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来自可可球二孢的β-葡萄糖苷酶。酶催化反应机制。

The beta-glucosidase from Botryodiplodia theobromae. Mechanism of enzyme-catalysed reactions.

作者信息

Umezurike G M

出版信息

Biochem J. 1979 Jun 1;179(3):503-7. doi: 10.1042/bj1790503.

Abstract

The effects of pH and temperature on Michaelis constant (Km) and maximum velocity (Vmax.) and of NaCl on the activity of the high-molecular-weight beta-glucosidase (beta-D-glucoside glucohydrolase EC 3.2.1.21) from cultures of Botryodiplodia theobromae Pat. have been studied. 2. Donor binding and inhibition of activity by glucose were dependent on the ionization of a group (pK 6.0) that appeared to be an imidazole group. 3. Catalytic activity and the stimulation of activity by glycerol were dependent on the ionization of two groups, which appeared to be a carboxy group and an imidazole group. 4. The Arrhenius activation energy (Ea) calculated from results obtained at pH 4.0 and 5.0 was about 45--46kJ.mol-1. 5. The enthalpies (delta H0) calculated from results obtained at pH 4.0 and 5.0 were similar (about -4kJ.mol-1), whereas at pH 6.5 the value was about -33kJ.mol-1. 6. The entropies (delta S0) calculated from these results at 37 degrees C were -21, -22 and -118J.K-1.mol-1 at pH 4.0, 5.0 and 6.5 respectively. A low concentration of NaCl (16.6 mM) stimulated enzymic activity and decreased the Km for the donor, whereas high concentrations (up to 500 mM) inhibited enzymic activity, increased the Km and had no effect on Vmax. 8. Plots of initial velocity data obtained in the presence of dioxan as 1/v against the ratio of the molar concentration of dioxan to that of water were linear. 9. The results are discussed in terms of the enzyme mechanism.

摘要

研究了pH值和温度对可可球二孢(Botryodiplodia theobromae Pat.)培养物中高分子量β-葡萄糖苷酶(β-D-葡萄糖苷葡糖水解酶,EC 3.2.1.21)米氏常数(Km)和最大反应速度(Vmax.)的影响,以及NaCl对该酶活性的影响。2. 葡萄糖对供体的结合及对活性的抑制取决于一个pK为6.0的基团的电离,该基团似乎是一个咪唑基团。3. 催化活性及甘油对活性的刺激取决于两个基团的电离,这两个基团似乎是一个羧基和一个咪唑基团。4. 根据在pH 4.0和5.0条件下获得的结果计算出的阿仑尼乌斯活化能(Ea)约为45 - 46kJ·mol-1。5. 根据在pH 4.0和5.0条件下获得的结果计算出的焓(ΔH0)相似(约为 - 4kJ·mol-1),而在pH 6.5时该值约为 - 33kJ·mol-1。6. 在37℃下根据这些结果计算出的熵(ΔS0)在pH 4.0、5.0和6.5时分别为 - 21、 - 22和 - 118J·K-1·mol-1。低浓度的NaCl(16.6 mM)刺激酶活性并降低供体的Km,而高浓度(高达500 mM)则抑制酶活性,增加Km且对Vmax无影响。8. 在存在二氧六环的情况下,以1/v对二氧六环与水的摩尔浓度比绘制的初始速度数据图呈线性。9. 根据酶作用机制对结果进行了讨论。

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