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Updated: Jun 5, 2026

Systems Biology of Metabolic Regulation by Estrogen Receptor Signaling in Breast Cancer
Published on: March 17, 2016
Comparative analysis of nuclear estrogen receptor alpha and beta interactomes in breast cancer cells
Giovanni Nassa1, Roberta Tarallo, Pietro H Guzzi
1Department of General Pathology, Second University of Naples, Via L. De Crecchio 7, 80138 Napoli, Italy.
Abstract:
Estrogen Receptor alpha and beta (ER-α and -β) are members of the nuclear receptor family of transcriptional regulators with distinct roles in mediating estrogen dependent breast cancer cell growth and differentiation. Following activation by the hormone, these proteins undergo conformation changes and accumulate in the nucleus, where they bind to chromatin at regulatory sites as homo- and/or heterodimers and assemble in large multiprotein complexes. Although the two ERs share a conserved structure, they exert specific and distinct functional roles in normal and transformed mammary epithelial cells and other cell types. To investigate the molecular bases of such differences, we performed a comparative computational analysis of the nuclear interactomes of the two ER subtypes, exploiting two datasets of receptor interacting proteins identified in breast cancer cell nuclei by Tandem Affinity Purification for their ability to associate in vivo with ligand-activated ER-α and/or ER-β. These datasets comprise 498 proteins, of which only 70 are common to both ERs, suggesting that differences in the nature of the two ER interactomes are likely to sustain the distinct roles of the two receptor subtypes. Functional characterization of the two interactomes and their topological analysis, considering node degree and closeness of the networks, confirmed this possibility. Indeed, clustering and network dissection highlighted the presence of distinct and ER subtype-specific subnetworks endowed with defined functions. Altogether, these data provide new insights on the protein-protein interaction networks controlled by ER-α and -β that mediate their ability to transduce estrogen signaling in breast cancer cells.
Insights
Estrogen Receptors alpha and beta (ER-α and ER-β) have distinct roles in breast cancer. Computational analysis revealed unique protein interaction networks for each ER subtype, explaining their specific functions in estrogen signaling.
Area of Science:
- Molecular Biology
- Genomics
- Cancer Research
Background:
- Estrogen Receptors alpha (ER-α) and beta (ER-β) are key regulators of estrogen-dependent processes, including breast cancer cell growth and differentiation.
- Despite structural similarities, ER-α and ER-β exhibit distinct functional roles in various cell types.
Purpose of the Study:
- To investigate the molecular basis for the distinct functional roles of ER-α and ER-β.
- To compare the nuclear interactomes of ER-α and ER-β in breast cancer cells.
Main Methods:
- Comparative computational analysis of nuclear interactomes.
- Utilized two datasets of proteins interacting with ligand-activated ER-α and ER-β, identified via Tandem Affinity Purification in breast cancer cell nuclei.
- Performed functional characterization and topological analysis of identified protein networks.
Main Results:
- Identified 498 interacting proteins, with only 70 common to both ER-α and ER-β, indicating significant differences in their interactomes.
- Functional characterization and network analysis confirmed distinct subnetworks specific to ER-α and ER-β.
- Highlighted subtype-specific protein networks mediating distinct functions.
Conclusions:
- The distinct protein-protein interaction networks of ER-α and ER-β are crucial for their specific roles in mediating estrogen signaling in breast cancer.
- These findings provide novel insights into the complex regulatory mechanisms governed by ER subtypes.
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