Findrik Z, Vasić-Racki D
Faculty of Chemical Engineering and Technology, University of Zagreb, Savska c. 16, HR-10 000 Zagreb, Croatia.
Biotechnol Bioeng. 2007 Dec 1;98(5):956-67. doi: 10.1002/bit.21501.
D-Methionine was converted to L-methionine in a reaction system where four enzymes were used. D-amino acid oxidase (D-AAO) from Arthrobacter protophormiae was used for the complete conversion of D-methionine to 2-oxo-4-methylthiobutyric acid. Catalase was added to prevent 2-oxo-4-methylthiobutyric acid decarboxylation. In the second reaction step, L-phenylalanine dehydrogenase (L-PheDH) from Rhodococcus sp. was used to convert 2- oxo-4-methylthiobutyric acid to L-methionine, and formate dehydrogenase (FDH) from Candida boidinii was added for NADH regeneration. Enzyme kinetics of all enzymes was analyzed in detail. Mathematical models for separate reactions steps, as well as for the complete system were developed and validated in the batch reactor experiments. Complete conversion of D-methionine to L-methionine was achieved. Considering that both enzymes act on different substrates, such a system could be easily employed for the synthesis of other amino acids from D-isomer, as well as from the racemate of a certain amino acid (DL-amino acid).
在一个使用了四种酶的反应体系中,D-蛋氨酸被转化为L-蛋氨酸。来自原变形节杆菌的D-氨基酸氧化酶(D-AAO)用于将D-蛋氨酸完全转化为2-氧代-4-甲硫基丁酸。添加过氧化氢酶以防止2-氧代-4-甲硫基丁酸脱羧。在第二个反应步骤中,来自红球菌属的L-苯丙氨酸脱氢酶(L-PheDH)用于将2-氧代-4-甲硫基丁酸转化为L-蛋氨酸,并添加来自博伊丁假丝酵母的甲酸脱氢酶(FDH)用于NADH再生。详细分析了所有酶的酶动力学。在间歇式反应器实验中开发并验证了单独反应步骤以及整个系统的数学模型。实现了D-蛋氨酸到L-蛋氨酸的完全转化。考虑到这两种酶作用于不同的底物,这样的系统可以很容易地用于从D-异构体以及从某种氨基酸的外消旋体(DL-氨基酸)合成其他氨基酸。