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  4. Design and Evaluation of New Quinazolin-4(3H)-one Derived PqsR Antagonists as Quorum Sensing Quenchers in Pseudomonas aeruginosa
 
research article

Design and Evaluation of New Quinazolin-4(3H)-one Derived PqsR Antagonists as Quorum Sensing Quenchers in Pseudomonas aeruginosa

Soukarieh, Fadi
•
Mashabi, Alaa
•
Richardson, William
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September 10, 2021
Acs Infectious Diseases

P. aeruginosa (PA) continues to pose a threat to global public health due to its high levels of antimicrobial resistance (AMR). The ongoing AMR crisis has led to an alarming shortage of effective treatments for resistant microbes, and hence there is a pressing demand for the development of novel antimicrobial interventions. The potential use of antivirulence therapeutics to tackle bacterial infections has attracted considerable attention over the past decades as they hamper the pathogenicity of target microbes with reduced selective pressure, minimizing the emergence of resistance. One such approach is to interfere with the PA pqs quorum sensing system which upon the interaction of PqsR, a Lys-R type transcriptional regulator, with its cognate signal molecules 4-hydroxy-2-heptylquinoline (HHQ) and 2-heptyl-3-hydroxy-4-quinolone (PQS), governs multiple virulence traits and host-microbe interactions. In this study, we report the hit identification and optimization of PqsR antagonists using virtual screening coupled with whole cell assay validation. The optimized hit compound 61 ((R)-2-(4-(3-(6-chloro-4-oxoquinazolin-3(4H)-yl)-2-hydroxypropoxy)phenyl)acetonitrile) was found to inhibit the expression of the PA P-pqsA promoter controlled by PqsR with an IC50 of 1 mu M. Using isothermal titration calorimetry, a K-d of 10 nM for the P-qsR ligand binding domain (PqsR(LBD)) was determined for 61. Furthermore, the crystal structure of 61 with PqsR(LBD) was attained with a resolution of 2.65 angstrom. Compound 61 significantly reduced levels of pyocyanin, PQS, and HHQ in PAO1-L, PA14 lab strains and PAK6085 clinical isolate. Furthermore, this compound potentiated the effect of ciprofloxacin in early stages of biofilm treatment and in Galleria mellonella infected with PA. Altogether, this data shows 61 as a potent PqsR inhibitor with potential for hit to lead optimization toward the identification of a PA QS inhibitor which can be advanced into preclinical development.

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Type
research article
DOI
10.1021/acsinfecdis.1c00175
Web of Science ID

WOS:000696180300009

Author(s)
Soukarieh, Fadi
Mashabi, Alaa
Richardson, William
Oton, Eduard Vico  
Romero, Manuel
Roberston, Shaun N.
Grossman, Scott
Sou, Tomas
Liu, Ruiling
Halliday, Nigel
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Date Issued

2021-09-10

Published in
Acs Infectious Diseases
Volume

7

Issue

9

Start page

2666

End page

2685

Subjects

Chemistry, Medicinal

•

Infectious Diseases

•

Pharmacology & Pharmacy

•

pseudomonas aeruginosa

•

pqsr

•

pseudomonas quinolone signal (pqs)

•

biofilms

•

quorum sensing inhibition

•

inhibitors

•

discovery

•

virulence

•

signal

•

derivatives

•

strategies

•

docking

•

network

•

potent

•

roles

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
IIE  
Available on Infoscience
October 23, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/182491
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