Reduced prostate branching morphogenesis in stromal fibroblast, but not in epithelial, estrogen receptor α knockout mice.

dc.contributor.author

Chen, Ming

dc.contributor.author

Yeh, Chiuan-Ren

dc.contributor.author

Shyr, Chih-Rong

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Lin, Hsiu-Hsia

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Da, Jun

dc.contributor.author

Yeh, Shuyuan

dc.date.accessioned

2019-09-21T15:45:08Z

dc.date.available

2019-09-21T15:45:08Z

dc.date.issued

2012-07

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2019-09-21T15:45:05Z

dc.description.abstract

Early studies suggested that estrogen receptor alpha (ERα) is involved in estrogen-mediated imprinting effects in prostate development. We recently reported a more complete ERα knockout (KO) mouse model via mating β-actin Cre transgenic mice with floxed ERα mice. These ACTB-ERαKO male mice showed defects in prostatic branching morphogenesis, which demonstrates that ERα is necessary to maintain proliferative events in the prostate. However, within which prostate cell type ERα exerts those important functions remains to be elucidated. To address this, we have bred floxed ERα mice with either fibroblast-specific protein (FSP)-Cre or probasin-Cre transgenic mice to generate a mouse model that has deleted ERα gene in either stromal fibroblast (FSP-ERαKO) or epithelial (pes-ERαKO) prostate cells. We found that circulating testosterone and fertility were not altered in FSP-ERαKO and pes-ERαKO male mice. Prostates of FSP-ERαKO mice have less branching morphogenesis compared to that of wild-type littermates. Further analyses indicated that loss of stromal ERα leads to increased stromal apoptosis, reduced expression of insulin-like growth factor-1 (IGF-1) and FGF10, and increased expression of BMP4. Collectively, we have established the first in vivo prostate stromal and epithelial selective ERαKO mouse models and the results from these mice indicated that stromal fibroblast ERα plays important roles in prostatic branching morphogenesis via a paracrine fashion. Selective deletion of the ERα gene in mouse prostate epithelial cells by probasin-Cre does not affect the regular prostate development and homeostasis.

dc.identifier

aja2011181

dc.identifier.issn

1008-682X

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1745-7262

dc.identifier.uri

https://hdl.handle.net/10161/19323

dc.language

eng

dc.publisher

Medknow

dc.relation.ispartof

Asian journal of andrology

dc.relation.isversionof

10.1038/aja.2011.181

dc.subject

Prostate

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Fibroblasts

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Epithelial Cells

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Animals

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Mice, Knockout

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Mice

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Testosterone

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Insulin-Like Growth Factor I

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Homeodomain Proteins

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Receptors, Androgen

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Estrogen Receptor alpha

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Prostatic Secretory Proteins

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Transcription Factors

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Organ Size

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Sperm Count

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Apoptosis

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Gene Expression

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Fertility

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Genotype

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Male

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Fibroblast Growth Factor 7

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Fibroblast Growth Factor 10

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Bone Morphogenetic Protein 4

dc.title

Reduced prostate branching morphogenesis in stromal fibroblast, but not in epithelial, estrogen receptor α knockout mice.

dc.type

Journal article

duke.contributor.orcid

Chen, Ming|0000-0002-3470-1062

pubs.begin-page

546

pubs.end-page

555

pubs.issue

4

pubs.organisational-group

School of Medicine

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Duke

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Duke Cancer Institute

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Institutes and Centers

pubs.organisational-group

Pathology

pubs.organisational-group

Clinical Science Departments

pubs.publication-status

Published

pubs.volume

14

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