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多酶丙酮酸去除系统用于增强酮的()-选择性还原胺化反应。 (注:括号部分原文缺失具体内容)

Multi-enzyme pyruvate removal system to enhance ()-selective reductive amination of ketones.

作者信息

Zhang Jinhua, Zhao Yanshu, Li Chao, Song Hao

机构信息

Frontier Science Center for Synthetic Biology, Key Laboratory of Systems Bioengineering (MOE), School of Chemical Engineering and Technology, Tianjin University Tianjin 300350 P. R. China

出版信息

RSC Adv. 2020 Aug 5;10(48):28984-28991. doi: 10.1039/d0ra06140a. eCollection 2020 Aug 3.

Abstract

Biocatalytic transamination is widely used in industrial production of chiral chemicals. Here, we constructed a novel multi-enzyme system to promote the conversion of the amination reaction. Firstly, we constructed the ArR-ωTA/TdcE/FDH/LDH multi-enzyme system, by combination of ()-selective ω-transaminase derived from sp. (ArR-ωTA), formate dehydrogenase (FDH) derived from , formate acetyltransferase (TdcE) and lactate dehydrogenase (LDH) derived from MG1655. This multi-enzyme system was used to efficiently remove the by-product pyruvate by TdcE and LDH to facilitate the transamination reaction. The TdcE/FDH pathway was found to dominate the by-product pyruvate removal in the transamination reaction. Secondly, we optimized the reaction conditions, including d-alanine, DMSO, and pyridoxal phosphate (PLP) with different concentration of 2-pentanone (as a model substrate). Thirdly, by using the ArR-ωTA/TdcE/FDH/LDH system, the conversions of 2-pentanone, 4-phenyl-2-butanone and cyclohexanone were 84.5%, 98.2% and 79.3%, respectively.

摘要

生物催化转氨作用在手性化学品的工业生产中被广泛应用。在此,我们构建了一种新型多酶系统以促进胺化反应的转化。首先,我们通过将来源于sp.的()-选择性ω-转氨酶(ArR-ωTA)、来源于的甲酸脱氢酶(FDH)、甲酸乙酰转移酶(TdcE)和来源于MG1655的乳酸脱氢酶(LDH)组合,构建了ArR-ωTA/TdcE/FDH/LDH多酶系统。该多酶系统用于通过TdcE和LDH有效去除副产物丙酮酸,以促进转氨反应。发现TdcE/FDH途径在转氨反应中主导副产物丙酮酸的去除。其次,我们优化了反应条件,包括不同浓度2-戊酮(作为模型底物)下的d-丙氨酸、二甲基亚砜和磷酸吡哆醛(PLP)。第三,通过使用ArR-ωTA/TdcE/FDH/LDH系统,2-戊酮、4-苯基-2-丁酮和环己酮的转化率分别为84.5%、98.2%和79.3%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7b0/9055928/8f400a970986/d0ra06140a-f1.jpg

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