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Regulation of aromatase by nuclear receptors
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
Abstract:
We investigated the effects of a nuclear receptor system constituted by retinoid X receptor (RXR) and its heterodimer partner on the aromatase activity in a cultured MCF-7 human breast cancer cell line and also in human ovarian granulosa cells, using each selective ligand for retinoic acid receptor, RAR (TTNPB), retinoid X receptor, RXR (LG100268), PPARgamma (troglitazone), and vitamin D3 receptor (cholecalciferol). In MCF-7 cells, the combined treatment with TTNPB and LG100268 caused a dramatic stimulation of the aromatase activity. The combined treatment with other ligand and LG100268 had little or no effect on the aromatase activity. The increase in the aromatase activity by TTNPB plus LG100268 was accompanied by an increase in the P450arom mRNA levels, which was also found to be related to the specific usage of promoter 1a of the CYP19 gene. These results suggest that a nuclear receptor system constituted by a RAR:RXR heterodimer is involved in the regulation of aromatase activity in MCF-7 breast cancer cells. In cultured human ovarian granulosa cells obtained from patients who underwent in vitro fertilization, troglitazone or LG100268 alone decreased the aromatase activity, while the combined treatment caused an even greater reduction in this activity. Little effect of other specific ligands for RXR heterodimer partners may support the notion that the effects of troglitazone and/or LG100268 in human granulosa cells may be mediated through the specific activation of PPARgamma:RXR heterodimer system. Since similar manners of effects of several PPARgamma ligands and/or LG100268 on the aromatase activity were observed in a newly established human ovarian granulosa cancer cell line, KGN, we performed the detailed analysis of the mechanisms of these effects using this cell line. As a result, the inhibitory effect of aromatase activity by troglitazone plus LG100268 was accompanied by the decrease of P450arom mRNA level. Furthermore, the loss of P450arom expression was considered to be due to both the decreased transcription and rapid degradation of its RNA based on the studies of nuclear run-on assay and RNA stability assay. In conclusion, RAR:RXR and PPARgamma:RXR heterodimer nuclear receptor systems may be other important modulators of estrogen production in human breast cancer cells and ovarian granulosa cells, respectively.
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.