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首页> 外文期刊>Applied and Environmental Microbiology >Nucleotide sequence analysis of genes encoding a toluene/benzene-2-monooxygenase from Pseudomonas sp. strain JS150.
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Nucleotide sequence analysis of genes encoding a toluene/benzene-2-monooxygenase from Pseudomonas sp. strain JS150.

机译:假单胞菌(Pseudomonas sp。)编码甲苯/苯-2-单加氧酶的基因的核苷酸序列分析。菌株JS150。

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It was previously shown by others that Pseudomonas sp. strain JS150 metabolizes benzene and alkyl- and chloro-substituted benzenes by using dioxygenase-initiated pathways coupled with multiple downstream metabolic pathways to accommodate catechol metabolism. By cloning genes encoding benzene-degradative enzymes, we found that strain JS150 also carries genes for a toluene/benzene-2-monooxygenase. The gene cluster encoding a 2-monooxygenase and its cognate regulator was cloned from a plasmid carried by strain JS150. Oxygen (18O2) incorporation experiments using Pseudomonas aeruginosa strains that carried the cloned genes confirmed that toluene hydroxylation was catalyzed through an authentic monooxygenase reaction to yield ortho-cresol. Regions encoding the toluene-2-monooxygenase and regulatory gene product were localized in two regions of the cloned fragment. The nucleotide sequence of the toluene/benzene-2-monooxygenase locus was determined. Analysis of this sequence revealed six open reading frames that were then designated tbmA, tbmB, tbmC, tbmD, tbmE, and tbmF. The deduced amino acid sequences for these genes showed the presence of motifs similar to well-conserved functional domains of multicomponent oxygenases. This analysis allowed the tentative identification of two terminal oxygenase subunits (TbmB and TbmD) and an electron transport protein (TbmF) for the monooxygenase enzyme. In addition to these gene products, all the tbm polypeptides shared significant homology with protein components from other bacterial multicomponent monooxygenases. Overall, the tbm gene products shared greater similarity with polypeptides from the phenol hydroxylases of Pseudomonas putida CF600, P35X, and BH than with those from the toluene monooxygenases of Pseudomonas mendocina KR1 and Burkholderia (Pseudomonas) pickettii PKO1. The relationship found between the phenol hydroxylases and a toluene-2-monooxygenase, characterized in this study for the first time at the nucleotide sequence level, suggested that DNA probes used for surveys of environmental populations should be carefully selected to reflect DNA sequences corresponding to the metabolic pathway of interest.
机译:先前已被其他人证明假单胞菌属。菌株JS150通过使用双加氧酶引发的途径以及多个下游代谢途径来适应儿茶酚代谢,从而代谢苯以及烷基和氯取代的苯。通过克隆编码苯降解酶的基因,我们发现JS150菌株还带有甲苯/苯-2-单加氧酶的基因。从菌株JS150携带的质粒中克隆编码2-单加氧酶及其同源调控子的基因簇。使用携带克隆基因的铜绿假单胞菌菌株进行的氧气(18O2)掺入实验证实,甲苯的羟基化反应是通过真实的单加氧酶反应催化而产生的。编码甲苯-2-单加氧酶和调节基因产物的区域位于克隆的片段的两个区域中。确定了甲苯/苯-2-单加氧酶基因座的核苷酸序列。对该序列的分析揭示了六个开放阅读框,然后将其命名为tbmA,tbmB,tbmC,tbmD,tbmE和tbmF。这些基因的推导的氨基酸序列显示出与多组分加氧酶的保守的功能域相似的基序。该分析允许对单加氧酶的两个末端加氧酶亚基(TbmB和TbmD)和电子转运蛋白(TbmF)进行初步鉴定。除这些基因产物外,所有tbm多肽均与其他细菌多组分单加氧酶的蛋白组分具有显着同源性。总体而言,tbm基因产物与恶臭假单胞菌CF600,P35X和BH的酚羟化酶的多肽相比,与门氏假单胞菌KR1和伯克霍尔德氏菌(Pseudomonas)pickettii PKO1的甲苯单加氧酶具有更大的相似性。在这项研究中首次在核苷酸序列水平上表征了酚羟化酶和甲苯-2-单加氧酶之间的关系,这建议应仔细选择用于环境种群调查的DNA探针,以反映与该种群相对应的DNA序列。感兴趣的代谢途径。

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