Identification of novel c-Kit inhibitors from natural sources using virtual screening and molecular dynamics

Abdelbaset Mohamed Elasbali1,2, Waleed Abu Al-Soud3, Elyasa Mustafa Elfaki1

  • 1Department of Clinical Laboratory Science, College of Applied Sciences-Qurayyat, Jouf University, Sakakah, Saudi Arabia.

Insights

Researchers identified Anilinonaphthalene and Licoflavonol from Indian plants as potential c-Kit inhibitors. These natural compounds show promise for developing new cancer therapies against GISTs and AML with fewer side effects.

Area of Science:

  • Biochemistry and Molecular Biology
  • Pharmacology and Drug Discovery
  • Computational Chemistry

Background:

  • The c-Kit receptor tyrosine kinase is implicated in cancers like GISTs and AML, making it a key therapeutic target.
  • Existing small molecule inhibitors face challenges including drug resistance, side effects, and patient response variability.
  • Phytochemicals offer a promising avenue for discovering novel c-Kit inhibitors with improved efficacy and specificity.

Purpose of the Study:

  • To identify potential c-Kit inhibitors from active phytoconstituents of Indian medicinal plants using structure-based virtual screening.
  • To evaluate the drug-like properties and binding capabilities of selected natural compounds against c-Kit.
  • To assess the stability and interaction of promising candidates with c-Kit through molecular dynamics simulations.

Main Methods:

  • Structure-based virtual screening of phytoconstituents from Indian medicinal plants.
  • Selection of candidate compounds based on drug-like features and binding affinity to c-Kit.
  • All-atom molecular dynamics (MD) simulations to analyze the stability and interactions of selected compounds with c-Kit.

Main Results:

  • Two phytoconstituents, Anilinonaphthalene (from Daucus carota) and Licoflavonol (from Glycyrrhiza glabra), were identified as promising c-Kit inhibitors.
  • Both compounds demonstrated favorable drug-like properties and significant binding potential to c-Kit.
  • MD simulations confirmed the stability and specific binding interactions of Anilinonaphthalene and Licoflavonol with c-Kit.

Conclusions:

  • Anilinonaphthalene and Licoflavonol are potential lead compounds for developing novel c-Kit inhibitors.
  • These identified phytoconstituents could form the basis for new therapies against c-Kit-driven cancers like GISTs and AML.
  • Virtual screening and MD simulations provide an effective strategy for discovering natural drug candidates.