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首页> 外文期刊>Molecular Microbiology >DNASE I FOOTPRINTING, DNA BENDING AND IN VITRO TRANSCRIPTION ANALYSES OF CLCR AND CATR INTERACTIONS WITH THE CLCABD PROMOTER - EVIDENCE OF A CONSERVED TRANSCRIPTIONAL ACTIVATION MECHANISM
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DNASE I FOOTPRINTING, DNA BENDING AND IN VITRO TRANSCRIPTION ANALYSES OF CLCR AND CATR INTERACTIONS WITH THE CLCABD PROMOTER - EVIDENCE OF A CONSERVED TRANSCRIPTIONAL ACTIVATION MECHANISM

机译:DNASE I的印迹,DNA弯曲和与CLCABD启动子的CLCR和CATR相互作用的体外转录分析-保守的转录激活机制的证据

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In Pseudomonas putida, benzoate and 3-chlorobenzoate are converted to catechol and 3-chlorocatechol, respectively, which are then catabolized to tricarboxylic acid cycle intermediates via the catBCA and clcABD pathways. The catBCA and clcABD operons are regulated by homologous transcriptional activators CatR and ClcR. Previous studies have demonstrated that in addition to sequence similarities, CatR and ClcR share functional similarities which allow catR to complement clcR. In this study, we demonstrate that CatR activates the clcABD promoter in vitro without inducer, but more transcript is produced when inducer is added. DNase I footprinting and DNA-bending analyses demonstrate that CatR binds to and bends the clcABD promoter to the same angle as does ClcR plus its inducer, 2-chloromuconate. This implies that CatR binds to the de promoter in its active conformation. Transcription of the clcABD promoter by the a-subunit truncation mutant (alpha-235) of RNA polymerase was sharply reduced, indicating that the alpha-subunit C-terminal domain is important. However, a small amount of transcript was produced under these conditions, indicating that other contact sites on the RNA polymerase may play a role in activation. [References: 51]
机译:在恶臭假单胞菌中,苯甲酸酯和3-氯苯甲酸酯分别转化为邻苯二酚和3-氯邻苯二酚,然后通过catBCA和clcABD途径分解为三羧酸循环中间体。 catBCA和clcABD操纵子受同源转录激活因子CatR和ClcR调控。先前的研究表明,除了序列相似性外,CatR和ClcR还具有功能相似性,这使得catR可以补充clcR。在这项研究中,我们证明了CatR在没有诱导剂的情况下在体外激活了clcABD启动子,但是当添加诱导剂时会产生更多的转录本。 DNase I足迹分析和DNA弯曲分析表明,CatR与clcABD启动子结合并将其弯曲到与ClcR及其诱导物2-氯粘康酸酯相同的角度。这意味着CatR以其活性构象与de启动子结合。 RNA聚合酶的a亚基截短突变体(alpha-235)对clcABD启动子的转录急剧减少,表明α亚基C末端结构域很重要。但是,在这些条件下会产生少量的转录本,表明RNA聚合酶上的其他接触位点可能在激活中起作用。 [参考:51]

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