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RBD design increases the functional antibody titers elicited by SARS-CoV-2 spike vaccination

Antiviral Res. 2024-06; 
Thayne H Dickey, Nichole D Salinas, Palak Patel, Sachy Orr-Gonzalez, Tarik Ouahes, Holly McAleese, Brandi L Richardson, Myesha Singleton, Michael Murphy, Brett Eaton, Jennifer L Kwan, Michael R Holbrook, Lynn E Lambert, Niraj H Tolia
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Abstract

Most COVID-19 vaccines contain the SARS-CoV-2 spike protein as an antigen, but they lose efficacy as neutralizing antibody titers wane and escape variants emerge. Modifying the spike antigen to increase neutralizing antibody titers would help counteract this decrease in titer. We previously used a structure-based computational design method to identify nine amino acid changes in the receptor-binding domain (RBD) of spike that stabilize the RBD and increase the neutralizing antibody titers elicited by vaccination. Here, we introduce those enhancing amino acid changes into a full-length spike (FL-S-2P) ectodomain representative of most approved vaccine antigens. These amino acid changes can be incorporated into t... More

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