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The Pseudomonas aeruginosa Lectins PA-IL and PA-IIL Are Controlled by Quorum Sensing and by RpoS

机译:铜绿假单胞菌凝集素PA-IL和PA-IIL受群体感应和RpoS控制。

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摘要

In Pseudomonas aeruginosa, many exoproduct virulence determinants are regulated via a hierarchical quorum-sensing cascade involving the transcriptional regulators LasR and RhlR and their cognate activators, N-(3-oxododecanoyl)-l-homoserine lactone (3O-C12-HSL) and N-butanoyl-l-homoserine lactone (C4-HSL). In this paper, we demonstrate that the cytotoxic lectins PA-IL and PA-IIL are regulated via quorum sensing. Using immunoblot analysis, the production of both lectins was found to be directly dependent on the rhl locus while, in a lasR mutant, the onset of lectin synthesis was delayed but not abolished. The PA-IL structural gene, lecA, was cloned and sequenced. Transcript analysis indicated a monocistronic organization with a transcriptional start site 70 bp upstream of the lecA translational start codon. A lux box-type element together with RpoS (ςS) consensus sequences was identified upstream of the putative promoter region. In Escherichia coli, expression of a lecA::lux reporter fusion was activated by RhlR/C4-HSL, but not by LasR/3O-C12-HSL, confirming direct regulation by RhlR/C4-HSL. Similarly, in P. aeruginosa PAO1, the expression of a chromosomal lecA::lux fusion was enhanced but not advanced by the addition of exogenous C4-HSL but not 3O-C12-HSL. Furthermore, mutation of rpoS abolished lectin synthesis in P. aeruginosa, demonstrating that both RpoS and RhlR/C4-HSL are required. Although the C4-HSL-dependent expression of the lecA::lux reporter in E. coli could be inhibited by the presence of 3O-C12-HSL, this did not occur in P. aeruginosa. This suggests that, in the homologous genetic background, 3O-C12-HSL does not function as a posttranslational regulator of the RhlR/C4-HSL-dependent activation of lecA expression.
机译:在铜绿假单胞菌中,许多外来产物毒力决定因素是通过涉及转录调节因子LasR和RhlR及其同源激活因子N-(3-氧十二烷酰基)-1-高丝氨酸内酯(3O-C12-HSL)的群体感应级联反应来调节的。 -丁酰基-1-高丝氨酸内酯(C4-HSL)。在本文中,我们证明了细胞毒性凝集素PA-IL和PA-IIL是通过群体感应来调节的。使用免疫印迹分析,发现两种凝集素的产生都直接取决于rhl基因座,而在lasR突变体中,凝集素的合成开始被延迟,但没有被消除。克隆PA-IL结构基因lecA并测序。转录本分析表明单顺反子组织在lecA翻译起始密码子上游有一个70 bp的转录起始位点。在推定的启动子区域的上游鉴定了一个lux框型元件和RpoS(ςS)共有序列。在大肠杆菌中,lecA :: lux报告基因融合蛋白的表达被RhlR / C4-HSL激活,但未被LasR / 3O-C12-HSL激活,从而证实了RhlR / C4-HSL的直接调控。同样,在铜绿假单胞菌PAO1中,通过添加外源C4-HSL而不是3O-C12-HSL可以增强染色体lecA :: lux融合蛋白的表达,但并不能促进融合。此外,rpoS的突变消除了铜绿假单胞菌中凝集素的合成,表明RpoS和RhlR / C4-HSL都是必需的。尽管3O-C12-HSL的存在可以抑制大肠杆菌中lecA :: lux报告基因的C4-HSL依赖性表达,但在绿脓杆菌中却没有。这表明,在同源的遗传背景下,3O-C12-HSL不能充当lecA表达的RhlR / C4-HSL依赖性激活的翻译后调节剂。

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