Computational prediction of the effect of amino acid changes on the binding affinity between SARS-CoV-2 spike RBD and human ACE2. Chen, C., Boorla, V., S., Banerjee, D., Chowdhury, R., Cavener, V., S., Nissly, R., H., Gontu, A., Boyle, N., R., Vandegrift, K., & Nair, M., S. Proceedings of the National Academy of Sciences, 118(42):e2106480118, National Academy of Sciences, 2021. bibtex @article{
title = {Computational prediction of the effect of amino acid changes on the binding affinity between SARS-CoV-2 spike RBD and human ACE2},
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year = {2021},
pages = {e2106480118},
volume = {118},
publisher = {National Academy of Sciences},
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author = {Chen, Chen and Boorla, Veda Sheersh and Banerjee, Deepro and Chowdhury, Ratul and Cavener, Victoria S and Nissly, Ruth H and Gontu, Abhinay and Boyle, Nina R and Vandegrift, Kurt and Nair, Meera Surendran},
journal = {Proceedings of the National Academy of Sciences},
number = {42}
}
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