Multi-omics and pan-cancer analysis revealed common molecular signatures to disclose multitargeted anticancer agents

Hriddhi Sarker1,2, Farhad Bin Farid1,3, Marguba Kamrun1,4

  • 1Department of Computational Chemistry and Drug Design, Panacea Research Center, Rajshahi, Bangladesh.

Plos One
|June 1, 2026
PubMed

Insights

This study identified shared cancer pathways in breast, ovarian, and colorectal cancers, revealing AURKA, CDK1, and CCNB1 as key targets. The drug candidate AMG-900 shows promise as a multi-targeted therapy for these cancers.

Area of Science:

  • Oncology
  • Computational Biology
  • Pharmacology

Background:

  • Cancer is a complex, multifactorial disease with shared genetic and molecular underpinnings across different tissue types.
  • Identifying common oncogenic pathways facilitates the development of broad-spectrum therapeutics.
  • Current research trends focus on cross-cancer molecular patterns for multitargeted drug development.

Purpose of the Study:

  • To elucidate common oncogenic pathways in breast, ovarian, and colorectal (BOC) cancers.
  • To identify potential multitargeted therapeutic drug molecules for BOC cancers.
  • To investigate the drug-likeness and stability of candidate compounds.

Main Methods:

  • Analysis of three transcriptomic datasets to identify common differentially expressed genes (DEGs).
  • Protein-protein interaction (PPI) network analysis to pinpoint key hub targets.
  • Gene Ontology (GO) and KEGG pathway enrichment analyses for pathogenetic processes.
  • Molecular docking, molecular dynamics (MD), and MM-GBSA simulations for drug-target interactions.
  • Pharmacokinetic and toxicity profile assessment.

Main Results:

  • Identified 128 common DEGs across BOC cancers.
  • AURKA, CDK1, and CCNB1 emerged as significant hub targets from PPI network analysis.
  • AMG-900 demonstrated high binding affinity to AURKA, CCNB1, and CDK1, with stable interactions observed for AURKA and CCNB1.
  • Pharmacokinetic analysis indicated favorable drug-likeness and a manageable toxicity profile for AMG-900.

Conclusions:

  • AMG-900 is proposed as a promising multi-targeted therapeutic candidate for BOC cancers.
  • The identified targets and pathways offer insights into precision oncology strategies.
  • Further in vivo, in vitro, and clinical validation is required to confirm AMG-900's efficacy.

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