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Updated: Aug 9, 2026

Indirect Immunofluorescence on Frozen Sections of Mouse Mammary Gland
Published on: December 1, 2015
Rho regulates p21(CIP1), cyclin D1, and checkpoint control in mammary epithelial cells
Muriel Liberto1, David Cobrinik, Audrey Minden
1Columbia University, Biological Sciences MC 2460, Sherman Fairchild Center, Room 813, 1212 Amsterdam Avenue, New York, NY 10027, USA.
Abstract:
The small GTPase Rho is important for cell cycle progression and Ras transformation in fibroblasts. However, it is unclear whether Rho is needed for proliferation in other cell types, and its targets in promoting normal cell cycle progression are unknown. Here, we demonstrate that Rho is required for G1 to S progression in MCF10A mammary epithelial cells, both in response to EGF and in response to oncogenic Ras. We describe two effects of Rho, the repression of p21(CIP1) and the induction of cyclin D1, that may underlie its role in promoting S phase entry. The Rho inhibitor, C3 exotransferase, induced p21(CIP1) both in EGF-stimulated and V12Ras-expressing cells. In addition, C3 blocked EGF-stimulated cyclin D1 promoter activity whereas V14RhoA induced the cyclin D1 promoter and cooperated with V12Ras in cyclin D1 induction. Finally, a high proportion of cells co-expressing V14RhoA and V12Ras displayed lobulated, polyploid nuclei that were actively synthesizing DNA. Our results demonstrate that Rho plays a fundamental role in promoting Ras-dependent S phase entry in mammary epithelial cells, whether in response to normal or oncogenic signaling, and indicate that in cells expressing oncogenic Ras, the activation of Rho diminishes p21(CIP1) expression, increases cyclin D1 promoter activity, and uncouples DNA synthesis from mitosis.
Insights
The small GTPase Rho is crucial for mammary epithelial cell proliferation, regulating cell cycle progression. Rho activation by normal or oncogenic Ras signaling promotes DNA synthesis and cell division.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- The small GTPase Rho's role in cell cycle progression and Ras transformation is established in fibroblasts.
- Its necessity for proliferation in other cell types and its specific targets remain largely unknown.
Purpose of the Study:
- To investigate the role of Rho in G1 to S phase progression in MCF10A mammary epithelial cells.
- To identify Rho's downstream targets involved in promoting normal and oncogenic Ras-driven cell cycle progression.
Main Methods:
- Utilized Rho inhibitor C3 exotransferase and constitutively active RhoA (V14RhoA) and Ras (V12Ras) mutants.
- Assessed effects on cell cycle regulators p21(CIP1) and cyclin D1.
- Analyzed cyclin D1 promoter activity and DNA synthesis in mammary epithelial cells.
Main Results:
- Rho is required for G1 to S phase progression in response to EGF and oncogenic Ras.
- Rho inhibition by C3 exotransferase increased p21(CIP1) levels.
- Rho activation induced cyclin D1 promoter activity and cooperated with oncogenic Ras.
Conclusions:
- Rho plays a fundamental role in promoting Ras-dependent S phase entry in mammary epithelial cells.
- Rho activation diminishes p21(CIP1) expression and increases cyclin D1 promoter activity.
- In oncogenic Ras-expressing cells, Rho activation uncouples DNA synthesis from mitosis.
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