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Published on: September 21, 2011
p54nrb/NONO regulates cyclic AMP-dependent glucocorticoid production by modulating phosphodiesterase mRNA splicing
1Skaggs School of Pharmacy & Pharmaceutical Sciences, University of California, San Diego, La Jolla, California, USA.
Abstract:
Glucocorticoid production in the adrenal cortex is activated in response to an increase in cyclic AMP (cAMP) signaling. The nuclear protein p54(nrb)/NONO belongs to the Drosophila behavior/human splicing (DBHS) family and has been implicated in several nuclear processes, including transcription, splicing, and RNA export. We previously identified p54(nrb)/NONO as a component of a protein complex that regulates the transcription of CYP17A1, a gene required for glucocorticoid production. Based on the multiple mechanisms by which p54(nrb)/NONO has been shown to control gene expression and the ability of the protein to be recruited to the CYP17A1 promoter, we sought to further define the molecular mechanism by which p54(nrb)/NONO confers optimal cortisol production. We show here that silencing p54(nrb)/NONO expression in H295R human adrenocortical cells decreases the ability of the cells to increase intracellular cAMP production and subsequent cortisol biosynthesis in response to adrenocorticotropin hormone (ACTH) stimulation. Interestingly, the expression of multiple phosphodiesterase (PDE) isoforms, including PDE2A, PDE3A, PDE3B, PDE4A, PDE4D, and PDE11A, was induced in p54(nrb)/NONO knockdown cells. Investigation of the mechanism by which silencing of p54(nrb)/NONO led to increased expression of select PDE isoforms revealed that p54(nrb)/NONO regulates the splicing of a subset of PDE isoforms. Importantly, we also identify a role for p54(nrb)/NONO in regulating the stability of PDE transcripts by facilitating the interaction between the exoribonuclease XRN2 and select PDE transcripts. In summary, we report that p54(nrb)/NONO modulates cAMP-dependent signaling, and ultimately cAMP-stimulated glucocorticoid biosynthesis by regulating the splicing and degradation of PDE transcripts.
Insights
The nuclear protein p54(nrb)/NONO regulates cortisol production by controlling cyclic AMP (cAMP) signaling. It influences phosphodiesterase (PDE) splicing and stability, impacting glucocorticoid biosynthesis.
Area of Science:
- Endocrinology
- Molecular Biology
- Cell Biology
Background:
- Glucocorticoid production is regulated by cyclic AMP (cAMP) signaling in the adrenal cortex.
- The nuclear protein p54(nrb)/NONO, part of the DBHS family, is involved in nuclear processes like transcription and splicing.
- p54(nrb)/NONO was previously identified as a regulator of CYP17A1 transcription, essential for glucocorticoid synthesis.
Purpose of the Study:
- To elucidate the molecular mechanism by which p54(nrb)/NONO influences cortisol production.
- To investigate the role of p54(nrb)/NONO in cAMP-dependent signaling and glucocorticoid biosynthesis.
Main Methods:
- Silencing p54(nrb)/NONO expression in H295R human adrenocortical cells.
- Assessing intracellular cAMP production and cortisol biosynthesis following ACTH stimulation.
- Analyzing the expression of phosphodiesterase (PDE) isoforms.
- Investigating the regulation of PDE splicing and transcript stability.
Main Results:
- p54(nrb)/NONO knockdown decreased cAMP production and cortisol biosynthesis upon ACTH stimulation.
- Expression of multiple PDE isoforms (PDE2A, PDE3A, PDE3B, PDE4A, PDE4D, PDE11A) was induced in p54(nrb)/NONO knockdown cells.
- p54(nrb)/NONO was found to regulate PDE splicing and transcript stability by interacting with XRN2.
Conclusions:
- p54(nrb)/NONO plays a critical role in modulating cAMP-dependent signaling pathways.
- p54(nrb)/NONO regulates glucocorticoid biosynthesis by controlling the splicing and degradation of phosphodiesterase transcripts.
- These findings reveal a novel mechanism by which p54(nrb)/NONO impacts adrenal steroidogenesis.
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