Pustelny_2009_Chem.Biol_16_1259

Reference

Title : Dioxygenase-mediated quenching of quinolone-dependent quorum sensing in Pseudomonas aeruginosa - Pustelny_2009_Chem.Biol_16_1259
Author(s) : Pustelny C , Albers A , Buldt-Karentzopoulos K , Parschat K , Chhabra SR , Camara M , Williams P , Fetzner S
Ref : Chemical Biology , 16 :1259 , 2009
Abstract :

2-Heptyl-3-hydroxy-4(1H)-quinolone (PQS) is a quorum-sensing signal molecule used by Pseudomonas aeruginosa. The structural similarity between 3-hydroxy-2-methyl-4(1H)-quinolone, the natural substrate for the 2,4-dioxygenase, Hod, and PQS prompted us to investigate whether Hod quenched PQS signaling. Hod is capable of catalyzing the conversion of PQS to N-octanoylanthranilic acid and carbon monoxide. In P. aeruginosa PAO1 cultures, exogenously supplied Hod protein reduced expression of the PQS biosynthetic gene pqsA, expression of the PQS-regulated virulence determinants lectin A, pyocyanin, and rhamnolipids, and virulence in planta. However, the proteolytic cleavage of Hod by extracellular proteases, competitive inhibition by the PQS precursor 2-heptyl-4(1H)-quinolone, and PQS binding to rhamnolipids reduced the efficiency of Hod as a quorum-quenching agent. Nevertheless, these data indicate that enzyme-mediated PQS inactivation has potential as an antivirulence strategy against P. aeruginosa.

PubMedSearch : Pustelny_2009_Chem.Biol_16_1259
PubMedID: 20064436

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Citations formats

Pustelny C, Albers A, Buldt-Karentzopoulos K, Parschat K, Chhabra SR, Camara M, Williams P, Fetzner S (2009)
Dioxygenase-mediated quenching of quinolone-dependent quorum sensing in Pseudomonas aeruginosa
Chemical Biology 16 :1259

Pustelny C, Albers A, Buldt-Karentzopoulos K, Parschat K, Chhabra SR, Camara M, Williams P, Fetzner S (2009)
Chemical Biology 16 :1259