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Kinetic study of alkaline protease 894 for the hydrolysis of the pearl oyster Pinctada martensii

机译:碱性蛋白酶894对珠母贝马氏珠母贝水解的动力学研究

摘要

A new enzyme (alkaline protease 894) obtained from the marine extremophile Flavobacterium yellowsea (YS-80-122) has exhibited strong substrate-binding and catalytic activity, even at low temperature, but the characteristics of the hydrolysis with this enzyme are still unclear. The pearl oyster Pinctada martensii was used in this study as the raw material to illustrate the kinetic properties of protease 894. After investigating the intrinsic relationship between the degree of hydrolysis and several factors, including initial reaction pH, temperature, substrate concentration, enzyme concentration, and hydrolysis time, the kinetics model was established. This study showed that the optimal conditions for the enzymatic hydrolysis were an initial reaction pH of 5.0, temperature of 30A degrees C, substrate concentration of 10% (w/v), enzyme concentration of 2 500 U/g, and hydrolysis time of 160 min. The kinetic characteristics of the protease for the hydrolysis of P. martensii were obtained. The inactivation constant was found to be 15.16/min, and the average relative error between the derived kinetics model and the actual measurement was only 3.04%, which indicated a high degree of fitness. Therefore, this study provides a basis for the investigation of the concrete kinetic characteristics of the new protease, which has potential applications in the food industry.
机译:从海洋极端嗜性黄杆菌黄海杆菌(YS-80-122)获得的一种新酶(碱性蛋白酶894)即使在低温下也具有很强的底物结合和催化活性,但该酶的水解特性仍不清楚。本研究以珍珠牡蛎Pinctada martensii为原料来说明894蛋白酶的动力学特性。在研究了水解程度与几个因素之间的内在联系后,这些因素包括初始反应pH,温度,底物浓度,酶浓度,水解时间建立了动力学模型。这项研究表明,酶促水解的最佳条件是初始反应pH为5.0,温度为30A摄氏度,底物浓度为10%(w / v),酶浓度为2500 U / g,水解时间为160分钟获得了用于水解马氏假单胞菌的蛋白酶的动力学特征。发现失活常数为15.16 / min,导出的动力学模型与实际测量值之间的平均相对误差仅为3.04%,这表明高度适合。因此,该研究为研究新型蛋白酶的具体动力学特性提供了基础,该蛋白酶在食品工业中具有潜在的应用前景。

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