Related Experiment Videos

Regulation of aromatase by nuclear receptors

T Yanase1, Y M Mu, Y Nishi

  • 1Third Department of Internal Medicine, Faculty of Medicine, Kyushu University, 3-1-1 Maidashi, Higashi-ku, 812-8582, Fukuoka, Japan. yanase@intmed3.med.kyushu-u.ac.jp

Insights

Retinoid X receptor (RXR) heterodimers modulate aromatase activity differently in breast cancer and ovarian cells. RAR:RXR heterodimers stimulate activity in breast cancer cells, while PPARgamma:RXR heterodimers inhibit it in ovarian cells.

Area of Science:

  • Endocrinology
  • Molecular Biology
  • Cancer Research

Background:

  • Aromatase is a key enzyme in estrogen biosynthesis.
  • Nuclear receptors, including retinoid X receptor (RXR) heterodimers, are implicated in regulating gene expression.
  • Understanding nuclear receptor roles in aromatase regulation is crucial for hormone-dependent cancers.

Purpose of the Study:

  • To investigate the effects of specific nuclear receptor heterodimers (RAR:RXR and PPARgamma:RXR) on aromatase activity.
  • To elucidate the molecular mechanisms underlying these effects in human breast cancer (MCF-7) and ovarian granulosa cells.

Main Methods:

  • Cell culture of MCF-7 and human ovarian granulosa cells.
  • Treatment with selective ligands for RAR (TTNPB), RXR (LG100268), PPARgamma (troglitazone), and vitamin D3 receptor.
  • Measurement of aromatase activity and P450arom mRNA levels.
  • Analysis of gene promoter usage, transcription, and RNA stability.

Main Results:

  • In MCF-7 cells, combined TTNPB and LG100268 significantly increased aromatase activity and P450arom mRNA via promoter 1a.
  • In ovarian granulosa cells, troglitazone or LG100268 alone/combined decreased aromatase activity and P450arom mRNA.
  • Mechanistic studies in KGN cells revealed decreased transcription and increased RNA degradation of P450arom.

Conclusions:

  • RAR:RXR heterodimers stimulate aromatase activity in breast cancer cells.
  • PPARgamma:RXR heterodimers inhibit aromatase activity in ovarian granulosa cells.
  • These distinct nuclear receptor pathways represent novel targets for modulating estrogen production.

Related Concept Videos