New Publication on Piperidine-based natural products targeting Type IV pili antivirulence: A computational approach

Highlights

  • The elongation ATPases of T4 pili in N. meningitidis and P. aeruginosa were targeted.

  • A computational approach has been pursued to find common inhibitor molecules.

  • Piperidine-based inhibitors from the COCONUT natural products database were screened.

  • Valine residue in the ADP binding pocket was identified to be a potential target site.

Abstract

Type IV (T4) pilus is among the virulence factors with a key role in serious bacterial diseases. Specifically, in Neisseria meningitidis and Pseudomonas aeruginosa, it determines pathogenicity and causes infection. Here, a computational approach has been pursued to find piperidine-based inhibitor molecules against the elongation ATPase of T4 pili in these two selected pathogens. Using the modeled structures of the PilF and PilB ATPases of N. meningitidis and P. aeruginosa, virtual library screening via molecular docking has returned inhibitor molecule candidates. The dynamics of the best three binders have further been investigated in detail via molecular dynamic simulations. Among these, ligands with COCONUT IDs CNP0030078 and CNP0051517 were found to have higher potential in the inhibition of ATPases based on molecular dynamic simulation analysis and biological activity information. The obtained results will guide future efforts in antivirulence drug development against T4 pili of N. meningitidis and P. aeruginosa.

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