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来自假单胞菌属菌株NCIB 9816的萘双加氧酶组分NADH-铁氧还蛋白NAP还原酶的纯化及性质

Purification and properties of NADH-ferredoxinNAP reductase, a component of naphthalene dioxygenase from Pseudomonas sp. strain NCIB 9816.

作者信息

Haigler B E, Gibson D T

机构信息

Center for Applied Microbiology, University of Texas, Austin 78712.

出版信息

J Bacteriol. 1990 Jan;172(1):457-64. doi: 10.1128/jb.172.1.457-464.1990.

Abstract

Cells of Pseudomonas sp. strain NCIB 9816, after growth with naphthalene or salicylate, contain a multicomponent enzyme system that oxidizes naphthalene to cis-(1R,2S)-dihydroxy-1,2-dihydronaphthalene. We purified one of these components to homogeneity and found it to be an iron-sulfur flavoprotein that loses the flavin cofactor during purification. Dialysis against flavin adenine dinucleotide (FAD) showed that the enzyme bound 1 mol of FAD per mol of enzyme protein. The enzyme consisted of a single polypeptide with an apparent molecular weight of 36,300. The purified protein contained 1.8 g-atoms of iron and 2.0 g-atoms of acid-labile sulfur and showed absorption maxima at 278, 340, 420, and 460 nm, with a broad shoulder at 540 nm. The purified enzyme catalyzed the reduction of cytochrome c, dichlorophenolindophenol, Nitro Blue Tetrazolium, and ferricyanide. These activities were enhanced in the presence of added FAD. The ability of the enzyme to catalyze the reduction of the ferredoxin involved in naphthalene reduction and other electron acceptors indicates that it functions as an NAD(P)H-oxidoreductase in the naphthalene dioxygenase system. The results suggest that naphthalene dioxygenase requires two proteins with three redox groups to transfer electrons from NADH to the terminal oxygenase.

摘要

假单胞菌属菌株NCIB 9816的细胞在用萘或水杨酸盐培养后,含有一种多组分酶系统,该系统可将萘氧化为顺式-(1R,2S)-二羟基-1,2-二氢萘。我们将其中一种组分纯化至同质,发现它是一种铁硫黄素蛋白,在纯化过程中会失去黄素辅因子。用黄素腺嘌呤二核苷酸(FAD)进行透析表明,该酶每摩尔酶蛋白结合1摩尔FAD。该酶由一条表观分子量为36,300的单一多肽组成。纯化后的蛋白质含有1.8克原子的铁和2.0克原子的酸不稳定硫,在278、340、420和460纳米处有吸收最大值,在540纳米处有一个宽肩峰。纯化后的酶催化细胞色素c、二氯酚靛酚、硝基蓝四氮唑和铁氰化物的还原。在添加FAD的情况下,这些活性会增强。该酶催化参与萘还原的铁氧还蛋白和其他电子受体还原的能力表明,它在萘双加氧酶系统中作为NAD(P)H氧化还原酶发挥作用。结果表明,萘双加氧酶需要两种具有三个氧化还原基团的蛋白质,才能将电子从NADH转移到末端加氧酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bc8/208452/d01904f4cc1e/jbacter01043-0482-a.jpg

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