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鞘氨醇单胞菌属菌株RW1中二噁英双加氧酶的遗传分析:分解代谢基因分散在基因组上。

Genetic analysis of dioxin dioxygenase of Sphingomonas sp. Strain RW1: catabolic genes dispersed on the genome.

作者信息

Armengaud J, Happe B, Timmis K N

机构信息

Division of Microbiology, GBF-National Research Centre for Biotechnology, Braunschweig, Germany.

出版信息

J Bacteriol. 1998 Aug;180(15):3954-66. doi: 10.1128/JB.180.15.3954-3966.1998.

Abstract

The dioxin dioxygenase of Sphingomonas sp. strain RW1 activates dibenzo-p-dioxin and dibenzofuran for further metabolism by introducing two atoms of oxygen at a pair of vicinal carbon atoms, one of which is involved in one of the bridges between the two aromatic rings, i.e., an angular dioxygenation. The dxnA1 and dxnA2 cistrons encoding this dioxygenase have been cloned and shown to be located just upstream of a hydrolase gene which specifies an enzyme involved in the subsequent step of the dibenzofuran biodegradative pathway. Genes encoding the electron supply system of the dioxygenase are not clustered with the dioxygenase gene but rather are located on two other distinct and separate genome segments. Moreover, whereas expression of dxnA1A2 is modulated according to the available carbon source, expression of the dbfB gene encoding the ring cleavage enzyme of the dibenzofuran pathway, which is located in the neighborhood of dxnA1A2 but oriented in the opposite direction, is constitutive. The scattering of genes for the component proteins of dioxin dioxygenase system around the genome of Sphingomonas sp. strain RW1, and the differential expression of dioxin pathway genes, is unusual and contrasts with the typical genetic organization of catabolic pathways where component cistrons tend to be clustered in multicistronic transcriptional units. The sequences of the alpha and beta subunits of the dioxin dioxygenase exhibit only weak similarity to other three component dioxygenases, but some motifs such as the Fe(II) binding site and the [2Fe-2S] cluster ligands are conserved. Dioxin dioxygenase activity in Escherichia coli cells containing the cloned dxnA1A2 gene was achieved only through coexpression of the cognate electron supply system from RW1. Under these conditions, exclusively angular dioxygenation of dibenzofuran and dibenzo-p-dioxin was obtained. The dioxin dioxygenase was not active in E. coli cells coexpressing a class IIB electron supply system. In the course of the isolation of the dxnA1 and dxnA2 cistrons, a number of other catabolic genes dispersed over different genome segments were identified, which may indicate greater catabolic potential than was previously suspected. This finding is consistent with the catabolic versatility of members of the genus Sphingomonas, which is becoming increasingly evident, and may indicate a less well evolved and regulated but more dynamic genetic organization in this organism than is the case for better-studied pathways in organisms such as Pseudomonas species.

摘要

鞘氨醇单胞菌属菌株RW1的二噁英双加氧酶通过在一对相邻碳原子上引入两个氧原子来激活二苯并 - p - 二噁英和二苯并呋喃,以便进一步代谢,其中一个碳原子参与两个芳香环之间的一个桥键,即角向双加氧反应。编码这种双加氧酶的dxnA1和dxnA2顺反子已被克隆,并显示位于一个水解酶基因的上游,该水解酶基因所指定的酶参与二苯并呋喃生物降解途径的后续步骤。编码双加氧酶电子供应系统的基因并不与双加氧酶基因聚集在一起,而是位于另外两个不同且独立的基因组片段上。此外,虽然dxnA1A2的表达根据可用碳源进行调节,但位于dxnA1A2附近但方向相反的编码二苯并呋喃途径环裂解酶的dbfB基因的表达却是组成型的。二噁英双加氧酶系统组成蛋白的基因在鞘氨醇单胞菌属菌株RW1的基因组中分散分布,以及二噁英途径基因的差异表达是不寻常的,这与分解代谢途径的典型遗传组织形成对比,在典型遗传组织中,组成顺反子倾向于聚集在多顺反子转录单元中。二噁英双加氧酶的α和β亚基序列与其他三组分双加氧酶仅表现出微弱的相似性,但一些基序如Fe(II)结合位点和[2Fe - 2S]簇配体是保守的。含有克隆的dxnA1A2基因的大肠杆菌细胞中的二噁英双加氧酶活性仅通过共表达来自RW1的同源电子供应系统才能实现。在这些条件下,仅获得了二苯并呋喃和二苯并 - p - 二噁英的角向双加氧反应。二噁英双加氧酶在共表达IIB类电子供应系统的大肠杆菌细胞中没有活性。在分离dxnA1和dxnA2顺反子的过程中,鉴定出了许多分散在不同基因组片段上的其他分解代谢基因,这可能表明其分解代谢潜力比以前怀疑的更大。这一发现与鞘氨醇单胞菌属成员的分解代谢多功能性一致,这种多功能性越来越明显,并且可能表明该生物体中的遗传组织比诸如假单胞菌属等生物体中研究得更好的途径进化程度更低、调控更少,但更具动态性。

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