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葡糖杆菌属的膜结合脱氢酶:界面电化学与直接生物电催化

Membrane-bound dehydrogenases from Gluconobacter sp.: interfacial electrochemistry and direct bioelectrocatalysis.

作者信息

Tkac Jan, Svitel Juraj, Vostiar Igor, Navratil Marian, Gemeiner Peter

机构信息

Department of Glycobiotechnology, Institute of Chemistry, Slovak Academy of Sciences, Dubravska cesta 9, SK 845 38 Bratislava, Slovakia.

出版信息

Bioelectrochemistry. 2009 Sep;76(1-2):53-62. doi: 10.1016/j.bioelechem.2009.02.013. Epub 2009 Mar 11.

Abstract

Although membrane-bound dehydrogenases isolated from Gluconobacter sp. (mainly PQQ-dependent alcohol and fructose dehydrogenase) have been used for preparing diverse forms of bioelectronic interfaces for almost 2 decades, it is not an easy task to interpret an electrochemical behaviour correctly. Recent discoveries regarding redox properties of membrane-bound dehydrogenases along with extensive investigations of direct electron transfer (DET) or direct bioelectrocatalysis with these enzymes are summarized in this review. The main aim of this review is to draw general conclusions about possible electronic coupling paths of these enzymes on various interfaces via direct electron transfer or direct bioelectrocatalysis. A short overview of the metabolism and respiration chain in Gluconobacter relevant to interfacial electrochemistry is given. Biosensor devices based on DET or direct bioelectrocatalysis using membrane-bound dehydrogenases from Gluconobacter sp. are described briefly with the emphasis given on practical applications of preparing enzymatic biofuel cells. Moreover, interfacial electrochemistry of Gluconobacter oxydans related to the construction of microbial biofuel cells is also discussed.

摘要

尽管从葡糖杆菌属(主要是依赖吡咯喹啉醌的乙醇和果糖脱氢酶)中分离出的膜结合脱氢酶已被用于制备多种形式的生物电子界面近20年,但正确解释其电化学行为并非易事。本综述总结了关于膜结合脱氢酶氧化还原特性的最新发现,以及对这些酶的直接电子转移(DET)或直接生物电催化的广泛研究。本综述的主要目的是通过直接电子转移或直接生物电催化,就这些酶在各种界面上可能的电子耦合途径得出一般性结论。简要介绍了葡糖杆菌中与界面电化学相关的代谢和呼吸链。简要描述了基于DET或使用葡糖杆菌属膜结合脱氢酶进行直接生物电催化的生物传感器装置,重点介绍了制备酶生物燃料电池的实际应用。此外,还讨论了与微生物生物燃料电池构建相关的氧化葡糖杆菌的界面电化学。

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