A Four-gene Decision Tree Signature Classification of Triple-negative Breast Cancer: Implications for Targeted

Jelmar Quist1,2,3, Hasan Mirza1,2,3, Maggie C U Cheang4,5

  • 1Cancer Bioinformatics, Cancer Centre at Guy's Hospital, King's College London, London, United Kingdom.

Insights

Researchers classified triple-negative breast cancer (TNBC) into six subtypes using a four-gene signature. One subtype (MC6) showed higher platinum chemotherapy response in metastatic TNBC, suggesting targeted treatment potential.

Area of Science:

  • Oncology
  • Genomics
  • Molecular Biology

Background:

  • Triple-negative breast cancer (TNBC) is molecularly complex and heterogeneous, posing challenges for effective patient management.
  • Understanding TNBC subtypes is crucial for developing targeted therapeutic strategies.

Purpose of the Study:

  • To characterize TNBC heterogeneity by integrating transcriptomics and genomics data.
  • To identify convergent pathway dependencies for potential treatment interventions.

Main Methods:

  • A Bayesian algorithm integrated molecular profiles from two TNBC cohorts.
  • Validation was performed across five independent cohorts (n=1,168), including clinical trials.
  • A four-gene decision tree signature was developed to classify TNBC subtypes.

Main Results:

  • A robust four-gene signature classified TNBCs into six subtypes (EXO1, TP53BP2, FOXM1, RSU1).
  • The MC6 subtype, prevalent in early-stage TNBC, was reduced in metastatic disease but associated with higher platinum chemotherapy response.
  • MC6-TNBCs exhibited genomic instability, immune signatures, and altered MAPK signaling, with sensitivity to PPM1D inhibition.

Conclusions:

  • The integrative classification approach identifies distinct TNBC subtypes with potential therapeutic vulnerabilities.
  • The MC6 subtype represents a targetable population for platinum-based chemotherapy and potentially PPM1D inhibitors.
  • Further prospective trials are warranted to validate these findings for clinical application.

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