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Nuclear receptors and co-regulators in adrenal tumors
Hirotaka Shibata1, Sakiko Kobayashi, Isao Kurihara
1Health Center, School of Medicine, Keio University, Tokyo, Japan. hiro-405@cb3.so-net.ne.jp
Abstract:
We have reported that excessive steroid hormone production in adrenal cortical tumors results from the disordered expression and activity of specific steroidogenic enzymes. Since no genetic mutations in these steroidogenic enzymes have as yet been identified, disordered expression at the transcription level may be crucial for excessive hormone production in adrenocortical tumors. Nuclear receptors SF-1 and COUP-TF/DAX-1 have been shown to activate and repress, respectively, the transcription of CYP17 gene in a mutually exclusive manner in Y-1 cells. Interestingly, the expression of COUP-TF and DAX-1 is significantly decreased in the cortisol-producing adenomas, in which CYP17 is overexpressed. Conversely, DAX-1 is highly expressed in deoxycorticosterone-producing adenomas, where CYP17 expression is almost absent. These expression profiles indicate the possibility that COUP-TF and DAX-1 play important roles in the transcriptional repression of CYP17 in adrenal tumors. To clarify the mechanisms of COUP-TF-mediated repression, we therefore screened for COUP-TF-interacting proteins using a yeast two-hybrid system from a cortisol-producing adenoma cDNA library. We then cloned a novel COUP-TF-interacting protein-1 (CIP-1), which interacts with COUP-TFI, COUP-TFII, and SF-1. Functionally, CIP-1 can act as a transcriptional co-repressor for COUP-TF repression activity. CIP-1 expression profiles parallel those of COUP-TFI in steroidogenic tissues, strongly suggesting that, together, COUP-TFI and CIP-1 play an important role in steroidogenesis.
Insights
Disordered expression of steroidogenic enzymes in adrenal tumors may stem from altered transcription. A novel protein, CIP-1, interacts with COUP-TF and acts as a co-repressor, suggesting a role in regulating steroid hormone production.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Excessive steroid hormone production in adrenal cortical tumors is linked to disordered steroidogenic enzyme expression.
- Genetic mutations in these enzymes are not identified, suggesting transcriptional dysregulation is key.
- Nuclear receptors SF-1 and COUP-TF/DAX-1 modulate CYP17 gene transcription.
Purpose of the Study:
- Investigate the role of COUP-TF and DAX-1 in CYP17 transcriptional repression in adrenal tumors.
- Identify proteins interacting with COUP-TF to elucidate repression mechanisms.
- Determine the functional role of novel interacting proteins in steroidogenesis.
Main Methods:
- Yeast two-hybrid system screening using a cortisol-producing adenoma cDNA library.
- Cloning and characterization of COUP-TF-interacting proteins.
- Analysis of gene expression profiles in different types of adrenal adenomas.
Main Results:
- Expression of COUP-TF and DAX-1 is decreased in cortisol-producing adenomas with high CYP17 expression.
- DAX-1 is highly expressed in deoxycorticosterone-producing adenomas with low CYP17 expression.
- A novel protein, COUP-TF-interacting protein-1 (CIP-1), was identified; it interacts with COUP-TFI, COUP-TFII, and SF-1 and functions as a transcriptional co-repressor.
Conclusions:
- COUP-TF and DAX-1 are implicated in the transcriptional repression of CYP17 in adrenal tumors.
- CIP-1 acts as a co-repressor for COUP-TF, suggesting a role in regulating steroidogenesis.
- CIP-1 expression parallels COUP-TFI, indicating a collaborative role in steroidogenic tissue regulation.