作者
Benjamin Fram, Yang Su, Ian Truebridge, Adam J Riesselman, John B Ingraham, Alessandro Passera, Eve Napier, Nicole N Thadani, Samuel Lim, Kristen Roberts, Gurleen Kaur, Michael A Stiffler, Debora S Marks, Christopher D Bahl, Amir R Khan, Chris Sander, Nicholas P Gauthier
发表日期
2024/6/20
期刊
Nature Communications
卷号
15
期号
1
页码范围
5141
出版商
Nature Publishing Group UK
简介
A major challenge in protein design is to augment existing functional proteins with multiple property enhancements. Altering several properties likely necessitates numerous primary sequence changes, and novel methods are needed to accurately predict combinations of mutations that maintain or enhance function. Models of sequence co-variation (e.g., EVcouplings), which leverage extensive information about various protein properties and activities from homologous protein sequences, have proven effective for many applications including structure determination and mutation effect prediction. We apply EVcouplings to computationally design variants of the model protein TEM-1 β-lactamase. Nearly all the 14 experimentally characterized designs were functional, including one with 84 mutations from the nearest natural homolog. The designs also had large increases in thermostability, increased activity on multiple …
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