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Updated: Apr 28, 2026

Murine Prostate Micro-dissection and Surgical Castration
Published on: May 11, 2016
Transcription factors involved in prostate gland adaptation to androgen deprivation
Rafaela Rosa-Ribeiro1, Umar Nishan1, Ramon Oliveira Vidal2
1Department of Structural and Functional Biology, State University of Campinas, Campinas, São Paulo, Brazil.
Abstract:
Androgens regulate prostate physiology, and exert their effects through the androgen receptor. We hypothesized that androgen deprivation needs additional transcription factors to orchestrate the changes taking place in the gland after castration and for the adaptation of the epithelial cells to the androgen-deprived environment, ultimately contributing to the origin of castration-resistant prostate cancer. This study was undertaken to identify transcription factors that regulate gene expression after androgen deprivation by castration (Cas). For the sake of comparison, we extended the analysis to the effects of administration of a high dose of 17β-estradiol (E2) and a combination of both (Cas+E2). We approached this by (i) identifying gene expression profiles and enrichment terms, and by searching for transcription factors in the derived regulatory pathways; and (ii) by determining the density of putative transcription factor binding sites in the proximal promoter of the 10 most up- or down-regulated genes in each experimental group in comparison to the controls Gapdh and Tbp7. Filtering and validation confirmed the expression and localized EVI1 (Mecom), NFY, ELK1, GATA2, MYBL1, MYBL2, and NFkB family members (NFkB1, NFkB2, REL, RELA and RELB) in the epithelial and/or stromal cells. These transcription factors represent major regulators of epithelial cell survival and immaturity as well as an adaptation of the gland as an immune barrier in the absence of functional stimulation by androgens. Elk1 was expressed in smooth muscle cells and was up-regulated after day 4. Evi1 and Nfy genes are expressed in both epithelium and stroma, but were apparently not affected by androgen deprivation.
Insights
Androgen deprivation in prostate cancer involves new transcription factors for cell adaptation. These factors, including EVI1 and NFkB, are crucial for castration-resistant prostate cancer development.
Area of Science:
- Molecular Biology
- Oncology
- Endocrinology
Background:
- Androgens are critical for prostate physiology, acting via the androgen receptor.
- Androgen deprivation, induced by castration, triggers significant changes in the prostate gland.
- Understanding these changes is vital for addressing castration-resistant prostate cancer.
Purpose of the Study:
- To identify transcription factors orchestrating prostate gland changes post-castration.
- To investigate the role of these factors in epithelial cell adaptation to androgen deprivation.
- To explore their contribution to castration-resistant prostate cancer.
Main Methods:
- Gene expression profiling and pathway enrichment analysis.
- Identification of transcription factors within regulatory pathways.
- Analysis of transcription factor binding site density in gene promoters.
Main Results:
- Confirmed expression of EVI1, NFY, ELK1, GATA2, MYBL1, MYBL2, and NFkB family members.
- These factors are localized in epithelial and/or stromal cells.
- ELK1 was upregulated in smooth muscle cells post-castration; EVI1 and NFY showed no change.
Conclusions:
- Identified key transcription factors involved in prostate adaptation to androgen deprivation.
- These factors regulate epithelial cell survival, immaturity, and immune barrier function.
- Findings provide insights into castration-resistant prostate cancer mechanisms.
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