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Chemical modification of Aspergillus nigerβ-glucosidase and its catalytic properties

机译:黑曲霉的化学修饰β-葡萄糖苷酶及其催化性能

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摘要

Aspergillus niger β-glucosidase was modified by covalent coupling to periodate activated polysaccharides (glycosylation). The conjugated enzyme to activated starch showed the highest specific activity (128.5 U/mg protein). Compared to the native enzyme, the conjugated form exhibited: a higher optimal reaction temperature, a lower Ea (activation energy), a higher K m (Michaelis constant) and Vmax (maximal reaction rate), and improved thermal stability. The calculated t 1/2 (half-life) values of heat in-activation at 60 °C and 70 °C were 245.7 and 54.5 min respectively, whereas at these temperatures the native enzyme was less stable (t 1/2 of 200.0 and 49.5 min respectively). The conjugated enzyme retained 32.3 and 29.7%, respectively from its initial activity in presence of 5 mM Sodium Dodecyl Sulphate (SDS) and p -Chloro Mercuri Benzoate ( p -CMB), while the native enzyme showed a remarkable loss of activity (retained activity 1.61 and 13.7%, respectively). The present work has established the potential of glycosylation to enhance the catalytic properties of β-glucosidase enzyme, making this enzyme potentially feasible for biotechnological applications.
机译:黑曲霉β-葡萄糖苷酶通过与高碘酸盐活化的多糖共价偶联修饰(糖基化)。与活化淀粉结合的酶显示出最高的比活性(128.5 U / mg蛋白)。与天然酶相比,结合形式表现出:较高的最佳反应温度,较低的Ea(活化能),较高的K m(米氏常数)和Vmax(最大反应速率)以及改善的热稳定性。在60°C和70°C下计算的失活热的t 1/2(半衰期)值分别为245.7和54.5分钟,而在这些温度下,天然酶的稳定性较差(t 1/2为200.0,t 1/2为200.0。分别为49.5分钟)。在5 mM十二烷基硫酸钠(SDS)和对氯苯甲酰苯甲酸酯(p -CMB)的存在下,结合酶比其初始活性分别保留32.3和29.7%,而天然酶则显示出显着的活性损失(保留的活性分别为1.61和13.7%)。目前的工作已经建立了糖基化的潜力,以增强β-葡萄糖苷酶的催化性能,使该酶在生物技术应用中潜在可行。

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