Yaropolov A, Shleev S, Zaitseva E, Emnéus J, Marko-Varga G, Gorton L
A. N. Bach Institute of Biochemistry, Russian Academy of Sciences, Leninsky prospekt 33, 119071 Moscow, Russia.
Bioelectrochemistry. 2007 May;70(2):199-204. doi: 10.1016/j.bioelechem.2006.07.005. Epub 2006 Jul 12.
The electroenzymatic reactions of Trametes hirsuta laccase in the pure organic solvent dimethyl sulfoxide (DMSO) have been investigated within the framework for potential use as a catalytic reaction scheme for oxygen reduction. The bioelectrochemical characteristics of laccase were investigated in two different ways: (i) by studying the electroreduction of oxygen in anhydrous DMSO via a direct electron transfer mechanism without proton donors and (ii) by doing the same experiments in the presence of laccase substrates, which display in pure organic solvents both the properties of electron donors as well as the properties of weak acids. The results obtained with laccase in anhydrous DMSO were compared with those obtained previously in aqueous buffer. It was shown that in the absence of proton donors under oxygenated conditions, formation of superoxide anion radicals is prevented at bare glassy carbon and graphite electrodes with adsorbed laccase. The influence of the time for drying the laccase solution at the electrode surface on the electroreduction of oxygen was studied. Investigating the electroenzymatic oxidation reaction of catechol and hydroquinone in DMSO reveals the formation of various intermediates of the substrates with different electrochemical activity under oxygenated conditions. The influence of the content of aqueous buffer in the organic solvent on the electrochemical behaviour of hydroquinone/1,4-benzoquinone couple was also studied.
在将其用作氧还原催化反应方案的框架内,对糙皮侧耳漆酶在纯有机溶剂二甲基亚砜(DMSO)中的电酶反应进行了研究。通过两种不同方式研究了漆酶的生物电化学特性:(i)通过研究在无质子供体情况下,经由直接电子转移机制,在无水DMSO中氧的电还原;(ii)通过在漆酶底物存在下进行相同实验,这些底物在纯有机溶剂中兼具电子供体特性和弱酸特性。将在无水DMSO中用漆酶获得的结果与先前在水性缓冲液中获得的结果进行了比较。结果表明,在含氧条件下无质子供体时,在吸附有漆酶的裸玻碳电极和石墨电极上,超氧阴离子自由基的形成受到抑制。研究了电极表面漆酶溶液干燥时间对氧电还原的影响。研究DMSO中儿茶酚和对苯二酚的电酶氧化反应,揭示了在含氧条件下具有不同电化学活性的底物各种中间体的形成。还研究了有机溶剂中水性缓冲液含量对对苯二酚/1,4 - 苯醌电对电化学行为的影响。