Quantitative prediction of enantioselectivity of Candida antarctica lipase B by combining docking simulations and quantitative structure–activity relationship (QSAR) analysis
Author:
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,Biochemistry,Bioengineering,Catalysis
Reference60 articles.
1. A Structural Basis for the Chiral Preferences of Lipases
2. Mechanism of Enantioselectivity of Lipases and Other Synthetically Useful Hydrolases
3. The enantiomeric ratio: origin, determination and prediction
4. Disparity in productive binding mode of the slow-reacting enantiomer determines the novel catalytic behavior of Candida antarctica lipase B
5. Improved Enantioselectivity of a Lipase by Rational Protein Engineering
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3. Effect of the Substituent and Amino Group Position on the Lipase‐Catalyzed Resolution of γ‐Amino Esters: A Molecular Docking Study Shedding Light on Candida antarctica lipase B Enantioselectivity;European Journal of Organic Chemistry;2021-09-08
4. Key mutation sites for improvement of the enantioselectivity of lipases through protein engineering;Biochemical Engineering Journal;2021-08
5. Prediction of enantioselectivity of lipase catalyzed kinetic resolution using umbrella sampling;Journal of Biotechnology;2018-10
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