Biosystems Technology, Institute of Life Sciences and Biomedical Technologies, Technical University of Applied Sciences Wildau, Germany.
Bioelectrochemistry. 2020 Aug;134:107496. doi: 10.1016/j.bioelechem.2020.107496. Epub 2020 Mar 3.
This review summarizes the basic features of the PQQ-GDH enzyme as one of the sugar converting biocatalysts. Focus is on the membrane -bound and the soluble form. Furthermore, the main principles of enzymatic catalysis as well as studies on the physiological importance are reviewed. A short overview is given on developments in protein engineering. The major part, however, deals with the different fields of application in bioelectrochemistry. This includes approaches for enzyme-electrode communication such as direct electron transfer, mediator-based systems, redox polymers or conducting polymers and holoenzyme reconstitution, and covers applied areas such as biosensing, biofuel cells, recycling schemes, enzyme competition, light-directed sensing, switchable detection schemes, logical operations by enzyme electrodes and immune sensing.
本文综述了 PQQ-GDH 酶作为糖转化生物催化剂之一的基本特征。重点介绍了膜结合型和可溶性两种形式。此外,还综述了酶催化的主要原理以及生理重要性的研究。本文简要概述了蛋白质工程的发展。然而,主要部分还是涉及生物电化学的不同应用领域。这包括酶-电极通讯的方法,如直接电子转移、基于介体的系统、氧化还原聚合物或导电聚合物和全酶重建,并涵盖了生物传感、生物燃料电池、回收方案、酶竞争、光导向传感、可切换检测方案、酶电极的逻辑运算和免疫传感等应用领域。