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内酯 42. 光学活性威士忌内酯异构体的酶法/微生物选择性合成。

Lactones 42. Stereoselective enzymatic/microbial synthesis of optically active isomers of whisky lactone.

机构信息

Department of Chemistry, Wroclaw University of Environmental and Life Sciences, Norwida 25, 50-375 Wroclaw, Poland.

出版信息

Food Chem. 2013 Nov 1;141(1):419-27. doi: 10.1016/j.foodchem.2013.02.106. Epub 2013 Mar 16.

DOI:10.1016/j.foodchem.2013.02.106
PMID:23768375
Abstract

Two different methods, enzyme-mediated reactions and biotrasformations with microorganisms, were applied to obtain optically pure cis- and trans-isomers of whisky lactone 4a and 4b. In the first method, eight alcohol dehydrogenases were investigated as biocatalysts to enantioselective oxidation of racemic erythro- and threo-3-methyloctane-1,4-diols (1a and 1b). Oxidation processes with three of them, alcohol dehydrogenases isolated from horse liver (HLADH) as well as recombinant from Escherichia coli and primary alcohol dehydrogenase (PADH I), were characterized by the highest degree of conversion with moderate enantioselectivity (ee=27-82%) of the reaction. In all enzymatic reactions enantiomerically enriched not naturally occurring isomers of trans-(-)-(4R,5S)-4b or cis-(+)-(4R,5R)-4a were formed preferentially. In the second strategy, based on microbial lactonization of γ-oxoacids, naturally occurring opposite isomers of whisky lactones were obtained. Trans-(+)-(4S,5R)-isomer (ee=99%) of whisky lactone 4b was stereoselectively formed as the only product of biotransformations of 3-methyl-4-oxooctanoic acid (5) catalyzed by Didimospheria igniaria KCH6651, Laetiporus sulphurens AM525, Chaetomium sp.1 KCH6670 and Saccharomyces cerevisiae AM464. Biotransformation of γ-oxoacid 5, in the culture of Beauveria bassiana AM278 and Pycnidiella resinae KCH50 afforded a mixtures of trans-(+)-(4S,5R)-4b with enantiomeric excess ee=99% and cis-(-)-(4S,5S)-4a with enantiomeric excesses ee=77% and ee=45% respectively.

摘要

两种不同的方法,酶介导的反应和微生物的生物转化,被应用于获得光学纯的顺式和反式威士忌内酯 4a 和 4b 异构体。在第一种方法中,研究了八种醇脱氢酶作为生物催化剂,对外消旋的赤式和苏式-3-甲基辛烷-1,4-二醇(1a 和 1b)进行对映选择性氧化。其中三种醇脱氢酶,即马肝醇脱氢酶(HLADH)、重组大肠杆菌醇脱氢酶和伯醇脱氢酶(PADH I)的氧化过程,具有最高的转化率和中等的对映选择性(ee=27-82%)。在所有的酶促反应中,非天然存在的顺式-(+)-(4R,5R)-4a 和反式-(-)-(4R,5S)-4b 对映体富集异构体优先形成。在第二种策略中,基于γ-酮酸的微生物内酯化,获得了天然存在的威士忌内酯的对映异构体。3-甲基-4-氧代辛酸(5)的生物转化由 Didimospheria igniaria KCH6651、Laetiporus sulphurens AM525、Chaetomium sp.1 KCH6670 和 Saccharomyces cerevisiae AM464 催化,仅形成顺式-(+)-(4S,5R)-4b 的立体选择性产物(ee=99%)。γ-酮酸 5 在 Beauveria bassiana AM278 和 Pycnidiella resinae KCH50 的培养物中的生物转化,得到了顺式-(+)-(4S,5R)-4b 与对映体过量 ee=99%的混合物,以及反式-(-)-(4S,5S)-4a 与对映体过量 ee=77%和 ee=45%的混合物。

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