Mediatorless electron transfer in glucose dehydrogenase/laccase system adsorbed on carbon nanotubes

被引:17
作者
Ratautas, D. [1 ]
Marcinkeviciene, L. [2 ]
Meskys, R. [2 ]
Kulys, J. [1 ]
机构
[1] Vilnius Gediminas Tech Univ, LT-10223 Vilnius, Lithuania
[2] Vilnius Univ, Inst Biochem, Dept Mol Microbiol & Biotechnol, LT-08662 Vilnius, Lithuania
关键词
glucose dehydrogenase; laccase; carbon nanotube; electron transfer; oxidoreductase wiring; GOLD NANOPARTICLES; LACCASE; BIOSENSORS; OXIDATION; OXIDASE;
D O I
10.1016/j.electacta.2015.06.063
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
A mediatorless electron transfer in the chain of glucose dehydrogenase (GDH) and laccase (LAC) catalysing the oxidation of glucose by molecular oxygen was studied. To demonstrate mediatorless processes, the GDH from Ewingella americana was adsorbed on single-walled carbon nanotubes (SWCNT). The effective mediatorless oxidation of glucose proceeded at 0.2-0.4 V vs. SCE. The electrode was most active at pH 6.1, and generated 0.8 mA cm(-2) biocatalytic current in the presence of 50 mM glucose. The electrode showed a bell-shaped pH dependence with pK(a) values of 4.1 and 7.5. LAC from Trichaptum abietinum adsorbed on SWCNT exhibited mediatorless oxygen reduction at electrode potential less than 0.65 V. The electrode was most active at pH 3.0-4.0 and generated 1.1 mA cm(-2) biocatalytic current in the presence of 0.254 mM oxygen, with an apparent pK(a) of 1.0 and 5.4. The electrodes prepared by simultaneous adsorption of GDH and LAC on SWCNT exhibited glucose oxidation at a potential higher than 0.25 V. The oxygen consumption in the chain was demonstrated using a Clark-type oxygen electrode. The dependence of oxygen consumption on glucose and lactose concentrations as well as activity of the system on pH were measured. A model of the pH dependence as well as mediatorless consecutive glucose oxidation with oxygen catalysed by LAC/GDH system is presented. This work provides a novel approach towards the synthesis of artificial multi enzyme systems by wiring oxidoreductases with SWCNT, and offers a better understanding of natural electron transfer networks and chains. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:940 / 944
页数:5
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