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来自绿色木霉的纤维二糖酶:纯化、性质、动力学及作用机制

Cellobiase from Trichoderma viride: purification, properties, kinetics, and mechanism.

作者信息

Gong C S, Ladisch M R, Tsao G T

出版信息

Biotechnol Bioeng. 1977 Jul;19(7):959-81. doi: 10.1002/bit.260190703.

Abstract

Three distinct cellobiase components were isolated from a commercial Trichoderma viride cellulase preparation by repeated chromatography on DEAE cellulose eluting by a salt gradient. The purified cellobiase preparations were evaluated for physical properties, kinetics, and mechanism. Results from this work include: 1) development of one step enzyme purification procedure using DEAE-cellulose; 2) isolation of three chromatographically distinct, yet kinetically similar, cellobiase fractions of molecular weight of approximately 76,000; 3) determination of kinetics which shows that cellobiase hydrolyzes cellobiose by a noncompetitive mechanism and that the product, glucose, inhibits the enzyme, and 4) development of an equation, based on the mechanism of cellobiase action, which accurately predicts the time course of cellobiose hydrolysis over an eightfold range of substrate concentration and conversions of up to 90%. Based on the data presented in the paper, it is shown that product inhibition of cellobiase significantly retards the rate of cellobiose hydrolysis.

摘要

通过在DEAE纤维素上进行反复层析,并用盐梯度洗脱,从一种市售的绿色木霉纤维素酶制剂中分离出三种不同的纤维二糖酶组分。对纯化后的纤维二糖酶制剂的物理性质、动力学和作用机制进行了评估。这项工作的结果包括:1)开发了一种使用DEAE-纤维素的一步酶纯化程序;2)分离出三种在色谱上不同但动力学相似的纤维二糖酶组分,分子量约为76,000;3)动力学测定表明,纤维二糖酶通过非竞争性机制水解纤维二糖,且产物葡萄糖会抑制该酶;4)基于纤维二糖酶的作用机制,开发了一个方程,该方程能在底物浓度八倍范围内和高达90%的转化率下准确预测纤维二糖水解的时间进程。根据论文中给出的数据,结果表明产物对纤维二糖酶的抑制作用显著延缓了纤维二糖的水解速率。

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