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Published on: June 9, 2023
Suppression of breast cancer cell growth by Her2-reduced AR serine 81 phosphorylation
Pao-Hsuan Huang1, Hsin-Yi Wang2, Chen-Chuan Huang1
1Department of Life Sciences, National Chung Hsing University, Taichung 40227, Taiwan, Republic of China.
Abstract:
Breast cancer is a hormone-related carcinoma and the most commonly diagnosed malignancy in women. Although Her-2, estrogen receptor (ER), and progesterone receptor (PR) are the major diagnostic markers and therapeutic targets to breast cancer, searching for additional molecular targets remains an important issue and one of the candidates is androgen receptor (AR). AR has been shown expressed in 70% breast cancer patients and connects to low recurrence and high survival rate. Our previous study demonstrates that Ser81 phosphorylation of AR in prostate cancer cells is critical for its protein stability modulated by human epidermal growth factor receptor-2 (Her2). The aim of this study is to investigate the influence of Her2 and AR in proliferation of breast cancer cell line, MDA-MB-453. The data show that AR which was activated by synthetic androgen R1881 suppressed the proliferation of MDA-MB-453 cells. Notably, AR activation decreased the protein levels of cell growth-related proteins, including cyclin A, cyclin B, and early growth response protein 1 (Egr1), while cell-cycle inhibitor protein p27 was increased. Besides, Heregulin (HRG)-induced Her2 activation decreased the AR protein levels and its Ser81 phosphorylation. Her2 small molecular inhibitor, Lapatinib, dose-dependently suppressed cell proliferation while the levels of phospho-Ser81 AR and p27 protein were increased. Phospho-Ser81 AR was also increased after Her2 knockdown. Specifically, the influence of phospho-Ser81 AR by Lapatinib was primarily found in the nucleus of MDA-MD-453 cells, where the cell proliferation might directly be interfered. In conclusion, our findings indicate that Her2 might negatively regulate AR phosphorylation/activation and contribute to regulate the proliferation of MDA-MB 453 cells.
Insights
Androgen receptor (AR) activation suppresses breast cancer cell growth, while human epidermal growth factor receptor-2 (Her2) negatively regulates AR activity. Targeting Her2 may offer a new therapeutic strategy for breast cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Breast cancer is a major health concern, with estrogen receptor (ER) and progesterone receptor (PR) as key targets.
- Androgen receptor (AR) is present in 70% of breast cancers and linked to better outcomes.
- Human epidermal growth factor receptor-2 (Her2) is a known therapeutic target, and its interaction with AR is under investigation.
Purpose of the Study:
- To investigate the roles of Her2 and AR in the proliferation of the MDA-MB-453 breast cancer cell line.
- To explore the molecular mechanisms linking Her2 and AR signaling pathways.
Main Methods:
- Utilized the MDA-MB-453 breast cancer cell line.
- Administered synthetic androgen R1881 to activate AR.
- Used Heregulin (HRG) to activate Her2.
- Employed the Her2 inhibitor Lapatinib.
- Performed Western blot analysis to assess protein levels (AR, phospho-Ser81 AR, cyclin A, cyclin B, Egr1, p27).
- Conducted Her2 knockdown experiments.
Main Results:
- AR activation by R1881 suppressed MDA-MB-453 cell proliferation.
- AR activation decreased cell growth proteins (cyclin A, cyclin B, Egr1) and increased p27.
- Her2 activation by HRG reduced AR levels and its Ser81 phosphorylation.
- Lapatinib inhibited cell proliferation and increased phospho-Ser81 AR and p27 levels.
- Her2 knockdown also increased phospho-Ser81 AR.
- Lapatinib's effect on phospho-Ser81 AR was localized to the nucleus.
Conclusions:
- Her2 negatively regulates AR phosphorylation and activation in MDA-MB-453 cells.
- This interaction influences breast cancer cell proliferation.
- Targeting the Her2-AR pathway presents a potential therapeutic avenue for breast cancer treatment.
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