Structural and functional analysis of a potent sarbecovirus neutralizing antibody

Dora Pinto(Vir Biotechnology (Switzerland)), Yoonseon Park(University of Washington), Martina Beltramello(VIR Biotechnology (United States)), Alexandra C. Walls(University of Washington), M. Alejandra Tortorici(Institut Pasteur), Siro Bianchi(VIR Biotechnology (United States)), Stefano Jaconi(Vir Biotechnology (Switzerland)), Katja Culap(VIR Biotechnology (United States)), Fabrizia Zatta(VIR Biotechnology (United States)), Anna De Marco(VIR Biotechnology (United States)), Alessia Peter(VIR Biotechnology (United States)), Barbara Guarino(VIR Biotechnology (United States)), Roberto Spreafico(VIR Biotechnology (United States)), Elisabetta Cameroni(VIR Biotechnology (United States)), James Brett Case, R.E. Chen, Colin Havenar‐Daughton(Vir Biotechnology (Switzerland)), Gyorgy Snell(Vir Biotechnology (Switzerland)), Amalio Telenti(VIR Biotechnology (United States)), Herbert W. Virgin(Vir Biotechnology (Switzerland)), Antonio Lanzavecchia(Università della Svizzera italiana), Michael Diamond, Katja Fink(Vir Biotechnology (Switzerland)), David Veesler(University of Washington), Davide Corti(Vir Biotechnology (Switzerland))
Unknown
April 30, 2020
Cited by 90Open Access
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Abstract

. Vaccine and therapeutic discovery efforts are paramount to curb the pandemic spread of this zoonotic virus. The SARS-CoV-2 spike (S) glycoprotein promotes entry into host cells and is the main target of neutralizing antibodies. Here we describe multiple monoclonal antibodies targeting SARS-CoV-2 S identified from memory B cells of a SARS survivor infected in 2003. One antibody, named S309, potently neutralizes SARS-CoV-2 and SARS-CoV pseudoviruses as well as authentic SARS-CoV-2 by engaging the S receptor-binding domain. Using cryo-electron microscopy and binding assays, we show that S309 recognizes a glycan-containing epitope that is conserved within the sarbecovirus subgenus, without competing with receptor attachment. Antibody cocktails including S309 along with other antibodies identified here further enhanced SARS-CoV-2 neutralization and may limit the emergence of neutralization-escape mutants. These results pave the way for using S309 and S309-containing antibody cocktails for prophylaxis in individuals at high risk of exposure or as a post-exposure therapy to limit or treat severe disease.


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