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Role of SALL4 in HER2+ Breast Cancer Progression: Regulating PI3K/AKT Pathway
Birlipta Pattanayak1, Ana Lameirinhas1, Sandra Torres-Ruiz1
1Biomedical Research Institute INCLIVA, 46010 Valencia, Spain.
Abstract:
Treatment for the HER2+ breast cancer subtype is still unsatisfactory, despite breakthroughs in research. The discovery of various new molecular mechanisms of transcription factors may help to make treatment regimens more effective. The transcription factor SALL4 has been related to aggressiveness and resistance therapy in cancer. Its molecular mechanisms and involvement in various signaling pathways are unknown in the HER2+ breast cancer subtype. In this study, we have evaluated the implication of SALL4 in the HER2+ subtype through its expression in patients' samples and gain and loss of function in HER2+ cell lines. We found higher SALL4 expression in breast cancer tissues compared to healthy tissue. Interestingly, high SALL4 expression was associated with disease relapse and poor patient survival. In HER2+ cell lines, transient overexpression of SALL4 modulates PI3K/AKT signaling through regulating PTEN expression and BCL2, which increases cell survival and proliferation while reducing the efficacy of trastuzumab. SALL4 has also been observed to regulate the epithelial-mesenchymal transition and stemness features. SALL4 overexpression significantly reduced the epithelial markers E-cadherin, while it increased the mesenchymal markers β-catenin, vimentin and fibronectin. Furthermore, it has been also observed an increased expression of MYC, an essential transcription factor for regulating epithelial-mesenchymal transition and/or cancer stem cells. Our study demonstrates, for the first time, the importance of SALL4 in the HER2+ subtype and partial regulation of trastuzumab sensitivity. It provides a viable molecular mechanism-driven therapeutic strategy for an important subset of HER2-overexpressing patients whose malignancies are mediated by SALL4 expression.
Insights
The transcription factor SALL4 is highly expressed in HER2+ breast cancer, correlating with poor survival. SALL4 impacts cell growth and trastuzumab resistance, offering a new therapeutic target for HER2+ breast cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- HER2+ breast cancer treatment remains challenging.
- Transcription factors like SALL4 are implicated in cancer aggressiveness and therapy resistance.
- The role of SALL4 in HER2+ breast cancer is not well understood.
Purpose of the Study:
- To investigate the role and molecular mechanisms of SALL4 in HER2+ breast cancer.
- To evaluate SALL4 expression in patient samples and its correlation with clinical outcomes.
- To determine SALL4's impact on HER2+ cell line behavior and trastuzumab sensitivity.
Main Methods:
- Analysis of SALL4 expression in patient breast cancer tissues versus healthy tissues.
- Gain and loss of function studies of SALL4 in HER2+ breast cancer cell lines.
- Assessment of signaling pathways (PI3K/AKT), epithelial-mesenchymal transition (EMT), stemness markers, and trastuzumab efficacy.
Main Results:
- SALL4 expression is elevated in breast cancer tissues and linked to relapse and poor survival.
- SALL4 overexpression in HER2+ cells enhances survival, proliferation, and reduces trastuzumab efficacy by modulating PTEN and BCL2.
- SALL4 promotes EMT and stemness by downregulating E-cadherin and upregulating β-catenin, vimentin, fibronectin, and MYC.
Conclusions:
- SALL4 plays a significant role in HER2+ breast cancer.
- SALL4 partially regulates trastuzumab sensitivity and is involved in EMT and stemness.
- Targeting SALL4 presents a potential therapeutic strategy for a subset of HER2+ breast cancer patients.
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