Chen Qing-Sheng, Yuan Xin, Peng Fei, Lou Wen-Yong
Lab of Applied Biocatalysis, School of Food Science and Technology, South China University of Technology, Guangzhou, 510640, Guangdong, China.
Bioresour Bioprocess. 2022 Mar 9;9(1):19. doi: 10.1186/s40643-022-00508-4.
The efficient asymmetric bio-synthesis of chiral β-hydroxy esters is of great importance for industrial production. In this work, a simple and productive engineered E.coli cell-immobilized strategy was applied for the asymmetric reduction of MAA to (R)-HBME with high enantioselectivity. Compared with the corresponding inactivated free cells, the alginate-immobilized cells remained 45% of initial activity at 50 ℃ and 65% after reuse of 10 times. After 60 days of storage at 4 ℃, the immobilized cells maintained more than 80% relative activity. Immobilization contributed significantly to the improvement of thermal stability, pH tolerance, storage stability and operation stability without affecting the yield of product. The immobilized recombinant E. coli cell had absolute enantioselectivity for the asymmetric reduction of MAA to (R)-HBME with e.e. > 99.9%. Therefore, microbial cell immobilization is a perspective approach in asymmetric synthesis of chiral β-hydroxy esters for industrial applications.
手性β-羟基酯的高效不对称生物合成对于工业生产具有重要意义。在这项工作中,一种简单且高效的工程化大肠杆菌细胞固定化策略被应用于将甲基乙酰乙酸(MAA)不对称还原为具有高对映选择性的(R)-3-羟基丁酸甲酯(HBME)。与相应的灭活游离细胞相比,海藻酸钠固定化细胞在50℃时保留了45%的初始活性,重复使用10次后仍保留65%的活性。在4℃储存60天后,固定化细胞保持了超过80%的相对活性。固定化显著有助于提高热稳定性、pH耐受性、储存稳定性和操作稳定性,而不影响产物收率。固定化重组大肠杆菌细胞对将MAA不对称还原为(R)-HBME具有绝对对映选择性,对映体过量值(e.e.)>99.9%。因此,微生物细胞固定化是用于工业应用的手性β-羟基酯不对称合成中的一种有前景的方法。