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Estrogens modulate the gene expression of Wnt-7a in cultured endometrial adenocarcinoma cells
1Institute of Applied Biosciences, Section of Food Chemistry and Toxicology, University of Karlsruhe, Germany.
Abstract:
The glycoprotein Wnt-7a participates in a signaling pathway that transmits information among uterine cell types. Disruption of this pathway by the transplacentally acting carcinogen diethylstilbestrol (DES) is associated with morphological abnormalities of the female reproductive tract (FRT). This raises the question whether estrogens in the diet might also interfere with this pathway. Therefore, this study investigated the influence of the steroid hormone 17beta-estradiol (E2), the mycotoxin zearalenone (ZEN), the soy phytoestrogen genistein (GEN), and DES on the expression of Wnt-7a in an endometrial adenocarcinoma cell line (Ishikawa cells) by reverse transcription/competitive PCR. In addition, the enzymatic activity of alkaline phosphatase (ALP) was determined, which is estrogen receptor (ER)-dependently regulated in Ishikawa cells. After treatment of Ishikawa cells with E2, ZEN, GEN, and DES, a decrease in the gene expression of Wnt-7a was observed. Maximum effect (50% reduction) was observed after treatment with concentrations that induced maximum expression of the ALP. Experiments in the presence of the ER antagonist (ICI 182,780) suggested that the ER is involved in the regulation of Wnt-7a in Ishikawa cells. In conclusion, interference with the expression of Wnt genes in the FRT might be a novel mechanism by which estrogens disrupt the function of the FRT.
Insights
Dietary estrogens like estradiol and zearalenone, along with genistein and DES, disrupt Wnt-7a gene expression in uterine cells. This interference may explain how estrogens affect female reproductive tract function.
Area of Science:
- Reproductive Biology
- Endocrinology
- Molecular Biology
Background:
- Wnt-7a glycoprotein is crucial for uterine cell communication.
- Diethylstilbestrol (DES) disrupts Wnt-7a signaling, causing female reproductive tract (FRT) abnormalities.
- Dietary estrogens may also interfere with Wnt-7a signaling.
Purpose of the Study:
- Investigate the impact of 17beta-estradiol (E2), zearalenone (ZEN), genistein (GEN), and DES on Wnt-7a expression.
- Determine the role of the estrogen receptor (ER) in Wnt-7a regulation.
- Assess the relationship between Wnt-7a expression and alkaline phosphatase (ALP) activity.
Main Methods:
- Utilized Ishikawa cells (endometrial adenocarcinoma cell line).
- Employed reverse transcription/competitive PCR to quantify Wnt-7a gene expression.
- Measured alkaline phosphatase (ALP) enzymatic activity.
- Used ER antagonist ICI 182,780 to probe ER involvement.
Main Results:
- E2, ZEN, GEN, and DES treatments reduced Wnt-7a gene expression.
- Maximal Wnt-7a reduction (50%) correlated with maximal ALP expression.
- ER antagonist studies indicated ER involvement in Wnt-7a regulation.
Conclusions:
- Estrogenic compounds (E2, ZEN, GEN, DES) downregulate Wnt-7a expression in Ishikawa cells.
- Estrogen receptor mediates the observed effects on Wnt-7a.
- Disruption of Wnt gene expression represents a potential mechanism for estrogen-induced FRT dysfunction.
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