Department of Science, Roma Tre University, Rome, Italy.
IRCCS Fondazione Santa Lucia, Rome, Italy.
Microbiol Spectr. 2022 Jun 29;10(3):e0096122. doi: 10.1128/spectrum.00961-22. Epub 2022 May 23.
In the opportunistic pathogen Pseudomonas aeruginosa, many virulence traits are finely regulated by quorum sensing (QS), an intercellular communication system that allows the cells of a population to coordinate gene expression in response to cell density. The key aspects underlying the functionality of the complex regulatory network governing QS in P. aeruginosa are still poorly understood, including the interplay between the effector protein PqsE and the transcriptional regulator RhlR in controlling the QS regulon. Different studies have focused on the characterization of PqsE- and RhlR-controlled genes in genetic backgrounds in which RhlR activity can be modulated by PqsE and expression is controlled by RhlR, thus hampering identification of the distinct regulons controlled by PqsE and RhlR. In this study, a P. aeruginosa PAO1 mutant strain with deletion of multiple QS elements and inducible expression of and/or was generated and validated. Transcriptomic analyses performed on this genetic background allowed us to unambiguously define the regulons controlled by PqsE and RhlR when produced alone or in combination. Transcriptomic data were validated via reverse transcription-quantitative PCR (RT-qPCR) and transcriptional fusions. Overall, our results showed that PqsE has a negligible effect on the P. aeruginosa transcriptome in the absence of RhlR, and that multiple RhlR subregulons exist with distinct dependency on PqsE. Overall, this study contributes to untangling the regulatory link between the and QS systems mediated by PqsE and RhlR and clarifying the impact of these QS elements on the P. aeruginosa transcriptome. The ability of Pseudomonas aeruginosa to cause difficult-to-treat infections relies on its capacity to fine-tune the expression of multiple virulence traits via the , , and QS systems. Both the effector protein PqsE and the transcriptional regulator RhlR are required for full production of key virulence factors and pathogenicity . While it is known that PqsE can stimulate the ability of RhlR to control some virulence factors, no data are available to allow clear discrimination of the PqsE and RhlR regulons. The data produced in this study demonstrate that PqsE mainly impacts the P. aeruginosa transcriptome via an RhlR-dependent pathway and splits the RhlR regulon into PqsE-dependent and PqsE-independent subregulons. Besides contributing to untangling of the complex QS network of P. aeruginosa, our data confirm that both PqsE and RhlR are suitable targets for the development of antivirulence drugs.
在机会性病原体铜绿假单胞菌中,许多毒力特性都受到群体感应 (QS) 的精细调节,这是一种细胞间通讯系统,允许种群中的细胞根据细胞密度协调基因表达。调控铜绿假单胞菌 QS 的复杂调控网络的功能的关键方面仍然知之甚少,包括效应蛋白 PqsE 和转录调节剂 RhlR 之间在控制 QS 调控子方面的相互作用。不同的研究集中于在遗传背景下表征 PqsE 和 RhlR 控制的基因,其中 RhlR 活性可以被 PqsE 调节,并且表达受到 RhlR 的控制,从而阻碍了由 PqsE 和 RhlR 控制的不同调控子的鉴定。在这项研究中,生成并验证了一株具有多个 QS 元件缺失和诱导表达 和/或 的铜绿假单胞菌 PAO1 突变株。在这种遗传背景下进行的转录组分析使我们能够明确定义单独或组合产生时由 PqsE 和 RhlR 控制的调控子。通过逆转录定量 PCR (RT-qPCR)和转录融合实验验证了转录组数据。总体而言,我们的结果表明,在没有 RhlR 的情况下,PqsE 对铜绿假单胞菌的转录组几乎没有影响,并且存在多个 RhlR 亚调控子,它们对 PqsE 的依赖性不同。总体而言,这项研究有助于阐明 PqsE 和 RhlR 介导的 和 QS 系统之间的调控联系,并澄清这些 QS 元件对铜绿假单胞菌转录组的影响。铜绿假单胞菌能够引起难以治疗的感染,这依赖于其通过 、 、和 QS 系统精细调节多种毒力特性的能力。效应蛋白 PqsE 和转录调节剂 RhlR 都是产生关键毒力因子 和致病性 的必要条件。虽然已知 PqsE 可以刺激 RhlR 控制某些毒力因子的能力,但没有数据可以明确区分 PqsE 和 RhlR 调控子。本研究产生的数据表明,PqsE 主要通过 RhlR 依赖途径影响铜绿假单胞菌的转录组,并将 RhlR 调控子分为 PqsE 依赖和 PqsE 不依赖的亚调控子。除了有助于阐明铜绿假单胞菌复杂的 QS 网络外,我们的数据还证实 PqsE 和 RhlR 都是开发抗毒力药物的合适靶点。