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Generation of Escape Variants of Neutralizing Influenza Virus Monoclonal Antibodies
Published on: August 29, 2017
Omicron escapes the majority of existing SARS-CoV-2 neutralizing antibodies
Yunlong Cao1,2, Jing Wang3,4, Fanchong Jian3,5
1Biomedical Pioneering Innovation Center (BIOPIC), Peking University, Beijing, P. R. China. yunlongcao@pku.edu.cn.
Abstract:
The SARS-CoV-2 B.1.1.529 (Omicron) variant contains 15 mutations of the receptor-binding domain (RBD). How Omicron evades RBD-targeted neutralizing antibodies requires immediate investigation. Here we use high-throughput yeast display screening1,2 to determine the profiles of RBD escaping mutations for 247 human anti-RBD neutralizing antibodies and show that the neutralizing antibodies can be classified by unsupervised clustering into six epitope groups (A-F)-a grouping that is highly concordant with knowledge-based structural classifications3-5. Various single mutations of Omicron can impair neutralizing antibodies of different epitope groups. Specifically, neutralizing antibodies in groups A-D, the epitopes of which overlap with the ACE2-binding motif, are largely escaped by K417N, G446S, E484A and Q493R. Antibodies in group E (for example, S309)6 and group F (for example, CR3022)7, which often exhibit broad sarbecovirus neutralizing activity, are less affected by Omicron, but a subset of neutralizing antibodies are still escaped by G339D, N440K and S371L. Furthermore, Omicron pseudovirus neutralization showed that neutralizing antibodies that sustained single mutations could also be escaped, owing to multiple synergetic mutations on their epitopes. In total, over 85% of the tested neutralizing antibodies were escaped by Omicron. With regard to neutralizing-antibody-based drugs, the neutralization potency of LY-CoV016, LY-CoV555, REGN10933, REGN10987, AZD1061, AZD8895 and BRII-196 was greatly undermined by Omicron, whereas VIR-7831 and DXP-604 still functioned at a reduced efficacy. Together, our data suggest that infection with Omicron would result in considerable humoral immune evasion, and that neutralizing antibodies targeting the sarbecovirus conserved region will remain most effective. Our results inform the development of antibody-based drugs and vaccines against Omicron and future variants.
Insights
The Omicron variant of SARS-CoV-2 extensively evades neutralizing antibodies, with over 85% showing reduced efficacy. Antibodies targeting conserved sarbecovirus regions are most effective against Omicron immune evasion.
Area of Science:
- Virology
- Immunology
- Structural Biology
Background:
- The SARS-CoV-2 Omicron variant (B.1.1.529) possesses numerous mutations in its receptor-binding domain (RBD).
- Understanding Omicron's immune evasion mechanisms is critical for developing effective therapeutics and vaccines.
Purpose of the Study:
- To investigate how Omicron's mutations affect the efficacy of existing neutralizing antibodies.
- To classify antibodies based on their susceptibility to Omicron's escape mutations.
Main Methods:
- High-throughput yeast display screening was employed to assess 247 human anti-RBD neutralizing antibodies against Omicron mutations.
- Unsupervised clustering was used to group antibodies into epitope classes (A-F).
- Omicron pseudovirus neutralization assays were performed to evaluate antibody efficacy.
Main Results:
- Omicron mutations, particularly K417N, G446S, E484A, and Q493R, significantly escaped antibodies targeting the ACE2-binding motif (groups A-D).
- Antibodies with broad sarbecovirus activity (groups E and F) showed reduced but retained neutralization, though some were still affected by mutations like G339D, N440K, and S371L.
- Over 85% of tested neutralizing antibodies were escaped by Omicron, with synergistic effects from multiple mutations.
- Several antibody-based drugs (e.g., LY-CoV016, REGN10933) lost significant neutralization potency against Omicron, while others (VIR-7831, DXP-604) retained reduced efficacy.
Conclusions:
- Omicron exhibits substantial humoral immune evasion due to its RBD mutations.
- Neutralizing antibodies targeting conserved sarbecovirus regions demonstrate greater effectiveness against Omicron.
- Findings guide the development of next-generation antibody therapies and vaccines effective against current and future SARS-CoV-2 variants.
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