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Substrate‐Inspired Fragment Merging and Growing Affords Efficacious LasB Inhibitors

Cansu Kaya, Isabell Walter, Samir Yahiaoui, Asfandyar Sikandar, Alaa Alhayek, Jelena Konstantinović, Andreas M. Kany, Jörg Haupenthal, Jesko Köhnke, Rolf W. Hartmann, Anna K. H. Hirsch

2021Angewandte Chemie International Edition23 citationsDOIOpen Access PDF

Abstract

Extracellular virulence factors have emerged as attractive targets in the current antimicrobial resistance crisis. The Gram-negative pathogen Pseudomonas aeruginosa secretes the virulence factor elastase B (LasB), which plays an important role in the infection process. Here, we report a sub-micromolar, non-peptidic, fragment-like inhibitor of LasB discovered by careful visual inspection of structural data. Inspired by the natural LasB substrate, the original fragment was successfully merged and grown. The optimized inhibitor is accessible via simple chemistry and retained selectivity with a substantial improvement in activity, which can be rationalized by the crystal structure of LasB in complex with the inhibitor. We also demonstrate an improved in vivo efficacy of the optimized hit in Galleria mellonella larvae, highlighting the significance of this class of compounds as promising drug candidates.

Topics & Concepts

Galleria mellonellaVirulencePseudomonas aeruginosaVirulence factorMicrobiologyPathogenExtracellularFragment (logic)ChemistryIn vivoBiologyHuman pathogenStereochemistryBacteriaBiochemistryGeneticsGeneComputer scienceProgramming languageAntimicrobial Peptides and ActivitiesAntimicrobial agents and applicationsBacterial biofilms and quorum sensing
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