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Updated: Feb 4, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
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.
Abstract:
The molecular complexity of triple-negative breast cancers (TNBCs) provides a challenge for patient management. We set out to characterize this heterogeneous disease by combining transcriptomics and genomics data, with the aim of revealing convergent pathway dependencies with the potential for treatment intervention. A Bayesian algorithm was used to integrate molecular profiles in two TNBC cohorts, followed by validation using five independent cohorts (n = 1,168), including three clinical trials. A four-gene decision tree signature was identified, which robustly classified TNBCs into six subtypes. All four genes in the signature (EXO1, TP53BP2, FOXM1, and RSU1) are associated with either genomic instability, malignant growth, or treatment response. One of the six subtypes, MC6, encompassed the largest proportion of tumors (∼50%) in early diagnosed TNBCs. In TNBC patients with metastatic disease, the MC6 proportion was reduced to 25%, and was independently associated with a higher response rate to platinum-based chemotherapy. In TNBC cell line data, platinum sensitivity was recapitulated, and a sensitivity to the inhibition of the phosphatase PPM1D was revealed. Molecularly, MC6-TNBCs displayed high levels of telomeric allelic imbalances, enrichment of CD4+ and CD8+ immune signatures, and reduced expression of genes negatively regulating the MAPK signaling pathway. These observations suggest that our integrative classification approach may identify TNBC patients with discernible and theoretically pharmacologically tractable features that merit further studies in prospective trials.
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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