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Activation of the catBCA promoter: probing the interaction of CatR and RNA polymerase through in vitro transcription.

机译:catBCA启动子的激活:通过体外转录探究CatR和RNA聚合酶的相互作用。

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The soil bacterium Pseudomonas putida is capable of degrading many aromatic compounds, including benzoate, through catechol as an intermediate. The catabolism of catechol is mediated by the catBCA operon, whose induction requires the pathway intermediate cis,cis-muconate as an inducer and the regulatory protein, CatR. CatR also regulates the plasmid-borne pheBA operon of P. putida PaW85, which is involved in phenol catabolism. We have used an in vitro transcription system to study the roles of CatR, cis,cis-muconate, Escherichia coli RNA polymerase, and promoter sequences in expression of the cat and phe operons. The assay confirmed the requirement of both CatR and cis,cis-muconate for transcript formation. We also examined the in vitro transcription of three site-directed mutants of the catBCA promoter; the results obtained compared favorably with previous in vivo data. The requirement of the alpha subunit of RNA polymerase for expression of the catBCA and the pheBA transcripts was also examined. The C-terminal region of the alpha subunit of RNA polymerase has been implicated in direct protein-protein contact with transcriptional regulatory proteins and/or direct contact with the DNA. We show that the carboxyl terminus of the alpha subunit is required for the expression of the catBCA and the pheBA operons because RNA polymerases with truncated alpha subunits were deficient in activation. Further experiments demonstrated the arginine at position 265 and the asparagine at position 268 of the alpha subunit as possible amino acids involved in activation. On the basis of these and previous results, we propose a model to explain the interaction of the different regulatory components leading to CatR-dependent activation of the catBCA operon.
机译:土壤细菌恶臭假单胞菌能够通过邻苯二酚降解多种芳香族化合物,包括苯甲酸酯。儿茶酚的分解代谢是由catBCA操纵子介导的,其诱导需要通路中间物顺式,顺式-粘康酸酯作为诱导剂和调节蛋白CatR。 CatR还调节恶臭假单胞菌PaW85的质粒携带的pheBA操纵子,该操纵子与苯酚分解代谢有关。我们已经使用了体外转录系统来研究CatR,顺式,顺式粘液,大肠杆菌RNA聚合酶和启动子序列在猫和phe操纵子表达中的作用。该测定证实了转录物形成需要CatR和顺式,顺式-粘康酸酯。我们还检查了catBCA启动子的三个定点突变体的体外转录;获得的结果与以前的体内数据相比具有优势。还检查了RNA聚合酶α亚基对catBCA和pheBA转录物表达的要求。 RNA聚合酶的α亚基的C端区域与蛋白质与转录调节蛋白的直接接触和/或与DNA的直接接触有关。我们证明了catBCA和pheBA操纵子的表达需要alpha亚基的羧基末端,因为具有截短的alpha亚基的RNA聚合酶在激活中缺乏。进一步的实验证明了α亚基在265位的精氨酸和268位的天冬酰胺是参与激活的可能氨基酸。基于这些结果和先前的结果,我们提出了一个模型来解释导致catBCA操纵子的CatR依赖性激活的不同调控成分之间的相互作用。

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