Ontology highlight
ABSTRACT:
SUBMITTER: Wang L
PROVIDER: S-EPMC9269068 | biostudies-literature | 2021 Aug
REPOSITORIES: biostudies-literature
Wang Lingshu L Zhou Tongqing T Zhang Yi Y Yang Eun Sung ES Schramm Chaim A CA Shi Wei W Pegu Amarendra A Oloniniyi Olamide K OK Henry Amy R AR Darko Samuel S Narpala Sandeep R SR Hatcher Christian C Martinez David R DR Tsybovsky Yaroslav Y Phung Emily E Abiona Olubukola M OM Antia Avan A Cale Evan M EM Chang Lauren A LA Choe Misook M Corbett Kizzmekia S KS Davis Rachel L RL DiPiazza Anthony T AT Gordon Ingelise J IJ Hait Sabrina Helmold SH Hermanus Tandile T Kgagudi Prudence P Laboune Farida F Leung Kwanyee K Liu Tracy T Mason Rosemarie D RD Nazzari Alexandra F AF Novik Laura L O'Connell Sarah S O'Dell Sijy S Olia Adam S AS Schmidt Stephen D SD Stephens Tyler T Stringham Christopher D CD Talana Chloe Adrienna CA Teng I-Ting IT Wagner Danielle A DA Widge Alicia T AT Zhang Baoshan B Roederer Mario M Ledgerwood Julie E JE Ruckwardt Tracy J TJ Gaudinski Martin R MR Moore Penny L PL Doria-Rose Nicole A NA Baric Ralph S RS Graham Barney S BS McDermott Adrian B AB Douek Daniel C DC Kwong Peter D PD Mascola John R JR Sullivan Nancy J NJ Misasi John J
Science (New York, N.Y.) 20210701 6556
The emergence of highly transmissible SARS-CoV-2 variants of concern (VOCs) that are resistant to therapeutic antibodies highlights the need for continuing discovery of broadly reactive antibodies. We identified four receptor binding domain-targeting antibodies from three early-outbreak convalescent donors with potent neutralizing activity against 23 variants, including the B.1.1.7, B.1.351, P.1, B.1.429, B.1.526, and B.1.617 VOCs. Two antibodies are ultrapotent, with subnanomolar neutralization ...[more]