BETA: Related publications


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Reetz MT, Garcia-Borràs M. (2021) The Unexplored Importance of Fleeting Chiral Intermediates in Enzyme-Catalyzed Reactions. Journal of the American Chemical Society
Cadet F, Fontaine N, Li G, et al. (2021) Publisher Correction: A machine learning approach for reliable prediction of amino acid interactions and its application in the directed evolution of enantioselective enzymes. Scientific Reports. 11: 8357
Acevedo-Rocha CG, Li A, D'Amore L, et al. (2021) Pervasive cooperative mutational effects on multiple catalytic enzyme traits emerge via long-range conformational dynamics. Nature Communications. 12: 1621
Li G, Qin Y, Fontaine NT, et al. (2020) Machine Learning Enables Selection of Epistatic Enzyme Mutants for Stability Against Unfolding and Detrimental Aggregation. Chembiochem : a European Journal of Chemical Biology
Li D, Wu Q, Reetz MT. (2020) Focused rational iterative site-specific mutagenesis (FRISM). Methods in Enzymology. 643: 225-242
Li A, Acevedo-Rocha CG, D'Amore L, et al. (2020) Regio- and Stereoselective Steroid Hydroxylation at the C7-Position by Cytochrome P450 Monooxygenase Mutants. Angewandte Chemie (International Ed. in English)
Wang JB, Huang Q, Peng W, et al. (2020) P450-BM3 Catalyzed Sulfoxidation versus Hydroxylation: A Common or Two Different Catalytically Active Species? Journal of the American Chemical Society
Zhou H, Zhao J, Li A, et al. (2019) Chemical and Biocatalytic Routes to Arbutin . Molecules (Basel, Switzerland). 24
Cen Y, Singh W, Arkin M, et al. (2019) Artificial cysteine-lipases with high activity and altered catalytic mechanism created by laboratory evolution. Nature Communications. 10: 3198
Qu G, Li A, Sun Z, et al. (2019) The Crucial Role of Methodology Development in Directed Evolution of Selective Enzymes. Angewandte Chemie (International Ed. in English)
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