首页> 美国卫生研究院文献>Journal of Bacteriology >FlrA a σ54-Dependent Transcriptional Activator in Vibrio fischeri Is Required for Motility and Symbiotic Light-Organ Colonization
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FlrA a σ54-Dependent Transcriptional Activator in Vibrio fischeri Is Required for Motility and Symbiotic Light-Organ Colonization

机译:FlrA是费氏弧菌中一种依赖于σ54的转录激活因子是运动和共生轻器官建立所必需的。

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摘要

Flagellum-mediated motility of Vibrio fischeri is an essential factor in the bacterium's ability to colonize its host, the Hawaiian squid Euprymna scolopes. To begin characterizing the nature of the flagellar regulon, we have cloned a gene, designated flrA, from V. fischeri that encodes a putative σ54-dependent transcriptional activator. Genetic arrangement of the flrA locus in V. fischeri is similar to motility master-regulator operons of Vibrio cholerae and Vibrio parahaemolyticus. In addition, examination of regulatory regions of a number of flagellar operons in V. fischeri revealed apparent σ54 recognition motifs, suggesting that the flagellar regulatory hierarchy is controlled by a similar mechanism to that described in V. cholerae. However, in contrast to its closest known relatives, flrA mutant strains of V. fischeri ES114 were completely abolished in swimming capability. Although flrA provided in trans restored motility to the flrA mutant, the complemented strain was unable to reach wild-type levels of symbiotic colonization in juvenile squid, suggesting a possible role for the proper expression of FlrA in regulating symbiotic colonization factors in addition to those required for motility. Comparative RNA arbitrarily primed PCR analysis of the flrA mutant and its wild-type parent revealed several differentially expressed transcripts. These results define a regulon that includes both flagellar structural genes and other genes apparently not involved in flagellum elaboration or function. Thus, the transcriptional activator FlrA plays an essential role in regulating motility, and apparently in modulating other symbiotic functions, in V. fischeri.
机译:鞭毛介导的费氏弧菌的运动性是细菌定殖其宿主夏威夷鱿鱼Euprymna lope的能力的重要因素。为了开始表征鞭毛调节子的性质,我们从费氏弧菌克隆了一个名为flrA的基因,该基因编码一个假定的σ 54 依赖性转录激活因子。 fl.fischeri中flrA基因座的遗传安排类似于霍乱弧菌和副溶血弧菌的运动主调节操纵子。此外,检查费氏弧菌中许多鞭毛操纵子的调控区发现了明显的σ 54 识别基元,这表明鞭毛调控层级的控制机制与霍乱弧菌相似。 。然而,与其最亲近的亲戚相反,费氏弧菌ES114的frA突变株在游泳能力上被完全消除。尽管flrA为flrA突变体提供了反式恢复活力,但互补的菌株无法达到野生鱿鱼中共生菌定居的野生型水平,这表明FlrA的正确表达可能在调节共生定居因子方面发挥了重要作用。为了运动。对flrA突变体及其野生型亲本进行的比较RNA任意引发的PCR分析显示了几种差异表达的转录本。这些结果定义了包括鞭毛结构基因和显然不参与鞭毛细化或功能的其他基因的调节子。因此,转录激活因子FlrA在 V中在调节运动性以及显然在调节其他共生功能中起重要作用。费舍里

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