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反硝化施氏假单胞菌中铜酶一氧化二氮还原酶结构基因的分子克隆、异源表达及一级结构

Molecular cloning, heterologous expression, and primary structure of the structural gene for the copper enzyme nitrous oxide reductase from denitrifying Pseudomonas stutzeri.

作者信息

Viebrock A, Zumft W G

机构信息

Lehrstuhl für Mikrobiologie, Universität Karlsruhe, Federal Republic of Germany.

出版信息

J Bacteriol. 1988 Oct;170(10):4658-68. doi: 10.1128/jb.170.10.4658-4668.1988.

Abstract

The nos genes of Pseudomonas stutzeri are required for the anaerobic respiration of nitrous oxide, which is part of the overall denitrification process. A nos-coding region of ca. 8 kilobases was cloned by plasmid integration and excision. It comprised nosZ, the structural gene for the copper-containing enzyme nitrous oxide reductase, genes for copper chromophore biosynthesis, and a supposed regulatory region. The location of the nosZ gene and its transcriptional direction were identified by using a series of constructs to transform Escherichia coli and express nitrous oxide reductase in the heterologous background. Plasmid pAV5021 led to a nearly 12-fold overexpression of the NosZ protein compared with that in the P. stutzeri wild type. The complete sequence of the nosZ gene, comprising 1,914 nucleotides, together with 282 nucleotides of 5'-flanking sequences and 238 nucleotides of 3'-flanking sequences was determined. An open reading frame coded for a protein of 638 residues (Mr, 70,822) including a presumed signal sequence of 35 residues for protein export. The presequence is in conformity with the periplasmic location of the enzyme. Another open reading frame of 2,097 nucleotides, in the opposite transcriptional direction to that of nosZ, was excluded by several criteria from representing the coding region for nitrous oxide reductase. Codon usage for nosZ of P. stutzeri showed a high G + C content in the degenerate codon position (83.9% versus an average of 60.2%) and relaxed codon usage for the Glu codon, characteristic features of Pseudomonas genes from other species. E. coli nitrous oxide reductase was purified to homogeneity. It had the Mr of the P. stutzeri enzyme but lacked the copper chromophore.

摘要

斯氏假单胞菌的nos基因是一氧化二氮厌氧呼吸所必需的,一氧化二氮厌氧呼吸是整个反硝化过程的一部分。通过质粒整合和切除克隆了一个约8千碱基的nos编码区。它包括nosZ,即含铜酶一氧化二氮还原酶的结构基因、铜发色团生物合成基因以及一个假定的调控区。通过使用一系列构建体转化大肠杆菌并在异源背景中表达一氧化二氮还原酶,确定了nosZ基因的位置及其转录方向。与斯氏假单胞菌野生型相比,质粒pAV5021导致NosZ蛋白的表达量几乎增加了12倍。确定了nosZ基因的完整序列,包括1914个核苷酸,以及5'侧翼序列的282个核苷酸和3'侧翼序列的238个核苷酸。一个开放阅读框编码一个638个残基的蛋白质(Mr,70822),包括一个用于蛋白质输出的35个残基的假定信号序列。前序列与该酶的周质定位一致。另一个2097个核苷酸的开放阅读框,其转录方向与nosZ相反,根据几个标准被排除在一氧化二氮还原酶的编码区之外。斯氏假单胞菌nosZ的密码子使用情况显示,在简并密码子位置的G + C含量较高(83.9%,而平均为60.2%),并且对Glu密码子的密码子使用较为宽松,这是其他物种假单胞菌基因的特征。大肠杆菌一氧化二氮还原酶被纯化至同质。它具有斯氏假单胞菌酶的Mr,但缺乏铜发色团。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/656d/211505/b5d94f47e2b9/jbacter00188-0243-a.jpg

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