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Detecting the Ligand-binding Domain Dimerization Activity of Estrogen Receptor Alpha Using the Mammalian Two-Hybrid Assay
Published on: December 19, 2018
The fluorescent two-hybrid assay for live-cell profiling of androgen receptor modulators
Jacqueline Bogner1, Kourosh Zolghadr1, Ian Hickson2
1ChromoTek GmbH, Martinsried, Germany.
Abstract:
The androgen receptor (AR) is an important target for drug therapies combating prostate cancer. However, various acquired mutations within the AR sequence often render this receptor resistant to treatment. Ligand-induced interaction between the N- and C-termini of the AR marks the initial step in the AR signaling cascade and can thus serve as an early read-out for analysis of potential antagonists of wt and mutant AR. To measure changes of the N/C interaction in the wt and mutant AR variants upon the addition of inhibitors, we applied our recently developed Fluorescent Two-Hybrid (F2H) assay. The F2H method enables real-time monitoring and quantitative analysis of the interactions between GFP- and RFP-tagged proteins in live mammalian cells, where GFP-tagged proteins are tethered to a specific nuclear location. This anchoring approach provides a local signal enrichment suitable for direct visualization of protein-protein interactions as co-localizations by conventional epifluorescence microscopy. Since the F2H assay is fully reversible, we could monitor dynamics of AR N/C interactions in living cells in real time upon agonistic, as well as antagonistic treatments. In dose-response F2H experiments, we compared the potencies of abiraterone, bicalutamide, enzalutamide, flutamide, and galeterone/TOK-001 to prevent the dihydrotestosterone-induced N/C interaction in wt AR. We further applied the newly developed F2H assay to analyze how the AR N/C interaction is affected by the clinically relevant mutations W741L, F876L, T877A and F876L/T877A. We conclude that F2H is a reliable and technically undemanding approach for straightforward screening of new AR modulators, as well as for monitoring their activity in real time in living cells.
Insights
The Fluorescent Two-Hybrid (F2H) assay offers real-time analysis of androgen receptor (AR) interactions, aiding in the development of new prostate cancer drugs. This method effectively screens AR modulators and monitors their activity against wild-type and mutant AR.
Area of Science:
- Molecular Biology
- Cell Biology
- Pharmacology
Background:
- The androgen receptor (AR) is a key target in prostate cancer therapy.
- Acquired AR mutations often lead to treatment resistance.
- AR N/C terminus interaction is an early signaling event and a potential drug target.
Purpose of the Study:
- To develop and validate a Fluorescent Two-Hybrid (F2H) assay for real-time monitoring of AR N/C terminus interactions.
- To quantitatively analyze the potency of existing AR antagonists against wild-type (wt) AR.
- To investigate the impact of clinically relevant AR mutations on N/C interaction dynamics.
Main Methods:
- Development of a Fluorescent Two-Hybrid (F2H) assay using GFP- and RFP-tagged proteins in live mammalian cells.
- Anchoring of GFP-tagged proteins to a specific nuclear location for signal enrichment and visualization via epifluorescence microscopy.
- Real-time, dose-response monitoring of AR N/C interactions upon addition of agonists and antagonists, including abiraterone, bicalutamide, enzalutamide, flutamide, and galeterone/TOK-001.
Main Results:
- The F2H assay successfully monitored real-time dynamics of AR N/C interactions in response to various treatments.
- Comparative analysis of AR antagonist potencies against wt AR was performed.
- The assay revealed how clinically relevant AR mutations (W741L, F876L, T877A, F876L/T877A) affect AR N/C interactions.
Conclusions:
- The F2H assay is a reliable and accessible method for screening novel AR modulators.
- The assay enables real-time monitoring of AR modulator activity in living cells.
- F2H provides a valuable tool for understanding AR signaling in both wild-type and mutant forms relevant to prostate cancer treatment.
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