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A P F Flint1, E L Sheldrick, P A Fisher
1School of Biosciences, University of Nottingham, Sutton Bonington Campus, Loughborough, Leics LE12 5RD, UK. anthony.flint@nottingham.ac.uk
Abstract:
In several transformed cell lines, the growth factors IGF-I and epidermal growth factor (EGF) activate second messenger systems that cause the phosphorylation of the estrogen receptor (ER). One kinase catalysing receptor phosphorylation is mitogen activated protein (MAP) kinase, and the result of phosphorylation is an increase in receptor transactivation function. EGF and IGF-I, secreted locally and systemically, are involved in uterine-conceptus interactions in early pregnancy, and therefore it is of interest to determine whether these growth factors affect ER function in the uterus. An estrogen response element, chloramphenicol acetyl transferase reporter gene construct (CATERE) was transfected into bovine endometrial epithelial and stromal cells in vitro, and CAT measured during transient expression. Growth factors were added at various times following transfection, and MAP kinase phosphorylation was monitored by western blotting of p42 and p44. The MEK inhibitor U 0126 was used to determine whether the effect of IGF-I on CATERE expression was mediated through MAP kinase, and the anti-estrogen ICI 182780 was used to identify effects involving the ER. In stromal cells, reporter gene activity was increased in a dose dependent manner by IGF-I or hEGF in the presence or absence of estradiol-17beta. In the absence of estradiol the effect of IGF-I was not inhibited by ICI 182780. The effect of IGF-I occurred within an hour, before any detectable increase in cell proliferation, and the activation of CAT expression in response to IGF-I or EGF was blocked by U 0126. In contrast to their effects in stromal cells, neither IGF-I nor EGF affected CAT expression in bovine endometrial epithelial cells. Measurement of phosphorylated MAP kinases p42/p44 by western blotting showed that EGF but not IGF-I activated MAP kinase phosphorylation in both epithelial and stromal cells. In stromal cells, the fact that U 0126 blocked the CAT responses to IGF-I and EGF indicates the involvement of a MAP kinase. But since IGF-I did not activate p42/p44, a different MAP kinase, not detected by the antibody used here, is implicated. As the response was not blocked by ICI 182780, we conclude this effect is independent of ER activation. Therefore in bovine uterine cells in culture effects on MAP kinases p42/p44 can be dissociated from those on ERE-dependent gene expression, and reporter gene expression may be independent of ER activation.
Insights
Growth factors like IGF-I and EGF can influence estrogen receptor (ER) activity in bovine uterine cells. These factors activate mitogen-activated protein (MAP) kinase pathways, affecting gene expression independently of ER activation.
Area of Science:
- Reproductive Biology
- Cell Signaling
- Endocrinology
Background:
- Growth factors, including Insulin-like Growth Factor-I (IGF-I) and Epidermal Growth Factor (EGF), are crucial for uterine-conceptus interactions.
- These factors are known to activate second messenger systems, leading to estrogen receptor (ER) phosphorylation and enhanced transactivation function via mitogen-activated protein (MAP) kinase.
Purpose of the Study:
- To investigate the effects of IGF-I and EGF on ER function in bovine endometrial cells.
- To determine if IGF-I and EGF signaling pathways in the uterus involve MAP kinase activation and ER-dependent gene expression.
Main Methods:
- Bovine endometrial epithelial and stromal cells were transfected with a chloramphenicol acetyl transferase reporter gene construct (CATERE).
- Cells were treated with IGF-I, EGF, estradiol-17beta, the MEK inhibitor U 0126, and the anti-estrogen ICI 182780.
- Reporter gene activity (CAT) and MAP kinase phosphorylation (p42/p44) were measured using western blotting.
Main Results:
- In stromal cells, IGF-I and EGF dose-dependently increased reporter gene activity, independent of estradiol.
- This effect in stromal cells was blocked by U 0126, indicating MAP kinase involvement, but not by ICI 182780, suggesting ER independence.
- EGF, but not IGF-I, activated p42/p44 MAP kinase phosphorylation in both cell types; IGF-I's effect on reporter gene expression in stromal cells was mediated by a different, undetected MAP kinase.
- Neither growth factor affected reporter gene expression in epithelial cells.
Conclusions:
- MAP kinase activation by growth factors in bovine uterine cells can be dissociated from ER-dependent gene expression.
- Reporter gene expression in response to IGF-I and EGF in bovine endometrial stromal cells is independent of estrogen receptor activation.
- These findings highlight distinct signaling pathways regulating uterine function during early pregnancy.