The continued evolution of SARS-CoV-2 is shaped by changes in antibody evasion and receptor engagement that influence viral fitness. RW.1.1, an emerging descendant of XFJ carrying five additional spike substitutions, has recently increased in frequency in North America. Here, we characterized the serum antibody evasion, monoclonal antibody sensitivity, and ACE2 receptor engagement of RW.1.1. Pseudovirus neutralization assays using sera from adults showed that RW.1.1 was not more resistant to serum neutralization than currently circulating variants, with neutralizing titers comparable to XFG, BA.3.2.2, and NB.1.8.1 in the tested cohort. Neutralization of RW.1.1 also did not differ significantly among adults, children, and infants and toddlers. Despite the absence of increased overall serum antibody resistance, monoclonal antibody neutralization assays revealed substantial resistance to several RBD class 1 antibodies and increased resistance to a subset of class 1/4 antibodies. Moreover, RW.1.1 exhibited reduced ACE2 receptor engagement compared with XFG, which itself has reduced receptor engagement relative to earlier JN.1 subvariants. Thus, RW.1.1 has continued to expand despite a further reduction in receptor engagement and without a substantial increase in overall serum antibody evasion. These findings suggest that the fitness of emerging SARS-CoV-2 variants may depend not only on the magnitude of antibody evasion but also on the specific components of the polyclonal antibody response that are evaded, highlighting the increasingly complex interplay between population immunity and receptor engagement in shaping SARS-CoV-2 evolution.
Daniel, K., Hong, H., Huang, C.-Y., Gordon, A., Guo, Y., Ho, D. D., Mellis, I. A.
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