首页> 外文OA文献 >A mutation that uncouples flagellum assembly from transcription alters the temporal pattern of flagellar gene expression in Caulobacter crescentus.
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A mutation that uncouples flagellum assembly from transcription alters the temporal pattern of flagellar gene expression in Caulobacter crescentus.

机译:使鞭毛组装与转录脱钩的突变改变了新月形杆菌中鞭毛基因表达的时间模式。

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摘要

The transcription of flagellar genes in Caulobacter crescentus is regulated by cell cycle events that culminate in the synthesis of a new flagellum once every cell division. Early flagellar gene products regulate the expression of late flagellar genes at two distinct stages of the flagellar trans-acting hierarchy. Here we investigate the coupling of early flagellar biogenesis with middle and late flagellar gene expression. We have isolated mutants (bfa) that do not require early class II flagellar gene products for the transcription of middle or late flagellar genes. bfa mutant strains are apparently defective in a negative regulatory pathway that couples early flagellar biogenesis to late flagellar gene expression. The bfa regulatory pathway functions solely at the level of transcription. Although flagellin promoters are transcribed in class II/bfa double mutants, there is no detectable flagellin protein on immunoblots prepared from mutant cell extracts. This finding suggests that early flagellar biogenesis is coupled to gene expression by two distinct mechanisms: one that negatively regulates transcription, mediated by bfa, and another that functions posttranscriptionally. To determine whether bfa affects the temporal pattern of late flagellar gene expression, cell cycle experiments were performed in bfa mutant strains. In a bfa mutant strain, flagellin expression fails to shut off at its normal time in the cell division cycle. This experimental result indicates that bfa may function as a regulator of flagellar gene transcription late in the cell cycle, after early flagellar structures have been assembled.
机译:新月形杆菌中鞭毛基因的转录受细胞周期事件的调节,而细胞周期事件最终导致每个细胞分裂一次合成新鞭毛。早期鞭毛基因产物在鞭毛反式作用的两个不同阶段调节晚期鞭毛基因的表达。在这里,我们调查早期鞭毛生物发生与中晚期鞭毛基因表达的耦合。我们已经分离出突变体(bfa),它们不需要早期II类鞭毛基因产物来转录中晚期鞭毛基因。 bfa突变菌株显然在负调控途径中具有缺陷,该途径将早期鞭毛生物发生与晚期鞭毛基因表达耦合在一起。 bfa调节途径仅在转录水平上起作用。尽管鞭毛蛋白启动子在II / bfa类双突变体中转录,但从突变细胞提取物制备的免疫印迹上没有可检测到的鞭毛蛋白。这一发现表明,早期鞭毛生物发生通过两种不同的机制与基因表达耦合:一种由bfa介导的负调控转录,另一种在转录后起作用。为了确定bfa是否影响晚期鞭毛基因表达的时间模式,在bfa突变株中进行了细胞周期实验。在bfa突变株中,鞭毛蛋白表达在细胞分裂周期的正常时间无法关闭。该实验结果表明,在早期鞭毛结构被组装后,bfa可能在细胞周期后期起鞭毛基因转录的调节作用。

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