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Published on: August 25, 2021
Deficiency of ERβ and prostate tumorigenesis in FGF8b transgenic mice
Teresa Elo1, Lan Yu2, Eeva Valve2
1Departments of Cell Biology and AnatomyPharmacologyDrug Development and TherapeuticsTurku Center for Disease ModelingInstitute of Biomedicine, University of Turku, Kiinamyllynkatu 10, 20520 Turku, FinlandFunctional Foods ForumUniversity of Turku, Turku, FinlandDepartment of Laboratory MedicineMAS University Hospital, Lund University, Malmö, Sweden teresa.elo@utu.fi.
Abstract:
Estrogens contribute to the development and growth of the prostate and are implicated in prostate tumorigenesis. In their target tissues, estrogens mediate their effects via estrogen receptor α (ERα (ESR1)) and β (ERβ (ESR2)). Hyperplasia and decreased differentiation of epithelial cells in the prostate have been reported in ERβ knockout (BERKO) mice. Herein, we studied the effect of ERβ deficiency on prostate tumorigenesis by crossing BERKOFVB mice with prostate-targeted human fibroblast growth factor 8b transgenic (FGF8b-Tg) mice. Consistent with results described in our previous report, the prostates of 1-year-old FGF8b-Tg mice displayed stromal aberrations, prostatic intraepithelial neoplasia (mPIN) lesions, inflammation, and occasionally cancer. The prostates of BERKOFVB mice exhibited mild epithelial hypercellularity and inflammation. The prostate phenotypes of FGF8b-Tg-BERKOFVB mice closely resembled those of FGF8b-Tg mice. However, mucinous metaplasia, indicated by Goblet-like cells in the epithelium, was significantly more frequent in the prostates of FGF8b-Tg-BERKOFVB mice when compared with FGF8b-Tg mice. Furthermore, compared with FGF8b-Tg mice, there was a tendency for increased frequency of inflammation but milder hyperplasias in the prostate stroma of FGF8b-Tg-BERKOFVB mice. The expression levels of mRNAs for FGF8b-regulated genes including osteopontin (Spp1), connective tissue growth factor (Ctgf), fibroblast growth factor receptors (Fgfrs), and steroid hormone receptors and cytokines were similar in the prostates of FGF8b-Tg and FGF8b-Tg-BERKOFVB mice. Our results indicate that ERβ plays a role in the differentiation of the prostatic epithelium and, potentially, in the defensive mechanism required for protection against inflammation but do not support a direct tumor-suppressive function of ERβ in the prostate of FGF8b-Tg mice.
Insights
Estrogen receptor beta (ERβ) deficiency in mice did not directly suppress prostate tumors but was linked to increased mucinous metaplasia and inflammation. ERβ appears crucial for epithelial differentiation and potentially inflammation defense in the prostate.
Area of Science:
- Endocrinology
- Urology
- Cancer Biology
Background:
- Estrogens influence prostate development and tumorigenesis through estrogen receptors alpha (ERα) and beta (ERβ).
- ERβ deficiency in mice has been associated with prostate epithelial hyperplasia and reduced differentiation.
Purpose of the Study:
- To investigate the role of ERβ deficiency in prostate tumorigenesis using a mouse model.
- To determine if ERβ plays a tumor-suppressive role in the context of prostate-specific growth factor expression.
Main Methods:
- Crossed ERβ knockout (BERKO) mice with mice expressing human fibroblast growth factor 8b (FGF8b-Tg) specifically in the prostate.
- Analyzed prostate phenotypes, including hyperplasia, inflammation, metaplasia, and tumor development, in FGF8b-Tg and FGF8b-Tg-BERKOFVB mice.
- Compared gene expression of FGF8b-regulated targets between the two mouse groups.
Main Results:
- FGF8b-Tg-BERKOFVB mice exhibited significantly increased mucinous metaplasia (Goblet-like cells) compared to FGF8b-Tg mice.
- A trend towards increased inflammation and milder stromal hyperplasia was observed in FGF8b-Tg-BERKOFVB mice.
- Gene expression of FGF8b-regulated factors remained similar between FGF8b-Tg and FGF8b-Tg-BERKOFVB mice.
Conclusions:
- ERβ is important for prostatic epithelial differentiation and may contribute to protection against inflammation.
- ERβ does not appear to have a direct tumor-suppressive function in this specific prostate cancer model.
- ERβ deficiency exacerbates certain non-tumorigenic changes like mucinous metaplasia in the FGF8b-Tg prostate.

