Maguire R J
Can J Biochem. 1977 Jun;55(6):644-50. doi: 10.1139/o77-093.
The cellulolytic enzyme beta-1,4-glucan cellobiohydrolase (CBH) has been isolated from the crude mixture of cellulase enzymes of Trichoderma viride by gel filtration and ion-exchange methods, and some aspects of its kinetic behaviour have been examined. Studies of the initial rates of the CBH-catalyzed production of cellobiose from fibrous alpha-cellulose show that (i) the dissociation constant for cellobiose competitive product inhibition of the reaction is Ki = (1.13 +/- 0.37) X 10(-3) M, (ii) the adsorption of CBH on fibrous alpha-cellulose and its subsequent reaction conform to kinetic equations developed in conjunction with the Langmuir adsorption isotherm, (iii) the rate-pH curve has a maximum at pH 5.2 and decreases at higher and lower pH values, exhibiting enzyme pK values of 3.8 and 6.5, and (iv) the energy of activation of the overall reaction between 5 and 60 degrees C is 5.3 +/- 0.3 kcal mol-1 at pH 5.2. Studies of the time course of the reaction over extended periods of time up to 40% hydrolysis of the cellulose show that (v) the data fit better to a competitive product inhibition model than to models of anticompetitive product inhibition or noncompetitive product inhibition.
已通过凝胶过滤和离子交换方法从绿色木霉纤维素酶的粗混合物中分离出纤维素分解酶β-1,4-葡聚糖纤维二糖水解酶(CBH),并对其动力学行为的一些方面进行了研究。对CBH催化从纤维状α-纤维素生成纤维二糖的初始速率的研究表明:(i)纤维二糖对该反应竞争性产物抑制的解离常数为Ki =(1.13±0.37)×10⁻³ M;(ii)CBH在纤维状α-纤维素上的吸附及其随后的反应符合结合朗缪尔吸附等温线建立的动力学方程;(iii)速率-pH曲线在pH 5.2处有最大值,在更高和更低的pH值下降低,显示出酶的pK值为3.8和6.5;(iv)在pH 5.2时,5至60℃之间的总反应活化能为5.3±0.3 kcal mol⁻¹。对长达40%纤维素水解的较长时间反应进程的研究表明:(v)数据更符合竞争性产物抑制模型,而不是反竞争性产物抑制模型或非竞争性产物抑制模型。