He Yu-Cai, Yang Zhen-Xing, Zhang Dan-Ping, Tao Zhi-Cheng, Chen Chao, Chen Yi-Tong, Guo Fei, Xu Jian-He, Huang Lei, Chen Rui-Jie, Ma Xiao-Feng
Laboratory of Biocatalysis and Bioprocessing, College of Pharmaceutical Engineering and Life Sciences, Changzhou University, Changzhou, 213164, People's Republic of China,
Appl Biochem Biotechnol. 2014 Aug;173(8):2042-53. doi: 10.1007/s12010-014-1001-4. Epub 2014 Jun 1.
The reductase (PgCR) from recombinant Escherichia coli CCZU-Y10 displayed high reductase activity and excellent stereoselectivity for the reduction of ethyl 4-chloro-3-oxobutanoate (COBE) into ethyl (S)-4-chloro-3-hydroxybutanoate ((S)-CHBE). To efficiently synthesize (S)-CHBE (>99 % enantiomeric excess (ee)), the highly stereoselective bioreduction of COBE into (S)-CHBE with the whole cells of E. coli CCZU-Y10 was successfully demonstrated in a dibutyl phthalate-water biphasic system. The appropriate ratio of the organic phase to water phase was 1:1 (v/v). The optimum reaction temperature, reaction pH, cosubstrate, NAD(+), and cell dosage of the biotransformation of 100 mM COBE in this biphasic system were 30 °C, 7.0, mannitol (2.5 mmol/mmol COBE), 0.1 μmol/(mmol COBE), and 0.1 g (wet weight)/mL, respectively. Moreover, COBE at a high concentration of (1,000 mM) could be asymmetrically reduced to (S)-CHBE in a high yield (99.0 %) and high enantiometric excess value (>99 % ee). Significantly, E. coli CCZU-Y10 shows high potential in the industrial production of (S)-CHBE (>99 % ee).
重组大肠杆菌CCZU-Y10来源的还原酶(PgCR)对4-氯-3-氧代丁酸乙酯(COBE)还原生成(S)-4-氯-3-羟基丁酸乙酯((S)-CHBE)表现出高还原酶活性和出色的立体选择性。为了高效合成对映体过量值(ee)>99%的(S)-CHBE,在邻苯二甲酸二丁酯-水双相体系中成功证明了用大肠杆菌CCZU-Y10全细胞将COBE高效立体选择性生物还原为(S)-CHBE。有机相与水相的合适比例为1:1(v/v)。在此双相体系中,100 mM COBE生物转化的最佳反应温度、反应pH、共底物、NAD⁺和细胞用量分别为30℃、7.0、甘露醇(2.5 mmol/mmol COBE)、0.1 μmol/(mmol COBE)和0.1 g(湿重)/mL。此外,高浓度(1000 mM)的COBE可以高产率(99.0%)和高对映体过量值(>99% ee)不对称还原为(S)-CHBE。值得注意的是,大肠杆菌CCZU-Y10在工业生产对映体过量值>99%的(S)-CHBE方面显示出巨大潜力。