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恶臭假单胞菌氧化萘的初始反应。

Initial reactions in the oxidation of naphthalene by Pseudomonas putida.

作者信息

Jeffrey A M, Yeh H J, Jerina D M, Patel T R, Davey J F, Gibson D T

出版信息

Biochemistry. 1975 Feb 11;14(3):575-84. doi: 10.1021/bi00674a018.

Abstract

A strain of Pseudomonas putida that can utilize naphthalene as its sole source of carbon and energy was isolated from soil. A mutant strain of this organism, P. putida 119, when grown on glucose in the presence of naphthalene, accumulates optically pure (+)-cis-1(R),2(S)-dihydroxy-1,2-dihydronaphthalene in the culture medium. The cis relative stereochemistry in this molecule was established by nuclear magnetic resonance spectrometry. Radiochemical trapping experiments established that this cis dihydrodiol is an intermediate in the metabolism of naphthalene by P. Fluorescens (formerly ATCC, 17483), P. putida (ATCC, 17484), and a Pseudomonas species (NCIB 9816), as well as the parent strain of P. putida described in this report. Formation of the cis dihydrodiol is catalyzed by a dioxygenase which requires either NADH or NADPH as an electron donor. A double label procedure is described for determining the origin of oxygen in the cis dihydrodiol under conditions where this metabolite would not normally accumulate. Several aromatic hydrocarbons are oxidized by cell extracts prepared from naphthalene-grown cells of P. putida. The cis dihydrodiol is converted to 1,2-dihydroxynaphthalene by an NAD+-dependent dehydrogenase. This enzyme is specific for the (+) isomer of the dihydrodiol and shows a primary isotope effect when the dihydrodiol is substituted at C-2 with deuterium.

摘要

从土壤中分离出了一种能够以萘作为唯一碳源和能源的恶臭假单胞菌菌株。该菌株的一个突变株恶臭假单胞菌119,当在萘存在的情况下于葡萄糖上生长时,会在培养基中积累光学纯的(+)-顺式-1(R),2(S)-二羟基-1,2-二氢萘。该分子中的顺式相对立体化学结构通过核磁共振光谱法得以确定。放射化学捕获实验证实,这种顺式二氢二醇是荧光假单胞菌(原美国典型培养物保藏中心,17483)、恶臭假单胞菌(美国典型培养物保藏中心,17484)、一种假单胞菌属物种(英国国家工业生物研究所9816)以及本报告中所述恶臭假单胞菌亲本菌株代谢萘的中间产物。顺式二氢二醇的形成由一种双加氧酶催化,该双加氧酶需要NADH或NADPH作为电子供体。描述了一种双标记方法,用于在该代谢产物通常不会积累的条件下确定顺式二氢二醇中氧的来源。几种芳香烃可被从在萘上生长的恶臭假单胞菌细胞制备的细胞提取物氧化。顺式二氢二醇通过一种依赖NAD+的脱氢酶转化为1,2-二羟基萘。这种酶对二氢二醇的(+)异构体具有特异性,并且当二氢二醇在C-2位被氘取代时表现出一级同位素效应。

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