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Updated: Aug 19, 2026

Systems Biology of Metabolic Regulation by Estrogen Receptor Signaling in Breast Cancer
Published on: March 17, 2016
Binding of type II nuclear receptors and estrogen receptor to full and half-site estrogen response elements in vitro
C M Klinge1, D L Bodenner, D Desai
1Department of Biochemistry, the University of Louisville School of Medicine, Louisville, KY 40292, USA. cmklin01@ulkyvym.louisville.edu
Abstract:
The mechanism by which retinoids, thyroid hormone (T3) and estrogens modulate the growth of breast cancer cells is unclear. Since nuclear type II nuclear receptors, including retinoic acid receptor (RAR), retinoid X receptor (RXR) and thyroid hormone receptor (TR), bind direct repeats (DR) of the estrogen response elements (ERE) half-site (5'-AGGTCA-3'), we examined the ability of estrogen receptor (ER) versus type II nuclear receptors, i.e. RARalpha, beta and gamma, RXRbeta, TRalpha and TRbeta, to bind various EREs in vitro . ER bound a consensus ERE, containing a perfectly palindromic 17 bp inverted repeat (IR), as a homodimer. In contrast, ER did not bind to a single ERE half-site. Likewise, ER did not bind two tandem (38 bp apart) half-sites, but low ER binding was detected to three tandem copies of the same half-site. RARalpha,beta or gamma bound both ERE and half-site constructs as a homodimer. RXRbeta did not bind full or half-site EREs, nor did RXRbeta enhance RARalpha binding to a full ERE. However, RARalpha and RXRbeta bound a half-site ERE cooperatively forming a dimeric complex. The RARalpha-RXRbeta heterodimer bound the Xenopus vitellogenin B1 estrogen responsive unit, with two non-consensus EREs, with higher affinity than one or two copies of the full or half-site ERE. Both TRalpha and TRbeta bound the full and the half-site ERE as monomers and homodimers and cooperatively as heterodimers with RXRbeta. We suggest that the cellular concentrations of nuclear receptors and their ligands, and the nature of the ERE or half-site sequence and those of its flanking sequences determine the occupation of EREs in estrogen-regulated genes in vivo .
Insights
Estrogen receptor (ER) and other nuclear receptors bind DNA differently. Retinoic acid receptor (RAR) and thyroid hormone receptor (TR) form heterodimers with retinoid X receptor (RXR) to bind estrogen response elements (EREs).
Area of Science:
- Endocrinology
- Molecular Biology
- Cancer Research
Background:
- Estrogens, retinoids, and thyroid hormone influence breast cancer cell growth through unclear mechanisms.
- Nuclear receptors like estrogen receptor (ER), retinoic acid receptor (RAR), retinoid X receptor (RXR), and thyroid hormone receptor (TR) interact with DNA sequences known as estrogen response elements (EREs).
Purpose of the Study:
- To investigate the binding affinities of ER and type II nuclear receptors (RARs, RXRbeta, TRs) to various EREs and half-sites in vitro.
- To elucidate the mechanisms of nuclear receptor interaction with EREs in the context of hormone-regulated gene expression.
Main Methods:
- In vitro DNA binding assays were performed using purified nuclear receptors (ER, RARalpha/beta/gamma, RXRbeta, TRalpha/beta).
- Binding was assessed for consensus EREs, ERE half-sites, and tandem repeats of these sequences.
- Heterodimerization and cooperative binding between different receptor types were analyzed.
Main Results:
- ER bound consensus EREs as a homodimer but not single or tandem half-sites.
- RARs bound EREs and half-sites as homodimers.
- RARalpha and RXRbeta formed a heterodimer that bound a specific ERE with high affinity.
- TRs bound EREs and half-sites as monomers, homodimers, and heterodimers with RXRbeta.
Conclusions:
- Nuclear receptor binding to EREs is complex, involving homodimerization, heterodimerization, and cooperative binding.
- The specific ERE sequence, flanking regions, receptor type, and ligand availability influence receptor binding in vivo.
- These findings contribute to understanding how hormones regulate gene expression in breast cancer and other tissues.
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