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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Metal-Organic Frameworks Conjugated Lipase with Enhanced Bio-catalytic Activity and Stability
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Metal-Organic Frameworks Conjugated Lipase with Enhanced Bio-catalytic Activity and Stability

机译:金属有机框架共轭脂肪酶,具有增强的生物催化活性和稳定性

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Covalent immobilization of lipase onto a solid carrier is an effective way to enhance stability. Immobilization inhibits the activity of lipase due to decreased flexibility of enzyme structure via the covalent bond. In this study, monomer of the metal-organic frameworks (MOFs) material ZIF-8 (2-methyl imidazole-4-carboxylic acid) was innovatively used as a chemical modifier of Candida nrugosa lipase (CRL). The circular dichroism spectra results show that the CRL molecule was altered by chemical modification and thus its catalytic activity was 1.3 times higher than that of the free CRL. The modified CRL molecule was further immobilized in the "skeleton" of ZIF-8 through the monomer while in situ forming the cell skeleton of the MOFs, which prevent the active center from being destroyed. The results show that conjugation of chemical modification and immobilized enzymes ensure that there was no obvious reduction in the activity of CRL after immobilization and the stability of CRL was improved. Especially, the organic solvent stability of the modified immobilization CRL in isopropanol was significantly improved and retained more than 148% of its activity.
机译:将脂肪酶的共价固定到固体载体上是增强稳定性的有效方法。由于通过共价键的酶结构的柔韧性降低,固定抑制脂肪酶的活性。在该研究中,金属 - 有机框架(MOF)材料ZIF-8(2-甲基咪唑-4-羧酸)的单体创新用作念珠菌尼耳菌脂肪酶(CRL)的化学改性剂。圆形二中间谱谱结果表明CRL分子通过化学改性改变,因此其催化活性比游离CRL高1.3倍。通过单体在ZIF-8的“骨架”中进一步固定修饰的CRL分子,而原位形成MOF的细胞骨架,防止活性中心被破坏。结果表明,化学修饰和固定化酶的缀合确保在固定后,CRL活性没有明显降低,并且CRL的稳定性得到改善。特别地,在异丙醇中改性固定化CRL的有机溶剂稳定性显着改善并保留了其活性的超过148%。

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