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高效 CO 转化的酶。

Enzymes for Efficient CO Conversion.

机构信息

Gebze Technical University, Kocaeli, Turkey.

出版信息

Protein J. 2021 Aug;40(4):489-503. doi: 10.1007/s10930-021-10007-8. Epub 2021 Jun 7.

Abstract

The accumulation of carbon dioxide in the atmosphere as a result of human activities has caused a number of adverse circumstances in the world. For this reason, the proposed solutions lie within the aim of reducing carbon dioxide emissions have been quite valuable. However, as the human activity continues to increase on this planet, the possibility of reducing carbon dioxide emissions decreases with the use of conventional methods. The emergence of compounds than can be used in different fields by converting the released carbon dioxide into different chemicals will construct a fundamental solution to the problem. Although electro-catalysis or photolithography methods have emerged for this purpose, they have not been able to achieve successful results. Alternatively, another proposed solution are enzyme based systems. Among the enzyme-based systems, pyruvate decarboxylase, carbonic anhydrase and dehydrogenases have been the most studied enzymes. Pyruvate dehydrogenase and carbonic anhydrase have either been an expensive method or were incapable of producing the desired result due to the reaction cascade they catalyze. However, the studies reporting the production of industrial chemicals from carbon dioxide using dehydrogenases and in particular, the formate dehydrogenase enzyme, have been remarkable. Moreover, reported studies have shown the existence of more active and stable enzymes, especially the dehydrogenase family that can be identified from the biome. In addition to this, their redesign through protein engineering can have an immense contribution to the increased use of enzyme-based methods in CO reduction, resulting in an enormous expansion of the industrial capacity.

摘要

由于人类活动导致大气中二氧化碳的积累,在世界范围内造成了许多不良环境。出于这个原因,提出的解决方案旨在减少二氧化碳排放,这些方案具有相当的价值。然而,随着人类活动在这个星球上的不断增加,通过使用传统方法减少二氧化碳排放的可能性也随之降低。能够将释放的二氧化碳转化为不同化学物质的化合物的出现,将为解决这个问题提供一个基本的方案。尽管已经出现了用于此目的的电催化或光化学方法,但它们还没有能够取得成功的结果。另一种被提出的解决方案是基于酶的系统。在基于酶的系统中,丙酮酸脱羧酶、碳酸酐酶和脱氢酶是研究最多的酶。丙酮酸脱氢酶和碳酸酐酶要么因为它们所催化的反应级联而成本高昂,要么因为它们无法产生所需的结果。然而,使用脱氢酶,特别是甲酸盐脱氢酶,从二氧化碳生产工业化学品的研究报告引人注目。此外,报告的研究表明,存在更多的活性和稳定的酶,特别是可以从生物群落中鉴定出的脱氢酶家族。此外,通过蛋白质工程对其进行重新设计,可以极大地促进基于酶的方法在 CO 还原中的应用,从而极大地扩大工业产能。

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