTD), and S2 subunit. Functional characterization demonstrated that the antibodies mediated a variety of Fc effector functions in vitro and mitigated pathological burden in vivo. The identification of cross-reactive epitopes recognized by functional antibodies expands the repertoire of targets for pan-coronavirus vaccine design strategies that may be useful for preventing potential future coronavirus outbreaks.
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