Zhejiang Provincial Engineering Technology Research Center of Marine Biomedical Products, School of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, China.
Hangzhou Institute for Food and Drug Control, Hangzhou 310019, China.
Mar Drugs. 2019 Jun 20;17(6):367. doi: 10.3390/md17060367.
Enantiopure epoxides are versatile synthetic intermediates for producing optically active pharmaceuticals. In an effort to provide more options for the preparation of enantiopure epoxides, a variant of the epoxide hydrolase (vEH-Am) gene from a marine microorganism was synthesized and expressed in . Recombiant vEH-Am displayed a molecular weight of 43 kDa and showed high stability with a half-life of 51.1 h at 30 °C. The purified vEH-Am exhibited high enantioselectivity towards styrene oxide (SO) and benzyl glycidyl ether (BGE). The vEH-Am preferentially converted ()-SO, leaving ()-SO with the enantiomeric excess (ee) >99%. However, ()-BGE was preferentially hydrolyzed by vEH-Am, resulting in ()-BGE with >99% ee. To investigate the origin of regioselectivity, the interactions between vEH-Am and enantiomers of SO and BGE were analyzed by molecular docking simulation. In addition, it was observed that the yields of ()-SO and ()-BGE decreased with the increase of substrate concentrations. The yield of ()-SO was significantly increased by adding 2% (v/v) Tween-20 or intermittent supplementation of the substrate. To our knowledge, vEH-Am displayed the highest enantioselectivity for the kinetic resolution of racemic BGE among the known EHs, suggesting promising applications of vEH-Am in the preparation of optically active BGE.
对映纯环氧化物是生产手性药物的多功能合成中间体。为了提供更多制备对映纯环氧化物的选择,我们合成并在大肠杆菌中表达了一种来自海洋微生物的环氧水解酶(vEH-Am)基因的变体。重组 vEH-Am 的分子量为 43 kDa,在 30°C 下半衰期为 51.1 h,显示出很高的稳定性。纯化的 vEH-Am 对苯乙烯氧化物(SO)和苄基缩水甘油醚(BGE)表现出很高的对映选择性。vEH-Am 优先转化()-SO,()-SO 的对映过量(ee)>99%。然而,()-BGE 优先被 vEH-Am 水解,得到()-BGE,ee 值>99%。为了研究区域选择性的起源,通过分子对接模拟分析了 vEH-Am 与 SO 和 BGE 对映体之间的相互作用。此外,观察到()-SO 和()-BGE 的产率随底物浓度的增加而降低。通过添加 2%(v/v)Tween-20 或间歇性补充底物,()-SO 的产率显著提高。据我们所知,vEH-Am 在动力学拆分外消旋 BGE 中表现出最高的对映选择性,这表明 vEH-Am 在制备手性 BGE 方面具有广阔的应用前景。