Stoica Leonard, Dimcheva Nina, Haltrich Dietmar, Ruzgas Tautgirdas, Gorton Lo
Department of Analytical Chemistry, Lund University, P.O. Box 124, SE-22100 Lund, Sweden.
Biosens Bioelectron. 2005 Apr 15;20(10):2010-8. doi: 10.1016/j.bios.2004.09.018.
Following previous electrochemical investigations of cellobiose dehydrogenase (CDH), the present investigation reports on the initial screening of the electrochemistry of three new CDHs, two from the white rot basidiomycetes Trametes villosa and Phanerochaete sordida and one from the soft rot ascomycete Myriococcum thermophilum, for their ability to directly exchange electrons with 10 different alkanethiol-modified Au electrodes. Direct electron transfer (DET) between the enzymes and some of the modified Au electrodes was shown, both, in the presence and in the absence of cellobiose. However, the length and the head functionality of the alkanethiols drastically influenced the efficiency of the DET reaction and also influenced the effect of pH on the biocatalytic/redox currents, suggesting the importance of structural/sequence differences between these CDH enzymes. In this respect, the white rot CDHs exhibit excellent biocatalytic and redox currents, whereas for the soft rot CDH the DET communication is much less efficient. Cyclic voltammograms indicate that the heme domain of the CDHs is the part of the enzymes that most readily exchanges electrons with the electrode. However, for P. sordida CDH on 11-mercaptoundecanol or dithiopropionic acid-modified Au electrodes, a second voltammetric wave was noticed suggesting that for some orientations of the enzyme, DET communication with the FAD cofactor can also be obtained.
继之前对纤维二糖脱氢酶(CDH)的电化学研究之后,本研究报告了对三种新型CDH电化学性质的初步筛选。这三种酶分别来自白腐担子菌毛栓菌和污色原毛平革菌,以及软腐子囊菌嗜热多球壳菌,研究其与10种不同的烷硫醇修饰金电极直接交换电子的能力。结果表明,无论有无纤维二糖存在,酶与部分修饰金电极之间均发生了直接电子转移(DET)。然而,烷硫醇的长度和头部官能团对DET反应效率有显著影响,同时也影响了pH值对生物催化/氧化还原电流的作用,这表明这些CDH酶之间结构/序列差异的重要性。在这方面,白腐CDH表现出优异的生物催化和氧化还原电流,而软腐CDH的DET通讯效率则低得多。循环伏安图表明,CDH的血红素结构域是酶中最容易与电极交换电子的部分。然而,对于在11-巯基十一醇或二硫代丙酸修饰金电极上的污色原毛平革菌CDH,观察到第二个伏安波,这表明对于酶的某些取向,也可以实现与FAD辅因子的DET通讯。