Heterologous betacoronavirus spike immunization in nonhuman primates elicits cross-reactive antibodies that neutralize both sarbeco- and merbecoviruses
Dueker, K.; Capozzola, T.; Feng, Z.; Lin, R. N.; Hurtado, J.; Bangaru, S.; Yuan, M.; Beutler, N.; Garcia, E.; He, W.-t.; Callaghan, S.; Avillion, G.; Vo, L.; Li, X.; Torres, J. L.; Musharrafieh, R.; Song, G.; Mishra, N.; Sharma, P.; Yong, P.; Anzanello, F.; Kaczmarek-Michaels, K.; Ben-Akiva, E.; Silva, M.; Melo, M.; Makhdoomi, M.; Westfall-Gomez, E.; Rinaldi, W.; Ferguson, M.; Safonova, Y.; Crotty, S.; Irvine, D. J.; Rogers, T.; Ward, A. B.; Briney, B.; Wilson, I. A.; Burton, D. R.; andrabi, R.
Show abstract
In anticipation of future coronavirus (CoV) pandemics, developing vaccines that elicit broadly neutralizing antibodies (bnAbs) against diverse CoVs is critical. Here, we vaccinated rhesus macaques with SARS-CoV-2 spike (S)-protein, then boosted with heterologous {beta}-CoV S-proteins to focus responses to common conserved S2 bnAb epitopes. Initial SARS-CoV-2 priming elicited receptor-binding domain (RBD)-focused responses, while MERS-CoV boosting redirected responses toward the S2 region, including the stem-helix bnAb site. Although S2-directed serum cross-neutralization was undetectable and most isolated cross-reactive monoclonal antibodies (mAbs) targeted non-neutralizing epitopes, two S2 stem-helix mAbs were identified from memory B cells. These bnAbs neutralized diverse sarbeco- and merbecoviruses, including MERS-CoV, and conferred robust in vivo protection against SARS-CoV-2 challenge. Structural studies revealed that these macaque bnAbs closely mimic human S2-stem bnAbs induced by infection. These findings provide proof-of-principle for vaccination strategies that elicit broadly protective {beta}-coronavirus responses and highlight non-human primates as a translational model for evaluating S2-targeted immunogens.
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