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Systems Biology of Metabolic Regulation by Estrogen Receptor Signaling in Breast Cancer
Published on: March 17, 2016
Global uterine genomics in vivo: microarray evaluation of the estrogen receptor alpha-growth factor cross-talk
Sylvia Curtis Hewitt1, Jennifer Collins, Sherry Grissom
1Receptor Biology Section, Laboratory of Reproductive and Developmental Toxicology, National Institute of Environmental Health Sciences, PO Box 12233, Research Triangle Park, North Carolina 27709, USA. curtiss@niehs.nih.gov
Abstract:
Cross-talk between growth factor receptors and the estrogen receptor (ER) has been proposed as a signaling mechanism in estrogen target tissues, with ER(alpha) as a direct target of growth factor receptor-activated signals, leading to regulation of estrogen target genes and estrogen-like biological responses to growth factors. We evaluated whether global genomic changes in the mouse uterus in response to epidermal growth factor or IGF-I mimic those of estradiol (E2), reflecting the cross-talk mechanism. Overlapping responses to growth factors and E2 were expected in the wild type (WT) whereas no response was expected in mice lacking ER(alpha) (ER(alpha) knockout). Surprisingly, although most of the E2 response in the WT also occurred after growth factor treatment, some genes were induced only by E2. Second, although E2 did not induce gene changes in the ER(alpha) knockout, the growth factor response was almost indistinguishable from that of the WT. Differences in response of some genes to IGF-I or epidermal growth factor indicated selective regulation mechanisms, such as phosphatidylinositol 3-kinase or MAPK-dependent responses. The robust ER(alpha)-independent genomic response to growth factor observed here is surprising considering that the biological growth response is ER(alpha) dependent. We propose two mechanisms as alternatives to the cross-talk mechanism for uterine gene regulation. First, E2 increases uterine growth factors, which activate downstream signaling cascades, resulting in gene regulation. Second, growth factors and estrogen regulate similar genes. Our results suggest that the estrogen response in the uterus involves E2-specific ER(alpha)-mediated responses as well as responses resulting from convergence of growth factor and ER-initiated activities.
Insights
Growth factors surprisingly regulate uterine genes independently of estrogen receptor alpha (ERα), challenging proposed cross-talk mechanisms. This suggests alternative pathways for estrogen and growth factor signaling in the uterus.
Area of Science:
- Endocrinology
- Molecular Biology
- Genomics
Background:
- Cross-talk between growth factor receptors and estrogen receptor (ER) is a proposed mechanism in estrogen target tissues.
- ERα is thought to be a direct target of growth factor signals, regulating estrogen target genes and mediating estrogen-like responses to growth factors.
Purpose of the Study:
- To evaluate if global genomic changes in the mouse uterus induced by epidermal growth factor (EGF) or IGF-I mimic estradiol (E2) responses.
- To test the proposed cross-talk mechanism by comparing gene expression in wild-type (WT) and ERα knockout (ERα KO) mice.
Main Methods:
- Global gene expression analysis in mouse uteri from WT and ERα KO mice.
- Treatment with epidermal growth factor (EGF), IGF-I, or estradiol (E2).
- Comparison of genomic responses to growth factors and E2.
Main Results:
- Most E2-induced genomic responses in WT uteri were also observed after growth factor treatment.
- ERα was not required for the uterine genomic response to growth factors, which was similar in WT and ERα KO mice.
- Some genes were uniquely induced by E2, and selective growth factor-dependent pathways (PI3K, MAPK) were identified.
Conclusions:
- The study reveals a robust ERα-independent genomic response to growth factors in the uterus, contradicting the proposed cross-talk model.
- Alternative mechanisms include E2 increasing uterine growth factors or independent regulation of similar genes by growth factors and estrogen.
- Estrogen response in the uterus involves both E2-specific ERα-mediated pathways and convergent signaling from growth factor and ER pathways.
