Monter B, Herzog B, Stehle P, Fürst P
Institute for Biological Chemistry and Nutrition, University of Hohenheim, Stuttgart, Germany.
Biotechnol Appl Biochem. 1991 Oct;14(2):183-91.
The application of the sulfhydryl protease ficin as biocatalyst is proposed as a novel method for enzyme-catalyzed synthesis of dipeptides. The negligible peptidase but considerable esterase activity at alkaline pH facilitated the kinetically controlled formation of peptide bonds by coupling the ester substrates Z-Ala-OMe and Z-Gly-OMe with L-alanine, D-alanine, L-glutamine, D-glutamine and L-Cys(acetamidomethyl) respectively. The reaction is accomplished without the occurrence of secondary peptide hydrolysis. Under optimum reaction conditions (pH 9.2, high ratio nucleophile/carboxyl component, 4.8% ethanol, 40 degrees C), the peptide yields ranged from 5 to 91%, depending on the structure of the amino and/or carboxyl component. No racemization was observed in the enzymatic reaction. Application of short-chain peptides has been advocated recently in clinical nutrition. Ficin-catalyzed peptide synthesis might be an attractive biotechnological approach for the synthesis of suitable dipeptides in this respect.
提出将巯基蛋白酶无花果蛋白酶作为生物催化剂应用于酶催化合成二肽的新方法。在碱性pH条件下,其肽酶活性可忽略不计,但酯酶活性相当可观,通过分别将酯底物Z-丙氨酸甲酯和Z-甘氨酸甲酯与L-丙氨酸、D-丙氨酸、L-谷氨酰胺、D-谷氨酰胺和L-半胱氨酸(乙酰氨基甲基)偶联,促进了肽键的动力学控制形成。该反应在不发生二级肽水解的情况下完成。在最佳反应条件(pH 9.2、高亲核试剂/羧基组分比例、4.8%乙醇、40℃)下,肽产率为5%至91%,具体取决于氨基和/或羧基组分的结构。在酶促反应中未观察到消旋化。最近在临床营养中提倡应用短链肽。在这方面,无花果蛋白酶催化的肽合成可能是一种有吸引力的生物技术方法,用于合成合适的二肽。