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首页> 外文期刊>AMB Express >Metabolic engineering of Escherichia coli to high efficient synthesis phenylacetic acid from phenylalanine
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Metabolic engineering of Escherichia coli to high efficient synthesis phenylacetic acid from phenylalanine

机译:大肠杆菌的代谢工程,从苯丙氨酸高效合成苯乙酸

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摘要

Phenylacetic acid (PAA) is a fine chemical with a high industrial demand for its widespread uses. Whereas, microorganic synthesis of PAA is impeded by the formation of by-product phenethyl alcohol due to quick, endogenous, and superfluous conversion of aldehydes to their corresponding alcohols, which resulted in less conversation of PAA from aldehydes. In this study, an Escherichia coli K-12 MG1655 strain with reduced aromatic aldehyde reduction (RARE) that does duty for a platform for aromatic aldehyde biosynthesis was used to prompt more PAA biosynthesis. We establish a microbial biosynthetic pathway for PAA production from the simple substrate phenylalanine in E. coli with heterologous coexpression of aminotransferase (ARO8), keto acid decarboxylase (KDC) and aldehyde dehydrogenase H (AldH) gene. It was found that PAA transformation yield was up to ~94% from phenylalanine in E. coli and there was no by-product phenethyl alcohol was detected. Our results reveal the high efficiency of the RARE strain for production of PAA and indicate the potential industrial applicability of this microbial platform for PAA biosynthesis.
机译:苯乙酸(PAA)是一种精细化学品,具有广泛的工业用途。然而,由于醛向其相应醇的快速,内源性和多余的转化,副产物苯乙醇的形成阻碍了PAA的微生物合成,这导致PAA与醛之间的交换减少。在这项研究中,使用具有减少的芳香醛还原(RARE)功能的大肠杆菌K-12 MG1655菌株作为芳香醛生物合成的平台,它被用来促进PAA的生物合成。我们建立了一种简单的底物苯丙氨酸在大肠杆菌中与氨基转移酶(ARO8),酮酸脱羧酶(KDC)和醛脱氢酶H(AldH)基因的异源共表达的PAA生产的微生物生物合成途径。发现在大肠杆菌中,苯丙氨酸的PAA转化率高达〜94%,并且未检测到副产物苯乙醇。我们的结果揭示了RARE菌株用于生产PAA的高效率,并表明了该微生物平台用于PAA生物合成的潜在工业适用性。

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