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一个用于生产 3-羟基酸的平台途径为 3-羟基-γ-丁内酯的生物合成提供了一条路线。

A platform pathway for production of 3-hydroxyacids provides a biosynthetic route to 3-hydroxy-γ-butyrolactone.

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Nat Commun. 2013;4:1414. doi: 10.1038/ncomms2418.

Abstract

The replacement of petroleum feedstocks with biomass to produce platform chemicals requires the development of appropriate conversion technologies. 3-Hydroxy-γ-butyrolactone has been identified as one such chemical; however, there are no naturally occurring biosynthetic pathways for this molecule or its hydrolyzed form, 3,4-dihydroxybutyric acid. Here we design a novel pathway to produce various chiral 3-hydroxyacids, including 3,4-dihydroxybutyric acid, consisting of enzymes that condense two acyl-CoAs, stereospecifically reduce the resulting β-ketone and hydrolyze the CoA thioester to release the free acid. Acetyl-CoA serves as one substrate for the condensation reaction, whereas the second is produced intracellularly by a pathway enzyme that converts exogenously supplied organic acids. Feeding of butyrate, isobutyrate and glycolate results in the production of 3-hydroxyhexanoate, 3-hydroxy-4-methylvalerate and 3,4-dihydroxybutyric acid+3-hydroxy-γ-butyrolactone, respectively, molecules with potential uses in applications from materials to medicines. We also unexpectedly observe the condensation reaction resulting in the production of the 2,3-dihydroxybutyric acid isomer, a potential value-added monomer.

摘要

用生物质替代石油原料来生产平台化学品需要开发合适的转化技术。3-羟基-γ-丁内酯就是这样一种化学品;然而,这种分子或其水解形式 3,4-二羟基丁酸没有天然存在的生物合成途径。在这里,我们设计了一种生产各种手性 3-羟基酸的新途径,包括 3,4-二羟基丁酸,其中包括缩合两个酰基辅酶 A、立体特异性还原所得β-酮和水解 CoA 硫酯以释放游离酸的酶。乙酰辅酶 A 是缩合反应的一种底物,而另一种底物则由一种途径酶产生,该酶将外源供应的有机酸转化为细胞内物质。丁酸、异丁酸和甘醇酸的进料分别导致 3-羟基己酸、3-羟基-4-甲基戊酸和 3,4-二羟基丁酸+3-羟基-γ-丁内酯的生成,这些分子在从材料到药物的应用中具有潜在用途。我们还意外地观察到缩合反应导致 2,3-二羟基丁酸异构体的生成,这是一种潜在的增值单体。

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