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Analysis of estrogen receptor function in vitro reveals three distinct classes of antiestrogens
D P McDonnell1, D L Clemm, T Hermann
1Department of Pharmacology, Duke University Medical School, Durham, North Carolina 27710, USA.
Abstract:
We have developed a series of in vitro models with which to evaluate the biological activity of estrogen receptor (ER) agonists and antagonists. Using a protease digestion assay we show that the conformational changes induced within ER are distinct for agonists and antagonists. However, this assay is unable to discriminate between pure antagonists like ICI164,384 and partial agonists such as 4-OH tamoxifen or keoxifene. Using a chimeric ER-VP16 construct, we demonstrate that both pure antagonists and partial agonists deliver ER to its DNA target within cells. However, the ability of the DNA-bound receptor to activate transcription in the presence of a given antagonist is dependent on cell and promoter context. These data, suggesting functional differences among ER antagonists, were confirmed by additional experiments demonstrating that their ability to modulate the transcriptional activity of a series of ER mutants is dramatically different. Depending on the cell and promoter context and the particular ER form expressed, 4-OH tamoxifen and the related compound, keoxifene, functioned as partial agonists. Importantly, the transcriptional profiles of these two compounds were dissimilar, suggesting that they are functionally different from each other and from ICI164,384, which does not display agonist activity under any context examined. Our results reveal functional differences between these clinically important antiestrogens and suggest that the distinct biologies manifest by these compounds in vivo relate to their ability to differentially regulate ER function.
Insights
Estrogen receptor (ER) antagonists and partial agonists show distinct conformational changes but deliver ER to DNA targets. Their transcriptional activity varies by cell and promoter context, revealing functional differences among these antiestrogens.
Area of Science:
- Endocrinology
- Molecular Biology
- Pharmacology
Background:
- Estrogen receptor (ER) plays a crucial role in various physiological processes.
- Understanding the differential activity of ER agonists and antagonists is vital for therapeutic development.
Purpose of the Study:
- To develop and utilize in vitro models to evaluate the biological activity of ER agonists and antagonists.
- To elucidate the distinct mechanisms by which ER antagonists and partial agonists modulate ER function.
Main Methods:
- Protease digestion assays to detect ER conformational changes.
- Chimeric ER-VP16 constructs to assess ER DNA binding and transcriptional activation.
- Analysis of ER mutant activity across different cell and promoter contexts.
Main Results:
- Protease digestion revealed distinct ER conformational changes for agonists versus antagonists.
- Both antagonists and partial agonists successfully delivered ER to DNA targets.
- Transcriptional activity was context-dependent, with partial agonists (4-OH tamoxifen, keoxifene) showing varied agonist activity.
- ICI164,384 consistently acted as a pure antagonist across all tested contexts.
Conclusions:
- Functional differences exist among ER antagonists and partial agonists.
- The differential regulation of ER function by these compounds explains their varied in vivo biological effects.
- Context-dependent activity highlights the complexity of ER modulation.