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A Pseudomonas aeruginosa PQS quorum-sensing system inhibitor with anti-staphylococcal activity sensitizes polymicrobial biofilms to tobramycin

Murray, Ewan J; Dubern, Jean-Frédéric; Chan, Weng C.; Chhabra, Siri Ram; Williams, Paul

A Pseudomonas aeruginosa PQS quorum-sensing system inhibitor with anti-staphylococcal activity sensitizes polymicrobial biofilms to tobramycin Thumbnail


Authors

JEAN DUBERN JEAN.DUBERN@NOTTINGHAM.AC.UK
Senior Research Fellow

Siri Ram Chhabra

PAUL WILLIAMS PAUL.WILLIAMS@NOTTINGHAM.AC.UK
Professor of Molecular Microbiology



Abstract

As single- and mixed-species biofilms, Staphylococcus aureus and Pseudomonas aeruginosa cause difficult-to-eradicate chronic infections. In P. aeruginosa, pseudomonas quinolone (PQS)-dependent quorum sensing regulates virulence and biofilm development that can be attenuated via antagonists targeting the transcriptional regulator PqsR (MvfR). Here, we exploited a quinazolinone (QZN) library including PqsR agonists and antagonists for their activity against S. aureus alone, when co-cultured with P. aeruginosa, and in combination with the aminoglycoside tobramycin. The PqsR inhibitor, QZN 34 killed planktonic Gram-positives but not Gram-negatives. QZN 34 prevented S. aureus biofilm formation, severely damaged established S. aureus biofilms, and perturbed P. aeruginosa biofilm development. Although P. aeruginosa protected S. aureus from tobramycin in mixed biofilms, the combination of aminoglycoside antibiotic with QZN 34 eradicated the mixed-species biofilm. The mechanism of action of QZN 34 toward Gram-positive bacteria is shown to involve membrane perturbation and dissipation of transmembrane potential.

Citation

Murray, E. J., Dubern, J., Chan, W. C., Chhabra, S. R., & Williams, P. (2022). A Pseudomonas aeruginosa PQS quorum-sensing system inhibitor with anti-staphylococcal activity sensitizes polymicrobial biofilms to tobramycin. Cell Chemical Biology, 29(7), 1187-1199.e6. https://doi.org/10.1016/j.chembiol.2022.02.007

Journal Article Type Article
Acceptance Date Jan 4, 2022
Online Publication Date Mar 7, 2022
Publication Date Jul 21, 2022
Deposit Date Jan 20, 2022
Publicly Available Date Mar 8, 2023
Journal Cell Chemical Biology
Electronic ISSN 2451-9456
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 29
Issue 7
Pages 1187-1199.e6
DOI https://doi.org/10.1016/j.chembiol.2022.02.007
Keywords Clinical Biochemistry; Drug Discovery; Pharmacology; Molecular Biology; Molecular Medicine; Biochemistry
Public URL https://nottingham-repository.worktribe.com/output/7281762
Publisher URL https://www.cell.com/cell-chemical-biology/fulltext/S2451-9456(22)00088-5

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