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纯化的漆树漆酶的电化学表征:连续四电子转移的伏安证据

Electrochemical characterization of purified Rhus vernicifera laccase: voltammetric evidence for a sequential four-electron transfer.

作者信息

Johnson Daniel L, Thompson Janene L, Brinkmann Sandra M, Schuller Kathryn A, Martin Lisandra L

机构信息

School of Biological Sciences and Chemistry, Faculty of Science and Engineering, Flinders University, GPO Box 2100, Adelaide 5001, South Australia, Australia.

出版信息

Biochemistry. 2003 Sep 2;42(34):10229-37. doi: 10.1021/bi034268p.

Abstract

Rhus vernicifera (Rv) laccase was purified to electrophoretic homogeneity by hydrophobic interaction chromatography. A comprehensive study of the direct electrochemistry of Rv laccase covalently immobilized at a gold electrode using alkanethiol monolayers was undertaken. The observed midpoint potential was 410 mV versus the normal hydrogen electrode (NHE), consistent with reduction potentials obtained by potentiometric titration for the T1 copper site. Evidence is presented for a concerted 4-electron reversible process at slow scan rates (v) on the basis of peak current ratios (i(pa)/i(pc)). Catalytic currents were observed in the presence of the biological substrate oxygen, indicating that laccase activity is retained throughout the immobilization process. Electrochemical characteristics of the immobilized laccase were essentially invariant across the pH range 5.5-8.5 and the temperature range 5-35 degrees C. The purified enzyme displayed a pH optimum of 9.0, when assayed spectrophotometrically with syringaldazine as a substrate. Inhibition of the laccase activity with azide or fluoride showed an I(50)(NaN(3)) of 2.5 mM and an I(50)(NaF) of 18.5 mM. Electrochemistry in the presence of azide reduces the anodic current by ca. one-half, consistent with the 4-electron process decreasing to a 2-electron process. However, fluoride has no effect on anaerobic electrochemistry. These electrochemical results suggest that the pH dependence of laccase activity is related to the effects of pH on the structure or binding of the substrate.

摘要

通过疏水相互作用色谱法将漆树漆酶(Rv)纯化至电泳纯。对使用烷硫醇单层共价固定在金电极上的Rv漆酶的直接电化学进行了全面研究。观察到相对于标准氢电极(NHE)的中点电位为410 mV,这与通过电位滴定法获得的T1铜位点的还原电位一致。基于峰电流比(i(pa)/i(pc)),在慢扫描速率(v)下呈现出协同的4电子可逆过程的证据。在生物底物氧气存在下观察到催化电流,表明漆酶活性在整个固定过程中得以保留。固定化漆酶的电化学特性在pH范围5.5 - 8.5和温度范围5 - 35℃内基本不变。当以丁香醛连氮为底物进行分光光度法测定时,纯化后的酶显示出最佳pH为9.0。用叠氮化物或氟化物抑制漆酶活性,其I(50)(NaN(3))为2.5 mM,I(50)(NaF)为18.5 mM。在叠氮化物存在下的电化学使阳极电流降低约一半,这与4电子过程转变为2电子过程一致。然而,氟化物对厌氧电化学没有影响。这些电化学结果表明漆酶活性的pH依赖性与pH对底物结构或结合的影响有关。

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