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Critical nucleotides in the interaction of CatR with the pheBA promoter: conservation of the CatR-mediated regulation mechanisms between the pheBA and catBCA operons

机译:CATR与Pheba启动子相互作用的关键核苷酸:培养普遍植物与托卫股票的调控机制

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The promoter of the plasmid-borne pheBA genes encoding enzymes for phenol degradation resembles the catBCA promoter and is activated by CatR, the regulator of the chromosomally encoded catechol-degradative catBCA genes in Pseudomonas putida. In this study, site-directed mutagenesis of the pheBA promoter region was performed. The interrupted inverted repeat sequence of the CatR recognition binding site (RBS) of the pheBA promoter is highly homologous to that of the catBCA promoter. However, the RBS was shown not to be the sole important feature for high-affinity binding of CatR to this site. Mutagenesis of the activation binding site (ABS) of CatR, which overlaps the ?35 hexamer sequence TTGGAT of the promoter, revealed that the two G nucleotides in this sequence are important for promoter activity but not for CatR binding. All other substitutions made in the ABS negatively affected both the promoter activity and CatR binding. The spacer sequence of the pheBA and catBCA promoters between the ?10 and ?35 hexamers is 19?bp, which is longer than optimal. However, reducing the spacer region of the pheBA promoter was not sufficient for CatR-independent promoter activation. An internal binding site (IBS) for CatR is located downstream of the transcriptional start site of the catBCA genes and it negatively regulates the operon. A similar IBS was identified in the case of the pheBA operon and tested for its functionality. The results indicate a conservation of CatR-mediated regulation mechanisms between the pheBA promoter and the catBCA promoter. This universal mechanism of CatR-mediated transcriptional activation could be of great importance in enabling catechol-degrading bacteria to expand their substrate range via horizontal transfer of the phenol degradative genes.
机译:编码酚类降解酶的质粒的PHEBA基因的启动子类似于CATBCA启动子,并通过CATR激活,染色体编码的儿茶酚降解性CATBCA基因的调节剂在假单胞菌玻璃披露。在该研究中,进行磷脂促进剂区域的定向诱变。 PHEBA启动子的CATR识别结合位点(RBS)的中断的倒置重复序列与CATBCA启动子的CATR识别结合位点(RBS)高度同源。然而,RBS被证明是不作为CATR对该部位的高亲和力结合的唯一重要特征。诱变促进剂的CATR活化结合位点(ABS)的诱变,其促进剂的35六六序列Ttggat揭示了该序列中的两个G核苷酸对启动子活性很重要,但不适用于CATR结合。在ABS中制造的所有其他替换对促进剂活性和CATR结合产生负面影响。 Pheba和Catbca启动子的间隔序列α10和α35六烷烃是19?BP,其比最佳方式长。然而,减少了Pheba启动子的间隔区不足以足以用于CATR无关的启动子活化。用于CATR的内部结合位点(IBS)位于CATBCA基因的转录开始部位的下游,并对操纵子进行负面调节。在Pheba操纵子的情况下识别出类似的IBS并测试其功能。结果表明,PHEBA启动子和CATBCA启动子之间的CATR介导的调节机制守恒。这种CATR介导的转录激活的普遍机制可能具有重要的意义,可以在使儿茶酚降解细菌通过酚类降解基因的水平转移通过水平转移来扩展它们的基材范围。

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