High-Throughput Screen for Inhibitors of the Type IV Pilus Assembly ATPase PilB

Keane J Dye1, Nancy J Vogelaar2, Pablo Sobrado2,3

  • 1Department of Biological Sciences, Virginia Tech, Blacksburg, Virginia, USA.

Msphere
|March 4, 2021
PubMed

Insights

Researchers developed a high-throughput screen (HTS) to find inhibitors of bacterial type IV pilus (T4P) assembly protein PilB. This assay successfully identified quercetin as a PilB inhibitor, validating its potential for discovering new antivirulence drugs.

Area of Science:

  • Microbiology and Molecular Biology
  • Drug Discovery and Development

Background:

  • Bacterial type IV pili (T4P) are crucial virulence factors in human pathogens, many of which exhibit increasing antibiotic resistance.
  • Antivirulence chemotherapeutics offer a promising alternative to antibiotics by targeting disease mechanisms rather than bacterial survival.
  • A significant barrier to developing anti-T4P compounds is the absence of an easily implementable and economical high-throughput screen (HTS).

Purpose of the Study:

  • To develop and validate the first HTS for identifying inhibitors of the T4P assembly ATPase, PilB, in vitro.
  • To establish a reliable method for discovering novel antivirulence compounds targeting PilB, a universal T4P component.

Main Methods:

  • A binding assay was developed using purified Chloracidobacterium thermophilum PilB (CtPilB) and a fluorescent ATP analog (MANT-ATP).
  • The binding assay was adapted into an HTS format.
  • A pilot screen of kinase inhibitors was conducted, followed by in vivo validation using Myxococcus xanthus to assess T4P-dependent motility and assembly.

Main Results:

  • The developed HTS successfully identified quercetin as an inhibitor of CtPilB in vitro.
  • Quercetin treatment reduced T4P-dependent motility and T4P assembly in vivo in Myxococcus xanthus.
  • These findings validate the HTS assay's effectiveness in identifying PilB inhibitors.

Conclusions:

  • The established HTS assay is effective for identifying PilB inhibitors, offering a valuable tool for drug discovery.
  • This assay can accelerate the search for antivirulence chemotherapeutics targeting PilB, a critical protein in all bacterial T4P systems.
  • The study demonstrates the feasibility of using whole-cell assays to evaluate potential inhibitors against T4P assembly.

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