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Integration of two essential virulence modulating signals at the Erwinia chrysanthemi pel gene promoters: a role for Fis in the growth-phase regulation

机译:在欧文氏菊pel基因启动子上整合两个基本的毒力调节信号:Fis在生长期调控中的作用

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Production of the essential virulence factors, called pectate lyases (Pels), in the phytopathogenic bacterium Erwinia chrysanthemi is controlled by a complex regulation system and responds to various stimuli, such as the presence of pectin or plant extracts, growth phase, temperature and iron concentration. The presence of pectin and growth phase are the most important signals identified. Eight regulators modulating the expression of the pel genes (encoding Pels) have been characterized. These regulators are organized in a network allowing a sequential functioning of the regulators during infection. Although many studies have been carried out, the mechanisms of control of Pel production by growth phase have not yet been elucidated. Here we report that a fis mutant of E. chrysanthemi showed a strong increase in transcription of the pel genes during exponential growth whereas induction of expression in the parental strain occurred at the end of exponential growth. This reveals that Fis acts to prevent an efficient transcription of pel genes at the beginning of exponential growth and also provides evidence of the involvement of Fis in the growth-phase regulation of the pel genes. By using in vitro DNA-protein interactions and transcription experiments, we find that Fis directly represses the pel gene expression at the transcription initiation step. In addition, we show that Fis acts in concert with KdgR, the main repressor responding to the presence of pectin compounds, to shut down the pel gene transcription. Finally, we find that active Fis is required for the efficient translocation of the Pels in growth medium. Together, these data indicate that Fis tightly controls the availability of Pels during pathogenesis by acting on both their production and their translocation in the external medium.
机译:在植物致病性细菌欧文氏菊花中,必需的毒力因子称为果胶酸裂合酶(Pel)的产生受复杂的调控系统控制,并对各种刺激产生反应,例如果胶或植物提取物的存在,生长阶段,温度和铁浓度。果胶的存在和生长期是确定的最重要的信号。已经描述了八种调节pel基因表达(编码Pels)的调节子。这些调节器组织在一个网络中,允许在感染过程中调节器顺序运行。尽管已经进行了许多研究,但是尚未阐明通过生长期控制Pel生产的机理。在这里,我们报道了一个金黄色葡萄球菌的fis突变体在指数增长过程中显示了pel基因转录的强烈增加,而在亲本菌株中表达的诱导发生在指数增长的末尾。这表明,Fis的作用是防止pel基因在指数生长开始时有效转录,并且还提供了Fis参与pel基因生长阶段调控的证据。通过使用体外DNA-蛋白质相互作用和转录实验,我们发现Fis在转录起始步骤直接抑制了pel基因的表达。此外,我们显示Fis与KdgR(果胶化合物存在的主要阻遏物)协同作用,可以关闭pel基因转录。最后,我们发现活性Fis是Pel在生长培养基中有效转运所必需的。总之,这些数据表明,Fis通过作用于Pels的产生和在外部介质中的易位,紧密控制Pels在发病过程中的可用性。

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