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首页> 外文期刊>Archives of microbiology >Global gene regulation in Yersinia enterocolitica: effect of FliA on the expression levels of flagellar and plasmid-encoded virulence genes
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Global gene regulation in Yersinia enterocolitica: effect of FliA on the expression levels of flagellar and plasmid-encoded virulence genes

机译:小肠结肠炎耶尔森氏菌的全球基因调控:FliA对鞭毛和质粒编码的毒力基因表达水平的影响

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This study describes the involvement of the sigma factor of the flagellar system, FliA, in global gene regulation of Yersinia enterocolitica. In addition to exhibiting a positive effect upon the expression levels of eight class III flagellar operons, FliA also exhibited a negative effect upon the expression levels of four virulence operons that are located on the pYV virulence plasmid. These are yadA, virC, yopQ, and the insertion element ISYen1. While the positive effect on class III flagellar operons by FliA is most likely direct, the negative effect on the virulence operons appears to require the known transcriptional activator of these genes, VirF. This was determined using microarray analysis, quantitative PCR and a search for putative binding sites for FliA. In addition to the FliA regulation of flagellar and plasmid-encoded virulence genes, we studied temperature regulation of these genes. While wild-type cells exhibited increased expression levels of flagellar genes and decreased expression levels of plasmid-encoded virulence genes at 25 degrees C (as compared to 37 degrees C), temperature dependence of gene expression was much reduced in the fliA mutants. We conclude that FliA contributes to the inverse temperature regulation of flagellar and plasmid-encoded virulence genes. We present a network of transcriptional regulation around FlhD/FlhC and FliA.
机译:这项研究描述了鞭毛系统sigma因子FliA参与小肠结肠炎耶尔森氏菌的全球基因调控。 FliA除了对八个III类鞭毛操纵子的表达水平表现出正效应外,还对位于pYV毒性质粒上的四个毒性操纵子的表达水平表现出负效应。它们是yadA,virC,yopQ和插入元素ISYen1。尽管FliA对III类鞭毛操纵子的正面作用很可能是直接的,但对毒力操纵子的负面作用似乎需要这些基因的已知转录激活因子VirF。使用微阵列分析,定量PCR和寻找FliA的假定结合位点来确定。除了鞭毛和质粒编码的毒力基因的FliA调控,我们还研究了这些基因的温度调控。虽然野生型细胞在25摄氏度(与37摄氏度相比)显示出鞭毛基因的表达水平升高和质粒编码的毒力基因的表达水平降低,但fliA突变体却大大降低了基因表达的温度依赖性。我们得出结论,FliA有助于鞭毛和质粒编码的毒力基因的逆温度调节。我们提出了围绕FlhD / FlhC和FliA的转录调控网络。

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