首页> 美国卫生研究院文献>Journal of Bacteriology >Analysis of the Corynebacterium diphtheriae DtxR Regulon: Identification of a Putative Siderophore Synthesis and Transport System That Is Similar to the Yersinia High-Pathogenicity Island-Encoded Yersiniabactin Synthesis and Uptake System
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Analysis of the Corynebacterium diphtheriae DtxR Regulon: Identification of a Putative Siderophore Synthesis and Transport System That Is Similar to the Yersinia High-Pathogenicity Island-Encoded Yersiniabactin Synthesis and Uptake System

机译:白喉棒状杆菌DtxR调节子的分析:假定的铁载体合成和运输系统的鉴定类似于耶尔森氏菌高致病性岛编码耶尔西菌素合成和吸收系统

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摘要

The diphtheria toxin repressor, DtxR, is a global iron-dependent regulatory protein in Corynebacterium diphtheriae that controls gene expression by binding to 19-bp operator sequences. To further define the DtxR regulon in C. diphtheriae, a DtxR repressor titration assay (DRTA) was developed and used to identify 10 previously unknown DtxR binding sites. Open reading frames downstream from seven of the newly identified DtxR binding sites are predicted to encode proteins associated with iron or heme transport. Electrophoretic mobility shift assays indicated that DtxR was able to bind to DNA fragments carrying the 19-bp operator regions, and transcriptional analysis of putative promoter elements adjacent to the binding site sequences revealed that most of these regions displayed iron- and DtxR-regulated activity. A putative siderophore biosynthesis and transport operon located downstream from one of the DtxR binding sites, designated sid, is similar to the yersiniabactin synthesis and uptake genes encoded on the Yersinia pestis high pathogenicity island. The siderophore biosynthetic genes in the sid operon contained a large deletion in the C. diphtheriae C7 strain, but the sid genes were unaffected in four clinical isolates that are representative of the dominant strains from the recent diphtheria epidemic in the former Soviet Union. Mutations in the siderophore biosynthetic genes in a clinical strain had no effect on siderophore synthesis or growth in low-iron conditions; however, a mutation in one of the putative transport proteins, cdtP, resulted in reduced growth in iron-depleted media, which suggests that this system may have a role in iron uptake. The findings from this study indicate that C. diphtheriae contains at least 18 DtxR binding sites and that DtxR may affect the expression of as many as 40 genes.
机译:白喉毒素阻遏物DtxR是白喉棒状杆菌中的一种全球铁依赖性调节蛋白,可通过与19 bp的操纵子序列结合来控制基因表达。为了进一步在白喉衣原体中定义DtxR调节子,开发了DtxR阻遏物滴定测定法(DRTA),并用于鉴定10个以前未知的DtxR结合位点。新发现的七个DtxR结合位点下游的开放阅读框预计将编码与铁或血红素转运相关的蛋白质。电泳迁移率变动分析表明,DtxR能够结合带有19bp操纵子区域的DNA片段,对与结合位点序列相邻的推定启动子元件的转录分析表明,这些区域中的大多数都显示出铁和DtxR调节的活性。位于DtxR结合位点之一sid下游的推定铁载体生物合成和转运操纵子类似于耶尔森菌素合成和摄取在鼠疫耶尔森菌高致病性岛上编码的基因。 sid操纵子中的铁载体生物合成基因在白喉衣原体C7株中含有大量缺失,但sid基因在代表前苏联最近白喉流行的主要菌株的四个临床分离株中未受影响。临床菌株中铁载体生物合成基因的突变对低铁条件下铁载体的合成或生长没有影响。但是,一种假定的转运蛋白cdtP的突变导致贫铁培养基中生长减少,这表明该系统可能在铁摄取中起作用。这项研究的发现表明,白喉衣原体含有至少18个DtxR结合位点,并且DtxR可能影响多达40个基因的表达。

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