Multiple SARS-CoV-2 variants escape neutralization by vaccine-induced humoral immunity

Author:

Garcia-Beltran Wilfredo F.,Lam Evan C.ORCID,Denis Kerri St.,Nitido Adam D.ORCID,Garcia Zeidy H.,Hauser Blake M.ORCID,Feldman JaredORCID,Pavlovic Maia N.,Gregory David J.ORCID,Poznansky Mark C.,Sigal AlexORCID,Schmidt Aaron G.ORCID,Iafrate A. John,Naranbhai VivekORCID,Balazs Alejandro B.ORCID

Abstract

SUMMARYVaccination elicits immune responses capable of potently neutralizing SARS-CoV-2. However, ongoing surveillance has revealed the emergence of variants harboring mutations in spike, the main target of neutralizing antibodies. To understand the impact of these variants, we evaluated the neutralization potency of 99 individuals that received one or two doses of either BNT162b2 or mRNA-1273 vaccines against pseudoviruses representing 10 globally circulating strains of SARS-CoV-2. Five of the 10 pseudoviruses, harboring receptor-binding domain mutations, including K417N/T, E484K, and N501Y, were highly resistant to neutralization. Cross-neutralization of B.1.351 variants was comparable to SARS-CoV and bat-derived WIV1-CoV, suggesting that a relatively small number of mutations can mediate potent escape from vaccine responses. While the clinical impact of neutralization resistance remains uncertain, these results highlight the potential for variants to escape from neutralizing humoral immunity and emphasize the need to develop broadly protective interventions against the evolving pandemic.

Publisher

Cold Spring Harbor Laboratory

Reference52 articles.

1. “AZD1222 Vaccine Met Primary Efficacy Endpoint in Preventing COVID-19.” 2020. November 23, 2020. https://www.astrazeneca.com/media-centre/press-releases/2020/azd1222hlr.html.

2. Efficacy and Safety of the mRNA-1273 SARS-CoV-2 Vaccine;The New England Journal of Medicine,2021

3. Antibody cocktail to SARS-CoV-2 spike protein prevents rapid mutational escape seen with individual antibodies

4. Neuropilin-1 facilitates SARS-CoV-2 cell entry and infectivity

5. Cele, Sandile , Inbal Gazy , Laurelle Jackson , Shi-Hsia Hwa , Houriiyah Tegally , Gila Lustig , Jennifer Giandhari , et al. 2021. “Escape of SARS-CoV-2 501Y.V2 Variants from Neutralization by Convalescent Plasma.” medRxiv, January, 2021.01.26.21250224.

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