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

被引:112
作者
Johnson, DL
Thompson, JL
Brinkmann, SM
Schuller, KA
Martin, LL
机构
[1] Flinders Univ S Australia, Sch Biol Sci & Chem, Fac Sci & Engn, Adelaide, SA 5001, Australia
[2] Flinders Univ S Australia, Sch Phys, Fac Sci & Engn, Adelaide, SA 5001, Australia
[3] Flinders Univ S Australia, Sch Earth Sci, Fac Sci & Engn, Adelaide, SA 5001, Australia
关键词
D O I
10.1021/bi034268p
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
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 degreesC. 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(NaN3) 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.
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页码:10229 / 10237
页数:9
相关论文
共 57 条
[1]  
Bott W.A., 1996, CURR SEP, V15, P25, DOI DOI 10.1006/JCIS.2000.6962
[2]   History, overview and applications of mediated lignolytic systems, especially laccase-mediator-systems (Lignozym(R)-process) [J].
Call, HP ;
Mucke, I .
JOURNAL OF BIOTECHNOLOGY, 1997, 53 (2-3) :163-202
[3]   A miniature biofuel cell [J].
Chen, T ;
Barton, SC ;
Binyamin, G ;
Gao, ZQ ;
Zhang, YC ;
Kim, HH ;
Heller, A .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2001, 123 (35) :8630-8631
[4]   Ordered assembly and controlled electron transfer of the blue copper protein azurin at gold (111) single-crystal substrates [J].
Chi, QJ ;
Zhang, JD ;
Andersen, JET ;
Ulstrup, J .
JOURNAL OF PHYSICAL CHEMISTRY B, 2001, 105 (20) :4669-4679
[5]   VOLTAMMETRY OF COVALENTLY IMMOBILIZED CYTOCHROME-C ON SELF-ASSEMBLED MONOLAYER ELECTRODES [J].
COLLINSON, M ;
BOWDEN, EF ;
TARLOV, MJ .
LANGMUIR, 1992, 8 (05) :1247-1250
[6]  
DAVIS S, 1992, APPL MICROBIOL BIOT, V37, P474, DOI 10.1007/BF00180972
[7]   Applications of laccases and tyrosinases (phenoloxidases) immobilized on different supports:: a review [J].
Durán, N ;
Rosa, MA ;
D'Annibale, A ;
Gianfreda, L .
ENZYME AND MICROBIAL TECHNOLOGY, 2002, 31 (07) :907-931
[8]   OXIDATIVE-TITRATIONS OF RHUS-VERNICIFERA LACCASE AND ITS SPECIFIC INTERACTION WITH HYDROGEN-PEROXIDE [J].
FARVER, O ;
GOLDBERG, M ;
LANCET, D ;
PECHT, I .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1976, 73 (02) :494-500
[9]  
FEE JA, 1969, J BIOL CHEM, V244, P4200
[10]   Voltammetric monitoring of laccase-catalysed mediated reactions [J].
Fernández-Sánchez, C ;
Tzanov, T ;
Gübitz, GM ;
Cavaco-Paulo, A .
BIOELECTROCHEMISTRY, 2002, 58 (02) :149-156