BA.2.12.1, BA.4 and BA.5 escape antibodies elicited by Omicron infection

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作者
Yunlong Cao
Ayijiang Yisimayi
Fanchong Jian
Weiliang Song
Tianhe Xiao
Lei Wang
Shuo Du
Jing Wang
Qianqian Li
Xiaosu Chen
Yuanling Yu
Peng Wang
Zhiying Zhang
Pulan Liu
Ran An
Xiaohua Hao
Yao Wang
Jing Wang
Rui Feng
Haiyan Sun
Lijuan Zhao
Wen Zhang
Dong Zhao
Jiang Zheng
Lingling Yu
Can Li
Na Zhang
Rui Wang
Xiao Niu
Sijie Yang
Xuetao Song
Yangyang Chai
Ye Hu
Yansong Shi
Linlin Zheng
Zhiqiang Li
Qingqing Gu
Fei Shao
Weijin Huang
Ronghua Jin
Zhongyang Shen
Youchun Wang
Xiangxi Wang
Junyu Xiao
Xiaoliang Sunney Xie
机构
[1] Peking University,Biomedical Pioneering Innovation Center (BIOPIC)
[2] Changping Laboratory,School of Life Sciences
[3] Peking University,College of Chemistry and Molecular Engineering
[4] Peking University,Joint Graduate Program of Peking–Tsinghua–NIBS, Academy for Advanced Interdisciplinary Studies
[5] Peking University,CAS Key Laboratory of Infection and Immunity, National Laboratory of Macromolecules, Institute of Biophysics
[6] Chinese Academy of Sciences,Division of HIV/AIDS and Sex
[7] National Institutes for Food and Drug Control (NIFDC),transmitted Virus Vaccines, Institute for Biological Product Control
[8] Nankai University,Institute for Immunology, College of Life Sciences
[9] Capital Medical University,Beijing Ditan Hospital
[10] Peking University,Peking–Tsinghua Center for Life Sciences
[11] Peking University,Academy for Advanced Interdisciplinary Studies
[12] Nankai University,Organ Transplant Center, NHC Key Laboratory for Critical Care Medicine, Tianjin First Central Hospital
来源
Nature | 2022年 / 608卷
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摘要
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) Omicron sublineages BA.2.12.1, BA.4 and BA.5 exhibit higher transmissibility than the BA.2 lineage1. The receptor binding and immune-evasion capability of these recently emerged variants require immediate investigation. Here, coupled with structural comparisons of the spike proteins, we show that BA.2.12.1, BA.4 and BA.5 (BA.4 and BA.5 are hereafter referred collectively to as BA.4/BA.5) exhibit similar binding affinities to BA.2 for the angiotensin-converting enzyme 2 (ACE2) receptor. Of note, BA.2.12.1 and BA.4/BA.5 display increased evasion of neutralizing antibodies compared with BA.2 against plasma from triple-vaccinated individuals or from individuals who developed a BA.1 infection after vaccination. To delineate the underlying antibody-evasion mechanism, we determined the escape mutation profiles2, epitope distribution3 and Omicron-neutralization efficiency of 1,640 neutralizing antibodies directed against the receptor-binding domain of the viral spike protein, including 614 antibodies isolated from people who had recovered from BA.1 infection. BA.1 infection after vaccination predominantly recalls humoral immune memory directed against ancestral (hereafter referred to as wild-type (WT)) SARS-CoV-2 spike protein. The resulting elicited antibodies could neutralize both WT SARS-CoV-2 and BA.1 and are enriched on epitopes on spike that do not bind ACE2. However, most of these cross-reactive neutralizing antibodies are evaded by spike mutants L452Q, L452R and F486V. BA.1 infection can also induce new clones of BA.1-specific antibodies that potently neutralize BA.1. Nevertheless, these neutralizing antibodies are largely evaded by BA.2 and BA.4/BA.5 owing to D405N and F486V mutations, and react weakly to pre-Omicron variants, exhibiting narrow neutralization breadths. The therapeutic neutralizing antibodies bebtelovimab4 and cilgavimab5 can effectively neutralize BA.2.12.1 and BA.4/BA.5, whereas the S371F, D405N and R408S mutations undermine most broadly sarbecovirus-neutralizing antibodies. Together, our results indicate that Omicron may evolve mutations to evade the humoral immunity elicited by BA.1 infection, suggesting that BA.1-derived vaccine boosters may not achieve broad-spectrum protection against new Omicron variants.
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页码:593 / 602
页数:9
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