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蛋白质工程在羧酸生物还原中的应用。

Protein engineering for bioreduction of carboxylic acids.

机构信息

Department of Chemical & Biological Engineering and Advanced Biomanufacturing Centre, University of Sheffield, Sir Robert Hadfield Building, Mappin Street, Sheffield S1 3JD, United Kingdom.

Laboratory of Biocatalysis and Bioprocessing, State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, PR China.

出版信息

J Biotechnol. 2019 Sep 10;303:53-64. doi: 10.1016/j.jbiotec.2019.07.001. Epub 2019 Jul 17.

Abstract

Carboxylic acids (CAs) are widespread in Nature. A prominent example is fatty acids, a major constituent of lipids. CAs are potentially economical precursors for bio-based products such as bio-aldehydes and bio-alcohols. However, carboxylate reduction is a challenging chemical transformation due to the thermodynamic stability of carboxylate. Carboxylic acid reductases (CARs), found in bacteria and fungi, offer a good solution to this challenge. These enzymes catalyse the NADPH- and ATP-dependent reduction of aliphatic and aromatic CAs. This review summarised all the protein engineering work that has been done on these versatile biocatalysts to date. The intricate catalytic mechanism and structure of CARs prompted us to first examine their domain architecture to facilitate the subsequent discussion of various protein engineering strategies. This then led to a survey of assays to detect aldehyde formation and to monitor aldenylation activity. Strategies for NADPH and ATP regeneration were also incorporated, as they are deemed vital to developing preparative-scale biocatalytic process and high-throughput screening systems. The objectives of the review are to consolidate CAR engineering research, stimulate interest, discussion or debate, and advance the field of bioreduction.

摘要

羧酸(CA)广泛存在于自然界中。一个突出的例子是脂肪酸,它是脂质的主要成分。CA 是生物基产品(如生物醛和生物醇)的潜在经济前体。然而,由于羧酸盐的热力学稳定性,羧酸盐的还原是一项具有挑战性的化学转化。在细菌和真菌中发现的羧酸还原酶(CARs)为这一挑战提供了一个很好的解决方案。这些酶催化 NADPH 和 ATP 依赖性的脂肪族和芳香族 CA 的还原。本综述总结了迄今为止对这些多功能生物催化剂所做的所有蛋白质工程工作。CARs 复杂的催化机制和结构促使我们首先检查它们的结构域架构,以方便随后讨论各种蛋白质工程策略。这导致了对检测醛形成和监测醛化活性的检测方法的调查。还纳入了 NADPH 和 ATP 再生策略,因为它们被认为对开发制备规模的生物催化过程和高通量筛选系统至关重要。本综述的目的是整合 CAR 工程研究,激发兴趣、讨论或辩论,并推进生物还原领域的发展。

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