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金属离子对共价固定在生物复合材料上的多酚氧化酶的影响。

Metal ion effects on Polyphenol Oxidase Covalently immobilized on a Bio-Composite.

机构信息

Department of Molecular Biology and Genetics, Balikesir University, Balikesir, Turkey.

Department of Physics, Balikesir University, Balikesir, Turkey.

出版信息

Cell Mol Biol (Noisy-le-grand). 2021 Sep 29;67(2):50-55. doi: 10.14715/cmb/2021.67.2.8.

Abstract

Biosensors can be developed using different immobilization methods. Interest in immobilization methods have increased because biosensors have been important for science. Polyphenol oxidase (PPO) was used generally in biosensor applications. For this purpose, Polyphenol oxidase from banana was purified and covalently immobilized on chitosan-gelatin bio-composite. The properties of immobilized enzyme were investigated and compared to free enzyme. Various parameters were studied such as pH, temperature and storage stability on immobilized and free enzyme. Kinetic parameters were also evaluated by different substrates on immobilized and free enzyme. Catechol was determined the best substrate for immobilized enzyme with optimum condition. In vitro effects of metal ions were studied on immobilized enzyme. Concentration range of metal ions is 1.0-10.0 x10-6 mol/L. The activity of immobilized PPO was increased by Fe+2 and Ag+1 ion. Co+3 and Cu+1 had very strong inhibitory effects with IC50 values of 19.69x10-3 mol/L and 23.49 x10-3 mol/L, respectively. Inhibition constants (Ki) and inhibition types of metal ions were determined with immobilized enzyme. Zn+2 and Cr+3 ions were showed competitive inhibition and Pb+2 ions were determined non-competitive inhibition with immobilized enzyme. Mixed type inhibition was obtained with Co+3 ion using catechol as substrate with 3.33x10-5 mol/L Ki value on immobilized PPO. Immobilized PPO can be evaluated for biosensor for the purpose of measurements of metal ions.

摘要

生物传感器可以使用不同的固定化方法进行开发。由于生物传感器在科学领域的重要性,人们对固定化方法的兴趣日益增加。多酚氧化酶(PPO)通常用于生物传感器应用。为此,从香蕉中纯化并共价固定化多酚氧化酶在壳聚糖-明胶生物复合材料上。研究了固定化酶的性质,并将其与游离酶进行了比较。研究了各种参数,如 pH 值、温度和固定化和游离酶的储存稳定性。还通过不同的底物评估了固定化和游离酶的动力学参数。儿茶酚是固定化酶的最佳底物,在最佳条件下。研究了金属离子对固定化酶的体外影响。金属离子的浓度范围为 1.0-10.0 x10-6 mol/L。Fe+2和 Ag+1离子增加了固定化 PPO 的活性。Co+3和 Cu+1离子具有很强的抑制作用,IC50 值分别为 19.69x10-3 mol/L 和 23.49 x10-3 mol/L。用固定化酶确定了金属离子的抑制常数(Ki)和抑制类型。Zn+2和 Cr+3离子对固定化酶表现出竞争性抑制,Pb+2离子对固定化酶表现出非竞争性抑制。Co+3离子与儿茶酚作为底物混合抑制类型,Ki 值为 3.33x10-5 mol/L。固定化 PPO 可用于生物传感器,用于测量金属离子。

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