Cooperative driver pathway discovery via fusion of multi-relational data of genes, miRNAs and pathways

Jun Wang1, Ziying Yang1, Carlotta Domeniconi2

  • 1Professor of the School of Software, Shandong University.

Briefings in Bioinformatics
|February 28, 2020
PubMed

Insights

CDPathway identifies cooperative driver pathways by quantifying gene drivers and analyzing pathway interactions. This approach significantly improves the discovery of cancer-related pathways and genes compared to existing methods.

Area of Science:

  • Computational biology
  • Cancer genomics
  • Systems biology

Background:

  • Identifying cancer driver pathways is crucial for understanding cancer mechanisms and developing targeted therapies.
  • Previous methods often focus on individual pathways, overlooking cooperative interactions that drive cancer.
  • Genes, microRNAs (miRNAs), and pathways are interconnected and collectively contribute to oncogenesis.

Purpose of the Study:

  • To develop a novel computational approach, CDPathway, for discovering cooperative driver pathways in cancer.
  • To improve the identification of driver genes and reconstruct pathway interaction networks.

Main Methods:

  • CDPathway quantifies gene driver weights using a driver impact function.
  • A heterogeneous network integrating genes, miRNAs, and pathways is constructed.
  • Collaborative matrix factorization is employed to transfer driver impacts and explore latent relationships.
  • Pathway interaction networks are reconstructed to identify cooperative driver pathways.

Main Results:

  • CDPathway effectively identifies candidate driver genes with high accuracy (AUROC ≥ 0.9).
  • The method accurately reconstructs pathway interaction networks (AUROC > 0.9).
  • CDPathway uncovers significantly more known and potential driver genes and pathways, including cooperative ones, than competing methods.

Conclusions:

  • CDPathway provides a robust framework for discovering cooperative driver pathways.
  • The approach enhances the understanding of molecular mechanisms underlying cancer.
  • CDPathway offers a promising tool for identifying novel therapeutic targets in precision oncology.

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