首页> 外文期刊>Journal of bacteriology >Caulobacter FliQ and FliR membrane proteins, required for flagellar biogenesis and cell division, belong to a family of virulence factor export proteins.
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Caulobacter FliQ and FliR membrane proteins, required for flagellar biogenesis and cell division, belong to a family of virulence factor export proteins.

机译:鞭毛生物发生和细胞分裂所需的Caulobacter FliQ和FliR膜蛋白属于毒力因子输出蛋白家族。

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The Caulobacter crescentus fliQ and fliR genes encode membrane proteins that have a role in an early step of flagellar biogenesis and belong to a family of proteins implicated in the export of virulence factors. These include the MopD and MopE proteins from Erwinia carotovora, the Spa9 and Spa29 proteins from Shigella flexneri, and the YscS protein from Yersinia pestis. Inclusion in this family of proteins suggests that FliQ and FliR may participate in an export pathway required for flagellum assembly. In addition, mutations in either fliQ or fliR exhibit defects in cell division and thus may participate directly or indirectly in the division process. fliQ and fliR are class II flagellar genes residing near the top of the regulatory hierarchy that determines the order of flagellar gene transcription. The promoter sequence of the fliQR operon differs from most known bacterial promoter sequences but is similar to other Caulobacter class II flagellar gene promoter sequences. The conserved nucleotides in the promoter region are clustered in the -10, -20 to -30, and -35 regions. The importance of the conserved bases for promoter activity was demonstrated by mutational analysis. Transcription of the fliQR operon is initiated at a specific time in the cell cycle, and deletion analysis revealed that the minimal sequence required for transcriptional activation resides within 59 bp of the start site.
机译:新月形杆菌的fliQ和fliR基因编码膜蛋白,这些膜蛋白在鞭毛生物发生的早期阶段起作用,并且属于与毒力因子输出有关的蛋白家族。这些包括来自胡萝卜欧文氏菌的MopD和MopE蛋白,来自弗氏志贺氏菌的Spa9和Spa29蛋白以及来自鼠疫耶尔森氏菌的YscS蛋白。包含在该蛋白家族中表明FliQ和FliR可能参与鞭毛组装所需的输出途径。此外,fliQ或fliR中的突变在细胞分裂中均表现出缺陷,因此可能直接或间接参与分裂过程。 fliQ和fliR是II类鞭毛基因,它们位于决定鞭毛基因转录顺序的调节层次顶部附近。 fliQR操纵子的启动子序列与大多数已知的细菌启动子序列不同,但与其他II类鳞茎杆菌鞭毛基因启动子序列相似。启动子区域中的保守核苷酸聚集在-10,-20至-30和-35区域中。通过突变分析证明了保守碱基对启动子活性的重要性。 fliQR操纵子的转录在细胞周期的特定时间启动,缺失分析表明转录激活所需的最小序列位于起始位点的59 bp之内。

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