Triazole-containing N-acyl homoserine lactones targeting the quorum sensing system in Pseudomonas aeruginosa

[Display omitted] In an attempt to devise new antimicrobial treatments for biofilm infections, the bacterial cell–cell communication system termed quorum sensing has emerged as an attractive target. It has proven possible to intercept the communication system by synthetic non-native ligands and ther...

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Veröffentlicht in:Bioorganic & medicinal chemistry 2015-04, Vol.23 (7), p.1638-1650
Hauptverfasser: Hansen, Mette R., Jakobsen, Tim H., Bang, Claus G., Cohrt, Anders Emil, Hansen, Casper L., Clausen, Janie W., Le Quement, Sebastian T., Tolker-Nielsen, Tim, Givskov, Michael, Nielsen, Thomas E.
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Sprache:eng
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Zusammenfassung:[Display omitted] In an attempt to devise new antimicrobial treatments for biofilm infections, the bacterial cell–cell communication system termed quorum sensing has emerged as an attractive target. It has proven possible to intercept the communication system by synthetic non-native ligands and thereby lower the pathogenesis and antibiotic tolerance of a bacterial biofilm. To identify the structural elements important for antagonistic or agonistic activity against the Pseudomonas aeruginosa LasR protein, we report the synthesis and screening of new triazole-containing mimics of natural N-acyl homoserine lactones. A series of azide- and alkyne-containing homoserine lactone building blocks was used to prepare an expanded set of 123 homoserine lactone analogues through a combination of solution- and solid-phase synthesis methods. The resulting compounds were subjected to cell-based quorum sensing screening assays, thereby revealing several bioactive compounds, including 13 compounds with antagonistic activity and 9 compounds with agonistic activity.
ISSN:0968-0896
1464-3391
DOI:10.1016/j.bmc.2015.01.038