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Updated: Feb 11, 2026

An Orthotopic Mouse Model of Spontaneous Breast Cancer Metastasis
Published on: August 14, 2016
Dependence receptor UNC5A restricts luminal to basal breast cancer plasticity and metastasis
Maria B Padua1,2, Poornima Bhat-Nakshatri1, Manjushree Anjanappa1
1Department of Surgery, Indiana University School of Medicine, Indianapolis, IN, 46202, USA.
Background:
The majority of estrogen receptor-positive (ERα+) breast cancers respond to endocrine therapies. However, resistance to endocrine therapies is common in 30% of cases, which may be due to altered ERα signaling and/or enhanced plasticity of cancer cells leading to breast cancer subtype conversion. The mechanisms leading to enhanced plasticity of ERα-positive cancer cells are unknown.
Methods:
We used short hairpin (sh)RNA and/or the CRISPR/Cas9 system to knockdown the expression of the dependence receptor UNC5A in ERα+ MCF7 and T-47D cell lines. RNA-seq, quantitative reverse transcription polymerase chain reaction, chromatin immunoprecipitation, and Western blotting were used to measure the effect of UNC5A knockdown on basal and estradiol (E2)-regulated gene expression. Mammosphere assay, flow cytometry, and immunofluorescence were used to determine the role of UNC5A in restricting plasticity. Xenograft models were used to measure the effect of UNC5A knockdown on tumor growth and metastasis. Tissue microarray and immunohistochemistry were utilized to determine the prognostic value of UNC5A in breast cancer. Log-rank test, one-way, and two-way analysis of variance (ANOVA) were used for statistical analyses.
Results:
Knockdown of the E2-inducible UNC5A resulted in altered basal gene expression affecting plasma membrane integrity and ERα signaling, as evident from ligand-independent activity of ERα, altered turnover of phosphorylated ERα, unique E2-dependent expression of genes effecting histone demethylase activity, enhanced upregulation of E2-inducible genes such as BCL2, and E2-independent tumorigenesis accompanied by multiorgan metastases. UNC5A depletion led to the appearance of a luminal/basal hybrid phenotype supported by elevated expression of basal/stem cell-enriched ∆Np63, CD44, CD49f, epidermal growth factor receptor (EGFR), and the lymphatic vessel permeability factor NTN4, but lower expression of luminal/alveolar differentiation-associated ELF5 while maintaining functional ERα. In addition, UNC5A-depleted cells acquired bipotent luminal progenitor characteristics based on KRT14+/KRT19+ and CD49f+/EpCAM+ phenotype. Consistent with in vitro results, UNC5A expression negatively correlated with EGFR expression in breast tumors, and lower expression of UNC5A, particularly in ERα+/PR+/HER2- tumors, was associated with poor outcome.
Conclusion:
These studies reveal an unexpected role of the axon guidance receptor UNC5A in fine-tuning ERα and EGFR signaling and the luminal progenitor status of hormone-sensitive breast cancers. Furthermore, UNC5A knockdown cells provide an ideal model system to investigate metastasis of ERα+ breast cancers.
Insights
The dependence receptor UNC5A fine-tunes estrogen receptor (ERα) and epidermal growth factor receptor (EGFR) signaling in ERα-positive breast cancers. Lower UNC5A expression correlates with poor outcomes and enhanced cancer cell plasticity, suggesting a role in endocrine therapy resistance.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Cell Biology
Background:
- Estrogen receptor-positive (ERα+) breast cancers often develop resistance to endocrine therapies.
- This resistance may stem from altered ERα signaling or cancer cell plasticity, leading to subtype conversion.
- The mechanisms driving ERα-positive cancer cell plasticity remain largely unknown.
Purpose of the Study:
- To investigate the role of the dependence receptor UNC5A in ERα-positive breast cancer plasticity and endocrine therapy resistance.
- To elucidate the mechanisms by which UNC5A influences ERα and epidermal growth factor receptor (EGFR) signaling.
- To assess the prognostic value of UNC5A in breast cancer patients.
Main Methods:
- Utilized short hairpin (sh)RNA and CRISPR/Cas9 to knockdown UNC5A in ERα+ cell lines (MCF7, T-47D).
- Employed RNA-seq, qRT-PCR, ChIP, and Western blotting to analyze gene expression and signaling pathways.
- Assessed cell plasticity using mammosphere assays, flow cytometry, and immunofluorescence; tumor growth and metastasis were studied in xenograft models.
Main Results:
- UNC5A knockdown altered basal gene expression, affected ERα signaling (ligand-independent activity, altered phosphorylated ERα turnover), and promoted E2-independent tumorigenesis with metastasis.
- UNC5A depletion induced a luminal/basal hybrid phenotype with elevated basal/stem cell markers (∆Np63, CD44, CD49f, EGFR, NTN4) and reduced luminal marker ELF5.
- Cells with UNC5A depletion exhibited bipotent luminal progenitor characteristics and UNC5A expression negatively correlated with EGFR in tumors.
Conclusions:
- UNC5A plays a critical role in regulating ERα and EGFR signaling and maintaining the luminal progenitor status in hormone-sensitive breast cancers.
- Reduced UNC5A expression is associated with poor prognosis in ERα+/PR+/HER2- breast tumors.
- UNC5A-depleted cells serve as a valuable model for studying ERα+ breast cancer metastasis.
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