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Src Is a Potential Therapeutic Target in Endocrine-Resistant Breast Cancer Exhibiting Low Estrogen Receptor-Mediated
Stephanie K Guest1, Ricardo Ribas1, Sunil Pancholi1
1The Breast Cancer Now and Toby Robins Research Centre, Institute of Cancer Research, London, United Kingdom.
Abstract:
Despite the effectiveness of endocrine therapies in estrogen receptor positive (ER+) breast cancer, approximately 40% of patients relapse. Previously, we identified the Focal-adhesion kinase canonical pathway as a major contributor of resistance to estrogen deprivation and cellular-sarcoma kinase (c-src) as a dominant gene in this pathway. Dasatinib, a pan-src inhibitor, has recently been used in clinical trials to treat ER+ patients but has shown mixed success. In the following study, using isogenic cell line models, we provide a potential explanation for these findings and suggest a sub-group that may benefit. A panel of isogenic cell lines modelling resistance to aromatase inhibitors (LTED) and tamoxifen (TAMR) were assessed for response to dasatinib ± endocrine therapy. Dasatinib caused a dose-dependent decrease in proliferation in MCF7-TAMR cells and resensitized them to tamoxifen and fulvestrant but not in HCC1428-TAMR. In contrast, in estrogen-deprived conditions, dasatinib increased the proliferation rate of parental-MCF7 cells and had no effect on MCF7-LTED or HCC1428-LTED. Treatment with dasatinib caused a decrease in src-phosphorylation and inhibition of downstream pathways, including AKT and ERK1/2 in all cell lines tested, but only the MCF7-TAMR showed a concomitant decrease in markers of cell cycle progression. Inhibition of src also caused a significant decrease in cell migration in both MCF7-LTED and MCF7-TAMR cells. Finally, we showed that, in MCF7-TAMR cells, in contrast to tamoxifen sensitive cell lines, ER is expressed throughout the cell rather than being restricted to the nucleus and that treatment with dasatinib resulted in nuclear shuttling of ER, which was associated with an increase in ER-mediated transcription. These data suggest that src has differential effects in endocrine-resistant cell lines, particularly in tamoxifen resistant models, with low ER genomic activity, providing further evidence of the importance of patient selection for clinical trials testing dasatinib utility in ER+ breast cancer.
Insights
Dasatinib resensitizes some tamoxifen-resistant (TAMR) estrogen receptor-positive (ER+) breast cancer cells to endocrine therapy by affecting cellular-sarcoma kinase (c-src) and estrogen receptor (ER) localization. This suggests patient selection is crucial for dasatinib treatment success.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Endocrine therapies are effective for ER+ breast cancer but 40% of patients relapse.
- Focal-adhesion kinase pathway and cellular-sarcoma kinase (c-src) are implicated in resistance.
- Dasatinib, a c-src inhibitor, shows mixed results in clinical trials for ER+ breast cancer.
Purpose of the Study:
- To investigate the differential effects of dasatinib in endocrine-resistant ER+ breast cancer models.
- To identify patient subgroups that may benefit from dasatinib treatment.
- To elucidate the mechanisms underlying dasatinib's efficacy and resistance.
Main Methods:
- Utilized isogenic cell line models of tamoxifen-resistant (TAMR) and aromatase inhibitor-resistant (LTED) ER+ breast cancer.
- Assessed cellular response to dasatinib alone and in combination with endocrine therapy.
- Analyzed src-phosphorylation, downstream signaling (AKT, ERK1/2), cell cycle progression, cell migration, and ER localization.
Main Results:
- Dasatinib resensitized MCF7-TAMR cells to tamoxifen and fulvestrant, decreasing proliferation and cell cycle progression.
- Dasatinib increased proliferation in parental MCF7 cells and had no effect on LTED models.
- In MCF7-TAMR cells, dasatinib induced ER nuclear shuttling, increasing ER-mediated transcription, unlike in tamoxifen-sensitive cells.
Conclusions:
- Src inhibition by dasatinib has differential effects, particularly in tamoxifen-resistant ER+ breast cancer models with low ER genomic activity.
- Dasatinib may benefit a specific subgroup of ER+ breast cancer patients, highlighting the need for patient selection in clinical trials.
- Understanding ER localization and c-src pathway activity is crucial for optimizing dasatinib therapy in breast cancer.
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