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重新审视铜绿假单胞菌中的群体感应层级:转录调节因子RhlR调控LasR特异性因子。

Revisiting the quorum-sensing hierarchy in Pseudomonas aeruginosa: the transcriptional regulator RhlR regulates LasR-specific factors.

作者信息

Dekimpe Valérie, Déziel Eric

机构信息

INRS-Institut Armand-Frappier, Laval, Québec H7V 1B7, Canada.

出版信息

Microbiology (Reading). 2009 Mar;155(Pt 3):712-723. doi: 10.1099/mic.0.022764-0.

Abstract

Pseudomonas aeruginosa uses the two major quorum-sensing (QS) regulatory systems las and rhl to modulate the expression of many of its virulence factors. The las system is considered to stand at the top of the QS hierarchy. However, some virulence factors such as pyocyanin have been reported to still be produced in lasR mutants under certain conditions. Interestingly, such mutants arise spontaneously under various conditions, including in the airways of cystic fibrosis patients. Using transcriptional lacZ reporters, LC/MS quantification and phenotypic assays, we have investigated the regulation of QS-controlled factors by the las system. Our results show that activity of the rhl system is only delayed in a lasR mutant, thus allowing the expression of multiple virulence determinants such as pyocyanin, rhamnolipids and C(4)-homoserine lactone (HSL) during the late stationary phase. Moreover, at this stage, RhlR is able to overcome the absence of the las system by activating specific LasR-controlled functions, including production of 3-oxo-C(12)-HSL and Pseudomonas quinolone signal (PQS). P. aeruginosa is thus able to circumvent the deficiency of one of its QS systems by allowing the other to take over. This work demonstrates that the QS hierarchy is more complex than the model simply presenting the las system above the rhl system.

摘要

铜绿假单胞菌利用两个主要的群体感应(QS)调节系统——las和rhl来调控其许多毒力因子的表达。las系统被认为处于QS层级的顶端。然而,据报道,一些毒力因子,如绿脓菌素,在某些条件下在lasR突变体中仍会产生。有趣的是,此类突变体在各种条件下都会自发出现,包括在囊性纤维化患者的气道中。我们使用转录lacZ报告基因、液相色谱-质谱联用(LC/MS)定量分析和表型分析,研究了las系统对QS控制因子的调控。我们的结果表明,rhl系统的活性在lasR突变体中只是延迟,从而使得多种毒力决定因素,如绿脓菌素、鼠李糖脂和C(4)-高丝氨酸内酯(HSL)在稳定期后期得以表达。此外,在这个阶段,RhlR能够通过激活特定的LasR控制的功能来克服las系统缺失的影响,这些功能包括3-氧代-C(12)-HSL和铜绿假单胞菌喹诺酮信号(PQS)的产生。因此,铜绿假单胞菌能够通过让另一个QS系统接管来规避其中一个QS系统的缺陷。这项工作表明,QS层级比简单地将las系统置于rhl系统之上的模型更为复杂。

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