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Updated: Aug 11, 2026

Studying TGF-β Signaling and TGF-β-induced Epithelial-to-mesenchymal Transition in Breast Cancer and Normal Cells
Published on: October 27, 2020
HER-2 overexpression differentially alters transforming growth factor-beta responses in luminal versus mesenchymal
Cindy A Wilson1, Elaina E Cajulis, Jennifer L Green
1Department of Medicine, David Geffen School of Medicine at UCLA, Los Angeles, CA 90095, USA. cawilson@ucla.edu
Introduction:
Amplification of the HER-2 receptor tyrosine kinase has been implicated in the pathogenesis and aggressive behavior of approximately 25% of invasive human breast cancers. Clinical and experimental evidence suggest that aberrant HER-2 signaling contributes to tumor initiation and disease progression. Transforming growth factor beta (TGF-beta) is the dominant factor opposing growth stimulatory factors and early oncogene activation in many tissues, including the mammary gland. Thus, to better understand the mechanisms by which HER-2 overexpression promotes the early stages of breast cancer, we directly assayed the cellular and molecular effects of TGF-beta1 on breast cancer cells in the presence or absence of overexpressed HER-2.
Methods:
Cell proliferation assays were used to determine the effect of TGF-beta on the growth of breast cancer cells with normal or high level expression of HER-2. Affymetrix microarrays combined with Northern and western blot analysis were used to monitor the transcriptional responses to exogenous TGF-beta1 in luminal and mesenchymal-like breast cancer cells. The activity of the core TGF-beta signaling pathway was assessed using TGF-beta1 binding assays, phospho-specific Smad antibodies, immunofluorescent staining of Smad and Smad DNA binding assays.
Results:
We demonstrate that cells engineered to over-express HER-2 are resistant to the anti-proliferative effect of TGF-beta1. HER-2 overexpression profoundly diminishes the transcriptional responses induced by TGF-beta in the luminal MCF-7 breast cancer cell line and prevents target gene induction by a novel mechanism that does not involve the abrogation of Smad nuclear accumulation, DNA binding or changes in c-myc repression. Conversely, HER-2 overexpression in the context of the mesenchymal MDA-MB-231 breast cell line potentiated the TGF-beta induced pro-invasive and pro-metastatic gene signature.
Conclusion:
HER-2 overexpression promotes the growth and malignancy of mammary epithelial cells, in part, by conferring resistance to the growth inhibitory effects of TGF-beta. In contrast, HER-2 and TGF-beta signaling pathways can cooperate to promote especially aggressive disease behavior in the context of a highly invasive breast tumor model.
Insights
HER-2 overexpression in breast cancer confers resistance to TGF-beta
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- HER-2 receptor tyrosine kinase amplification is found in ~25% of invasive breast cancers.
- Aberrant HER-2 signaling is linked to tumor initiation and progression.
- Transforming growth factor beta (TGF-beta) opposes growth factors in mammary gland development.
Purpose of the Study:
- To investigate the effects of TGF-beta1 on breast cancer cells with normal or overexpressed HER-2.
- To elucidate mechanisms by which HER-2 overexpression impacts early breast cancer stages.
Main Methods:
- Cell proliferation assays to assess TGF-beta's effect on HER-2 expressing cells.
- Microarray, Northern, and Western blot analyses for transcriptional responses to TGF-beta1.
- TGF-beta signaling pathway activity assessed via binding assays, phospho-specific Smad antibodies, and Smad DNA binding assays.
Main Results:
- HER-2 overexpressing cells exhibit resistance to TGF-beta's anti-proliferative effects.
- HER-2 diminishes TGF-beta's transcriptional responses in luminal breast cancer cells (MCF-7) via a novel mechanism.
- HER-2 potentiates TGF-beta-induced pro-invasive and pro-metastatic gene signatures in mesenchymal breast cancer cells (MDA-MB-231).
Conclusions:
- HER-2 overexpression promotes mammary epithelial cell growth and malignancy by conferring resistance to TGF-beta.
- Cooperation between HER-2 and TGF-beta signaling pathways can drive aggressive disease in invasive breast tumor models.
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