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基于人工酶的逻辑运算模拟细胞内酶参与的氧化还原平衡系统。

Artificial Enzyme-based Logic Operations to Mimic an Intracellular Enzyme-participated Redox Balance System.

机构信息

Laboratory of Chemical Biology and State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin, 130022, P. R. China.

University of Chinese Academy of Sciences, Beijing, 100039, P. R. China.

出版信息

Chemistry. 2017 Jul 6;23(38):9156-9161. doi: 10.1002/chem.201701353. Epub 2017 Jun 20.

Abstract

Owing to the biocatalytic properties of artificial enzymes and the redox characteristic of glutathione, a colorimetric and resettable biological operation was successfully designed to mimic enzyme-participated redox balance in living systems. As one promising candidate of a natural enzyme, artificial enzyme possesses many advantages and has been used in numerous fields. Similar to natural enzymes, communications are also present between different artificial enzymes. With the assistance of four artificial enzymes, three simple biological logic gates were fabricated to help us deepen the understanding of communications between artificial enzymes. In the presence of glutathione, the system could be easily reset without any complicated procedures. We prospect that this work may push forward the exploration of communications between different artificial enzymes and the design of novel artificial enzyme-based biological gates or nanodevices. We hope that our mimic system may help us further understand the functioning of complex biological pathways in biological systems.

摘要

由于人工酶的生物催化特性和谷胱甘肽的氧化还原特性,成功设计了一种比色和可重置的生物操作,以模拟生命系统中酶参与的氧化还原平衡。作为一种有前途的天然酶候选物,人工酶具有许多优点,并已被应用于许多领域。类似于天然酶,不同人工酶之间也存在通讯。借助于四种人工酶,构建了三个简单的生物逻辑门,以帮助我们加深对人工酶之间通讯的理解。在谷胱甘肽存在的情况下,无需复杂的程序即可轻松重置系统。我们预计这项工作可能会推动不同人工酶之间通讯的探索以及基于新型人工酶的生物门或纳米器件的设计。我们希望我们的模拟系统可以帮助我们进一步了解生物系统中复杂生物途径的功能。

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