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首页> 外文期刊>Molecular Microbiology >Regulation of late flagellar gene transcription and cell division by flagellum assembly in Caulobacter crescentus.
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Regulation of late flagellar gene transcription and cell division by flagellum assembly in Caulobacter crescentus.

机译:新月形杆菌中鞭毛组装对晚期鞭毛基因转录和细胞分裂的调节。

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Biogenesis of the single polar flagellum of Caulobacter crescentus is regulated by a complex interplay of cell cycle events and the progression of flagellum assembly. The expression of class III/IV flagellar genes requires the assembly of an early flagellar basal body structure, encoded by class II genes, and is activated by the transcription factor FlbD. Previous experiments indicated that the class II flagellar gene, flbE, encoded a trans-acting factor that was required for FlbD activity. Here, using mutant alleles of flbE we have determined that FlbE is either a structural component of the flagellum or is required for flagellar assembly and does not, as originally proposed, function as a trans-acting factor. We also demonstrate that two deleted derivatives of flbE have a dominant negative effect on the transcriptional activation of class III/IV flagellar genes that can be relieved by a gain-of-function mutation in flbD called bfa. This same mutation in flbD has been shown to restore class III/IV transcription in the absence of early class II flagellar assembly. These deleted mutants of flbE also exhibited a filamentous cell phenotype that was indistinguishable from that previously observed in class II flagellar mutants. Introduction of a flbD-bfa mutation into these cells expressing the deleted alleles of flbE, as well as several class II mutant strains, restored normal cell division and FtsZ localization. These results suggest that class III/IV transcription and a step in cell division are coupled to flagellar assembly by the same genetic pathway.
机译:新月形杆状单极性鞭毛的生物发生受细胞周期事件和鞭毛装配过程的复杂相互作用的调节。 III / IV类鞭毛基因的表达需要由II类基因编码的早期鞭毛基础身体结构的组装,并被转录因子FlbD激活。先前的实验表明,II类鞭毛基因flbE编码FlbD活性所需的反式作用因子。在这里,我们使用flbE的突变等位基因确定FlbE是鞭毛的结构成分,或者是鞭毛组装所必需的,并且不像最初提出的那样起反作用因子的作用。我们还证明,两个删除的flbE衍生物对III / IV类鞭毛基因的转录激活具有显性负作用,而这种激活可以通过称为bfa的flbD中的功能获得性突变来缓解。已经显示,在不存在早期II类鞭毛装配的情况下,flbD中的相同突变可恢复III / IV类转录。这些缺失的flbE突变体还表现出丝状细胞表型,该表型与先前在II类鞭毛突变体中观察到的没有区别。将flbD-bfa突变引入这些表达flbE等位基因缺失等位基因的细胞中,以及几种II类突变株,恢复了正常的细胞分裂和FtsZ定位。这些结果表明,III / IV类转录和细胞分裂的步骤通过相同的遗传途径与鞭毛组装相关。

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