Molecular recognition of sec-alcohol enantiomers by Candida antarctica lipase B
Author:
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,Biochemistry,Bioengineering,Catalysis
Reference11 articles.
1. The biocatalytic approach to the preparation of enantiomerically pure chiral building blocks
2. A serine protease triad forms the catalytic centre of a triacylglycerol lipase
3. A rule to predict which enantiomer of a secondary alcohol reacts faster in reactions catalyzed by cholesterol esterase, lipase from Pseudomonas cepacia, and lipase from Candida rugosa
4. Chiral Recognition Of Alcohol Enantiomers In Acyl Transfer Reactions Catalysed ByCandida AntarcticaLipase B
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1. Molecular basis for the high enantioselectivity of the Ser47Leu variant of Candida antarctica lipase B toward (R)-But-3-yn-2-ol;Tetrahedron Letters;2024-03
2. Molecular Basis of High Enantioselectivity of the Ser47leu Variant of Candida Antarctica Lipase B Towards (R)-But-3-Yn-2-Ol;2024
3. Discovery and Redesign of a Family VIII Carboxylesterase with High (S)-Selectivity toward Chiral sec-Alcohols;ACS Catalysis;2022-02-01
4. 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
5. Enhancing enantioselectivity of Candida antarctica lipase B towards chiral sec-alcohols bearing small substituents through hijacking sequence of A homolog;Tetrahedron Letters;2021-07
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