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Increased STAT1 signaling in endocrine-resistant breast cancer
Rui Huang1, Dana Faratian1, Andrew H Sims1
1Institute of Genetics and Molecular Medicine, University of Edinburgh, Edinburgh, Scotland, United Kingdom.
Abstract:
Proteomic profiling of the estrogen/tamoxifen-sensitive MCF-7 cell line and its partially sensitive (MCF-7/LCC1) and fully resistant (MCF-7/LCC9) variants was performed to identify modifiers of endocrine sensitivity in breast cancer. Analysis of the expression of 120 paired phosphorylated and non-phosphorylated epitopes in key oncogenic and tumor suppressor pathways revealed that STAT1 and several phosphorylated epitopes (phospho-STAT1(Tyr701) and phospho-STAT3(Ser727)) were differentially expressed between endocrine resistant and parental controls, confirmed by qRT-PCR and western blotting. The STAT1 inhibitor EGCG was a more effective inhibitor of the endocrine resistant MCF-7/LCC1 and MCF-7/LCC9 lines than parental MCF-7 cells, while STAT3 inhibitors Stattic and WP1066 were equally effective in endocrine-resistant and parental lines. The effects of the STAT inhibitors were additive, rather than synergistic, when tested in combination with tamoxifen in vitro. Expression of STAT1 and STAT3 were measured by quantitative immunofluorescence in invasive breast cancers and matched lymph nodes. When lymph node expression was compared to its paired primary breast cancer expression, there was greater expression of cytoplasmic STAT1 (∼3.1 fold), phospho-STAT3(Ser727) (∼1.8 fold), and STAT5 (∼1.5 fold) and nuclear phospho-STAT3(Ser727) (∼1.5 fold) in the nodes. Expression levels of STAT1 and STAT3 transcript were analysed in 550 breast cancers from publicly available gene expression datasets (GSE2990, GSE12093, GSE6532). When treatment with tamoxifen was considered, STAT1 gene expression was nearly predictive of distant metastasis-free survival (DMFS, log-rank p = 0.067), while STAT3 gene expression was predictive of DMFS (log-rank p<0.0001). Analysis of STAT1 and STAT3 protein expression in a series of 546 breast cancers also indicated that high expression of STAT3 protein was associated with improved survival (DMFS, p = 0.006). These results suggest that STAT signaling is important in endocrine resistance, and that STAT inhibitors may represent potential therapies in breast cancer, even in the resistant setting.
Insights
STAT signaling pathways are crucial in endocrine resistance in breast cancer. STAT inhibitors show promise as potential therapies, even for resistant tumors, improving distant metastasis-free survival.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Endocrine therapy resistance is a major challenge in breast cancer treatment.
- Identifying molecular mechanisms underlying resistance is critical for developing new therapeutic strategies.
Purpose of the Study:
- To investigate the role of STAT signaling in endocrine sensitivity and resistance in breast cancer.
- To evaluate the potential of STAT inhibitors as therapeutic agents in endocrine-resistant breast cancer.
Main Methods:
- Proteomic profiling of MCF-7 breast cancer cells and variants with varying tamoxifen sensitivity.
- Quantitative real-time PCR (qRT-PCR) and western blotting to confirm gene and protein expression.
- In vitro studies using STAT inhibitors (EGCG, Stattic, WP1066) in combination with tamoxifen.
- Quantitative immunofluorescence and analysis of public gene expression datasets (GSE2990, GSE12093, GSE6532) in breast cancer tissues and lymph nodes.
Main Results:
- Differential expression of STAT1 and phosphorylated STAT epitopes (phospho-STAT1(Tyr701), phospho-STAT3(Ser727)) in endocrine-resistant cells.
- STAT1 inhibitor EGCG was more effective in resistant cells, while STAT3 inhibitors showed similar efficacy in resistant and parental cells.
- Increased expression of STAT1, phospho-STAT3(Ser727), STAT5, and nuclear phospho-STAT3(Ser727) in lymph nodes compared to primary tumors.
- STAT3 gene expression was predictive of distant metastasis-free survival (DMFS), and high STAT3 protein expression correlated with improved survival.
Conclusions:
- STAT signaling plays a significant role in endocrine resistance in breast cancer.
- STAT inhibitors may offer a therapeutic avenue for breast cancer patients, including those with endocrine resistance.
- Targeting STAT pathways could improve outcomes and survival in breast cancer.
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