ORN: Inferring patient-specific dysregulation status of pathway modules in cancer with OR-gate Network

Lifan Liang1, Kunju Zhu2, Junyan Tao3

  • 1Department of Biomedical Informatics, University of Pittsburgh, Pittsburgh, Pennsylvania, United States of America.

Insights

This study introduces the OR-gate Network (ORN) to model cancer pathways, identifying key dysregulated pathways and their links to mutations. The ORN aids in understanding cancer mechanisms and discovering new therapeutic targets.

Area of Science:

  • Oncology
  • Computational Biology
  • Genomics

Background:

  • Pathway-level understanding is crucial for precision oncology.
  • Current high-throughput data is insufficient for full pathway topology elucidation.

Purpose of the Study:

  • To develop a model for inferring pathway modules, patient-specific pathway dysregulation, and downstream regulons.
  • To address the challenge of modeling pathway topology with limited data.

Main Methods:

  • Adapted probabilistic OR gate to model pathway and regulon modular structures, creating the OR-gate Network (ORN).
  • Applied ORN to analyze somatic alterations and differentially expressed genes (DEGs) in cancer samples.
  • Investigated pathway perturbation properties like mutual exclusivity.

Main Results:

  • ORN successfully inferred pathway modules and patient-specific pathway dysregulation in Lower-Grade Glioma (LGG), Liver Hepatocellular Carcinoma (LIHC), and Breast Cancer datasets.
  • Identified abnormal pathway activities related to immune response and cell cycles across datasets.
  • Discovered two pathways linked to glioma patient survival and characterized novel cancer mechanisms and mutations in METABRIC data.

Conclusions:

  • The ORN model effectively captures pathway modularity and dysregulation in cancer.
  • ORN facilitates the identification of cancer-driving pathways and potential therapeutic targets, including links to understudied mutations.
  • Findings provide novel hypotheses for targeted cancer therapy.

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