首页> 外文期刊>Journal of bacteriology >Expression of the Nitroarene Dioxygenase Genes in Comamonas sp. Strain JS765 and Acidovorax sp. Strain JS42 Is Induced by Multiple Aromatic Compounds
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Expression of the Nitroarene Dioxygenase Genes in Comamonas sp. Strain JS765 and Acidovorax sp. Strain JS42 Is Induced by Multiple Aromatic Compounds

机译:硝基芳烃双加氧酶基因在Comamonas sp。中的表达菌株JS765和Acidovorax sp。多种芳香族化合物诱导菌株JS42

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This work reports a genetic analysis of the expression of nitrobenzene dioxygenase (NBDO) in Comamonas sp. strain JS765 and 2-nitrotoluene dioxygenase (2NTDO) in Acidovorax sp. strain JS42. Strains JS765 and JS42 possess identical LysR-type regulatory proteins, NbzR and NtdR, respectively. NbzR/NtdR is homologous to NahR, the positive salicylate-responsive transcriptional activator of the naphthalene degradation genes in Pseudomonas putida G7. The genes encoding NBDO and 2NTDO in each strain are cotranscribed, and transcription starts at the same site within identical promoter regions for each operon. Results from a lacZ reporter gene fusion demonstrated that expression of NBDO and 2NTDO is induced by multiple aromatic compounds, including an array of nitroaromatic compounds (nitrobenzene, 2-, 3-, and 4-nitrotoluene, 2,4- and 2,6-dinitrotoluene, and aminodinitrotoluenes), as well as salicylate and anthranilate. The nitroaromatic compounds appear to be the actual effector molecules. Analysis of β-galactosidase and 2NTDO activities with strain JS42 demonstrated that NtdR was required for induction by all of the inducing compounds, high basal-level expression of 2NTDO, and complementation of a JS42 ntdR null mutant. Complementation with the closely related regulators NagR (from Ralstonia sp. strain U2) and NahR restored only induction by the archetype inducers, salicylate or salicylate and anthranilate, respectively, and did not restore the high basal level of expression of 2NTDO. The mechanism of 2NTDO gene regulation in JS42, and presumably that of NBDO gene regulation in JS765, appear similar to that of NahR-regulated genes in Pseudomonas putida G7. However, NbzR and NtdR appear to have evolved a broader specificity in JS42 and JS765, allowing for recognition of nitroaromatic compounds while retaining the ability to respond to salicylate and anthranilate. NtdR is also the first example of a nitroarene-responsive LysR-type transcriptional activator.
机译:这项工作报告了 Comamonas sp。中硝基苯双加氧酶(NBDO)表达的遗传分析。菌株Acidovorax sp。中的JS765菌株和2-硝基甲苯双加氧酶(2NTDO)。菌株JS42。菌株JS765和JS42分别具有相同的LysR型调节蛋白NbzR和NtdR。 NbzR / NtdR与NahR同源,后者是恶臭假单胞菌Gem7中萘降解基因的阳性水杨酸酯响应转录激活因子。每个菌株中编码NBDO和2NTDO的基因被共转录,并且转录在每个操纵子的相同启动子区域内的相同位点开始。 lacZ 报告基因融合的结果表明,NBDO和2NTDO的表达是由多种芳香族化合物诱导的,包括一系列硝基芳香族化合物(硝基苯,2-,3-和4-硝基甲苯,2, 4-和2,6-二硝基甲苯和氨基二硝基甲苯)以及水杨酸酯和邻氨基苯甲酸酯。硝基芳族化合物似乎是实际的效应分子。用菌株JS42对β-半乳糖苷酶和2NTDO活性的分析表明,所有诱导化合物,2NTDO的高基础水平表达和JS42 ntdR 空突变体的互补都需要NtdR诱导。与密切相关的调节剂NagR(来自 Ralstonia sp。U2株)和NahR的互补只能分别恢复原型诱导物水杨酸酯或水杨酸酯和邻氨基苯甲酸的诱导,而不能恢复高的基础表达水平2NTDO。 JS42中2NTDO基因的调控机制,以及JS765中NBDO基因的调控机制,与恶臭假单胞菌G7中NahR调控的基因相似。但是,NbzR和NtdR在JS42和JS765中似乎发展出了更广泛的特异性,可以识别硝基芳族化合物,同时保留了对水杨酸酯和邻氨基苯甲酸的响应能力。 NtdR也是硝基芳烃响应的LysR型转录激活因子的第一个例子。

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