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.

Bone
|November 4, 2008
PubMed

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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