首页> 外文期刊>Journal of bacteriology >Global regulation of a sigma 54-dependent flagellar gene family in Caulobacter crescentus by the transcriptional activator FlbD.
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Global regulation of a sigma 54-dependent flagellar gene family in Caulobacter crescentus by the transcriptional activator FlbD.

机译:转录激活因子FlbD对新月形杆菌中sigma 54依赖性鞭毛基因家族的全局调控。

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Biosynthesis of the Caulobacter crescentus polar flagellum requires the expression of a large number of flagellar (fla) genes that are organized in a regulatory hierarchy of four classes (I to IV). The timing of fla gene expression in the cell cycle is determined by specialized forms of RNA polymerase and the appearance and/or activation of regulatory proteins. Here we report an investigation of the role of the C. crescentus transcriptional regulatory protein FlbD in the activation of sigma 54-dependent class III and class IV fla genes of the hierarchy by reconstituting transcription from these promoters in vitro. Our results demonstrate that transcription from promoters of the class III genes flbG, flgF, and flgI and the class IV gene fliK by Escherichia coli E sigma 54 is activated by FlbD or the mutant protein FlbDS140F (where S140F denotes an S-to-F mutation at position 140), which we show here has a higher potential for transcriptional activation. In vitro studies of the flbG promoter have shown previously that transcriptional activation by the FlbD protein requires ftr (ftr for flagellar transcription regulation) sequence elements. We have now identified multiple ftr sequences that are conserved in both sequence and spatial architecture in all known class III and class IV promoters. These newly identified ftr elements are positioned ca. 100 bp from the transcription start sites of each sigma 54-dependent fla gene promoter, and our studies indicate that they play an important role in controlling the levels of transcription from different class III and class IV promoters. We have also used mutational analysis to show that the ftr sequences are required for full activation by the FlbD protein both in vitro and in vivo. Thus, our results suggest that FlbD, which is encoded by the class II flbD gene, is a global regulator that activates the cell cycle-regulated transcription from all identified sigma 54-dependent promoters in the C. crescentus fla gene hierarchy.
机译:新月形极地鞭毛的生物合成需要大量鞭毛(fla)基因的表达,这些鞭毛基因以四类(I至IV)的调节等级组织。 fla基因在细胞周期中表达的时机取决于RNA聚合酶的特殊形式以及调节蛋白的出现和/或激活。在这里,我们报告了新月形梭菌转录调节蛋白FlbD在sigma 54依赖的III类和IV类fla基因的激活中的作用的研究,方法是在体外重建这些启动子的转录。我们的结果表明,大肠杆菌E sigma 54从III类基因flbG,flgF和flgI和IV类基因fliK的启动子转录被FlbD或突变蛋白FlbDS140F(其中S140F表示S-to-F突变)激活。在位置140),我们在此处显示了更高的转录激活潜力。 flbG启动子的体外研究先前显示,通过FlbD蛋白进行的转录激活需要ftr(用于鞭毛转录调控的ftr)序列元件。现在我们已经鉴定了在所有已知的III类和IV类启动子中在序列和空间结构上均保守的多个ftr序列。这些新识别的ftr元素位于ca左右。每个sigma 54依赖的fla基因启动子的转录起始位点起100 bp,我们的研究表明它们在控制不同III类和IV类启动子的转录水平中起着重要作用。我们还使用了突变分析来显示ftr序列是FlbD蛋白在体外和体内完全激活所必需的。因此,我们的结果表明,由II类flbD基因编码的FlbD是一种全局调节剂,可激活新月形fla fla基因层次结构中所有已确定的sigma 54依赖性启动子的细胞周期调控转录。

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