Mosaic sarbecovirus nanoparticles elicit cross-reactive responses in pre-vaccinated animals

Author:

Cohen Alexander A.ORCID,Keeffe Jennifer R.ORCID,Schiepers AriënORCID,Dross Sandra E.ORCID,Greaney Allison J.ORCID,Rorick Annie V.ORCID,Gao Han,Gnanapragasam Priyanthi N.P.,Fan ChengchengORCID,West Anthony P.ORCID,Ramsingh Arlene I.,Erasmus Jesse H.ORCID,Pata Janice D.,Muramatsu Hiromi,Pardi Norbert,Lin Paulo J.C.,Baxter Scott,Cruz Rita,Quintanar-Audelo Martina,Robb Ellis,Serrano-Amatriain Cristina,Magneschi Leonardo,Fotheringham Ian G.,Fuller Deborah H.ORCID,Victora Gabriel D.ORCID,Bjorkman Pamela J.ORCID

Abstract

SUMMARYImmunization with mosaic-8b [60-mer nanoparticles presenting 8 SARS-like betacoronavirus (sarbecovirus) receptor-binding domains (RBDs)] elicits more broadly cross-reactive antibodies than homotypic SARS-CoV-2 RBD-only nanoparticles and protects against sarbecoviruses. To investigate original antigenic sin (OAS) effects on mosaic-8b efficacy, we evaluated effects of prior COVID-19 vaccinations in non-human primates and mice on anti-sarbecovirus responses elicited by mosaic-8b, admix-8b (8 homotypics), or homotypic SARS-CoV-2 immunizations, finding greatest cross-reactivity for mosaic-8b. As demonstrated by molecular fate-mapping in which antibodies from specific cohorts of B cells are differentially detected, B cells primed by WA1 spike mRNA-LNP dominated antibody responses after RBD-nanoparticle boosting. While mosaic-8b- and homotypic-nanoparticles boosted cross-reactive antibodies, de novo antibodies were predominantly induced by mosaic-8b, and these were specific for variant RBDs with increased identity to RBDs on mosaic-8b. These results inform OAS mechanisms and support using mosaic-8b to protect COVID-19 vaccinated/infected humans against as-yet-unknown SARS-CoV-2 variants and animal sarbecoviruses with human spillover potential.

Publisher

Cold Spring Harbor Laboratory

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