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Published on: September 21, 2011
Proteasome-mediated glucocorticoid receptor degradation restricts transcriptional signaling by glucocorticoids
1Molecular Endocrinology Group, Laboratory of Signal Transduction, NIEHS, National Institutes of Health, Research Triangle Park, North Carolina 27709, USA.
Abstract:
Ligand-dependent down-regulation of the glucocorticoid receptor (GR) has been shown to limit hormone responsiveness, but the mechanisms involved in this process are poorly understood. The glucocorticoid receptor is a phosphoprotein that upon ligand binding becomes hyperphosphorylated, and recent evidence indicates that phosphorylation status of the glucocorticoid receptor plays a prominent role in receptor protein turnover. Because phosphorylation is a key signal for ubiquitination and proteasomal catabolism of many proteins, we evaluated whether the ubiquitin-proteasomal pathway had a role in glucocorticoid receptor down-regulation and the subsequent transcriptional response to glucocorticoids. Pretreatment of COS-1 cells expressing mouse glucocorticoid receptor with the proteasome inhibitor MG-132 effectively blocks glucocorticoid receptor protein down-regulation by the glucocorticoid dexamethasone. Interestingly, both MG-132 and a second proteasome inhibitor beta-lactone significantly enhanced hormone response of transfected mouse glucocorticoid receptor toward transcriptional activation of glucocorticoid receptor-mediated reporter gene expression. The transcriptional activity of the endogenous human glucocorticoid receptor in HeLa cells was also enhanced by MG-132. Direct evidence for ubiquitination of the glucocorticoid receptor was obtained by immunoprecipitation of cellular extracts from proteasome-impaired cells. Examination of the primary sequence of mouse, human, and rat glucocorticoid receptor has identified a candidate PEST degradation motif. Mutation of Lys-426 within this PEST element both abrogated ligand-dependent down-regulation of glucocorticoid receptor protein and simultaneously enhanced glucocorticoid receptor-induced transcriptional activation of gene expression. Unlike wild type GR, proteasomal inhibition failed to enhance significantly transcriptional activity of K426A mutant GR. Together these findings suggest a major role of the ubiquitin-proteasome pathway in regulating glucocorticoid receptor protein turnover, thereby providing a mechanism to terminate glucocorticoid responses.
Insights
The ubiquitin-proteasome pathway regulates glucocorticoid receptor (GR) protein turnover, impacting hormone responsiveness. Inhibiting this pathway enhances GR activity and gene expression, revealing a key mechanism for terminating cellular responses to glucocorticoids.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Ligand-dependent down-regulation of the glucocorticoid receptor (GR) limits hormone responsiveness, but the underlying mechanisms remain unclear.
- The phosphorylation status of GR is linked to its protein turnover, suggesting a role for post-translational modifications.
- Phosphorylation often signals protein ubiquitination and proteasomal degradation, hinting at the involvement of the ubiquitin-proteasome pathway.
Purpose of the Study:
- To investigate the role of the ubiquitin-proteasome pathway in glucocorticoid receptor (GR) down-regulation.
- To determine how the ubiquitin-proteasome pathway influences the transcriptional response to glucocorticoids.
- To identify specific mechanisms regulating GR protein turnover and hormone response termination.
Main Methods:
- Utilized proteasome inhibitors (MG-132, beta-lactone) in cell culture models (COS-1, HeLa) expressing mouse and human GR.
- Assessed GR protein levels and transcriptional activity using reporter gene assays.
- Performed immunoprecipitation to detect GR ubiquitination in proteasome-impaired cells.
- Analyzed GR primary sequences to identify potential degradation motifs and created mutant GR (K426A) for functional studies.
Main Results:
- Proteasome inhibition blocked ligand-dependent GR down-regulation and enhanced GR-mediated gene expression.
- Ubiquitination of GR was directly observed in cells with inhibited proteasomal activity.
- A PEST degradation motif was identified in GR, and mutation of Lys-426 within this motif abolished GR down-regulation and enhanced transcriptional activity.
- Proteasomal inhibition did not significantly enhance the transcriptional activity of the K426A mutant GR.
Conclusions:
- The ubiquitin-proteasome pathway plays a critical role in regulating glucocorticoid receptor (GR) protein turnover.
- This pathway provides a mechanism for the timely termination of cellular responses to glucocorticoids.
- Targeting the ubiquitin-proteasome system could modulate GR activity and hormone responsiveness.
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