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Ex Vivo Treatment Response of Primary Tumors and/or Associated Metastases for Preclinical and Clinical Development of Therapeutics
Published on: October 2, 2014
Hsp90 Inhibition Results in Glucocorticoid Receptor Degradation in Association with Increased Sensitivity to
Abena S Agyeman1, Wesley J Jun1, David A Proia2
1Department of Medicine-Hematology/Oncology, The University of Chicago, Chicago, IL, 60637, USA.
Abstract:
Targetable molecular drivers for triple-negative breast cancer (TNBC) have been difficult to identify; therefore, standard treatment remains limited to conventional chemotherapy. Recently, new-generation small-molecule Hsp90 inhibitors (e.g., ganetespib and NVP-AUY922) have demonstrated improved safety and activity profiles over the first-generation ansamycin class. In breast cancer, clinical responses have been observed in a subset of TNBC patients following ganetespib monotherapy; however, the underlying biology of Hsp90 inhibitor treatment and tumor response is not well understood. Glucocorticoid receptor (GR) activity in TNBC is associated with chemotherapy resistance. Here, we find that treatment of TNBC cell lines with ganetespib resulted in GR degradation and decreased GR-mediated gene expression. Ganetespib-associated GR degradation also sensitized TNBC cells to paclitaxel-induced cell death both in vitro and in vivo. The beneficial effect of the Hsp90 inhibitor on paclitaxel-induced cytotoxicity was reduced when GR was depleted in TNBC cells but could be recovered with GR overexpression. These findings suggest that GR-regulated anti-apoptotic and pro-proliferative signaling networks in TNBC are disrupted by Hsp90 inhibitors, thereby sensitizing TNBC to paclitaxel-induced cell death. Thus, GR+ TNBC patients may be a subgroup of breast cancer patients who are most likely to benefit from adding an Hsp90 inhibitor to taxane therapy.
Insights
New Hsp90 inhibitors like ganetespib degrade the glucocorticoid receptor (GR) in triple-negative breast cancer (TNBC). This enhances sensitivity to chemotherapy, suggesting GR-positive TNBC patients may benefit from combination therapy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Triple-negative breast cancer (TNBC) lacks targeted therapies, relying on chemotherapy.
- Glucocorticoid receptor (GR) activity is linked to chemotherapy resistance in TNBC.
- Newer Hsp90 inhibitors show promise but their mechanisms in TNBC are unclear.
Purpose of the Study:
- To investigate the role of Hsp90 inhibitors in TNBC biology.
- To determine the effect of Hsp90 inhibitors on Glucocorticoid Receptor (GR) activity.
- To assess the potential of Hsp90 inhibitors in combination with chemotherapy for TNBC treatment.
Main Methods:
- Treatment of TNBC cell lines with ganetespib.
- Analysis of GR degradation and GR-mediated gene expression.
- Assessment of cell death sensitivity to paclitaxel in vitro and in vivo.
- GR depletion and overexpression studies.
Main Results:
- Ganetespib treatment led to GR degradation and reduced GR-mediated gene expression in TNBC cells.
- Hsp90 inhibition sensitized TNBC cells to paclitaxel-induced cell death.
- The sensitizing effect was dependent on GR levels, being reduced by depletion and restored by overexpression.
Conclusions:
- Hsp90 inhibitors disrupt GR-driven signaling, sensitizing TNBC to paclitaxel.
- Glucocorticoid receptor positive (GR+) TNBC patients may benefit from combining Hsp90 inhibitors with taxane therapy.
- This suggests a potential new therapeutic strategy for a subset of TNBC patients.
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