We report here that P. aeruginosa produces another signal molecule, 2-heptyl-3-hydroxy-4-quinolone, which has been designated as the Pseudomonas quinolone signal.
First-pass extracted concept
Pseudomonas quinolone signal
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Aliases
2-heptyl-3-hydroxy-4-quinolone
Evidence Snippets
Supporting Sources
Linked Claims
2-heptyl-3-hydroxy-4-quinolone can function as an intercellular signal in Pseudomonas aeruginosa.
Quoted textsource-backed
The demonstration that 2-heptyl-3-hydroxy-4-quinolone can function as an intercellular signal
The bioactivity of Pseudomonas quinolone signal is mediated by the rhl quorum sensing system.
Quoted textsource-backed
We also show that the synthesis and bioactivity of Pseudomonas quinolone signal were mediated by the P. aeruginosa las and rhl quorum sensing systems, respectively.
The synthesis of Pseudomonas quinolone signal is mediated by the las quorum sensing system.
Quoted textsource-backed
We also show that the synthesis and bioactivity of Pseudomonas quinolone signal were mediated by the P. aeruginosa las and rhl quorum sensing systems, respectively.
Pseudomonas aeruginosa produces the signal molecule 2-heptyl-3-hydroxy-4-quinolone, designated the Pseudomonas quinolone signal.
Quoted textsource-backed
We report here that P. aeruginosa produces another signal molecule, 2-heptyl-3-hydroxy-4-quinolone, which has been designated as the Pseudomonas quinolone signal.
Pseudomonas quinolone signal controls expression of lasB.
Quoted textsource-backed
It was found that this unique cell-to-cell signal controlled the expression of lasB, which encodes for the major virulence factor, LasB elastase.
Pseudomonas aeruginosa cell-to-cell signaling is not restricted to acyl-homoserine lactones.
Quoted textsource-backed
shows that P. aeruginosa cell-to-cell signaling is not restricted to acyl-homoserine lactones