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Elevated Src kinase activity attenuates Tamoxifen response in vitro and is associated with poor prognosis clinically
Liam Morgan1, Julia Gee, Sara Pumford
1Department of Medical Biochemistry & Immunology, Cardiff University, Cardiff, UK.
Abstract:
Activated Src kinase may contribute to the progression and spread of breast cancers and recent in vitro evidence suggests a role for Src in acquired endocrine resistance. The purpose of this study was to investigate whether modulation of Src activity in endocrine-sensitive and endocrine-resistant breast cancer cells directly affected their phenotype and sensitivity to 4-hydroxy Tamoxifen (tamoxifen) and to determine whether Src activity in breast cancer tissue affected patient outcome. Expression of constitutively active Src in ER-positive, endocrine-sensitive MCF7 breast cancer cells resulted in the development of an aggressive phenotype, akin to that previously observed in cell models of Tamoxifen resistance, and, significantly, attenuated their response to tamoxifen. Conversely, expression of dominant negative-Src in tamoxifen-resistant MCF7 cells resensitized them to tamoxifen. An exploratory immunohistochemical study of an archival primary breast tumor series (n = 75) with parallel clinicopathological data and in normal breast tissues (n = 19) revealed higher levels of activated Src in the cytoplasm (p < 0.01) and lower levels of nuclear Src (p < 0.01) in tumor tissue compared with normal tissue. Whereas elevated levels of activated-Src in the cytoplasm of tumors was significantly associated with reduced survival in ER+ patients (p = 0.031), elevated levels of activated Src within the nucleus appeared to associate with an improved hormonal response. Together these data are further suggestive of a role for Src in breast cancer where it may alter response to endocrine therapy.
Insights
Activated Src kinase promotes breast cancer progression and resistance to endocrine therapy. Inhibiting Src in resistant cells restored tamoxifen sensitivity, suggesting Src as a therapeutic target for breast cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Activated Src kinase is implicated in breast cancer progression and metastasis.
- Emerging evidence suggests a role for Src in acquired endocrine resistance.
Purpose of the Study:
- To investigate Src activity's impact on breast cancer cell phenotype and tamoxifen sensitivity.
- To determine if Src activity in breast cancer tissue correlates with patient outcomes.
Main Methods:
- Modulation of Src activity in endocrine-sensitive and resistant breast cancer cell lines (MCF7).
- Assessment of cell phenotype and response to 4-hydroxy Tamoxifen (tamoxifen).
- Immunohistochemical analysis of activated Src in primary breast tumors and normal tissues.
Main Results:
- Constitutively active Src induced an aggressive phenotype and reduced tamoxifen response in sensitive cells.
- Dominant-negative Src re-sensitized resistant cells to tamoxifen.
- Higher cytoplasmic activated Src and lower nuclear Src were observed in tumor tissues compared to normal tissues.
- Elevated cytoplasmic activated Src correlated with reduced survival in ER+ patients, while nuclear Src associated with better hormonal response.
Conclusions:
- Src kinase activity influences breast cancer cell phenotype and response to endocrine therapy.
- Modulating Src activity offers a potential strategy to overcome tamoxifen resistance.
- Src localization (cytoplasmic vs. nuclear) may predict patient outcome in ER+ breast cancer.
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