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埃文斯固氮弧菌中的需氧苯甲酰辅酶A(CoA)分解代谢途径:3,4-脱氢己二酰辅酶A半醛脱氢酶对环裂解产物的转化

Aerobic benzoyl-coenzyme A (CoA) catabolic pathway in Azoarcus evansii: conversion of ring cleavage product by 3,4-dehydroadipyl-CoA semialdehyde dehydrogenase.

作者信息

Gescher Johannes, Ismail Wael, Olgeschläger Ellen, Eisenreich Wolfgang, Wörth Jürgen, Fuchs Georg

机构信息

Mikrobiologie, Institut für Biologie II, Universität Freiburg, Schänzlestrasse 1, D-79104 Freiburg, Germany.

出版信息

J Bacteriol. 2006 Apr;188(8):2919-27. doi: 10.1128/JB.188.8.2919-2927.2006.

Abstract

Benzoate, a strategic intermediate in aerobic aromatic metabolism, is metabolized in various bacteria via an unorthodox pathway. The intermediates of this pathway are coenzyme A (CoA) thioesters throughout, and ring cleavage is nonoxygenolytic. The fate of the ring cleavage product 3,4-dehydroadipyl-CoA semialdehyde was studied in the beta-proteobacterium Azoarcus evansii. Cell extracts contained a benzoate-induced, NADP(+)-specific aldehyde dehydrogenase, which oxidized this intermediate. A postulated putative long-chain aldehyde dehydrogenase gene, which might encode this new enzyme, is located on a cluster of genes encoding enzymes and a transport system required for aerobic benzoate oxidation. The gene was expressed in Escherichia coli, and the maltose-binding protein-tagged enzyme was purified and studied. It is a homodimer composed of 54 kDa (without tag) subunits and was confirmed to be the desired 3,4-dehydroadipyl-CoA semialdehyde dehydrogenase. The reaction product was identified by nuclear magnetic resonance spectroscopy as the corresponding acid 3,4-dehydroadipyl-CoA. Hence, the intermediates of aerobic benzoyl-CoA catabolic pathway recognized so far are benzoyl-CoA; 2,3-dihydro-2,3-dihydroxybenzoyl-CoA; 3,4-dehydroadipyl-CoA semialdehyde plus formate; and 3,4-dehydroadipyl-CoA. The further metabolism is thought to lead to 3-oxoadipyl-CoA, the intermediate at which the conventional and the unorthodox pathways merge.

摘要

苯甲酸酯是需氧芳香族代谢中的一种关键中间体,在多种细菌中通过一条非传统途径进行代谢。该途径的中间体始终都是辅酶A(CoA)硫酯,且环裂解是非氧解性的。在β-变形菌埃文斯固氮弧菌中研究了环裂解产物3,4-脱氢己二酰-CoA半醛的命运。细胞提取物含有一种由苯甲酸酯诱导的、对NADP(+)具有特异性的醛脱氢酶,该酶可氧化这种中间体。一个推测的假定长链醛脱氢酶基因可能编码这种新酶,它位于一组编码需氧苯甲酸氧化所需的酶和转运系统的基因簇上。该基因在大肠杆菌中表达,纯化并研究了带有麦芽糖结合蛋白标签的酶。它是由54 kDa(无标签)亚基组成的同型二聚体,经证实是所需的3,4-脱氢己二酰-CoA半醛脱氢酶。通过核磁共振光谱鉴定反应产物为相应的酸3,4-脱氢己二酰-CoA。因此,迄今为止所识别的需氧苯甲酰-CoA分解代谢途径的中间体为苯甲酰-CoA;2,3-二氢-2,3-二羟基苯甲酰-CoA;3,4-脱氢己二酰-CoA半醛加甲酸;以及3,4-脱氢己二酰-CoA。进一步的代谢被认为会导致3-氧代己二酰-CoA,这是传统途径和非传统途径合并的中间体。

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