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粪生粪壳菌子囊菌的酚氧化酶。十二。漆酶II和III对具有不同取代模式底物的亲和力。

The phenol oxidases of the ascomycete Podospora anserina. XII. Affinity of laccases II and III to substrates with different substitution patterns.

作者信息

Hoffmann P, Esser K

出版信息

Arch Microbiol. 1977 Feb 4;112(1):111-4. doi: 10.1007/BF00446663.

Abstract

For the low molecular weight laccases II and III of Podospora anserina the kinetic parameters Michaelis constant (KM) and maximum reaction velocity (V) were determined polarographically under pH optimum conditions for representative substrates of different substitution patterns. Laccase II showed two peaks in its pH optimum curve, each with a different substrate specificity, indicating structural differences to laccase III which exhibits only one broad peak. Under optimum conditions the affinities of various substrates are determined by their substitution patterns: high affinity for simple o- and p-diphenols, low affinity for m-henols. The maximal velocity remains largely uninfluenced. This study of the effect of substitution on substrate utilization leads to the assumption that there is no specific reactive site for m-phenols in either laccase. Oxidation of m-phenols, however, takes only place at high pH values.

摘要

对于嗜热栖热放线菌的低分子量漆酶II和III,在不同取代模式的代表性底物的最适pH条件下,通过极谱法测定了米氏常数(KM)和最大反应速度(V)等动力学参数。漆酶II在其最适pH曲线中有两个峰,每个峰具有不同的底物特异性,这表明其与仅呈现一个宽峰的漆酶III在结构上存在差异。在最佳条件下,各种底物的亲和力由其取代模式决定:对简单的邻二酚和对二酚具有高亲和力,对间二酚具有低亲和力。最大速度在很大程度上不受影响。这项关于取代对底物利用影响的研究得出假设,即两种漆酶中均不存在针对间酚的特定反应位点。然而,间酚的氧化仅在高pH值下发生。

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