bioRxiv · 10.1101/2021.07.07.451375
Multivalent designed proteins protect against SARS-CoV-2 variants of concern
Abstract
Escape variants of SARS-CoV-2 are threatening to prolong the COVID-19 pandemic. To address this challenge, we developed multivalent protein-based minibinders as potential prophylactic and therapeutic agents. Homotrimers of single minibinders and fusions of three distinct minibinders were designed to geometrically match the SARS-CoV-2 spike (S) trimer architecture and were optimized by cell-free expression and found to exhibit virtually no measurable dissociation upon binding. Cryo-electron microscopy (cryoEM) showed that these trivalent minibinders engage all three receptor binding domains on a single S trimer. The top candidates neutralize SARS-CoV-2 variants of concern with IC50 values in the low pM range, resist viral escape, and provide protection in highly vulnerable human ACE2-expressing transgenic mice, both prophylactically and therapeutically. Our integrated workflow promises to accelerate the design of mutationally resilient therapeutics for pandemic preparedness. One-Sentence SummaryWe designed, developed, and characterized potent, trivalent miniprotein binders that provide prophylactic and therapeutic protection against emerging SARS-CoV-2 variants of concern.
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Hunt, A. C., Case, J. B., Park, Y.-J., Cao, L., Wu, K., Walls, A. C., Liu, Z., Bowen, J. E., Yeh, H.-W., Saini, S., Helms, L., Zhao, Y. T., Hsiang, T.-Y., Starr, T. N., Goreshnik, I., Kozodoy, L., Carter, L., Ravichandran, R., Green, L. B., Matochko, W. L., Thomson, C. A., Vogeli, B., Kruger-Gericke, A., VanBlargan, L. A., Chen, R. E., Ying, B., Bailey, A. L., Kafai, N. M., Boyken, S., Ljubetic, A., Edman, N., Ueda, G., Chow, C., Addetia, A., Panpradist, N., Gale, M., Freedman, B., Lutz, B., Bloom, J. D., Ruohola-Baker, H., Whelan, S. P. J., Stewart, L., Diamond, M. S., Veesler, D., Jewett, M.. 2021-07-07. Multivalent designed proteins protect against SARS-CoV-2 variants of concern. https://doi.org/10.1101/2021.07.07.451375
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