首页> 美国卫生研究院文献>Journal of Bacteriology >Molecular cloning expression and regulation in Escherichia coli K-12 of a chromosome-mediated aerobactin iron transport system from a human invasive isolate of E. coli K1.
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Molecular cloning expression and regulation in Escherichia coli K-12 of a chromosome-mediated aerobactin iron transport system from a human invasive isolate of E. coli K1.

机译:从大肠杆菌K1的人类侵入性分离株中染色体介导的航空细菌素铁转运系统在大肠杆菌K-12中的分子克隆表达和调控。

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摘要

We have cloned chromosomal genes determining the aerobactin iron transport system from the Escherichia coli K1 strain VW187. Mapping and hybridization experiments showed that the VW187 aerobactin region was identical to that of the plasmid ColV-K30. However, in the E. coli K-12 background, the biosynthesis of both siderophore and ferric aerobactin receptor encoded by the VW187-derived recombinant plasmids was not repressed by iron to the same extent found when a recombinant plasmid derived from pColV-K30 was used. RNA-DNA dot-blot hybridization experiments demonstrated that the aerobactin-specific mRNA synthesized by the VW187-derived clones was not iron regulated in E. coli K-12. In contrast, the synthesis of aerobactin and its receptor in strain VW187 was completely repressed by iron regardless of whether the recombinant plasmids originated from VW187 or pColV-K30. Similar results were obtained with gene fusions in which a promoterless lac operon was placed under the control of aerobactin promoter regions of either chromosome- or plasmid-mediated aerobactin systems. DNA sequencing of the chromosomal aerobactin promoter region showed changes in bases located immediately upstream to the -35 region compared with the corresponding region in pColV-K30, which is known to be part of the binding site for the Fur repressor protein.
机译:我们已经克隆了确定大肠杆菌K1菌株VW187的航空细菌素铁转运系统的染色体基因。定位和杂交实验表明,VW187空气杆菌素区域与质粒ColV-K30的相同。但是,在大肠杆菌K-12背景下,由VW187衍生的重组质粒编码的铁载体和铁气杆菌素受体的生物合成并没有被铁抑制到与使用源自pColV-K30的重组质粒相同的程度。 RNA-DNA点印迹杂交实验表明,由VW187衍生的克隆合成的气杆菌素特异性mRNA在大肠杆菌K-12中不受铁调节。相反,无论重组质粒是源于VW187还是pColV-K30,VW187菌株中的航空细菌素及其受体的合成都被铁完全抑制。通过基因融合获得了类似的结果,其中将无启动子的lac操纵子置于染色体或质粒介导的航空细菌素系统的航空细菌素启动子区域的控制之下。与pColV-K30的相应区域(已知是Fur阻遏蛋白的结合位点的一部分)相比,染色体航空杆菌素启动子区域的DNA测序显示位于-35区域上游的碱基发生了变化。

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