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Stabilized coronavirus spike stem elicits a broadly protective antibody

Cell Rep. 2021-10; 
Ching-Lin Hsieh, Anne P Werner, Sarah R Leist, Laura J Stevens, Ester Falconer, Jory A Goldsmith, Chia-Wei Chou, Olubukola M Abiona, Ande West, Kathryn Westendorf, Krithika Muthuraman, Ethan J Fritch, Kenneth H Dinnon, Alexandra Schäfer, Mark R Denison, James D Chappell, Ralph S Baric, Barney S Graham, Kizzmekia S Corbett, Jason S McLellan
Products/Services Used Details Operation
Catalog Peptides MERS stem helix peptide (DFQDELDEFFKNVST, GenScript) was added in 4-fold molar excess to Fab22 Get A Quote

摘要

Current coronavirus (CoV) vaccines primarily target immunodominant epitopes in the S1 subunit, which are poorly conserved and susceptible to escape mutations, thus threatening vaccine efficacy. Here, we use structure-guided protein engineering to remove the S1 subunit from the Middle East respiratory syndrome (MERS)-CoV spike (S) glycoprotein and develop stabilized stem (SS) antigens. Vaccination with MERS SS elicits cross-reactive β-CoV antibody responses and protects mice against lethal MERS-CoV challenge. High-throughput screening of antibody-secreting cells from MERS SS-immunized mice led to the discovery of a panel of cross-reactive monoclonal antibodies. Among them, antibody IgG22 binds with high affinit... More

关键词

coronaviruses (CoV), cross-reactivity, cryo-EM structure, protective antibodies, protective antigens, spike (S) glycoprotein, stem stabilization, stem-helix antibodies