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◇ bioRxiv2026-08-17· microbiology

Structural Definition of Neutralizing Epitopes within and around the HKU1 Receptor-binding Site Reveals Cell Context-Dependent Neutralization

J. Joseph, L. Wang, S. Vasquez, C.-M. Su, D. Wrapp, O. Rosen, O. M. Abiona, C. K. O. Dzuvor, R. Kirchdoerfer, S. P. Moak, T. P. Sheahan, C. Hammond, W. Shi, W.-P. Kong, Y. Zhang, M. R. Eso, A. J. Brown, T. Dangi, P. Penaloza-MacMaster, A. Ward, R. S. Baric, J. S. McLellan, T. C. Pierson, J. Mascola, B. S. Graham, H. Yassine, M. Saeed, C. O. Barnes, K. S. Corbett-Helaire

原始摘要(英文原文)· Original abstract
Endemic human coronaviruses (HCoVs), such as HCoV-HKU1, account for ~30% of common colds each year and can cause serious upper and lower respiratory infections, yet no licensed vaccines or therapeutic antibodies target HCoVs. Despite being endemic to the human population, little is known about the antigenic landscape of HCoV-HKU1. Here, we characterized key interactions between the HCoV-HKU1 spike (S) protein and monoclonal antibodies (mAbs) isolated from convalescent HCoV-HKU-1-positive peripheral blood mononuclear cells collected prior to the COVID-19 pandemic. We isolated 14 mAbs that bound distinct regions of S, including the receptor-binding domain (RBD), N-terminal domain, and S2 subunit. Structural and functional studies revealed three groups of RBD-specific mAbs targeting diverse footprints within and around the TMPRSS2 receptor-binding site: (1) H501-022, which recognizes the TMPRSS2-binding site and thereby blocks receptor engagement; (2) H501-008, which binds a distinct epitope outside the TMPRSS2-binding site that is shared with HCoV-OC43; and (3) H501-018, which recognizes both up and down RBD conformations at a distinct, non-overlapping epitope outside the TMPRSS2-binding site. H501-008 weakly neutralized live HCoV-OC43 in vitro and protected mice against lethal HCoV-OC43 challenge. Notably, the three RBD-specific mAbs potently neutralized HCoV-HKU1 pseudovirus in TMPRSS2-overexpressing cell lines, but exhibited limited neutralizing activity against authentic HCoV-HKU1 infection in primary human airway epithelial cells. Together, these findings structurally define the antigenic landscape within and around the HKU1 receptor-binding site and demonstrate that receptor-binding site recognition alone is insufficient to predict physiologically relevant antibody-mediated neutralization.
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Structural Definition of Neutralizing Epitopes within and around the HKU1 Receptor-binding Site Reveals Cell Context-Dependent Neutralization — 科研速览 Science Skim