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Screening for Phytoestrogens using a Cell-based Estrogen Receptor β Reporter Assay
Published on: June 7, 2020
Potential use of an estrogen-glucocorticoid receptor chimera as a drug screen for tissue selective estrogenic
Benit S Maru1, Jonathan H Tobias, Caroline Rivers
1Laboratory for Integrated Neurosciences and Endocrinology, University of Bristol, UK.
Abstract:
SERMs act as ER agonists in bone despite their antagonistic properties in other tissues. As well as inhibiting bone remodelling, this effect may involve stimulation of osteoblast activity, in light of evidence from recent in vivo studies. However, progress in exploring this action has been hampered by a lack of accurate in vitro models. For example, ER antagonists are reported to stimulate reporter assays based on estrogen target genes in osteoblasts, contrary to their inhibitory effects in vivo. We examined whether evaluating global aspects of ER function provides a more accurate reflection of ER activation in osteoblasts, based on the use of morphological and/or transcriptional read-outs with green fluorescent protein (GFP)-receptor chimeras. Osteoblast-like (ROS and U2OS) and breast cancer (MCF7) cells were transfected with a human ERalpha-GFP fusion protein, and treated with ER agonists (17beta-estradiol, and dienestrol), antagonists (ICI 182,780 and ZK 164015) and SERMs (tamoxifen, raloxifene, 4-hydroxytamoxifen (4-HT) and hexestrol). We investigated cellular compartmentalisation of these constructs by fluorescence microscopy, nuclear mobility by fluorescence recovery after photobleaching (FRAP), and global activation of estrogenic transcription using a ERE-luc reporter. SERMs caused a modest increase in ERE-luc activity in osteoblast-like cells (but not in breast cells), and a reduction in nuclear mobility in breast (but not osteoblast-like) cells. These studies were then repeated using a GFP chimera where the human GR ligand binding domain (LBD) was replaced by the human ERalpha LBD (ERGR-GFP), combined with a GRE-luc reporter. Interestingly, SERMs increased both cytoplasmic to nuclear translocation of ERGR-GFP, and GRE-luc reporter activity, in osteoblast-like (but not breast) cells. Indeed, transcriptional responses to SERMs in osteoblast-like cells were considerably greater with the ERGR/GRE-luc than the ERalpha/ERE-luc system, 4-HT inducing 300 and 25% increases in reporter activity respectively. ER antagonists were entirely without effect. We conclude that evaluation of global estrogenic activity, as opposed to activation of a specific target gene, provides a more accurate read-out for osteoblast stimulation. In particular, ERGR-mediated GRE-luc activity provides a high signal response to estrogen agonists and SERMs, in a cell context dependent manner closely resembling that observed in vivo. Further studies utilising this system are justified to explore the mechanistic basis for estrogenic stimulation of osteoblast activity, and to identify newer SERMs capable of targeting this activity.
Insights
Selective estrogen receptor modulators (SERMs) stimulate osteoblast activity. A novel ERGR/GRE-luc reporter system accurately reflects this in vitro, mimicking in vivo responses for better SERM development.
Area of Science:
- Molecular Endocrinology
- Cell Biology
- Pharmacology
Background:
- Selective estrogen receptor modulators (SERMs) exhibit tissue-specific estrogen receptor (ER) activity, acting as agonists in bone but antagonists elsewhere.
- In vivo studies suggest SERMs may stimulate osteoblast activity, but in vitro models lack accuracy, showing contradictory results for ER antagonists.
- Accurate in vitro models are needed to understand ER activation in osteoblasts and develop targeted therapies.
Purpose of the Study:
- To evaluate global ER function read-outs for a more accurate reflection of ER activation in osteoblasts.
- To compare the efficacy of ERalpha/ERE-luc and ERGR/GRE-luc reporter systems in assessing SERM activity in osteoblast-like cells.
- To investigate cell context-dependent responses to ER agonists, antagonists, and SERMs.
Main Methods:
- Transfection of osteoblast-like (ROS, U2OS) and breast cancer (MCF7) cells with ERalpha-GFP or ERGR-GFP fusion proteins.
- Treatment with ER agonists, antagonists, and SERMs.
- Analysis of cellular compartmentalization (fluorescence microscopy), nuclear mobility (FRAP), and transcriptional activity (ERE-luc or GRE-luc reporters).
Main Results:
- SERMs showed modest ERE-luc activity in osteoblast-like cells and reduced nuclear mobility in breast cells.
- The ERGR-GFP/GRE-luc system demonstrated increased cytoplasmic to nuclear translocation and reporter activity for SERMs in osteoblast-like cells.
- Transcriptional responses to SERMs were significantly higher with the ERGR/GRE-luc system (e.g., 300% for 4-HT) compared to ERalpha/ERE-luc (25%). ER antagonists had no effect.
Conclusions:
- Global estrogenic activity assessment, particularly using the ERGR-mediated GRE-luc system, provides a more accurate in vitro read-out for osteoblast stimulation than specific gene targets.
- The ERGR/GRE-luc system shows cell context-dependent responses to ER agonists and SERMs, closely mimicking in vivo observations.
- This system warrants further investigation for understanding osteoblast stimulation mechanisms and identifying novel SERMs targeting bone health.
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