Institute of Bioengineering, Department of Chemical and Biochemical Engineering, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, China.
Bioprocess Biosyst Eng. 2012 Aug;35(6):1043-8. doi: 10.1007/s00449-012-0690-8. Epub 2012 Feb 4.
Lipase-catalyzed remote resolution of the tertiary alcohol, citalopram intermediate (diol acetate), has been achieved. The chiral discrimination was obtained by the Novozym435-catalyzed alcoholysis of the primary hydroxyl ester which was four bonds away from the center. The influence of acyl acceptor structure and the organic solvents on the reaction rate and enantioselectivity were investigated. Based on the thermodynamic analysis, the difference of activation free energy between the two enantiomers which dominated the enantioselectivity was significantly affected by the organic solvents, while the acyl acceptor showed less effect. In addition, the enantiomer discrimination was driven by both the difference of activation enthalpy and activation entropy. The thermodynamic analysis provides further insights into the prediction and optimization of enantioselectivity and reaction rate in remote resolution.
脂肪酶催化的仲醇(西酞普兰中间体,二醇乙酸酯)的对映体拆分已实现。手性选择性通过 Novozym435 催化的远离中心四个键的伯羟基酯的醇解反应获得。考察了酰基受体结构和有机溶剂对反应速率和对映选择性的影响。基于热力学分析,控制对映选择性的两个对映体之间的活化自由能差异受有机溶剂的显著影响,而酰基受体的影响较小。此外,对映体的选择性由活化焓和活化熵的差异共同驱动。热力学分析为远程拆分中的对映选择性和反应速率的预测和优化提供了更深入的了解。