First inhibitor of a bacterial two-partner secretion system.
Hartojo, A.; Luu, L. D. W.; Adamson, L.; Majors, K.; Paparella, A. S.; Cotter, P. A.; Johnson, R. M.; Doyle, M. T.
Show abstract
Two-partner secretion system transporter proteins (TpsB) are widely conserved across Gram-negative pathogens. TpsB family proteins secrete exoprotein virulence factors that perform a myriad of functions such as adhesion and immune modulation. Despite their incredible importance in bacterial infectious disease, TpsB inhibitors have not yet been discovered. Here, we describe a potent inhibitor of FhaC, a TpsB protein produced by Bordetella spp. FhaC secretes the exoprotein FhaB that is essential for the establishment of whooping cough. We designed a peptide called P1 that we predicted would prevent substrate binding and lock FhaC in a secretion-inactive state. Simulations and biochemical assays supported our hypothesis and identified interactions important for P1 binding to FhaC. Strikingly, we observed that the peptide strongly inhibited FhaB secretion from clinical isolates and broadly reduced correlates of virulence. Together, this work provides a strong case for further development of a novel class of anti-TpsB anti-virulence compounds.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Secreted retropepsin-like enzymes are essential for stress tolerance and biofilm formation in Pseudomonas aeruginosa 97%
- Scaffolding protein GspB/OutB facilitates assembly of the Dickeya dadantii type 2 secretion system by anchoring the outer membrane secretin pore to the inner membrane and to the peptidoglycan cell wall. 97%
- Dual targeting factors are required for LXG toxin export by the bacterial type VIIb secretion system 96%
Similar papers in this journal
- High-level carbapenem tolerance requires antibiotic-induced outer membrane modifications. 96%
- The type 3 secretion system requires actin polymerization to open translocon pores 96%
- Secreted LysM proteins are required for niche competition and full virulence in Pseudomonas savastanoi during host plant infection 95%
Similar papers in this journal
- Structure of a tripartite protein complex that targets toxins to the type VII secretion system 97%
- The C terminus of the mycobacterium ESX-1 secretion system substrate ESAT-6 is required for phagosomal membrane damage and virulence 96%
- Bacterial SEAL domains undergo autoproteolysis and function in regulated intramembrane proteolysis 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.