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Targeting androgen receptor/Src complex impairs the aggressive phenotype of human fibrosarcoma cells
Gabriella Castoria1, Pia Giovannelli, Marzia Di Donato
1Department of Biochemistry, Biophysics, and General Pathology, 2nd University of Naples, Naples, Italy.
Background:
Hormones and growth factors influence the proliferation and invasiveness of human mesenchymal tumors. The highly aggressive human fibrosarcoma HT1080 cell line harbors classical androgen receptor (AR) that responds to androgens triggering cell migration in the absence of significant mitogenesis. As occurs in many human cancer cells, HT1080 cells also express epidermal growth factor receptor (EGFR).
Findings:
We report that the pure anti-androgen Casodex inhibits the growth of HT1080 cell xenografts in immune-depressed mice, revealing a novel role of AR in fibrosarcoma progression. In HT1080 cultured cells EGF, but not androgens, robustly increases DNA synthesis. Casodex abolishes the EGF mitogenic effect, implying a crosstalk between EGFR and AR. The mechanism underlying this crosstalk has been analyzed using an AR-derived small peptide, S1, which prevents AR/Src tyrosine kinase association and androgen-dependent Src activation. Present findings show that in HT1080 cells EGF induces AR/Src Association, and the S1 peptide abolishes both the assembly of this complex and Src activation. The S1 peptide inhibits EGF-stimulated DNA synthesis, cell matrix metalloproteinase-9 (MMP-9) secretion and invasiveness of HT1080 cells. Both Casodex and S1 peptide also prevent DNA synthesis and migration triggered by EGF in various human cancer-derived cells (prostate, breast, colon and pancreas) that express AR.
Conclusion:
This study shows that targeting the AR domain involved in AR/Src association impairs EGF signaling in human fibrosarcoma HT1080 cells. The EGF-elicited processes inhibited by the peptide (DNA synthesis, MMP-9 secretion and invasiveness) cooperate in increasing the aggressive phenotype of HT1080 cells. Therefore, AR represents a new potential therapeutic target in human fibrosarcoma, as supported by Casodex inhibition of HT1080 cell xenografts. The extension of these findings in various human cancer-derived cell lines highlights the conservation of this process across divergent cancer cells and identifies new potential targets in the therapeutic approach to human cancers.
Insights
Targeting the androgen receptor (AR) pathway with Casodex or an AR-derived peptide inhibits EGF-driven fibrosarcoma growth and invasiveness. This highlights AR as a potential therapeutic target for fibrosarcoma and other cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Human fibrosarcoma HT1080 cells express androgen receptor (AR) and epidermal growth factor receptor (EGFR).
- Androgen receptor signaling in HT1080 cells primarily drives cell migration, not proliferation.
- EGFR is commonly expressed in various human cancer cells.
Purpose of the Study:
- To investigate the role of androgen receptor (AR) in fibrosarcoma progression.
- To elucidate the crosstalk between EGFR and AR signaling pathways.
- To evaluate the therapeutic potential of targeting AR in fibrosarcoma.
Main Methods:
- Treatment of HT1080 cell xenografts with the anti-androgen Casodex.
- In vitro studies using HT1080 cells treated with EGF, androgens, Casodex, and an AR-derived peptide (S1).
- Analysis of DNA synthesis, cell migration, MMP-9 secretion, and AR/Src tyrosine kinase association.
Main Results:
- Casodex inhibited HT1080 xenograft growth, indicating a role for AR in fibrosarcoma progression.
- EGF robustly increased DNA synthesis in HT1080 cells, an effect abolished by Casodex, suggesting EGFR-AR crosstalk.
- The S1 peptide inhibited EGF-induced DNA synthesis, MMP-9 secretion, and invasiveness by preventing AR/Src association and Src activation.
- Casodex and S1 peptide also inhibited EGF-stimulated DNA synthesis and migration in prostate, breast, colon, and pancreas cancer cells.
Conclusions:
- Targeting the AR domain for AR/Src association impairs EGF signaling in fibrosarcoma.
- Inhibition of EGF-elicited DNA synthesis, MMP-9 secretion, and invasiveness by AR-targeting agents reduces the aggressive phenotype.
- AR is a novel therapeutic target for human fibrosarcoma, with potential applications in other cancers due to conserved signaling pathways.
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