In silico identification of putative bifunctional Plk1 inhibitors by integrative virtual screening and structural

Shagufta Shafique1, Nousheen Bibi1, Sajid Rashid1

  • 1National Center for Bioinformatics, Faculty of Biological Sciences, Quaid-i-Azam University Islamabad, Pakistan.

Insights

Researchers identified novel bifunctional Polo-like kinase 1 (Plk1) inhibitors using an integrated computational strategy. These inhibitors target both ATP and substrate binding sites, offering a promising approach for selective cancer therapeutics.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Medicinal Chemistry

Background:

  • Polo-like kinase 1 (Plk1) is a critical cell cycle regulator.
  • Plk1 is overexpressed in many cancers, making it a promising therapeutic target.
  • Targeting Plk1 aims to develop novel antimitotic cancer drugs.

Purpose of the Study:

  • To develop a novel integrative strategy for identifying bifunctional Plk1 inhibitors.
  • To discover compounds that simultaneously bind to Plk1's ATP and substrate sites.
  • To explore unique structural properties of Plk1 for inhibitor design.

Main Methods:

  • Structure-based virtual screening (SBVS) of 20,000 compounds.
  • Molecular dynamics simulations to analyze inhibitor binding.
  • Filtration based on binding affinity to Plk1 kinase and polo box domains.

Main Results:

  • Approximately 2000 initial hits were identified from virtual screening.
  • 26 compounds were isolated based on binding abilities.
  • 10 unique compounds were selected for further detailed study.
  • A representative compound underwent molecular dynamics simulation for structural insights.

Conclusions:

  • The integrative approach successfully identified potential bifunctional Plk1 inhibitors.
  • These inhibitors show promise for selective Plk1 targeting in cancer therapy.
  • This strategy complements high-throughput screening for drug discovery.