首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Regulation of the Alkane Hydroxylase CYP153 Gene in a Gram-Positive Alkane-Degrading Bacterium Dietzia sp. Strain DQ12-45-1b
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Regulation of the Alkane Hydroxylase CYP153 Gene in a Gram-Positive Alkane-Degrading Bacterium Dietzia sp. Strain DQ12-45-1b

机译:革兰氏阳性烷烃降解细菌Dietzia sp。中烷烃羟化酶CYP153基因的调控。菌株DQ12-45-1b

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摘要

CYP153, one of the most common medium-chain n-alkane hydroxylases belonging to the cytochrome P450 superfamily, is widely expressed in n-alkane-degrading bacteria. CYP153 is also thought to cooperate with AlkB in degrading various n-alkanes. However, the mechanisms regulating the expression of the protein remain largely unknown. In this paper, we studied CYP153 gene transcription regulation by the potential AraC family regulator (CypR) located upstream of the CYP153 gene cluster in a broad-spectrum n-alkane-degrading Gram-positive bacterium, Dietzia sp. strain DQ12-45-1b. We first identified the transcriptional start site and the promoter of the CYP153 gene cluster. Sequence alignment of upstream regions of CYP153 gene clusters revealed high conservation in the −10 and −35 regions in Actinobacteria. Further analysis of the β-galactosidase activity in the CYP153 gene promoter-lacZ fusion cell indicated that the CYP153 gene promoter was induced by n-alkanes comprised of 8 to 14 carbon atoms, but not by derived decanol and decanic acid. Moreover, we constructed a cypR mutant strain and found that the CYP153 gene promoter activities and CYP153 gene transcriptional levels in the mutant strain were depressed compared with those in the wild-type strain in the presence of n-alkanes, suggesting that CypR served as an activator for the CYP153 gene promoter. By comparing CYP153 gene arrangements in Actinobacteria and Proteobacteria, we found that the AraC family regulator is ubiquitously located upstream of the CYP153 gene, suggesting its universal regulatory role in CYP153 gene transcription. We further hypothesize that the observed mode of CYP153 gene regulation is shared by many Actinobacteria.
机译:CYP153是细胞色素P450超家族中最常见的中链正构烷烃羟化酶之一,在降解正构烷烃的细菌中广泛表达。 CYP153也被认为与AlkB合作降解各种正构烷烃。但是,调节该蛋白表达的机制仍然是未知的。在本文中,我们研究了位于广谱正构烷烃降解革兰氏阳性细菌Dietzia sp。中CYP153基因簇上游的潜在AraC家族调节子(CypR)对CYP153基因转录的调节作用。菌株DQ12-45-1b。我们首先确定了CYP153基因簇的转录起始位点和启动子。 CYP153基因簇上游区域的序列比对显示在放线菌的-10和-35区高度保守。对CYP153基因启动子-lacZ融合细胞中β-半乳糖苷酶活性的进一步分析表明,CYP153基因启动子是由包含8至14个碳原子的正构烷烃诱导的,而不是衍生自癸醇和癸酸的诱导。此外,我们构建了一个cypR突变菌株,发现与正链烷存在下的野生型菌株相比,该突变菌株中的CYP153基因启动子活性和CYP153基因转录水平降低了,这表明CypR充当了CYP153基因启动子的激活剂。通过比较放线菌和变形杆菌中的CYP153基因排列,我们发现AraC家族调节子普遍存在于CYP153基因的上游,表明其在CYP153基因转录中的普遍调节作用。我们进一步假设,观察到的CYP153基因调控模式被许多放线菌共有。

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