Pharmacophore-based high-throughput virtual screening (HTVS) to identify new c-Src kinase inhibitors with anticancer

Ali M Alaseem1, Summya Rashid2, J Puneetha3

  • 1Department of Pharmacology, College of Medicine, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh 13317, Saudi Arabia.

PubMed

Insights

Researchers identified a novel compound, 71736582, as a potent inhibitor of c-Src kinase, demonstrating significant anticancer potential. This discovery offers a promising new avenue for developing targeted cancer therapies by inhibiting c-Src activity.

Area of Science:

  • Oncology
  • Pharmacology
  • Computational Chemistry

Background:

  • c-Src is a non-receptor tyrosine kinase overexpressed in many cancers.
  • Targeting c-Src is challenging due to its cellular shuttling, signaling roles, structural homology to other kinases, and compensatory pathways.
  • Existing c-Src inhibitors face issues with toxicity, resistance, and lack of selectivity.

Purpose of the Study:

  • To identify novel small molecules for c-Src inhibition with anticancer potential.
  • To overcome the limitations of current c-Src targeting strategies.

Main Methods:

  • Virtual screening of 500,000 small molecules from the ChemBridge library.
  • Pharmacophore modeling, in silico ADME analysis, and high-throughput virtual screening (HTVS).
  • Molecular docking, 200 ns molecular dynamics (MD) simulations, and biological validation of top candidates.

Main Results:

  • Four top-ranked molecules (5280699, 9797370, 11200016, 71736582) showed significant binding to the c-Src kinase site.
  • MD simulations confirmed the stability of inhibitors 11200016 and 71736582.
  • Compound 71736582 demonstrated potent anticancer activity against multiple cancer cell lines, inhibiting c-Src kinase activity (IC50: 517 nM) and inducing apoptosis.

Conclusions:

  • Compound 71736582 is a highly stable and effective inhibitor of c-Src kinase.
  • This study presents a promising lead compound for developing new targeted anticancer drugs.
  • Further exploration of 71736582 could lead to novel therapeutic strategies for various cancers.