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反硝化β-变形菌菌株HxN1对二乙醚进行厌氧降解的代谢产物。

Metabolites of the anaerobic degradation of diethyl ether by denitrifying betaproteobacterium strain HxN1.

作者信息

Mitschke Nico, Jarling René, Rabus Ralf, Christoffers Jens, Wilkes Heinz

机构信息

Institut für Chemie und Biologie des Meeres (ICBM), Carl von Ossietzky Universität Oldenburg, 26111 Oldenburg, Germany.

Institut für Chemie, Carl von Ossietzky Universität Oldenburg, 26111 Oldenburg, Germany.

出版信息

Org Biomol Chem. 2020 Sep 23;18(36):7098-7109. doi: 10.1039/d0ob01419b.

DOI:10.1039/d0ob01419b
PMID:32897282
Abstract

The constitutions of five metabolites formed during co-metabolic, anaerobic degradation of diethyl ether by the denitrifying betaproteobacterium Aromatoleum sp. strain HxN1 were elucidated by comparison of mass spectrometric and gas chromatographic data with those of synthetic reference standards. Furthermore, the absolute configurations of two stereogenic centers in the metabolites were established. Based on these results a degradation pathway for diethyl ether by Aromatoleum sp. HxN1 analogous to that of n-hexane is proposed. Synthesis of both enantiomers of methyl (E)-4-ethoxy-2-pentenoate was accomplished by etherification of ethyl (R)- or (S)-lactate, followed by hydrolysis of the ester group and reduction to furnish 2-ethoxy-1-propanol. The primary alcohol was converted by a Swern oxidation followed by a Horner-Wadsworth-Emmons reaction to methyl (E)-4-ethoxy-2-pentenoate that was finally hydrogenated to methyl 4-ethoxypentanoate. Methyl (S)-4-ethoxy-3-oxopentanoate was prepared by conversion of (S)-2-ethoxypropanoyl chloride with Meldrum's acid. Reduction of the resulting β-oxoester with NaBH4 or baker's yeast gave both diastereoisomers of methyl 4-ethoxy-3-hydroxypentanoate. The stereocenter at C-3 of the main diastereoisomer produced with baker's yeast was determined by Mosher ester analysis to be (R)-configurated. Dimethyl 2-(1-ethoxyethyl)succinate was prepared by Michael addition of nitroethane to diethyl maleate, followed by conjugate addition of sodium ethanolate, hydrolysis and esterification with diazomethane.

摘要

通过将质谱和气相色谱数据与合成参考标准品的数据进行比较,阐明了反硝化β-变形菌芳香油杆菌属菌株HxN1在共代谢厌氧降解二乙醚过程中形成的五种代谢物的结构。此外,还确定了代谢物中两个立体中心的绝对构型。基于这些结果,提出了芳香油杆菌属菌株HxN1对二乙醚的降解途径,该途径类似于正己烷的降解途径。通过(R)-或(S)-乳酸乙酯的醚化反应,接着酯基水解和还原反应制备2-乙氧基-1-丙醇,从而完成了(E)-4-乙氧基-2-戊烯酸甲酯两种对映体的合成。通过斯文氧化反应将伯醇转化,接着进行霍纳尔-沃兹沃思-埃蒙斯反应,得到(E)-4-乙氧基-2-戊烯酸甲酯,最终将其氢化得到4-乙氧基戊酸甲酯。通过(S)-2-乙氧基丙酰氯与丙二酸亚异丙酯反应制备(S)-4-乙氧基-3-氧代戊酸甲酯。用硼氢化钠或面包酵母还原得到的β-氧代酯,得到4-乙氧基-3-羟基戊酸甲酯的两种非对映异构体。通过莫舍尔酯分析确定,用面包酵母产生的主要非对映异构体在C-3处的立体中心为(R)-构型。通过硝基乙烷对马来酸二乙酯的迈克尔加成反应制备2-(1-乙氧基乙基)琥珀酸二甲酯,接着进行乙醇钠的共轭加成反应、水解反应,并用重氮甲烷进行酯化反应。

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