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Published on: March 3, 2015
High Content Screening Using New U2OS Reporter Cell Models Identifies Harmol Hydrochloride as a Selective and
Hadjer Dellal1,2, Abdelhay Boulahtouf1,2,3, Elina Alaterre1,2
1IRCM, Institut de Recherche en Cancérologie de Montpellier, INSERM U1194, F-34298 Montpellier, France.
Abstract:
Prostate cancer is the most commonly diagnosed malignancy in men. Its growth mainly relies on the activity of the androgen receptor (AR), justifying the use of androgen deprivation therapy as a gold standard treatment for the metastatic disease. Inhibition of the androgen axis using second generation antagonists has improved patients' survival, but is systematically confronted to resistance mechanisms, leading to a median survival that does not exceed 5 years. Counteracting this resistance has been the object of a large number of investigations, with a particular emphasis towards the identification of new AR inhibitors, whether they antagonize the receptor by a competitive or a non-competitive binding. To this end, many high content screens have been performed, to identify new non-steroidal AR antagonists, using a variety of approaches, but reported somewhat controversial results, depending on the approach and on the cell model that was used for screening. In our study, we used the U2OS osteosarcoma cells stably transfected with AR or ARv7 and a luciferase reporter as a previously validated model to screen the Prestwick Phytochemical library. The results of our screen identified ellipticine, harmol, and harmine hydrochloride as confirmed hits. Surprisingly, we could demonstrate that harmol hydrochloride, previously identified as a non-competitive inhibitor of AR or a weak inhibitor of androgen signaling, was actually a competitive antagonist of AR, which inhibits the growth of VCaP prostate cancer line, at concentrations for which it did not affect the growth of the AR negative DU145 and PC3 cells. Interestingly, we also report for the first time that harmol hydrochloride was selective for AR, as it could not alter the activity of other nuclear receptors, such as the glucocorticoid receptor (GR), the progesterone receptor (PR), or the mineralocorticoid receptor (MR). Additionally, we demonstrate that, conversely to enzalutamide, harmol hydrochloride did not show any agonistic activity towards the pregnane X receptor (PXR), a master regulator of drug metabolism. Together, our results shed light on the importance of the cellular context for the screening of new AR antagonists. They further indicate that some of the potential hits that were previously identified may have been overlooked.
Insights
This study identifies harmol hydrochloride as a competitive androgen receptor (AR) antagonist for prostate cancer treatment. It highlights the importance of cellular context in discovering new AR inhibitors, potentially uncovering overlooked therapeutic candidates.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Prostate cancer growth is driven by the androgen receptor (AR).
- Androgen deprivation therapy is standard for metastatic prostate cancer but faces resistance.
- Identifying novel AR inhibitors is crucial to overcome treatment resistance and improve survival.
Purpose of the Study:
- To screen the Prestwick Phytochemical library for new androgen receptor (AR) antagonists.
- To validate and characterize potential AR inhibitors identified from the screen.
- To investigate the mechanism of action and selectivity of identified compounds.
Main Methods:
- Screening of the Prestwick Phytochemical library using U2OS cells stably transfected with AR or ARv7 and a luciferase reporter.
- Validation of hits using prostate cancer cell lines (VCaP, DU145, PC3) to assess growth inhibition.
- Assays to determine the binding mode (competitive vs. non-competitive) and selectivity against other nuclear receptors (GR, PR, MR) and PXR.
Main Results:
- Ellipticine, harmol, and harmine hydrochloride were identified as hits.
- Harmol hydrochloride was confirmed as a competitive AR antagonist, inhibiting VCaP cell growth.
- Harmol hydrochloride demonstrated selectivity for AR over other nuclear receptors and lacked PXR agonistic activity.
Conclusions:
- Harmol hydrochloride is a potent and selective competitive AR antagonist with therapeutic potential for prostate cancer.
- The cellular context significantly influences the screening and identification of AR antagonists.
- This study re-evaluates previously identified compounds and suggests potential overlooked therapeutic candidates.
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