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Cross-Reactive SARS-CoV-2 Neutralizing Antibodies From Deep Mining of Early Patient Responses

Georgia BullenJacob D. GalsonGareth HallLeicester Institute of Structural and Chemical Biology and Department of Molecular and Cell Biology, University of Leicester, Leicester, United KingdomPedro VillarLien MoreelsLine LedsgaardGiada MattiuzzoNational Institute for Biological Standards and Control, Potters Bar, United KingdomEmma BentleyNational Institute for Biological Standards and Control, Potters Bar, United KingdomEdward W. MastersDavid TangLifeArc, Stevenage, United KingdomSophie MillettLifeArc, Stevenage, United KingdomDanielle TongueLifeArc, Stevenage, United KingdomR. H. BrownLifeArc, Stevenage, United KingdomIoannis DiamantopoulosKothai ParthibanClaire TebbuttRachael A. LeahKrishna ChaitanyaSandra Ergueta-CarballoDeividas PazeraitisSachin SuradeOmodele AshiruAbcam, Cambridge, United KingdomLucia CrippaAbcam, Cambridge, United KingdomRichard CowanLeicester Institute of Structural and Chemical Biology and Department of Molecular and Cell Biology, University of Leicester, Leicester, United KingdomMatthew W. BowlerEuropean Molecular Biology Laboratory, Grenoble, FranceJamie I. D. CampbellAbcam, Cambridge, United KingdomWing-Yiu Jason LeeBarts and The London School of Medicine and Dentistry, Queen Mary University of London, London, United KingdomMark D. CarrLeicester Institute of Structural and Chemical Biology and Department of Molecular and Cell Biology, University of Leicester, Leicester, United KingdomDavid J. MatthewsLifeArc, Stevenage, United KingdomPaul PfefferBarts and The London School of Medicine and Dentistry, Queen Mary University of London, London, United KingdomSimon E. HuftonNational Institute for Biological Standards and Control, Potters Bar, United KingdomKovilen SawmynadenLifeArc, Stevenage, United KingdomJane OsbournJohn McCaffertyAneesh Karatt-Vellatt
2021en
ABI

Аннотация

Passive immunization using monoclonal antibodies will play a vital role in the fight against COVID-19. The recent emergence of viral variants with reduced sensitivity to some current antibodies and vaccines highlights the importance of broad cross-reactivity. This study describes deep-mining of the antibody repertoires of hospitalized COVID-19 patients using phage display technology and B cell receptor (BCR) repertoire sequencing to isolate neutralizing antibodies and gain insights into the early antibody response. This comprehensive discovery approach has yielded a panel of potent neutralizing antibodies which bind distinct viral epitopes including epitopes conserved in SARS-CoV-1. Structural determination of a non-ACE2 receptor blocking antibody reveals a previously undescribed binding epitope, which is unlikely to be affected by the mutations in any of the recently reported major viral variants including B.1.1.7 (from the UK), B.1.351 (from South Africa) and B.1.1.28 (from Brazil). Finally, by combining sequences of the RBD binding and neutralizing antibodies with the B cell receptor repertoire sequencing, we also describe a highly convergent early antibody response. Similar IgM-derived sequences occur within this study group and also within patient responses described by multiple independent studies published previously.

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Цитирований: 2Использованных источников: 0