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酵母人工酶级联反应中(±)-苯乙二醇的生物合成

Biosynthesis of ()- and ()-Phenylethanediol in Yeast Artificial Enzyme Cascades.

作者信息

Yuan Jifeng, Lukito Benedict Ryan, Li Zhi

机构信息

Department of Chemical and Biomolecular Engineering , National University of Singapore , 4 Engineering Drive 4 , 117585 Singapore.

出版信息

ACS Synth Biol. 2019 Aug 16;8(8):1801-1808. doi: 10.1021/acssynbio.9b00123. Epub 2019 Aug 2.

Abstract

Due to oil depletion and global climate change, sustainable manufacturing of fine chemicals from renewable feedstocks has gained increasing attention in the scientific community. In the present study, we attempted to engineer toward  synthesis of ()- or ()-phenylethanediol, an important pharmaceutical intermediate. More specifically, the biocatalytic cascades contain the following: l-phenylalanine undergoes deamination/decarboxylation to styrene by using phenylalanine ammonia lyase (PAL) and ferulic acid decarboxylase (FDC), followed by -selective epoxidation of styrene to give ()-styrene oxide with styrene monooxygenase (SMO); regioselective hydrolysis of ()-styrene oxide with epoxide hydrolase from HXN-200 (SpEH) or from potato (StEH) gives rise to ()- or ()-phenylethanediol. In this work, we found that the artificial enzyme cascades could be functionally expressed in the heterologous host of . Small-scale shake flask studies revealed that the engineered yeast cell factories produced approximately 100-120 mg/L of ()- or ()-phenylethanediol after 96 h cultivation. To the best of our knowledge, this is the first attempt to explore an artificial route with styrene as an intermediate for producing phenylethanediol in . We envision that our engineering strategy will open a new research field for synthesizing other vicinal diol derived chemicals in yeast.

摘要

由于石油枯竭和全球气候变化,利用可再生原料可持续制造精细化学品在科学界受到越来越多的关注。在本研究中,我们尝试设计合成()-或()-苯乙二醇,一种重要的药物中间体。更具体地说,生物催化级联反应包括以下步骤:L-苯丙氨酸通过苯丙氨酸解氨酶(PAL)和阿魏酸脱羧酶(FDC)进行脱氨/脱羧反应生成苯乙烯,然后苯乙烯通过苯乙烯单加氧酶(SMO)进行 - 选择性环氧化反应生成()-环氧苯乙烷;()-环氧苯乙烷通过来自HXN - 200的环氧水解酶(SpEH)或来自马铃薯的环氧水解酶(StEH)进行区域选择性水解生成()-或()-苯乙二醇。在这项工作中,我们发现人工酶级联反应可以在 的异源宿主中功能性表达。小规模摇瓶研究表明,经过96小时培养后,工程化酵母细胞工厂产生了约100 - 120 mg/L的()-或()-苯乙二醇。据我们所知,这是首次尝试探索以苯乙烯为中间体在 中生产苯乙二醇的人工路线。我们设想我们的工程策略将为在酵母中合成其他邻二醇衍生化学品开辟一个新的研究领域。

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