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转录因子PsrA在铜绿假单胞菌PAO1群体感应调控中的作用

Roles of transcriptional factor PsrA in the regulation of quorum sensing in PAO1.

作者信息

Kok Li-Ching, Tsai Chia-Chun, Liao Yu-Hsuan, Lo Yi-Ling, Cheng Nai-Wei, Lin Ching-Ting, Chang Hwan-You

机构信息

Institute of Molecular Medicine, National Tsing Hua University, Hsinchu City, Taiwan.

School of Chinese Medicine, China Medical University, Taichung City, Taiwan.

出版信息

Front Microbiol. 2024 Jun 26;15:1424330. doi: 10.3389/fmicb.2024.1424330. eCollection 2024.

Abstract

The transcription factor PsrA regulates fatty acid metabolism, the type III secretion system, and quinolone signaling quorum sensing system in . To explore additional roles of PsrA in , this study engineered a PAO1 strain to carry a recombinant plasmid with the gene (pMMB) and examined the impact of elevated expression to the bacterium. Transcriptomic analysis revealed that PsrA significantly downregulated genes encoding the master quorum-sensing regulators, RhlR and LasR, and influenced many quorum-sensing-associated genes. The role of PsrA in quorum sensing was further corroborated by testing autoinducer synthesis in PAO1 [pMMB] using two reporter bacteria strains CV026 and [pSB1075], which respond to short- and long-chain acyl homoserine lactones, respectively. Phenotypic comparisons of isogenic Δ, Δ, and ΔΔ mutants revealed that the reduced elastase, caseinase, and swarming activity in PAO1 [pMMB] were likely mediated through LasR. Additionally, electrophoretic mobility shift assays demonstrated that recombinant PsrA could bind to the promoter at a 5'-AAACGTTTGCTT-3' sequence, which displays moderate similarity to the previously reported consensus PsrA binding motif. Furthermore, the PsrA effector molecule oleic acid inhibited PsrA binding to the promoter and restored several quorum sensing-related phenotypes to wild-type levels. These findings suggest that PsrA regulates certain quorum-sensing phenotypes by negatively regulating expression, with oleic acid acting as a crucial signaling molecule.

摘要

转录因子PsrA在……中调节脂肪酸代谢、III型分泌系统和喹诺酮信号群体感应系统。为了探索PsrA在……中的其他作用,本研究构建了一株携带含有……基因的重组质粒(pMMB)的PAO1菌株,并检测了……表达升高对该细菌的影响。转录组分析表明,PsrA显著下调了编码主要群体感应调节因子RhlR和LasR的基因,并影响了许多与群体感应相关的基因。通过使用分别对短链和长链酰基高丝氨酸内酯有反应的两种报告菌株CV026和……[pSB1075]检测PAO1 [pMMB]中的自诱导物合成,进一步证实了PsrA在群体感应中的作用。同基因Δ……、Δ……和ΔΔ突变体的表型比较表明,PAO1 [pMMB]中弹性蛋白酶、酪蛋白酶和群体运动活性的降低可能是通过LasR介导的。此外,电泳迁移率变动分析表明,重组PsrA可以在5'-AAACGTTTGCTT-3'序列处与……启动子结合,该序列与先前报道的PsrA结合共有基序具有中等相似性。此外,PsrA效应分子油酸抑制PsrA与……启动子的结合,并将几种与群体感应相关的表型恢复到野生型水平。这些发现表明,PsrA通过负调节……表达来调节某些群体感应表型,油酸作为一种关键的信号分子发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d11/11233452/e2602e5258f2/fmicb-15-1424330-g001.jpg

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