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Semiempirical Molecular Orbital Studies of the Acylation Step in the Lipase‐Catalyzed Ester Hydrolysis
Authors:Jian‐Hua Zhao  Hsuan‐Liang Liu  Hsin‐Yi Lin  Chih‐Hung Huang  Hsu‐Wei Fang  Shau‐Wei Tsai
Institution:1. Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, 1 Sec. 3 Zhong Xiao E. Rd, Taipei 10608, Taiwan, R.O.C.;2. Graduate Institute of Biotechnology, National Taipei University of Technology, 1 Sec. 3 ZhongXiao E. Rd., Taipei 10608, Taiwan, R.O.C.;3. Graduate Institute of Biochemical and Biomedical Engineering, Chang Gung University, 259 Wen‐Hwa 1st Rd, Kwei‐Shan, Tao‐Yuan 333, Taiwan, R.O.C.
Abstract:In this study, we present the results from the semiempirical molecular orbital calculations for the acylation step in the lipase‐catalyzed ester hydrolysis. The results reveal that the lowest energy path for the formation of the tetrahedral intermediate is for the serine residue of the catalytic triad to attack the substrate, followed by coupling heavy atom movement and proton transfer. The calculations of four active site models show that the cooperation of the aspartate group and the oxyanion hole is capable of lowering the activation energy by about 16 kcalmol?1. Our results further suggest that the lipase‐catalyzed ester hydrolysis adopts the single proton transfer mechanism.
Keywords:Molecular orbital calculation  Acylation  Lipase  Hydrolysis  Tetrahedral intermediate  Catalytic triad
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