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Engineered Proteins for Bioelectrochemistry

机译:生物电化学工程蛋白

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摘要

It is only in the past two decades that excellent protein engineering tools have begun to meet parallel advances in materials chemistry, nanofabrication, and electronics. This is revealing scenarios from which synthetic enzymes can emerge, which were previously impossible, as well as interfaces with novel electrode materials. That means the control of the protein structure, electron transport pathway, and electrode surface can usher us into a new era of bioelectrochemistry. This article reviews the principle of electron transfer (ET) and considers how its application at the electrode, within the protein, and at a redox group is directing key advances in the understanding of protein structure to create systems that exhibit better efficiency and unique bioelectrochemistry.
机译:仅仅在过去的二十年中,出色的蛋白质工程工具才开始在材料化学,纳米制造和电子学方面取得平行发展。这揭示了合成酶可以从中出现的场景,这在以前是不可能的,以及与新型电极材料的界面。这意味着对蛋白质结构,电子传输途径和电极表面的控制可以将我们带入生物电化学的新时代。本文回顾了电子转移(ET)的原理,并考虑了其在电极,蛋白质内部以及氧化还原基团上的应用如何指导理解蛋白质结构的关键进展,从而创造出显示出更高效率和独特生物电化学的系统。

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