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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Ultrasonic analysis of kinetic mechanism of hydrolysis of cellobiose by β-glucosidase
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Ultrasonic analysis of kinetic mechanism of hydrolysis of cellobiose by β-glucosidase

机译:超声分析β-葡萄糖苷酶水解纤维二糖的动力学机理

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High-resolution ultrasonic spectroscopy (HR-US) was applied for real-time analysis of enzymatic hydrolysis of cellobiose by a β-glucosidase from Aspergillus niger (Novozyme 188) at 50 °C and pH 4.9. This technique is noninvasive, it does not require optical transparency and is suitable to continuously monitor the time dependence of the reaction progress in a broad range of experimental conditions. The time profiles of the amount of glucose released and the reaction rate were obtained from the time profile of ultrasonic velocity. The results are in good agreement with a discontinuous glucose assay (hexokinase method). The kinetic parameters of the reaction were estimated by fitting the ultrasonic time profiles of the reaction rates to several inhibition models. In addition, the equilibrium constant for the reaction of hydrolysis of cellobiose and the molar Gibbs free energy of hydrolysis were determined from the ultrasonic time profiles of concentration of glucose in the reverse reaction (glucose condensation). The results suggest the existence of more complex mechanisms regulating the activity of cellobiase than the combination of simple inhibitions. An extended kinetic model based on two sites for the competitive inhibitor (glucose) is proposed.
机译:高分辨率超声光谱法(HR-US)用于在50°C和pH 4.9下,通过黑曲霉(Novozyme 188)的β-葡萄糖苷酶对纤维二糖的酶促水解进行实时分析。该技术是非侵入性的,不需要光学透明性,适合在广泛的实验条件下连续监测反应进程的时间依赖性。从超声速度的时间曲线获得葡萄糖释放量和反应速率的时间曲线。结果与不连续葡萄糖测定法(己糖激酶法)非常吻合。通过将反应速率的超声时间曲线拟合到几种抑制模型来估计反应的动力学参数。另外,纤维二糖水解反应的平衡常数和水解的吉布斯摩尔自由能由逆反应(葡萄糖缩合)中葡萄糖浓度的超声时间曲线确定。结果表明,与简单抑制的组合相比,调节纤维二糖酶活性的机制更为复杂。提出了基于两个位点的竞争性抑制剂(葡萄糖)的扩展动力学模型。

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