Structure-guided design of a bivalent SARS-CoV-2 mRNA vaccine with NTD stabilizing mutations enhances broad immunity

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초록

SARS-CoV-2 evolution, particularly the emergence of Omicron variants, has challenged vaccine efficacy, necessitating antigens with broad and variant-specific protection. To design mRNA vaccine antigens with broad-spectrum immunity and enhanced stability, we developed two spike antigens using in silico optimization: Css_dsg S, the ancestral strain-Delta variant consensus with stabilizing mutations, and Omi_dsg S, an Omicron-adapted design. Computational analysis identified two critical N-terminal domain stabilization sites consistently enhancing protein expression across variants, suggesting their potential as universal stabilizing elements. Css_dsg S elicited robust IFN-gamma T cell responses and significantly elevated neutralizing antibody titers against variants in BALB/c mice. Omi_dsg S induced strong immune responses in vivo. A bivalent mRNA vaccine combining both antigens elicited superior neutralizing antibody responses and conferred enhanced protection against BN.1 and BA.5 challenges in K18-hACE2 mice. These findings support computationally optimized spike antigens, particularly the bivalent formulation, as a promising strategy for next-generation vaccines against SARS-CoV-2 variants.

키워드

cross-variant immunity; mRNA vaccine; SARS-CoV-2; spike protein; stabilizing mutations; structure optimization
제목
Structure-guided design of a bivalent SARS-CoV-2 mRNA vaccine with NTD stabilizing mutations enhances broad immunity
저자
Yeo, Jinah; Yun, Mi-ran; Kim, Seo-Yeon; Seok, Jong-Hyun; Jeon, Ji Hyang; Lee, Taeyoung; Kim, Jeonghun; Kim, Kisoon; Park, Man-Seong; Kim, Dokeun; Kim, You-Jin
DOI
10.3389/fimmu.2025.1718740
발행일
2026-01
유형
Article
저널명
Frontiers in Immunology
권
16