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Updated: Jun 5, 2026

Systems Biology of Metabolic Regulation by Estrogen Receptor Signaling in Breast Cancer
Published on: March 17, 2016
Significance of ER-Src axis in hormonal therapy resistance
Sreeram Vallabhaneni1, Binoj C Nair, Valerie Cortez
1Department of Obstetrics and Gynecology and CTRC, The UT Health Science Center at San Antonio, 7703 Floyd Curl Drive, Mail Code 7836, San Antonio, TX 78229-3900, USA.
Abstract:
The estrogen receptor (ER) is implicated in the progression of breast cancer. Despite positive effects of hormonal therapy, initial or acquired resistance to endocrine therapies frequently occurs. Recent studies suggested ERα-coregulator PELP1 and growth factor receptor ErbB2/HER2 play an essential role in hormonal therapy responsiveness. Src axis couples ERα with HER2 and PELP1, thus representing a new pathway for targeted therapy resistance. To establish the significance of ER-Src axis in PELP1 and HER2 mediated therapy resistance, we have generated model cells that stably express Src-shRNA under conditions of PELP1, HER2 deregulation. Depletion of Src using shRNA substantially reduced E2 mediated activation of Src and MAPK activation in resistant model cells. Pharmacological inhibition of Src using dasatinib, an orally available inhibitor substantially inhibited the growth of therapy resistant MCF7-PELP1, MCF7-HER2, and MCF7-Tam model cells in proliferation assays. In post-menopausal xenograft based studies, treatment with dasatinib significantly inhibited the growth of therapy resistant cells. IHC analysis revealed that the tumors were ERα positive, and dasatinib treated tumors exhibited alterations in Src and MAPK signaling pathways. Combinatorial therapy of tamoxifen with dasatinib showed better therapeutic effect compared to single agent therapy on the growth of therapy resistant PELP1 driven tumors. The results from our study showed that ER-Src axis play an important role in promoting hormonal resistance by proto-oncogenes such as HER2, PELP1, and blocking this axis prevents the development of hormonal independence in vivo. Since PELP1, HER2, and Src kinase are commonly deregulated in breast cancers, combination therapies using both endocrine agents and dasatinib may have better therapeutic effect by delaying the development of hormonal resistance.
Insights
Targeting the estrogen receptor (ER)-Src axis with dasatinib overcomes hormonal therapy resistance in breast cancer by inhibiting PELP1 and HER2 pathways. Combination therapy shows enhanced efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Estrogen receptor (ER) signaling is crucial in breast cancer progression.
- Resistance to endocrine therapies, a common challenge, involves ERα-coregulator PELP1 and growth factor receptor ErbB2/HER2.
- The ER-Src axis links ERα, HER2, and PELP1, presenting a novel target for overcoming therapy resistance.
Purpose of the Study:
- To investigate the role of the ER-Src axis in PELP1 and HER2-mediated endocrine therapy resistance.
- To evaluate the efficacy of Src inhibition, using dasatinib, in preclinical models of resistant breast cancer.
- To explore combination therapy strategies involving dasatinib and endocrine agents.
Main Methods:
- Generated cell models with deregulated PELP1 and HER2 expression and stable Src-shRNA.
- Utilized Src depletion (shRNA) and pharmacological inhibition (dasatinib) to assess pathway activation.
- Conducted proliferation assays, xenograft studies, and immunohistochemistry (IHC) analysis.
Main Results:
- Src depletion and dasatinib treatment significantly reduced Src and MAPK activation in resistant cells.
- Dasatinib inhibited the growth of therapy-resistant MCF7-PELP1, MCF7-HER2, and MCF7-Tam cells in vitro and in vivo.
- Combined tamoxifen and dasatinib therapy demonstrated superior efficacy against PELP1-driven resistant tumors.
Conclusions:
- The ER-Src axis is pivotal in promoting hormonal resistance via HER2 and PELP1.
- Blocking the ER-Src axis with dasatinib prevents hormonal independence and overcomes resistance.
- Combination therapy with endocrine agents and dasatinib holds promise for delaying resistance in breast cancer treatment.
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