Artificial intelligence-guided discovery of a lead compound with antifolate-like activity against bacterial and human thymidylate synthases

  • Front Cell Infect Microbiol. 2026 Jun 26:16:1816809. doi: 10.3389/fcimb.2026.1816809.
Yi-Lin Chen  1 Yi-Min Chen  2 Yan Zou  1
Affiliations
  • 1. Department of Medical Oncology, Quzhou People's Hospital, The Quzhou Affiliated Hospital of Wenzhou Medical University, Quzhou, China.
  • 2. Department of Traditional Chinese Gynecology, The First Affiliated Hospital of Naval Medical University, Shanghai, China.
Abstract

Thymidylate Synthase (TYMS) is an established Colorectal Cancer (CRC) target. We evaluated whether conserved active-site architecture between human TYMS and the Bacterial homolog TYSY KLEP7 could support early cross-species TYMS-axis lead discovery within the Antifolate landscape. AlphaFold3, Chai-1 complex modeling, crystal-structure cross-validation, docking, ligand strain energy, MM-GBSA rescoring, and explicit-solvent MD were integrated to compare pocket states and prioritize antifolate-like Compound 8. Modeling indicated that Compound 8 preserves an acidic folate-groove anchoring motif while tolerating species- and ligand-induced pocket variation. Phenotypic assays showed dose-dependent inhibition of CRC cell viability with preliminary NCM460 selectivity, whereas Antibacterial activity against K. pneumoniae was modest, with a MIC of 96 µM and bactericidal activity only at 4× MIC after 24 h. Target-axis assays supported TYMS/thyA engagement: siTYMS and AS-thyA reduced transcript levels, and Compound 8 inhibited crude-lysate TS activity with apparent AC50 values of 7.8 µM in HCT116 and 13.2 µM in K. pneumoniae. Overall, this work establishes an AI-enabled structure-to-phenotype framework and positions Compound 8 as an early antifolate-like TYMS-axis lead requiring purified-enzyme, ADME, safety, and Antibacterial optimization studies.

Keywords
AI-driven drug discovery; AlphaFold3; candidate cross-species ligand; colorectal cancer; phenotypic evaluation; target validation; thymidylate synthase (TYMS).
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