An in silico molecular docking and simulation study to identify potential anticancer phytochemicals targeting the RAS

Mahir Azmal1, Jibon Kumar Paul1, Fatema Sultana Prima1

  • 1Department of Biochemistry and Molecular Biology, Shahjalal University of Science and Technology, Sylhet, Bangladesh.

Plos One
|September 19, 2024
PubMed

Insights

Anticancer phytochemicals like luteolin show promise in inhibiting the MAPK/ERK pathway, a key driver of cancer. These natural compounds offer a potential new avenue for developing effective and less toxic cancer treatments.

Area of Science:

  • Biochemistry
  • Pharmacology
  • Computational Biology

Background:

  • The rat sarcoma (RAS) signaling pathway, specifically the MAPK/ERK cascade, is frequently dysregulated in cancers, driving uncontrolled cell growth and treatment resistance.
  • Targeting the MAPK/ERK pathway is crucial for developing novel anticancer therapies.
  • Phytochemicals represent a promising source of anticancer agents due to their potential to modulate signaling pathways.

Purpose of the Study:

  • To investigate the potential of anticancer phytochemicals to inhibit the MAPK/ERK pathway using computational methods.
  • To identify specific phytochemicals with high binding affinity and stable interactions with ERK2.

Main Methods:

  • Screening of 340 phytochemicals from Dr. Duke's database using in silico methods.
  • Molecular docking to assess binding interactions with ERK2.
  • Molecular dynamics (MD) simulations up to 200ns to evaluate complex stability.
  • Radius of gyration analysis to confirm complex compactness.

Main Results:

  • Luteolin, hispidulin, and isorhamnetin were identified as potent inhibitors of ERK2, with binding scores of -10.1, -9.86, and -9.76 Kcal/mol, respectively.
  • These phytochemicals exhibited significant binding affinities and stable interactions with the ERK2 active site during MD simulations.
  • Radius of gyration analysis confirmed the stability and compactness of the phytochemical-ERK2 complexes.

Conclusions:

  • Luteolin, hispidulin, and isorhamnetin demonstrate significant potential to inhibit ERK2 activity.
  • These findings support the development of novel, less toxic cancer therapies based on these natural compounds.
  • Phytochemicals offer a promising therapeutic strategy for targeting cancer signaling pathways.

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