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Biochemical Reconstitution of Steroid Receptor•Hsp90 Protein Complexes and Reactivation of Ligand Binding
Published on: September 21, 2011
Regulation of glucocorticoid receptor protein and mRNA levels
W V Vedeckis1, M Ali, H R Allen
1Department of Biochemistry and Molecular Biology, Louisiana State University Medical Center, New Orleans 70112.
Abstract:
The level of steroid receptors in target cells affects the responsiveness of the cell to the hormone. In mouse AtT-20 cells, it has been shown that chronic glucocorticoid treatment causes a down-regulation of glucocorticoid receptor (GR) levels (F. Svec and M. Rudis, J. Biol. Chem., 256:5984-5987, 1981). The current study shows that chronic hormone treatment reduces the amount of GR mRNA to about 50% of that in untreated cells. A combined treatment of the cells with an inhibitor of RNA transcription and the glucocorticoid hormone causes a more rapid decrease in steady-state GR mRNA levels than either agent alone. This suggests that glucocorticoids regulate the expression of the GR gene posttranscriptionally, perhaps via destabilization of the GR mRNA. An additional transcriptional regulation by the steroid hormone is not ruled out by this observation. It was also found that heat shocking a variety of cell types at 42 degrees C not only causes an induction of heat shock proteins but also results in a dramatic decrease in the level of glucocorticoid-binding activity. GR labeled with a covalent ligand (dexamethasone 21-mesylate) was also reduced by heat shock, implying that heat shock caused an increased degradation in the GR protein itself. Finally, in vitro studies show that the GR is degraded in an ATP- and tRNA-dependent fashion in rabbit reticulocyte lysate. It therefore seems likely that the GR is degraded by the ubiquitin-dependent proteolytic pathway. Because ubiquitin is itself a heat shock protein, this may be the reason that the GR is rapidly degraded in heat-shocked cells. These studies point to possible mechanisms whereby the responsiveness of the cell to steroid hormones is altered by the regulation of the steroid receptor protein and mRNA levels.
Insights
Glucocorticoid receptor (GR) levels decrease with chronic hormone treatment and heat shock. This suggests GR is degraded via the ubiquitin-dependent pathway, impacting steroid hormone responsiveness.
Area of Science:
- Molecular Endocrinology
- Cell Biology
- Steroid Hormone Signaling
Background:
- Steroid receptor levels in target cells dictate hormone responsiveness.
- Chronic glucocorticoid treatment down-regulates glucocorticoid receptor (GR) levels in mouse AtT-20 cells.
Purpose of the Study:
- To investigate the post-transcriptional regulation of glucocorticoid receptor (GR) mRNA levels.
- To explore the impact of heat shock on GR levels and protein degradation.
- To elucidate the mechanism of GR protein degradation.
Main Methods:
- Treatment of mouse AtT-20 cells with glucocorticoids and RNA transcription inhibitors.
- Analysis of GR mRNA levels via quantitative assays.
- Heat shock experiments on various cell types, assessing glucocorticoid-binding activity and GR protein levels.
- In vitro degradation studies using rabbit reticulocyte lysate.
Main Results:
- Chronic hormone treatment reduced GR mRNA levels by approximately 50%.
- Combined hormone and transcription inhibitor treatment accelerated GR mRNA decrease, suggesting post-transcriptional regulation.
- Heat shock at 42°C induced heat shock proteins and significantly decreased GR-binding activity and GR protein levels.
- In vitro studies indicated ATP- and tRNA-dependent GR degradation, consistent with the ubiquitin-dependent proteolytic pathway.
Conclusions:
- Glucocorticoids likely regulate GR expression post-transcriptionally, possibly by destabilizing GR mRNA.
- Heat shock induces rapid GR protein degradation, potentially via the ubiquitin-dependent pathway.
- Regulation of GR protein and mRNA levels offers mechanisms for altering cellular responsiveness to steroid hormones.
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