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荠菜过氧化物酶在新型 Zn-MOF 纳米结构上的固定化。

Immobilization of Lepidium draba peroxidase on a novel Zn-MOF nanostructure.

机构信息

Department of Biotechnology, Institute of Science and High Technology and Environmental Sciences, Graduate University of Advanced Technology, Kerman, Iran.

Department of Molecular and Cell Biology, Faculty of Basic Sciences, Kosar University of Bojnord, Bojnord, Iran.

出版信息

Int J Biol Macromol. 2021 Mar 15;173:366-378. doi: 10.1016/j.ijbiomac.2020.12.216. Epub 2021 Jan 13.

Abstract

In the present study, ultrasound irradiation was utilized to synthesize a novel zinc metal-organic framework (MOF). Scanning electron microscopic images, exhibited homogenous morphology with a nano-sized distribution of the Zn-MOF structure as also confirmed by X-ray diffraction patterns. Following, physical immobilization of Lepidium draba peroxidase (LDP) were optimized on the Zn-MOF in phosphate buffer (50 mM, pH 6.5), ratio amount of MOF/enzyme; 7/1 after shaking for 15 min at 25 °C, with high protein loading of 109.9 mg/g and immobilization yield of 93.3%. Immobilized enzyme (IE) exhibited more than 330% enhanced specific activity and also exhibited more than 150% specific affinity to its substrate (3,3',5,5'-tetramethylbenzidine) with respect to the free enzyme (FE). Optimum temperature of the IE was obtained at 20 °C while its was 25 °C for the FE, and thermostability of the IE augmented at temperature of 30 °C and 40 °C by the factors of 104 and 108% respectively. pH stability under neutral and basic condition and storage stability of the IE improved with respect to the FE as well as its structural stability (T; 73 °C for IE vs. 63 °C for FE). Furthermore, immobilization is accompanied with alteration on the enzyme structure as revealed by the intrinsic and extrinsic fluorescence spectra.

摘要

在本研究中,利用超声波辐照合成了一种新型锌金属有机骨架(MOF)。扫描电子显微镜图像显示,Zn-MOF 结构具有均匀的形态和纳米级分布,X 射线衍射图谱也证实了这一点。随后,在磷酸盐缓冲液(50 mM,pH 6.5)中优化了 Lepidium draba 过氧化物酶(LDP)在 Zn-MOF 上的物理固定,MOF/酶的比例为 7/1,在 25°C 下摇动 15 分钟后,蛋白质的负载量为 109.9 mg/g,固定化产率为 93.3%。固定化酶(IE)的比活性提高了 330%以上,对其底物(3,3',5,5'-四甲基联苯胺)的比亲和力也提高了 150%以上,而游离酶(FE)的比活性和比亲和力则分别提高了 330%和 150%以上。IE 的最适温度为 20°C,而 FE 的最适温度为 25°C,IE 在 30°C 和 40°C 下的热稳定性分别提高了 104%和 108%。IE 在中性和碱性条件下的 pH 稳定性和储存稳定性都得到了提高,与 FE 相比,其结构稳定性(T;IE 为 73°C,FE 为 63°C)也得到了提高。此外,固定化伴随着酶结构的改变,这可以通过内源和外源荧光光谱来揭示。

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