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假单胞菌中从α-氨基酸产生吡嗪的酶级联反应。

Enzymatic Cascade in Pseudomonas that Produces Pyrazine from α-Amino Acids.

机构信息

Faculty of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Ibaraki, 305-8572, Japan.

出版信息

Chembiochem. 2020 Feb 3;21(3):353-359. doi: 10.1002/cbic.201900448. Epub 2019 Nov 6.

Abstract

Pyrazines are widespread chemical compounds that include pheromones and odors. Herein, a novel mechanism used by Pseudomonas fluorescens SBW25 to biosynthesize monocyclic pyrazines is reported. Heterologous expression of the papABC genes that synthesize the natural α-amino acid 4-aminophenylalanine (4APhe), together with three adjacent papDEF genes of unknown function, in Escherichia coli resulted in the production of 2,5-dimethyl-3,6-bis(4-aminobenzyl)pyrazine (DMBAP), which comprised two symmetrical aminobenzyl moieties derived from 4APhe. It is found that PapD is a novel amino acid C-acetyltransferase, which decarboxylates and transfers acetyl residues to 4APhe, to generate an α-aminoketone, which spontaneously dehydrates and condenses to give dihydro DMBAP. PapF is a novel oxidase in the amine oxidase superfamily that oxidizes dihydro DMBAP to yield the pyrazine ring of DMBAP. These two enzymes constitute a unique mechanism for synthesizing monocyclic pyrazines and might serve as a novel strategy for the enzymatic synthesis of pyrazine derivatives from natural α-amino acids.

摘要

吡嗪是一种广泛存在的化合物,包括信息素和气味。本文报道了荧光假单胞菌 SBW25 生物合成单环吡嗪的一种新机制。在大肠杆菌中异源表达合成天然α-氨基酸 4-氨基苯丙氨酸(4APhe)的 papABC 基因,以及三个相邻的未知功能的 papDEF 基因,导致 2,5-二甲基-3,6-双(4-氨基苄基)吡嗪(DMBAP)的产生,它由两个来自 4APhe 的对称氨基苄基部分组成。研究发现 PapD 是一种新型的氨基酸 C-乙酰基转移酶,它使 4APhe 脱羧并转移乙酰基,生成α-氨基酮,该酮自发脱水缩合生成二氢 DMBAP。PapF 是胺氧化酶超家族中的一种新型氧化酶,它将二氢 DMBAP 氧化生成 DMBAP 的吡嗪环。这两种酶构成了合成单环吡嗪的独特机制,可能为从天然α-氨基酸酶促合成吡嗪衍生物提供一种新策略。

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