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Published on: January 18, 2017
Interferon-beta represses cancer stem cell properties in triple-negative breast cancer
Mary R Doherty1, HyeonJoo Cheon2, Damian J Junk3,4
1Department of Pathology, Case Western Reserve University, School of Medicine, Cleveland, OH 44106; mrd85@case.edu starkg@ccf.org mwj7@case.edu.
Abstract:
Triple-negative breast cancer (TNBC), the deadliest form of this disease, lacks a targeted therapy. TNBC tumors that fail to respond to chemotherapy are characterized by a repressed IFN/signal transducer and activator of transcription (IFN/STAT) gene signature and are often enriched for cancer stem cells (CSCs). We have found that human mammary epithelial cells that undergo an epithelial-to-mesenchymal transition (EMT) following transformation acquire CSC properties. These mesenchymal/CSCs have a significantly repressed IFN/STAT gene expression signature and an enhanced ability to migrate and form tumor spheres. Treatment with IFN-beta (IFN-β) led to a less aggressive epithelial/non-CSC-like state, with repressed expression of mesenchymal proteins (VIMENTIN, SLUG), reduced migration and tumor sphere formation, and reexpression of CD24 (a surface marker for non-CSCs), concomitant with an epithelium-like morphology. The CSC-like properties were correlated with high levels of unphosphorylated IFN-stimulated gene factor 3 (U-ISGF3), which was previously linked to resistance to DNA damage. Inhibiting the expression of IRF9 (the DNA-binding component of U-ISGF3) reduced the migration of mesenchymal/CSCs. Here we report a positive translational role for IFN-β, as gene expression profiling of patient-derived TNBC tumors demonstrates that an IFN-β metagene signature correlates with improved patient survival, an immune response linked with tumor-infiltrating lymphocytes (TILs), and a repressed CSC metagene signature. Taken together, our findings indicate that repressed IFN signaling in TNBCs with CSC-like properties is due to high levels of U-ISGF3 and that treatment with IFN-β reduces CSC properties, suggesting a therapeutic strategy to treat drug-resistant, highly aggressive TNBC tumors.
Insights
Triple-negative breast cancer (TNBC) with stem cell properties shows repressed interferon signaling. Treatment with interferon-beta (IFN-β) reduces these aggressive traits, offering a new therapeutic strategy for drug-resistant TNBC.
Area of Science:
- Oncology
- Immunology
- Cell Biology
Background:
- Triple-negative breast cancer (TNBC) is aggressive and lacks targeted therapies.
- TNBC tumors resistant to chemotherapy exhibit repressed IFN/STAT signaling and cancer stem cell (CSC) enrichment.
- Epithelial-to-mesenchymal transition (EMT) in transformed cells induces CSC properties.
Purpose of the Study:
- To investigate the role of IFN/STAT signaling in TNBC stem cell properties.
- To evaluate the therapeutic potential of IFN-beta (IFN-β) in reducing TNBC aggressiveness and CSC traits.
- To explore the translational relevance of IFN-β signaling in patient-derived TNBC tumors.
Main Methods:
- Induction of EMT in mammary epithelial cells to generate CSCs.
- Treatment of mesenchymal/CSCs with IFN-β and assessment of phenotypic changes.
- Analysis of IFN-stimulated gene factor 3 (ISGF3) and IRF9 expression.
- Gene expression profiling of patient-derived TNBC tumors.
- Correlation analysis between IFN-β metagene signature, CSC signature, and patient survival.
Main Results:
- Mesenchymal/CSCs displayed repressed IFN/STAT signature, enhanced migration, and tumor sphere formation.
- IFN-β treatment reversed CSC properties, reduced aggressiveness, and promoted an epithelial phenotype.
- High levels of unphosphorylated ISGF3 (U-ISGF3) correlated with CSC traits and were linked to IRF9.
- IFN-β metagene signature in patient tumors correlated with improved survival, TILs, and repressed CSC signature.
Conclusions:
- Repressed IFN signaling in TNBC CSCs is mediated by high U-ISGF3 levels.
- IFN-β treatment effectively reduces TNBC CSC properties, suggesting a therapeutic approach.
- IFN-β signaling holds translational promise for treating aggressive, drug-resistant TNBC.
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