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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

Hormone Research
|February 5, 2003
PubMed

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.

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