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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Improved features of a highly stable protease from Penaeus vannamei by immobilization on glutaraldehyde activated graphene oxide nanosheets
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Improved features of a highly stable protease from Penaeus vannamei by immobilization on glutaraldehyde activated graphene oxide nanosheets

机译:通过固定在戊二醛活化的石墨烯氧化物纳米液上的固定化改善了Penaeus Vannamei的高稳定蛋白酶的特征

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摘要

In this study, we report the synthesis of graphene oxide nanosheets (GON) by a modified Hummers method. Then, a protease purified from the Penaeus vannamei shrimp was immobilized on the GON activated with glutaraldehyde. Several techniques such as SEM, DLS and FTIR were applied to characterize the different nano structures at the different levels. The immobilization of the protease on the GON activated with glutaraldehyde did not affect the optimum pH, but significantly improved thermal stability and stability at extreme pH values, as well as activity at 90 degrees C. After 24 h of incubation at 90 degrees C, the free enzyme retained less than 10% of the activity, while the immobilized enzyme kept more than 90% of its original activity. The apparent K-m and V-max for Penaeus vannamei protease remained fairly similar after immobilization, a very relevant data considering the large size of the substrate (casein). In the hydrolysis of casein at 70 degrees C and in the presence of 2 M urea, the immobilized enzyme exhibited a higher activity than the free enzyme. The results indicate that the immobilization of the enzyme Penaeus vannamei protease on GON activated with glutaraldehyde increases its already high stability against environmental stresses and makes it suitable for biotechnological and industrial applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们通过改进的悍马方法报告了石墨烯氧化物纳米片(GON)的合成。然后,将Penaeus Vannamei虾纯化的蛋白酶固定在用戊二醛活化的GON上固定。应用了诸如SEM,DLS和FTIR的几种技术,以表征不同级别的不同纳米结构。用戊二醛活化的GON的固定蛋白酶在用戊二醛活化的GON中不影响最佳pH,但在极端pH值下显着提高热稳定性和稳定性,以及90℃的90℃的活性。在90℃下孵育24小时后,自由酶保留不到10%的活性,而固定化酶保持超过其原始活动的90%以上。在固定后,Penaeus Vannamei蛋白酶的表观K-M和V-Max仍然相当相似,考虑到大尺寸的基材(酪蛋白)的非常相关的数据。在酪蛋白水解在70℃并在2M尿素存在下,固定化酶表现出比游离酶更高的活性。结果表明,用戊二醛活化的酶Penaeus Vannamei蛋白酶的固定增加其已经对环境压力的高稳定性增加,并使它适用于生物技术和工业应用。 (c)2019 Elsevier B.v.保留所有权利。

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