A phospholipase assay screen identifies synergistic inhibitors of the P. aeruginosa toxin ExoU

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Abstract

The opportunistic pathogen Pseudomonas aeruginosa is a leading cause of disability and mortality worldwide and the World Health Organisation has listed it with the highest priority for the need of new therapies. P. aeruginosa strains that express ExoU are implicated in the worst clinical outcomes. ExoU is phospholipase that is secreted by P. aeruginosa directly into the cytoplasm of target host cells, where its catalytic activity, directed towards plasma membranes, causes rapid cell lysis. Inhibition of ExoU may be a novel strategy to combat acutely cytotoxic ExoU expressing P. aeruginosa infections. Using an in vitro phospholipase assay, we performed a high throughput screen to identify compounds that might be repurposed as therapeutic ExoU inhibitors. We discovered a panel of compounds that appeared to inhibit ExoU through distinct mechanisms. Compound C prevented ExoU membrane localisation in HEK293T cells and caused colocalization with lysosomes, whereas compound D prevented PIP 2 dependent oligomerisation of ExoU in vitro suggestive of synergistic action. Indeed, the concentrations required by compounds C and D to inhibit in vitro ExoU catalytic activity, when used in combination, was in the nanomolar region. In corneal scratch and infection assays, these compounds reduced ExoU mediated cytotoxicity, as assessed by fluorescence microscopy and lactate dehydrogenase release assays.

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europepmc
last seen: 2026-05-19T01:45:01.086888+00:00