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Updated: Jun 15, 2026

Differentiation of Mouse Breast Epithelial HC11 and EpH4 Cells
Published on: February 27, 2020
Dose-dependent induction of distinct phenotypic responses to Notch pathway activation in mammary epithelial cells
Marco Mazzone1, Laura M Selfors, John Albeck
1Department of Cell Biology, Harvard Medical School, Boston, MA 02115, USA.
Abstract:
Aberrant activation of Notch receptors has been implicated in breast cancer; however, the mechanisms contributing to Notch-dependent transformation remain elusive because Notch displays dichotomous functional activities, promoting both proliferation and growth arrest. We investigated the cellular basis for the heterogeneous responses to Notch pathway activation in 3D cultures of MCF-10A mammary epithelial cells. Expression of a constitutively active Notch-1 intracellular domain (NICD) was found to induce two distinct types of 3D structures: large, hyperproliferative structures and small, growth-arrested structures with reduced cell-to-matrix adhesion. Interestingly, we found that these heterogeneous phenotypes reflect differences in Notch pathway activation levels; high Notch activity caused down-regulation of multiple matrix-adhesion genes and inhibition of proliferation, whereas low Notch activity maintained matrix adhesion and provoked a strong hyperproliferative response. Moreover, microarray analyses implicated NICD-induced p63 down-regulation in loss of matrix adhesion. In addition, a reverse-phase protein array-based analysis and subsequent loss-of-function studies identified STAT3 as a dominant downstream mediator of the NICD-induced outgrowth. These results indicate that the phenotypic responses to Notch are determined by the dose of pathway activation; and this dose affects the balance between growth-stimulative and growth-suppressive effects. This unique feature of Notch signaling provides insights into mechanisms that contribute to the dichotomous effects of Notch during development and tumorigenesis.
Insights
Notch signaling in breast cancer has dual effects. Dose-dependent activation determines outcomes: low Notch promotes proliferation, while high Notch inhibits it by altering cell adhesion.
Area of Science:
- Cell Biology
- Molecular Oncology
- Signal Transduction
Background:
- Aberrant Notch receptor activation is linked to breast cancer.
- Notch signaling exhibits dichotomous functions, promoting both proliferation and growth arrest, complicating its role in tumorigenesis.
Purpose of the Study:
- To investigate the cellular mechanisms underlying heterogeneous responses to Notch pathway activation in mammary epithelial cells.
- To elucidate how Notch signaling dose influences cell proliferation and adhesion.
Main Methods:
- Utilized 3D cultures of MCF-10A mammary epithelial cells.
- Expressed a constitutively active Notch-1 intracellular domain (NICD).
- Performed microarray analyses, reverse-phase protein array, and loss-of-function studies.
Main Results:
- NICD expression induced distinct phenotypes: hyperproliferative or growth-arrested structures.
- High Notch activity led to down-regulation of matrix-adhesion genes and proliferation inhibition.
- Low Notch activity maintained matrix adhesion and promoted hyperproliferation.
- NICD-induced p63 down-regulation was linked to matrix adhesion loss.
- STAT3 was identified as a key downstream mediator of NICD-induced outgrowth.
Conclusions:
- Phenotypic responses to Notch signaling are dose-dependent.
- Notch pathway activation level dictates the balance between growth-stimulative and growth-suppressive effects.
- These findings offer insights into the dichotomous roles of Notch in development and cancer.
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