Fernández-Sánchez César, Tzanov Tzanko, Gübitz Georg M, Cavaco-Paulo Artur
Department of Textile Engineering, Campus de Azurem, University of Minho, 4800 Guimarães, Portugal.
Bioelectrochemistry. 2002 Dec;58(2):149-56. doi: 10.1016/s1567-5394(02)00119-6.
Six different compounds capable of mediating laccase-catalysed reactions have been tested by cyclic voltammetry. They exhibited quasi-reversible electrodic behaviour with formal redox potentials ranging from 150 to 800 mV (E(0)' vs. SCE). The immersion of a laccase-coated glassy carbon electrode (GCE) in mediator solutions generated large cathodic catalytic currents easily recorded by cyclic voltammetry at low-potential scan rates. This current showed two well-defined pH profiles, which correlated with the variation of the mediator redox potentials at the pH range tested. The relevant effect of temperature on the activity of laccase has been assessed here. Likewise, it was shown that the current record varied with the substrate concentration. This trend fitted Michaelis-Menten kinetics, which allowed us to give an estimation of the affinity of the fungal laccase for the different mediators.
通过循环伏安法对六种能够介导漆酶催化反应的不同化合物进行了测试。它们表现出准可逆的电极行为,形式氧化还原电位范围为150至800 mV(E(0)' 对SCE)。将涂有漆酶的玻碳电极(GCE)浸入介质溶液中会产生大的阴极催化电流,在低电位扫描速率下通过循环伏安法很容易记录到。该电流显示出两个明确的pH曲线,这与测试pH范围内介质氧化还原电位的变化相关。在此评估了温度对漆酶活性的相关影响。同样,结果表明电流记录随底物浓度而变化。这种趋势符合米氏动力学,这使我们能够估计真菌漆酶对不同介质的亲和力。