Lee Eun Yeol
Department of Chemical Engineering & Green Energy Research Center, Kyung Hee University, Gyeonggi-do, Korea.
Biotechnol Lett. 2008 Sep;30(9):1509-14. doi: 10.1007/s10529-008-9727-0. Epub 2008 Apr 19.
A number of epoxide hydrolase (EH)-mediated bioconversions have been developed to prepare single enantiomeric product from racemic substrates with a yield greater than 50%. Enantioconvergent hydrolysis using single or two EHs possessing complementary enantio- and regio-selectivity, EH-based chemoenzymatic reactions, and EH-triggered cascade-reactions have been developed for the preparation of chiral epoxides, epoxyalcohols, tetrahydrofuran derivatives and vicinal diols. All these bioconversions are based on stereochemical flexibilities of various EHs and can be used in total synthesis of biologically active compounds without the formation of unwanted enantiomers.
已经开发了许多环氧水解酶(EH)介导的生物转化方法,用于从外消旋底物制备单一对映体产物,产率大于50%。利用具有互补对映体和区域选择性的单一或两种EH进行对映体汇聚水解、基于EH的化学酶促反应以及EH引发的级联反应,已被开发用于制备手性环氧化物、环氧醇、四氢呋喃衍生物和邻二醇。所有这些生物转化都基于各种EH的立体化学灵活性,可用于生物活性化合物的全合成,而不会形成不需要的对映体。