Kimura Y, Yoshida T, Muraya K, Nakanishi K, Matsuno R
Department of Food Science and Technology, Faculty of Agriculture, Kyoto University, Japan.
Agric Biol Chem. 1990 Jun;54(6):1433-40.
The tripeptide Z-GlyPheLeuNH2 was continuously synthesized in a high yield from three amino acid derivatives, Z-Gly, PheOMe, and LeuNH2, by immobilized thermolysin (IMT) and immobilized alpha-chymotrypsin (IMC) in an organic solvent, ethyl acetate. The optimal conditions for the synthesis of Z-GlyPheOMe were established theoretically. The yield of Z-GlyPheOMe with IMT in ethyl acetate saturated with buffer was more than 88% after continuous synthesis for 116 hr. The optimal conditions for the synthesis of Z-GlyPheLeuNH2 from Z-GlyPheOMe and LeuNH2 by IMC through transesterification was established in batch reaction experiments. When the concentration of water in the reaction solution was 17-20 microliters/ml, the activity of IMC was highest. The equilibrium between the water concentration in the reaction solution and that in the resin used for enzyme immobilization depended on the resin and was not affected by the presence of the enzyme immobilized. Z-GlyPheLeuNH2 was synthesized from Z-GlyPheOMe and LeuNH2 with a yield of 100%, by continuous reaction for 160 hr. The reactor for synthesis of this tripeptide was efficient and stable because of the use of transesterification and the choice of an appropriate organic solvent. The series plug-flow reactor was successfully operated for 220 hr with a yield of more than 80%. The residual activity of IMT was 94% and that of IMC was 100%.
三肽Z-GlyPheLeuNH2通过固定化嗜热菌蛋白酶(IMT)和固定化α-糜蛋白酶(IMC)在有机溶剂乙酸乙酯中,由三种氨基酸衍生物Z-Gly、苯丙氨酸甲酯(PheOMe)和亮氨酰胺(LeuNH2)连续高产合成。从理论上确定了合成Z-GlyPheOMe的最佳条件。在缓冲液饱和的乙酸乙酯中,用IMT连续合成116小时后,Z-GlyPheOMe的产率超过88%。通过分批反应实验确定了IMC通过酯交换反应从Z-GlyPheOMe和LeuNH2合成Z-GlyPheLeuNH2的最佳条件。当反应溶液中的水浓度为17 - 20微升/毫升时,IMC的活性最高。反应溶液中的水浓度与用于固定化酶的树脂中的水浓度之间的平衡取决于树脂,不受固定化酶存在的影响。通过连续反应160小时,由Z-GlyPheOMe和LeuNH2合成Z-GlyPheLeuNH2,产率为100%。由于使用了酯交换反应并选择了合适的有机溶剂,该三肽合成反应器高效且稳定。串联活塞流反应器成功运行了220小时,产率超过80%。IMT的残余活性为94%,IMC的残余活性为100%。