Human antibody targeting of coronavirus spike S2 subunit is associated with protection mediated by Fc effector functions

  • Muthuraman K
  • Jackman M
  • Liang Y
  • et al.
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Abstract

Bats and pangolins are natural reservoirs of betacoronaviruses (β-CoVs) and continue to pose a significant risk for future outbreaks through zoonotic transmissions. This highlights the need for effective countermeasures to prevent future pandemics. While neutralizing antibodies targeting the receptor-binding domain of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) received emergency use authorization, many have lost efficacy as the virus evolved, and authorizations have been revoked. In contrast to the S1 subunit, the spike protein S2 subunit is more conserved across β-CoVs, making it an attractive target for the development of broadly neutralizing antibodies. Here, we describe a human mAb that targets a conserved epitope in the S2 subunit, demonstrating broad β-CoV binding, sarbecovirus neutralization, and in vivo protection mediated by Fc effector functions in a mouse model. These findings have important implications for pan-β-CoVs therapeutics and vaccine development.

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APA

Muthuraman, K., Jackman, M., Liang, Y., Garrett, M. E., Cui, H., Nguyen, L. V. H., … Julien, J.-P. (2025). Human antibody targeting of coronavirus spike S2 subunit is associated with protection mediated by Fc effector functions. Journal of Virology, 99(12). https://doi.org/10.1128/jvi.01523-25

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