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Exploring distinct modes of inter-spike cross-linking for enhanced neutralization by SARS-CoV-2 antibodies

delete2024-12-04
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OA
AI
X
Xuanyu Nan
Y
Yujie Li
R
Rui Zhang
R
Ruoke Wang
L
Lv, Niannian
J
Jiayi Li
Y
Yuanfang Chen
B
Bini Zhou
Y
Yangjunqi Wang
Z
Ziyi Wang
J
Jiayi Zhu
J
Jing Chen
J
Jinqian Li
W
Wenlong Chen
Q
Qi Zhang
史宣玲 cover
史宣玲 (Xuanling Shi)
C
Changwen Zhao
陈春英 (Chunying Chen)
Z
Zhihua Liu
Y
Yuliang Zhao
D
Dongsheng Liu
X
Xinquan Wang
燕立唐 cover
燕立唐 (Li‐Tang Yan)
T
Taisheng Li *
L
Linqi Zhang *
Y
Yuhe R. Yang *
DOI:10.1038/s41467-024-54746-5delete
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Abstract

Abstract

En 中文
The emergence of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) and its Omicron subvariants drastically amplifies transmissibility, infectivity, and immune escape, mainly due to their resistance to most neutralizing antibodies. Thus, exploring the mechanisms underlying antibody evasion is crucial. Although the full-length native form of antibody, immunoglobulin G (IgG), offers valuable insights into the neutralization, structural investigations primarily focus on the fragment of antigen-binding (Fab). Here, we employ single-particle cryo-electron microscopy (cryo-EM) to characterize a W328-6H2 antibody, in its native IgG form complexed with severe acute respiratory syndrome (SARS), severe acute respiratory syndrome coronavirus 2 wild-type (WT) and Omicron variant BA.1 spike protein (S). Three high-resolution structures reveal that the full-length IgG forms a centered head-to-head dimer of trimer when binds fully stoichiometrically with both SARS and WT S, while adopting a distinct offset configuration with Omicron BA.1 S. Combined with functional assays, our results suggest that, beyond the binding affinity between the RBD epitope and Fab, the higher-order architectures of S trimer and full-length IgG play an additional role in neutralization, enriching our understanding of enhanced neutralization by SARS-CoV-2 antibodies.
Keywords:
CRYO-EM STRUCTURE
INHIBITION
VALIDATION
MUTATIONS
ACE2
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Journal

Nature Communications cover
Nature Communications
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15.7
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9.2W
Citations:
91.2W

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P
Peking Union Medical College
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Papers: 1.4W
Citations: 20
T
tsinghua university
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Papers: 9.9W
Citations: 137
N
national center for nanoscience & technology, cas
Scholars:
3.4K
Papers: 2.6K
Citations: 11
C
cancer institute & hospital - cams
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3.7K
Papers: 2.9K
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B
Beijing University of Chemical Technology
Scholars:
3.1W
Papers: 2.2W
Citations: 4.5W
C
chinese academy of sciences
Scholars:
55.3W
Papers: 44.6W
Citations: 704
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