Cheminformatics-based screening and evaluation of phytochemicals as CDK2 inhibitors in colorectal cancer therapy

Nowshin Tabassum1,2, Md Ekram Hossan1,2, Md Mujahidul Islam1,3

  • 1Bioinformatics Laboratory (BioLab), Noakhali, Bangladesh.

Plos One
|September 3, 2025
PubMed

Insights

This study identifies three novel phytochemicals as potent inhibitors of cyclin-dependent kinase 2 (CDK2) for colorectal cancer (CRC) treatment. These compounds show promising drug-like properties and stronger binding than current therapies, offering new therapeutic avenues.

Area of Science:

  • Computational chemistry
  • Drug discovery
  • Molecular modeling

Background:

  • Colorectal cancer (CRC) is a leading cause of cancer deaths globally.
  • Cyclin-dependent kinase 2 (CDK2) dysregulation is crucial in CRC progression.
  • Phytochemicals offer potential for less toxic anticancer drug development.

Purpose of the Study:

  • To identify novel phytochemicals that inhibit CDK2 for CRC treatment.
  • To evaluate the drug-likeness and efficacy of potential phytochemical inhibitors.
  • To explore alternative therapeutic strategies beyond existing drugs like fruquintinib.

Main Methods:

  • Cheminformatics analysis including molecular docking of 4433 phytochemicals against CDK2.
  • ADME/T prediction, MM-GBSA, FMO, SAR, and molecular dynamics (MD) simulations.
  • Evaluation of binding affinity, pharmacokinetic profiles, and structural stability.

Main Results:

  • Identified three lead phytochemical compounds (CIDs-6474893, 10469828, 135438111) with high binding affinity for CDK2.
  • These compounds exhibited favorable ADME/T profiles, MM-GBSA scores, and HOMO-LUMO energy gaps.
  • MD simulations confirmed the stability of the protein-phytochemical complexes, with SAR indicating anti-neoplastic and apoptosis-inducing properties.

Conclusions:

  • The identified phytochemicals demonstrate superior binding and pharmacological profiles compared to fruquintinib.
  • These compounds represent promising candidates for developing novel, safer CRC therapeutics.
  • The study validates a cheminformatics approach for discovering natural product-based drug leads.

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