Identification and deciphering novel compounds dynamics against DTYMK: A potential oncogene against pancreatic cancer

Abdulaziz A Aloliqi1, Hamid G Mohamed1

  • 1Department of Basic Health Sciences, College of Applied Medical Sciences, Qassim University, Buraydah, Saudi Arabia.

Insights

Computational study identifies AZD2281, MDV3100, and carbamazepine as potential treatments for pancreatic cancer (PC). These drug compounds show high binding affinity and stability against the DTYMK target, warranting further experimental validation.

Area of Science:

  • Computational drug discovery
  • Molecular modeling
  • Oncology

Background:

  • Deoxythymidylate kinase (DTYMK) is crucial in pancreatic cancer (PC) progression.
  • Targeting DTYMK offers a potential therapeutic strategy for PC.

Purpose of the Study:

  • To identify novel anti-cancer drug compounds targeting DTYMK for pancreatic cancer treatment.
  • To evaluate the binding affinity and stability of potential drug candidates using computational methods.

Main Methods:

  • Utilized molecular docking, MD simulations, and pharmacokinetics profiling.
  • Screened the FDA-approved anticancer drug library (1745 compounds).
  • Assessed drug-likeness using Lipinski's Rule of Five and analyzed complex stability via RMSD, salt bridge, PCA, and MMGB/PBSA calculations.

Main Results:

  • Identified AZD2281, MDV3100, and carbamazepine as promising candidates with high docking scores (-9.8 to -9.6 kcal/mol).
  • All identified compounds adhered to Lipinski's Rule of Five, indicating good drug-like properties.
  • AZD2281 demonstrated superior stability and binding consistency, supported by RMSD, MMGB/PBSA, and entropy analyses.

Conclusions:

  • This in silico study successfully identified novel therapeutic compounds (AZD2281, MDV3100, carbamazepine) for pancreatic cancer targeting DTYMK.
  • The identified compounds require experimental validation for their efficacy and potential clinical application.
  • Further modifications may enhance the targeting capabilities of these compounds against DTYMK.