Enantioselectivity in Candida antarctica lipase B: A molecular dynamics study
- 1 February 2001
- journal article
- Published by Wiley in Protein Science
- Vol. 10 (2) , 329-338
- https://doi.org/10.1110/ps.33901
Abstract
A major problem in predicting the enantioselectivity of an enzyme toward substrate molecules is that even high selectivity toward one substrate enantiomer over the other corresponds to a very small difference in free energy. However, total free energies in enzyme-substrate systems are very large and fluctuate significantly because of general protein motion. Candida antarctica lipase B (CALB), a serine hydrolase, displays enantioselectivity toward secondary alcohols. Here, we present a modeling study where the aim has been to develop a molecular dynamics-based methodology for the prediction of enantioselectivity in CALB. The substrates modeled (seven in total) were 3-methyl-2-butanol with various aliphatic carboxylic acids and also 2-butanol, as well as 3,3-dimethyl-2-butanol with octanoic acid. The tetrahedral reaction intermediate was used as a model of the transition state. Investigative analyses were performed on ensembles of nonminimized structures and focused on the potential energies of a number of subsets within the modeled systems to determine which specific regions are important for the prediction of enantioselectivity. One category of subset was based on atoms that make up the core structural elements of the transition state. We considered that a more favorable energetic conformation of such a subset should relate to a greater likelihood for catalysis to occur, thus reflecting higher selectivity. The results of this study conveyed that the use of this type of subset was viable for the analysis of structural ensembles and yielded good predictions of enantioselectivity.Keywords
This publication has 23 references indexed in Scilit:
- The Protein Data BankNucleic Acids Research, 2000
- Stereoselectivity of Pseudomonas cepacia lipase toward secondary alcohols: A quantitative modelProtein Science, 2000
- Molecular Basis for Enantioselectivity of Lipase from Pseudomonas cepacia toward Primary Alcohols. Modeling, Kinetics, and Chemical Modification of Tyr29 to Increase or Decrease EnantioselectivityThe Journal of Organic Chemistry, 1999
- The Temperature Dependence of Enzymatic Kinetic Resolutions Reveals the Relative Contribution of Enthalpy and Entropy to Enzymatic EnantioselectivityBiocatalysis and Biotransformation, 1999
- Stereoselectivity of mucorales lipases toward triradylglycerols—A simple solution to a complex problemProtein Science, 1999
- A structural basis for enantioselective inhibition ofCandida rugosalipase by long-chain aliphatic alcoholsProtein Science, 1996
- Crystallographic and molecular-modeling studies of lipase B from Candida antarctica reveal a stereospecificity pocket for secondary alcoholsBiochemistry, 1995
- Molecular Modelling of Chymotrypsin-Substrate Interactions: Calculation of EnantioselectivityBiocatalysis, 1993
- A new force field for molecular mechanical simulation of nucleic acids and proteinsJournal of the American Chemical Society, 1984
- Quantitative analyses of biochemical kinetic resolutions of enantiomersJournal of the American Chemical Society, 1982