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Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
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.
Abstract:
The bacterial type IV pilus (T4P) is a prominent virulence factor in many significant human pathogens, some of which have become increasingly antibiotic resistant. Antivirulence chemotherapeutics are considered a promising alternative to antibiotics because they target the disease process instead of bacterial viability. However, a roadblock to the discovery of anti-T4P compounds is the lack of a high-throughput screen (HTS) that can be implemented relatively easily and economically. Here, we describe the first HTS for the identification of inhibitors specifically against the T4P assembly ATPase PilB in vitroChloracidobacterium thermophilum PilB (CtPilB) had been demonstrated to have robust ATPase activity and the ability to bind its expected ligands in vitro. We utilized CtPilB and MANT-ATP, a fluorescent ATP analog, to develop a binding assay and adapted it for an HTS. As a proof of principle, we performed a pilot screen with a small compound library of kinase inhibitors and identified quercetin as a PilB inhibitor in vitro Using Myxococcus xanthus as a model bacterium, we found quercetin to reduce its T4P-dependent motility and T4P assembly in vivo. These results validated our HTS as effective in identifying PilB inhibitors. This assay may prove valuable in seeking leads for the development of antivirulence chemotherapeutics against PilB, an essential and universal component of all bacterial T4P systems.IMPORTANCE Many bacterial pathogens use their type IV pili (T4P) to facilitate and maintain infection of a human host. Small chemical compounds that inhibit the production or assembly of T4P hold promise in the treatment and prevention of infections, especially in the era of increasing threats from antibiotic-resistant bacteria. However, few chemicals are known to have inhibitory or anti-T4P activity. Their identification has not been easy due to the lack of a method for the screening of compound collections or libraries on a large scale. Here, we report the development of an assay that can be scaled up to screen compound libraries for inhibitors of a critical T4P assembly protein. We further demonstrate that it is feasible to use whole cells to examine potential inhibitors for their activity against T4P assembly in a bacterium.
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.

