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用于生产碳氢燃料的光酶脱羧:综述

Photoenzymatic Decarboxylation to Produce Hydrocarbon Fuels: A Critical Review.

作者信息

Sui Yaqi, Guo Xiaobo, Zhou Rui, Fu Zhisong, Chai Yingxin, Xia Ao, Zhao Wenhui

机构信息

School of Life Sciences, Chongqing University, Chongqing, 401331, China.

School of Energy and Power Engineering, Chongqing University, Chongqing, 400044, China.

出版信息

Mol Biotechnol. 2023 Jun 22. doi: 10.1007/s12033-023-00775-2.

Abstract

Photoenzymatic decarboxylation shows great promise as a pathway for the generation of hydrocarbon fuels. CvFAP, which is derived from Chlorella variabilis NC64A, is a photodecarboxylase capable of converting fatty acids into hydrocarbons. CvFAP is an example of coupling biocatalysis and photocatalysis to produce alkanes. The catalytic process is mild, and it does not yield toxic substances or excess by-products. However, the activity of CvFAP can be readily inhibited by several factors, and further enhancement is required to improve the enzyme yield and stability. In this article, we will examine the latest advancements in CvFAP research, with a particular focus on the enzyme's structural and catalytic mechanism, summarized some limitations in the application of CvFAP, and laboratory-level methods for enhancing enzyme activity and stability. This review can serve as a reference for future large-scale industrial production of hydrocarbon fuels.

摘要

光酶促脱羧作为一种生成烃类燃料的途径显示出巨大的潜力。源自可变小球藻NC64A的CvFAP是一种能够将脂肪酸转化为烃类的光脱羧酶。CvFAP是将生物催化和光催化相结合以生产烷烃的一个例子。该催化过程温和,不会产生有毒物质或过量副产物。然而,CvFAP的活性很容易受到多种因素的抑制,需要进一步提高以提升酶的产量和稳定性。在本文中,我们将研究CvFAP研究的最新进展,特别关注该酶的结构和催化机制,总结CvFAP应用中的一些局限性,以及提高酶活性和稳定性的实验室水平方法。这篇综述可为未来大规模工业生产烃类燃料提供参考。

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