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Updated: Jun 29, 2025

Three Dimensional Cultures: A Tool To Study Normal Acinar Architecture vs. Malignant Transformation Of Breast Cells
Published on: April 25, 2014
Mcam stabilizes luminal progenitor breast cancer phenotypes via Ck2 control and Src/Akt/Stat3 attenuation
Ozlen Balcioglu1,2, Brooke L Gates1,2, David W Freeman1,2
1Huntsman Cancer Institute, University of Utah, Salt Lake City, UT 84112 USA.
Abstract:
Breast cancers are categorized into subtypes with distinctive therapeutic vulnerabilities and prognoses based on their expression of clinically targetable receptors and gene expression patterns mimicking different cell types of the normal gland. Here, we tested the role of Mcam in breast cancer cell state control and tumorigenicity in a luminal progenitor-like murine tumor cell line (Py230) that exhibits lineage and tumor subtype plasticity. Mcam knockdown Py230 cells show augmented Stat3 and Pi3K/Akt activation associated with a lineage state switch away from a hormone-sensing/luminal progenitor state toward alveolar and basal cell related phenotypes that were refractory to growth inhibition by the anti-estrogen therapeutic, tamoxifen. Inhibition of Stat3, or the upstream activator Ck2, reversed these cell state changes. Mcam binds Ck2 and acts as a regulator of Ck2 substrate utilization across multiple mammary tumor cell lines. In Py230 cells this activity manifests as increased mesenchymal morphology, migration, and Src/Fak/Mapk/Paxillin adhesion complex signaling in vitro, in contrast to Mcam's reported roles in promoting mesenchymal phenotypes. In vivo, Mcam knockdown reduced tumor growth and take rate and inhibited cell state transition to Sox10+/neural crest like cells previously been associated with tumor aggressiveness. This contrasts with human luminal breast cancers where MCAM copy number loss is highly coupled to Cyclin D amplification, increased proliferation, and the more aggressive Luminal B subtype. Together these data indicate a critical role for Mcam and its regulation of Ck2 in control of breast cancer cell state plasticity with implications for progression, evasion of targeted therapies and combination therapy design.
Insights
Mcam protein controls breast cancer cell plasticity and evasion of tamoxifen therapy by regulating Ck2 signaling. Mcam knockdown inhibits tumor growth and aggressive cell state transitions.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Breast cancer subtypes are defined by receptor expression and gene patterns, influencing treatment and prognosis.
- Tumor cell plasticity allows adaptation to therapies and progression.
- The role of Mcam in breast cancer cell state control and tumorigenicity requires further investigation.
Conclusions:
- Mcam plays a critical role in controlling breast cancer cell state plasticity and evasion of targeted therapies.
- Mcam's regulation of Ck2 is a key mechanism influencing tumor progression and therapeutic resistance.
- Targeting Mcam or Ck2 may offer novel strategies for combination therapy in breast cancer.
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