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8S6M

SARS-CoV-2 BQ.1.1 RBD bound to the S2V29 and the S2H97 Fab fragments

Summary for 8S6M
Entry DOI10.2210/pdb8s6m/pdb
DescriptorS2V29 Fab heavy chain, Spike protein S1, S2H97 Fab heavy chain, ... (10 entities in total)
Functional Keywordssarbecoviruses, spike glycoprotein, fusion protein, neutralizing antibodies, inhibitor, viral protein, structural genomics, seattle structural genomics center for infectious disease, ssgcid
Biological sourceHomo sapiens
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Total number of polymer chains5
Total formula weight125418.27
Authors
Primary citationRosen, L.E.,Tortorici, M.A.,De Marco, A.,Pinto, D.,Foreman, W.B.,Taylor, A.L.,Park, Y.J.,Bohan, D.,Rietz, T.,Errico, J.M.,Hauser, K.,Dang, H.V.,Chartron, J.W.,Giurdanella, M.,Cusumano, G.,Saliba, C.,Zatta, F.,Sprouse, K.R.,Addetia, A.,Zepeda, S.K.,Brown, J.,Lee, J.,Dellota Jr., E.,Rajesh, A.,Noack, J.,Tao, Q.,DaCosta, Y.,Tsu, B.,Acosta, R.,Subramanian, S.,de Melo, G.D.,Kergoat, L.,Zhang, I.,Liu, Z.,Guarino, B.,Schmid, M.A.,Schnell, G.,Miller, J.L.,Lempp, F.A.,Czudnochowski, N.,Cameroni, E.,Whelan, S.P.J.,Bourhy, H.,Purcell, L.A.,Benigni, F.,di Iulio, J.,Pizzuto, M.S.,Lanzavecchia, A.,Telenti, A.,Snell, G.,Corti, D.,Veesler, D.,Starr, T.N.
A potent pan-sarbecovirus neutralizing antibody resilient to epitope diversification.
Cell, 187:7196-, 2024
Cited by
PubMed Abstract: Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) evolution has resulted in viral escape from clinically authorized monoclonal antibodies (mAbs), creating a need for mAbs that are resilient to epitope diversification. Broadly neutralizing coronavirus mAbs that are sufficiently potent for clinical development and retain activity despite viral evolution remain elusive. We identified a human mAb, designated VIR-7229, which targets the viral receptor-binding motif (RBM) with unprecedented cross-reactivity to all sarbecovirus clades, including non-ACE2-utilizing bat sarbecoviruses, while potently neutralizing SARS-CoV-2 variants since 2019, including the recent EG.5, BA.2.86, and JN.1. VIR-7229 tolerates extraordinary epitope variability, partly attributed to its high binding affinity, receptor molecular mimicry, and interactions with RBM backbone atoms. Consequently, VIR-7229 features a high barrier for selection of escape mutants, which are rare and associated with reduced viral fitness, underscoring its potential to be resilient to future viral evolution. VIR-7229 is a strong candidate to become a next-generation medicine.
PubMed: 39383863
DOI: 10.1016/j.cell.2024.09.026
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.67 Å)
Structure validation

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