首页> 外文期刊>Frontiers in Microbiology >Additive Effects of Quorum Sensing Anti-Activators on Pseudomonas aeruginosa Virulence Traits and Transcriptome
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Additive Effects of Quorum Sensing Anti-Activators on Pseudomonas aeruginosa Virulence Traits and Transcriptome

机译:群体感应抗激活剂对铜绿假单胞菌毒力特征和转录组的加性作用

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In the opportunistic pathogen Pseudomonas aeruginosa , quorum sensing (QS) via acyl-homoserine lactone (AHL) signals coordinates virulence gene expression. AHL signals must reach a critical threshold before enough is bound by cognate regulators LasR and RhlR to drive transcription of target genes. In addition, three anti-activator proteins, QteE, QscR, and QslA, sequester QS regulators to increase the threshold for induction and delay expression of QS target genes. It remains unclear how multiple anti-activators work together to achieve the quorum threshold. Here, we employed a combination of mutational, kinetic, phenotypic, and transcriptomic analysis to examine regulatory effects and interactions of the three distinct anti-activators. We observed combinatorial, additive effects on QS gene expression. As measured by reporter gene fusion, individual deletion of each anti-activator gene increased lasB expression and QS-controlled virulence factor production. Deletion of qslA in combination with the deletion of any other anti-activator gene resulted in the greatest increase and earliest activation of lasB gene expression. Western analysis revealed that relative increases in soluble LasR in anti-activator mutants correlate with increased lasB expression and QS-controlled virulence factor production. RNA-seq of the previously uncharacterized QslA and QteE regulons revealed overlapping, yet distinct groups of differentially expressed genes. Simultaneous inactivation of qteE and qslA had the largest effect on gene expression with 999 genes induced and 798 genes repressed in the double mutant vs. wild-type. We found that LasR and RhlR-activated QS genes formed a subset of the genes induced in the qteE, qslA , and double mutant. The activation of almost all of these QS genes was advanced from stationary phase to log phase in the qteE qslA double mutant. Taken together, our results identify additive effects of anti-activation on QS gene expression, likely via LasR and RhlR, but do not rule out QS-independent effects.
机译:在机会性病原体铜绿假单胞菌中,通过酰基高丝氨酸内酯(AHL)信号的群体感应(QS)协调毒力基因表达。 AHL信号必须先达到临界阈值,然后才能由同源调节子LasR和RhlR结合以驱动目标基因的转录。此外,三种抗激活蛋白QteE,QscR和QslA隔离QS调节剂,以增加诱导和延迟QS目标基因表达的阈值。尚不清楚多个抗激活剂如何共同作用以达到法定阈值。在这里,我们采用了突变,动力学,表型和转录组学分析的组合,以检查三种不同的抗激活剂的调节作用和相互作用。我们观察到QS基因表达的组合,加性效应。如报告基因基因融合所测量,每个抗激活基因的个别缺失增加了lasB表达和QS控制的毒力因子的产生。 qslA的删除与其他任何抗激活剂基因的删除相结合导致lasB基因表达的最大增加和最早的激活。 Western分析显示,抗激活突变体中可溶性LasR的相对增加与lasB表达增加和QS控制的毒力因子产生相关。先前未鉴定的QslA和QteE调节子的RNA-seq显示出重叠的,但不同的差异表达基因组。 qteE和qslA的同时失活对基因表达的影响最大,在双突变体与野生型中诱导了999个基因,而抑制了798个基因。我们发现,LasR和RhlR激活的QS基因形成了在qteE,qslA和double突变体中诱导的基因的子集。在qteE qslA双突变体中,几乎所有这些QS基因的激活都从固定阶段推进到对数阶段。两者合计,我们的结果确定了可能通过LasR和RhlR引起的抗激活对QS基因表达的累加效应,但并不排除与QS无关的效应。

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