Abstract
Neutralizing antibodies targeting the SARS-CoV-2 spike protein have shown a great preventative/ therapeutic potential. Here, we report a rapid and efficient strategy for the development and design of SARS-CoV-2 neutralizing humanized nanobody constructs with subnanomolar affinities and nanomolar potencies. CryoEM-based structural analysis of the nanobodies in complex with spike revealed two distinct binding modes. The most potent nanobody, RBD-1-2G(NCATS-BL8125), tolerates the N501Y RBD mutation and remains capable of neutralizing the B.1.1.7 (Alpha) variant. Molecular dynamics simulations provide a structural basis for understanding the neutralization process of nanobodies exclusively focused on the spike-ACE2 interface with and without the N501Y mutation on RBD. A primary human airway air-lung interface (ALI) ex vivo model showed that RBD-1-2G-Fc antibody treatment was effective at reducing viral burden following WA1 and B.1.1.7 SARSCoV- 2 infections. Therefore, this presented strategy will serve as a tool to mitigate the threat of emerging SARS-CoV-2 variants.
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CITATION STYLE
Fu, Y., da Fonseca Rezende e Mello, J., Fleming, B. D., Renn, A., Chen, C. Z., Hu, X., … Simeonov, A. (2022). A humanized nanobody phage display library yields potent binders of SARS CoV-2 spike. PLoS ONE, 17(8 August). https://doi.org/10.1371/journal.pone.0272364
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