Memory B cell repertoire from triple vaccinees against diverse SARS-CoV-2 variants

Kang Wang(Chinese Academy of Sciences), Zijing Jia(Chinese Academy of Sciences), Linilin Bao(Chinese Academy of Medical Sciences & Peking Union Medical College), Lei Wang(Chinese Academy of Sciences), Lei Cao(Chinese Academy of Sciences), Hang Chi(Institute of Microbiology), Yaling Hu(Sinovac Biotech), Qianqian Li(National Institutes for Food and Drug Control), Yunjiao Zhou(Shanghai Medical College of Fudan University), Yinan Jiang, Qianhui Zhu(Chinese Academy of Sciences), Yong‐Qiang Deng(Institute of Microbiology), Pan Liu(Chinese Academy of Sciences), Nan Wang(Chinese Academy of Sciences), Lin Wang(Chinese Academy of Sciences), Min Liu(Sinovac Biotech), Yurong Li(Sinovac Biotech), Boling Zhu(Chinese Academy of Sciences), Kaiyue Fan(Chinese Academy of Sciences), Wangjun Fu(Chinese Academy of Sciences), Peng Yang(Chinese Academy of Sciences), Xinran Pei(Chinese Academy of Sciences), Zhen Cui(Chinese Academy of Sciences), Lili Qin, Pingju Ge, Jiajing Wu(National Institutes for Food and Drug Control), Shuo Liu(National Institutes for Food and Drug Control), Yiding Chen, Weijin Huang(National Institutes for Food and Drug Control), Qiao Wang(Shanghai Medical College of Fudan University), Cheng‐Feng Qin(Chinese Academy of Medical Sciences & Peking Union Medical College), Youchun Wang(National Institutes for Food and Drug Control), Chuan Qin(Chinese Academy of Medical Sciences & Peking Union Medical College), Xiangxi Wang(Institute of Biophysics)
Nature
January 28, 2022
Cited by 195Open Access
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Abstract

. Here we examined whether sera from individuals who received two or three doses of inactivated SARS-CoV-2 vaccine could neutralize authentic Omicron. The seroconversion rates of neutralizing antibodies were 3.3% (2 out of 60) and 95% (57 out of 60) for individuals who had received 2 and 3 doses of vaccine, respectively. For recipients of three vaccine doses, the geometric mean neutralization antibody titre for Omicron was 16.5-fold lower than for the ancestral virus (254). We isolated 323 human monoclonal antibodies derived from memory B cells in triple vaccinees, half of which recognized the receptor-binding domain, and showed that a subset (24 out of 163) potently neutralized all SARS-CoV-2 variants of concern, including Omicron. Therapeutic treatments with representative broadly neutralizing monoclonal antibodies were highly protective against infection of mice with SARS-CoV-2 Beta (B.1.351) and Omicron. Atomic structures of the Omicron spike protein in complex with three classes of antibodies that were active against all five variants of concern defined the binding and neutralizing determinants and revealed a key antibody escape site, G446S, that confers greater resistance to a class of antibodies that bind on the right shoulder of the receptor-binding domain by altering local conformation at the binding interface. Our results rationalize the use of three-dose immunization regimens and suggest that the fundamental epitopes revealed by these broadly ultrapotent antibodies are rational targets for a universal sarbecovirus vaccine.


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