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蘑菇多酚氧化酶在有机介质中的活性。

Activity of mushroom polyphenol oxidase in organic medium.

机构信息

Departments of Biochemistry and Microbiology, Rhodes University, Grahamstown, Republic of South Africa.

出版信息

Biotechnol Bioeng. 1993 Oct;42(8):938-44. doi: 10.1002/bit.260420804.

Abstract

A kinetic study of the activity of mushroom polyphenol oxidase in an organic system was carried out to obtain detailed enzyme kinetic data in relation to optimization of reaction conditions and substrate specificity. A simple method for consistent measurement of reaction rates in the heterogeneous enzyme/organic solvent system (consisting of immobilized polyphenol oxidase and a hydrated solution of the substrate in chloroform) was designed. The aqueous content of the system was optimized using p-cresol as the substrate. With this system, a crude extract of Agaricus bisporus was used to hydroxylate and oxidize a range of selected p-substituted phenolic substrates, yielding o-quinone products. Michaelis-Menten kinetics were used to obtain apparent K(M) and V(max) values with respect to each of these substrates. Results from this analysis indicated a correlation between the enzymic kinetic parameters obtained and the steric requirements of the substrates, which could be rationalized in terms of the restricted flexibility of the enzyme when it is in chloroform and also in terms of substrate and solvent hydrophobicity. In the course of the investigation UV molar absorption coefficients of several o-quinones were measured by a novel method: (1)H nuclear magnetic resonance (NMR) spectroscopy was employed to determine component concentrations in reaction mixtures resulting from the transformation of phenols by polyphenol oxidase in chloroform. Thus the UV molar absorption coefficients could be obtained directly, avoiding the necessity to isolate the water-sensitive, unstable o-quinones.

摘要

在有机体系中对蘑菇多酚氧化酶的活性进行了动力学研究,以获得与优化反应条件和底物特异性相关的详细酶动力学数据。设计了一种简单的方法,用于一致测量非均相酶/有机溶剂体系(由固定化多酚氧化酶和氯仿中的底物水合溶液组成)中的反应速率。使用对甲酚作为底物优化了该体系的水含量。使用该体系,用双孢蘑菇的粗提取物对一系列选定的对取代酚类底物进行羟化和氧化,生成邻醌产物。使用米氏-门坦动力学,根据这些底物中的每一个获得表观 K(M)和 V(max)值。该分析的结果表明,酶动力学参数与底物的空间要求之间存在相关性,可以根据酶在氯仿中的受限灵活性以及底物和溶剂疏水性来合理化。在研究过程中,通过一种新方法测量了几种邻醌的 UV 摩尔吸光系数:(1)H 核磁共振(NMR)光谱法用于确定多酚氧化酶在氯仿中转化酚类物质后反应混合物中的组分浓度。因此,可以直接获得 UV 摩尔吸光系数,而无需分离对水敏感且不稳定的邻醌。

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