Distinct evolution of SARS-CoV-2 Omicron XBB and BA.2.86/JN.1 lineages combining increased fitness and antibody evasion

Author:

Planas DelphineORCID,Staropoli Isabelle,Michel VincentORCID,Lemoine FredericORCID,Donati FloraORCID,Prot Matthieu,Porrot FrancoiseORCID,Guivel-Benhassine Florence,Jeyarajah Banujaa,Brisebarre Angela,Dehan Océane,Avon Léa,Bolland William Henry,Hubert MathieuORCID,Buchrieser JulianORCID,Vanhoucke Thibault,Rosenbaum PierreORCID,Veyer David,Péré Hélène,Lina BrunoORCID,Trouillet-Assant Sophie,Hocqueloux Laurent,Prazuck Thierry,Simon-Loriere EtienneORCID,Schwartz OlivierORCID

Abstract

AbstractThe unceasing circulation of SARS-CoV-2 leads to the continuous emergence of novel viral sublineages. Here, we isolate and characterize XBB.1, XBB.1.5, XBB.1.9.1, XBB.1.16.1, EG.5.1.1, EG.5.1.3, XBF, BA.2.86.1 and JN.1 variants, representing >80% of circulating variants in January 2024. The XBB subvariants carry few but recurrent mutations in the spike, whereas BA.2.86.1 and JN.1 harbor >30 additional changes. These variants replicate in IGROV-1 but no longer in Vero E6 and are not markedly fusogenic. They potently infect nasal epithelial cells, with EG.5.1.3 exhibiting the highest fitness. Antivirals remain active. Neutralizing antibody (NAb) responses from vaccinees and BA.1/BA.2-infected individuals are markedly lower compared to BA.1, without major differences between variants. An XBB breakthrough infection enhances NAb responses against both XBB and BA.2.86 variants. JN.1 displays lower affinity to ACE2 and higher immune evasion properties compared to BA.2.86.1. Thus, while distinct, the evolutionary trajectory of these variants combines increased fitness and antibody evasion.

Publisher

Springer Science and Business Media LLC

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