首页> 外文期刊>Journal of bacteriology >Roles of Cyclic Di-GMP and the Gac System in Transcriptional Control of the Genes Coding for the Pseudomonas putida Adhesins LapA and LapF
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Roles of Cyclic Di-GMP and the Gac System in Transcriptional Control of the Genes Coding for the Pseudomonas putida Adhesins LapA and LapF

机译:循环Di-GMP和Gac系统在恶臭假单胞菌粘附素LapA和LapF基因编码的转录控制中的作用。

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LapA and LapF are large extracellular proteins that play a relevant role in biofilm formation by Pseudomonas putida. Current evidence favors a sequential model in which LapA is first required for the initial adhesion of individual bacteria to a surface, while LapF participates in later stages of biofilm development. In agreement with this model, lapF transcription was previously shown to take place at late times of growth and to respond to the stationary-phase sigma factor RpoS. We have now analyzed the transcription pattern of lapA and other regulatory elements that influence expression of both genes. The lapA promoter shows a transient peak of activation early during growth, with a second increase in stationary phase that is independent of RpoS. The same pattern is observed in biofilms although expression is not uniform in the population. Both lapA and lapF are under the control of the two-component regulatory system GacS/GacA, and their transcription also responds to the intracellular levels of the second messenger cyclic diguanylate (c-di-GMP), although in surprisingly reverse ways. Whereas expression from the lapA promoter increases with high levels of c-di-GMP, the opposite is true for lapF. The transcriptional regulator FleQ is required for the modulation of lapA expression by c-di-GMP but has a minor influence on lapF. This work represents a further step in our understanding of the regulatory interactions controlling biofilm formation in P. putida.
机译:LapA和LapF是大型胞外蛋白,在恶臭假单胞菌的生物膜形成过程中起着重要作用。当前证据偏向于顺序模型,其中首先需要LapA才能使单个细菌最初粘附到表面,而LapF则参与生物膜发育的后期阶段。与该模型一致,以前证明 lapF 转录发生在生长的晚期,并且对固定相sigma因子RpoS作出反应。现在,我们已经分析了 lapA 的转录模式以及影响这两个基因表达的其他调控元件。 lapA 启动子在生长的早期显示出一个激活的瞬时峰值,而固定相的第二个增加与RpoS无关。在生物膜中观察到相同的模式,尽管在人群中表达不均匀。 lapA lapF 均受双组分调节系统GacS / GacA的控制,它们的转录也对第二个信使环双鸟苷酸(c -di-GMP),尽管出人意料地相反。尽管 lapA 启动子的表达随高水平的c-di-GMP而增加,但 lapF 却相反。转录调节因子FleQ是c-di-GMP调节 lapA 表达所必需的,但对 lapF 的影响较小。这项工作代表了我们对控制恶臭假单胞菌生物膜形成的调控相互作用的进一步了解。

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