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Replication of the Ordered, Nonredundant Library of Pseudomonas aeruginosa strain PA14 Transposon Insertion Mutants
Published on: May 4, 2018
Differential Modulation of Quorum Sensing Signaling through QslA in Pseudomonas aeruginosa Strains PAO1 and PA14
T G Sana1, R Lomas2, M R Gimenez3
1Laboratoire d'Ingénierie des Systèmes Macromoléculaires-UMR7255, Institut de Microbiologie de la Méditerranée, Aix-Marseille University and CNRS, Marseille, France thibault.sana@epfl.ch bleves@imm.cnrs.fr.
Abstract:
Two clinical isolates of the opportunist pathogen Pseudomonas aeruginosa named PAO1 and PA14 are commonly studied in research laboratories. Despite the isolates being closely related, PA14 exhibits increased virulence compared to that of PAO1 in various models. To determine which players are responsible for the hypervirulence phenotype of the PA14 strain, we elected a transcriptomic approach through RNA sequencing. We found 2,029 genes that are differentially expressed between the two strains, including several genes that are involved with or regulated by quorum sensing (QS), known to control most of the virulence factors in P. aeruginosa Among them, we chose to focus our study on QslA, an antiactivator of QS whose expression was barely detectable in the PA14 strain according our data. We hypothesized that lack of expression of qslA in PA14 could be responsible for higher QS expression in the PA14 strain, possibly explaining its hypervirulence phenotype. After confirming that QslA protein was highly produced in PAO1 but not in the PA14 strain, we obtained evidence showing that a PAO1 deletion strain of qslA has faster QS gene expression kinetics than PA14. Moreover, known virulence factors activated by QS, such as (i) pyocyanin production, (ii) H2-T6SS (type VI secretion system) gene expression, and (iii) Xcp-T2SS (type II secretion system) machinery production and secretion, were all lower in PAO1 than in PA14, due to higher qslA expression. However, biofilm formation and cytotoxicity toward macrophages, although increased in PA14 compared to PAO1, were independent of QslA control. Together, our findings implicated differential qslA expression as a major determinant of virulence factor expression in P. aeruginosa strains PAO1 and PA14.IMPORTANCEPseudomonas aeruginosa is an opportunistic pathogen responsible for acute nosocomial infections and chronic pulmonary infections. P. aeruginosa strain PA14 is known to be hypervirulent in different hosts. Despite several studies in the field, the underlining molecular mechanisms sustaining this phenotype remain enigmatic. Here we provide evidence that the PA14 strain has faster quorum sensing (QS) kinetics than the PAO1 strain, due to the lack of QslA expression, an antiactivator of QS. QS is a major regulator of virulence factors in P. aeruginosa; therefore, we propose that the hypervirulent phenotype of the PA14 strain is, at least partially, due to the lack of QslA expression. This mechanism could be of great importance, as it could be conserved among other P. aeruginosa isolates.
Insights
The hypervirulence of Pseudomonas aeruginosa PA14 is linked to its lack of QslA, an antiactivator of quorum sensing (QS). This difference in QslA expression explains faster QS kinetics and higher virulence factor production in PA14 compared to PAO1.
Area of Science:
- Microbiology
- Molecular Biology
- Genetics
Background:
- Pseudomonas aeruginosa is an opportunistic pathogen causing nosocomial and chronic infections.
- Strain PA14 exhibits higher virulence than strain PAO1, but the molecular basis is unclear.
- Quorum sensing (QS) regulates many P. aeruginosa virulence factors.
Purpose of the Study:
- To investigate the molecular mechanisms behind the hypervirulence of P. aeruginosa PA14.
- To determine the role of QslA, a QS antiactivator, in differential virulence between PAO1 and PA14.
Main Methods:
- Transcriptomic analysis using RNA sequencing to compare gene expression between PAO1 and PA14.
- Focus on differential expression of genes related to quorum sensing (QS).
- Experimental validation of QslA protein production and its effect on QS kinetics and virulence factors.
Main Results:
- 2,029 genes were differentially expressed between PAO1 and PA14.
- QslA was highly expressed in PAO1 but barely detectable in PA14.
- Lack of QslA in PAO1 led to faster QS gene expression kinetics compared to PA14.
- Virulence factors (pyocyanin, H2-T6SS, Xcp-T2SS) were lower in PAO1 than PA14, correlating with QslA expression.
- Biofilm formation and cytotoxicity were independent of QslA control.
Conclusions:
- Differential expression of QslA is a key determinant of QS-regulated virulence factor expression in P. aeruginosa.
- The hypervirulence of PA14 is at least partially due to its lack of QslA expression, leading to enhanced QS.
- This QslA-mediated regulation of QS may be conserved across P. aeruginosa isolates.
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