Lozano P, Combes D
Departement de Genie Biochimique et Alimentaire, UA-CNRS 544, Institut National des Sciences Appliquées, Toulouse, France.
Biotechnol Appl Biochem. 1991 Oct;14(2):212-21.
The role of alpha-chymotrypsin in the plastein reaction was studied using a peptic hydrolysate of albumin as substrate. Study of this reaction simultaneously by different methods showed that the plastein reaction is enzyme catalyzed and is highly dependent on environmental conditions. A gel permeation chromatography study of the plastein reaction showed simultaneous increases in the high- and low-molecular-weight oligopeptide fractions; a transpeptidation mechanism may be involved in the reaction. A study of the effect of substrate concentration on the plastein reaction catalyzed by alpha-chymotrypsin showed a profile with both hydrolytic and synthetic activities. This effect was also observed when the reaction course was followed by quantification of the free amino groups at different substrate concentrations, showing that a condensation mechanism is responsible for the synthetic activity when the substrate concentration is very high. These results have led us to conclude that the plastein reaction involves a transpeptidation and/or condensation mechanism, which is a function of the substrate concentration.
以白蛋白的胃蛋白酶水解物为底物,研究了α-糜蛋白酶在类蛋白反应中的作用。采用不同方法同时研究该反应表明,类蛋白反应是酶催化反应,且高度依赖于环境条件。对类蛋白反应进行凝胶渗透色谱研究表明,高分子量和低分子量寡肽组分同时增加;该反应可能涉及转肽机制。研究底物浓度对α-糜蛋白酶催化的类蛋白反应的影响时,发现了同时具有水解和合成活性的曲线。当通过定量不同底物浓度下的游离氨基来跟踪反应进程时,也观察到了这种效应,这表明当底物浓度非常高时,缩合机制是合成活性的原因。这些结果使我们得出结论,类蛋白反应涉及转肽和/或缩合机制,这是底物浓度的函数。