Identification of novel inhibitors targeting PI3Kα via ensemble-based virtual screening method, biological evaluation

Hui Zhang1,2, Hua-Zhao Qi3, Ya-Juan Li3

  • 1College of Life Science, Northwest Normal University, Lanzhou, 730070, Gansu, People's Republic of China. zhanghuisky@nwnu.edu.cn.

Insights

Researchers identified a novel PIK3CA inhibitor, hit15, through virtual screening. This potent PI3Kα inhibitor shows promise for developing new cancer therapies targeting overactivated PI3Kα pathways.

Area of Science:

  • Medicinal Chemistry
  • Computational Drug Discovery
  • Oncology

Background:

  • The PIK3CA gene, encoding PI3K p110α, is frequently mutated and overexpressed in many human cancers.
  • Targeting PI3Kα with potent and selective inhibitors is a promising strategy for cancer treatment.

Purpose of the Study:

  • To establish a virtual screening platform for identifying novel PI3Kα inhibitors.
  • To discover and characterize potent PI3Kα inhibitors for potential cancer drug development.

Main Methods:

  • Utilized machine learning, pharmacophore modeling, and molecular docking for virtual screening.
  • Screened 295,024 compounds to identify potential PI3Kα inhibitors.
  • Performed molecular dynamics simulations and binding free energy calculations for lead compound validation.

Main Results:

  • Identified 28 potential PI3Kα inhibitors, with hit15 demonstrating the strongest inhibitory effect (IC50 < 1.0 µM).
  • Molecular dynamics simulations confirmed stable binding of hit15 to the PI3Kα active site via key interactions.
  • Calculated binding free energy for the PI3Kα-hit15 complex was -65.3 kJ/mol, with specific residues contributing significantly.

Conclusions:

  • Hit15, a novel scaffold compound, is a potent PI3Kα inhibitor.
  • Hit15 represents a promising candidate for further drug development against cancers with PI3Kα overactivation.