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Suppression of estrogen receptor-mediated transcription and cell growth by interaction with TR2 orphan receptor
Yueh-Chiang Hu1, Chih-Rong Shyr, Wenyi Che
1George Whipple Laboratory for Cancer Research, Department of Pathology, University of Rochester Medical Center, 601 Elmwood Avenue, Rochester, NY 14642, USA.
Abstract:
The transcriptional activity of the estrogen receptor (ER) is known to be highly modulated by the character and amount of coregulator proteins present in the cells. TR2 orphan receptor (TR2), a member of the nuclear receptor superfamily without identified ligands, is found to be expressed in the breast cancer cell lines and to function as a repressor to suppress ER-mediated transcriptional activity. Utilizing an interaction blocker, ER-6 (amino acids 312-340), responsible for TR2 interaction, the suppression of ER by TR2 could be reversed, suggesting that this suppression is conferred by the direct protein-protein interaction. Administration of antisense TR2, resulting in an enhancement of ER transcriptional activity in MCF7 cells, indicates that endogenous TR2 normally suppresses ER-mediated signaling. To gain insights into the molecular mechanism by which TR2 suppresses ER, we found that TR2 could interrupt ER DNA binding via formation of an ER-TR2 heterodimer that disrupted the ER homodimerization. The suppression of ER transcription by TR2 consequently caused the inhibition of estrogen-induced cell growth and G(1)/S transition in estrogen-dependent breast cancer cells. Taken together in addition to the potential roles in spermatogenesis and neurogenesis, our data provide a novel biological function of TR2 that may exert an important repressor in regulating ER activity in mammary glands.
Insights
TR2 orphan receptor suppresses estrogen receptor (ER) activity in breast cancer cells by disrupting ER DNA binding. This repression inhibits estrogen-driven cell growth, revealing a novel role for TR2 in mammary gland regulation.
Area of Science:
- Molecular Endocrinology
- Cancer Biology
- Nuclear Receptor Signaling
Background:
- Estrogen receptor (ER) transcriptional activity is modulated by coregulators.
- TR2 orphan receptor is expressed in breast cancer cells and acts as an ER repressor.
Purpose of the Study:
- To investigate the mechanism by which TR2 suppresses ER transcriptional activity.
- To determine the role of TR2 in regulating ER-mediated signaling in breast cancer.
Main Methods:
- Utilized an ER-6 interaction blocker to study TR2-ER interaction.
- Administered antisense TR2 to assess endogenous TR2 function.
- Investigated ER-TR2 heterodimer formation and its effect on ER homodimerization and DNA binding.
Main Results:
- TR2 directly interacts with ER, suppressing its transcriptional activity.
- Antisense TR2 enhances ER activity in MCF7 cells, confirming endogenous repression.
- TR2 disrupts ER DNA binding by forming an ER-TR2 heterodimer, inhibiting ER homodimerization.
- TR2-mediated suppression of ER inhibits estrogen-induced cell growth and G1/S transition.
Conclusions:
- TR2 functions as a direct repressor of ER transcriptional activity.
- TR2-mediated suppression of ER signaling inhibits proliferation in estrogen-dependent breast cancer cells.
- TR2 plays a novel role as a repressor of ER activity in mammary glands.