Phytochemicals as potential AXL inhibitors for cancer therapy: A computational study

Abdelbaset Mohamed Elasbali1, Afnan Elayyan Mousa Elayyan1, Salem Hussain Alharethi2

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

Insights

This study identifies natural compounds, Neogitogenin and Solaspigenin, as potential inhibitors of AXL receptor tyrosine kinase, offering new therapeutic avenues for metastatic cancers and drug resistance.

Area of Science:

  • Biochemistry
  • Pharmacology
  • Computational Biology

Background:

  • TAM receptor tyrosine kinases (Tyro3, AXL, Mer) are crucial in immunity and diseases like cancer.
  • AXL signaling drives cancer progression, metastasis, and therapeutic resistance, making it a key target.
  • Elevated AXL expression correlates with poor prognosis in lung, breast, pancreatic, ovarian, colon, and melanoma cancers.

Purpose of the Study:

  • To virtually screen phytochemicals from Indian medicinal plants for potential AXL inhibitors.
  • To identify novel natural compounds that can modulate AXL signaling for cancer therapy.

Main Methods:

  • Virtual screening of 17,908 phytochemicals from the IMPPAT 2.0 database.
  • Physicochemical property filtering (Lipinski's rule-of-five) and molecular docking with AXL.
  • ADMET, PAINS, and PASS analyses followed by molecular dynamics simulations.

Main Results:

  • 11,676 compounds passed initial drug-like property filters.
  • Neogitogenin and Solaspigenin showed high binding affinity (-10.1 to -10.8 kcal/mol) to the AXL binding pocket.
  • Molecular dynamics simulations confirmed stable protein-ligand complexes for Neogitogenin and Solaspigenin.

Conclusions:

  • Neogitogenin and Solaspigenin are promising natural inhibitors of AXL.
  • These compounds exhibit favorable drug-like properties and stable binding, suggesting potential for cancer treatment.
  • Modulating AXL with these natural compounds may offer an alternative to synthetic inhibitors like R428.

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