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Kinetic and thermodynamic properties of purified alkaline protease from Bacillus pumilus Y7 and non‐covalent immobilization to poly(vinylimidazole)/clay hydrogel

机译:短小芽孢杆菌Y7纯化碱性蛋白酶的动力学和热力学性质以及非共价固定化聚乙烯基咪唑/粘土水凝胶的动力学和热力学性质

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摘要

The characterization of the hydrogel was performed using Fourier‐transform infrared spectroscopy, X‐ray diffraction, and scanning electron microscopy. Purified Y7‐derived alkaline protease was immobilized in Poly (vinylimidazole)/clay ( hydrogel with 95% yield of immobilization. Immobilization decreased the pH optimum from 9 to 6 for free and immobilized enzyme, respectively. Temperature optimum 3°C decreased for immobilized enzyme. The , , and of immobilized enzyme were 4.4, 1.7, and 7.5‐fold increased over its free counterpart. Immobilized protease retained about 65% residual activity for 16 reuse. The immobilized protease endured its 35% residual activity in the material after six cycle's batch applications. The results of thermodynamic analysis for casein hydrolysis showed that the ΔG (activation free energy) and ΔG (activation free energy of transition state formation) obtained for the immobilized enzyme decreased in comparison to those obtained for the free enzyme. On the other hand, the value of ΔG (free energy of substrate binding) was observed to have increased. These results indicate an increase in the spontaneity of the biochemical reaction post immobilization. Enthalpy value of immobilized enzyme that was 2.2‐fold increased over the free enzyme indicated lower energy for the formation of the transition state, and increased ΔS value implied that the immobilized form of the enzyme was more ordered than its free form.
机译:使用傅里叶变换红外光谱,X射线衍射和扫描电子显微镜对水凝胶进行表征。将纯化的Y7衍生的碱性蛋白酶固定在聚(乙烯基咪唑)/粘土(水凝胶中,固定率达95%。固定化分别将游离和固定化酶的pH最佳值从9降低至6.固定化酶的最佳温度降低3°C 。 , 和 固定化酶的量分别比游离酶高4.4、1.7和7.5倍。固定的蛋白酶保留约65%的残留活性,可重复使用16次。六个周期的分批应用后,固定化蛋白酶在材料中保留了35%的残留活性。酪蛋白水解的热力学分析结果表明,ΔG(活化自由能)和ΔG 与从游离酶获得的那些相比,固定化酶获得的(过渡态形成的活化自由能)降低。另一方面,ΔG的值 (底物结合的自由能)增加。这些结果表明固定后生化反应的自发性增加。固定化酶的焓值比游离酶高2.2倍,表明形成过渡态所需的能量较低,而ΔS值升高则表明固定化酶的形式比其游离态更有序。

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