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A high-content glucocorticoid receptor translocation assay for compound mechanism-of-action evaluation. | LitMetric

AI Article Synopsis

  • Ligand-induced translocation of nuclear receptors from the cytoplasm to the nucleus is an essential step in their signaling process, and advancements in green fluorescent proteins and imaging technology allow better monitoring of this process.
  • *Recent developments have created opportunities for deeper research into nuclear receptor signaling and offer promising tools for drug discovery.
  • *The authors addressed challenges in creating a reliable assay for the glucocorticoid receptor, successfully quantifying ligand-induced nuclear translocation and correlating results with traditional assays.

Article Abstract

Ligand-induced cytoplasm to nucleus translocation is a critical event in the nuclear receptor (NR) signal transduction cascade. The development of green fluorescent proteins and their color variants fused with NRs, along with the recent developments in automated cellular imaging technologies, has provided unique tools to monitor and quantify the NR translocation events. These technology developments have important implications in the mechanistic evaluation of NR signaling and provide a powerful tool for drug discovery. The unique challenges for developing a robust NR translocation assay include cytotoxicity accompanied with chronic overexpression of NRs, basal translocation induced by serum present in culture medium, and interference from endogenous NRs, as well as subcellular dynamics. The authors have developed a robust assay system for the glucocorticoid receptor (GR) that was applied to a panel of nuclear receptor ligands. Using a high-content imaging system, ligand-induced, dose-dependent GR nuclear translocation was quantified and a correlation with other conventional assays established.

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Source
http://dx.doi.org/10.1177/1087057107309353DOI Listing

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