Benchmarking docking and ML re-scoring screening performance for KRAS G12D in pancreatic cancer

Ahmed R Elaraby1, Mai I Shahin2, Mahmoud M Elaasser3

  • 1Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Sinai University, Kantara Branch, Ismailia, Egypt.

Molecular Diversity
|June 28, 2026
PubMed

Insights

We evaluated docking tools for KRAS G12D, a key pancreatic cancer target. FRED showed the best performance, and a screened molecule (CP3) demonstrated significant antiproliferative activity, validating our approach.

Area of Science:

  • Computational chemistry and drug discovery
  • Oncology and cancer biology

Background:

  • The KRAS G12D mutation is a critical driver in pancreatic cancer, necessitating targeted drug development.
  • Structure-based virtual screening (SBVS) is a key strategy for identifying inhibitors against KRAS G12D, but requires robust evaluation.

Purpose of the Study:

  • To benchmark the performance of popular docking tools (FRED, AutoDock Vina) and machine learning scoring functions for KRAS G12D.
  • To establish an evaluated SBVS protocol for KRAS G12D and identify potential drug candidates.

Main Methods:

  • Evaluated FRED and AutoDock Vina using DEKOIS 2.0 decoys against KRAS G12D.
  • Assessed re-scoring performance using CNN-Score and RF-Score-VS v2.
  • Performed SBVS using FRED on the Specs World Diversity database, followed by cell viability assays and molecular dynamics simulations.

Main Results:

  • FRED demonstrated superior screening performance (pROC-AUC), with both tools showing high early enrichment (EF 1%).
  • Docking tools outperformed machine learning scoring functions, indicating target-specific screening efficacy.
  • Screened molecule CP3 exhibited significant antiproliferative activity against PANC-1 cells (IC50 = 1.95 µM) and showed favorable binding to KRAS G12D.

Conclusions:

  • This study provides a validated SBVS protocol for KRAS G12D through rigorous benchmarking of computational tools.
  • The findings highlight the importance of tool selection and offer a promising lead compound (CP3) for pancreatic cancer therapy.

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