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首页> 外文期刊>Journal of Colloid and Interface Science >Remarkably enhanced activity and substrate affinity of lipase covalently bonded on zwitterionic polymer-grafted silica nanoparticles
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Remarkably enhanced activity and substrate affinity of lipase covalently bonded on zwitterionic polymer-grafted silica nanoparticles

机译:在两性离子聚合物接枝二氧化硅纳米粒子上共价键合的脂肪酶的显着增强的活性和底物亲和力

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Enzymes are promising biocatalysts for the production or degradation of chemical compounds, but low stabilities of free enzymes restrict their industrial applications. Therefore, development of effective immobilization methods to maintain or increase enzyme activity and stability remains a challenge. In this work, a novel support made of zwitterionic polymer-grafted silica nanoparticles (p-SNPs) was fabricated and Candida rugosa lipase (CRL) was covalently attached onto the p-SNPs. The zwitterionic polymer was a product of the reaction between poly(maleic anhydride-alt-1-octadecene) and N,N-dimethylenediamine and contained a cetane side chain. The hydrolytic activity, reaction kinetics, thermal stability, pH tolerance, storage stability and reusability of the immobilized CRL (SNPs-CRL) were investigated. It revealed that the specific activity of SNPs-CRL was two to four times higher than the free CRL in the temperature range of 25-60 degrees C. It is considered mainly due to the interfacial activation effect regulated by the cetane side chains of the zwitterionic polymer. Kinetic studies revealed remarkable improvement of the enzymatic reaction efficiency by the immobilized enzyme as demonstrated by the significant increases of the reaction rate constant and the decreases of Michaelis constant (i.e., increase of enzyme-substrate affinity) determined with two different substrates (p-nitrophenyl acetate and p-nitrophenyl palmitate). Moreover, the immobilization improved the enzyme stabilities and SNPs-CRL displayed good reusability. Finally, the SNPs-CRL was proven to catalyze the hydrolysis of methyl mandelate to produce mandelic acid at an activity three times higher than the free enzyme. The results indicate that zwitterionic polymers deserved further development for enzyme immobilization. (C) 2018 Elsevier Inc. All rights reserved.
机译:酶是有希望的用于生产或化学化合物的降解的生物催化剂,但不含酶的低稳定性限制了它们的工业应用。因此,有效的固定方法来维持或提高酶的活性和稳定性的发展仍然是一个挑战。在这项工作中,由两性离子聚合物接枝的二氧化硅纳米粒子(对单核苷酸多态性)的一种新颖的支撑制作和皱褶假丝酵母脂肪酶(CRL)共价连接到所述p个SNP。两性离子聚合物是N,N-二亚甲基二胺的聚之间的反应(马来酸酐 - 交替 - 1-十八碳烯)和的产物和含有十六烷值侧链。水解活性,反应动力学,热稳定性,pH耐受性,储存稳定性和固定的CRL(SNPS-CRL)的可重用性进行了调查。它揭示的SNP-CRL的比活性为两到四倍高于在温度范围25-60℃。游离CRL它主要考虑由于通过两性离子的十六烷值侧链调节的界面活化作用聚合物。动力学研究揭示的固定化酶的酶反应效率显着改善由反应速率常数的显著增加所证明和米氏常数(即,酶 - 底物的亲和力的增加)的降低了与两个不同的底物(对硝基苯基确定乙酸酯和对硝基苯基棕榈酸酯)。此外,固定化提高了酶的稳定性和SNP-CRL显示良好的可重用性。最后,的SNP-CRL被证明催化扁桃酸甲酯的水解在酶活性以产生扁桃酸比游离酶高三倍。结果表明,两性离子聚合物值得进一步发展用于酶的固定化。 (c)2018 Elsevier Inc.保留所有权利。

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