Nuclear and Extranuclear Pathway Inputs in the Regulation of Global Gene Expression by Estrogen Receptors
Open Access
- 1 September 2008
- journal article
- other
- Published by The Endocrine Society in Molecular Endocrinology
- Vol. 22 (9) , 2116-2127
- https://doi.org/10.1210/me.2008-0059
Abstract
Whereas estrogens exert their effects by binding to nuclear estrogen receptors (ERs) and directly altering target gene transcription, they can also initiate extranuclear signaling through activation of kinase cascades. We have investigated the impact of estrogen-mediated extranuclear-initiated pathways on global gene expression by using estrogen-dendrimer conjugates (EDCs), which because of their charge and size remain outside the nucleus and can only initiate extranuclear signaling. Genome-wide cDNA microarray analysis of MCF-7 breast cancer cells identified a subset of 17β-estradiol (E2)-regulated genes (∼25%) as EDC responsive. The EDC and E2-elicited increases in gene expression were due to increases in gene transcription, as observed in nuclear run-on assays and RNA polymerase II recruitment and phosphorylation. Treatment with antiestrogen or ERα knockdown using small interfering RNA abolished EDC-mediated gene stimulation, whereas GPR30 knockdown or treatment with a GPR30-selective ligand was without effect, indicating ER as the mediator of these gene regulations. Inhibitors of MAPK kinase and c-Src suppressed both E2 and EDC stimulated gene expression. Of note, in chromatin immunoprecipitation assays, EDC was unable to recruit ERα to estrogen-responsive regions of regulated genes, whereas ERα recruitment by E2 was very effective. These findings suggest that other transcription factors or kinases that are downstream effectors of EDC-initiated extranuclear signaling cascades are recruited to regulatory regions of EDC-responsive genes in order to elicit gene stimulation. This study thus highlights the importance of inputs from both nuclear and extranuclear ER signaling pathways in regulating patterns of gene expression in breast cancer cells.Keywords
This publication has 34 references indexed in Scilit:
- MED1 Phosphorylation Promotes Its Association with Mediator: Implications for Nuclear Receptor SignalingMolecular and Cellular Biology, 2008
- Estrogen Receptors α and β as Determinants of Gene Expression: Influence of Ligand, Dose, and Chromatin BindingMolecular Endocrinology, 2008
- The ins and outs of GPR30: A transmembrane estrogen receptorThe Journal of Steroid Biochemistry and Molecular Biology, 2008
- Regulation of SRC-3 Intercompartmental Dynamics by Estrogen Receptor and PhosphorylationMolecular and Cellular Biology, 2007
- Whole-Genome Cartography of Estrogen Receptor α Binding SitesPLoS Genetics, 2007
- Kinases and protein phosphorylation as regulators of steroid hormone actionNuclear Receptor Signaling, 2007
- Genome-wide analysis of estrogen receptor binding sitesNature Genetics, 2006
- Chromosome-Wide Mapping of Estrogen Receptor Binding Reveals Long-Range Regulation Requiring the Forkhead Protein FoxA1Cell, 2005
- Gene identification signature (GIS) analysis for transcriptome characterization and genome annotationNature Methods, 2005
- Profiling of Estrogen Up- and Down-Regulated Gene Expression in Human Breast Cancer Cells: Insights into Gene Networks and Pathways Underlying Estrogenic Control of Proliferation and Cell PhenotypeEndocrinology, 2003