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Down-regulation of human DAB2IP gene expression mediated by polycomb Ezh2 complex and histone deacetylase in prostate
Hong Chen1, Szu-wei Tu, Jer-Tsong Hsieh
1Department of Urology, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390-9110, USA.
Abstract:
Human DAB2IP (hDAB2IP), a novel GTPase-activating protein modulating the Ras-mediated signaling and tumor necrosis factor-mediated apoptosis, is a potent growth inhibitor in human prostate cancer (PCa). Loss of hDAB2IP expression in PCa is due to altered epigenetic regulation (i.e. DNA methylation and histone modification) of its promoter region. The elevated polycomb Ezh2, a histone methyltransferase, has been associated with PCa progression. In this study, we have demonstrated that an increased Ezh2 expression in normal prostatic epithelial cells can suppress hDAB2IP gene expression. In contrast, knocking down the endogenous Ezh2 levels in PCa by a specific small interfering RNA can increase hDAB2IP expression. The association of Ezh2 complex (including Eed and Suz12) with hDAB2IP gene promoter is also detected in PCa cells but not in normal prostatic epithelial cells. Increased Ezh2 expression in normal prostatic epithelial cells by cDNA transfection facilitates the recruitment of other components of Ezh2 complex to the hDAB2IP promoter region accompanied with the increased levels of methyl histone H3 (H3) and histone deacetylase (HDAC1). Consistently, data from PCa cells transfected with Ezh2 small interfering RNA demonstrated that reduced Ezh2 levels resulted in the dissociation of Ezh2 complex accompanied with decreased levels of both methyl H3 and HDAC1 from hDAB2IP gene promoter. We further unveiled that the methylation status of Lys-27 but not Lys-9 of H3 in hDAB2IP promoter region is consistent with the hDAB2IP levels in both normal prostatic epithelial cells and PCa cells. Together, we conclude that hDAB2IP gene is a target gene of Ezh2 in prostatic epithelium, which provides an underlying mechanism of the down-regulation of hDAB2IP gene in PCa.
Insights
Polycomb Ezh2 (enhancer of zeste homolog 2) epigenetically suppresses human DAB2IP (Disabled-2 interacting protein) gene expression in prostate cancer. Reducing Ezh2 reactivates hDAB2IP, a key growth inhibitor, revealing a novel mechanism for prostate cancer progression.
Area of Science:
- Molecular Biology
- Epigenetics
- Cancer Research
Background:
- Human DAB2IP (hDAB2IP) is a GTPase-activating protein that inhibits growth in prostate cancer (PCa).
- Loss of hDAB2IP expression in PCa is linked to epigenetic alterations, including DNA methylation and histone modification, at its promoter.
- Elevated polycomb Ezh2 (enhancer of zeste homolog 2), a histone methyltransferase, is associated with PCa progression.
Purpose of the Study:
- To investigate the role of Ezh2 in regulating hDAB2IP gene expression in prostate epithelial cells.
- To elucidate the epigenetic mechanisms by which Ezh2 influences hDAB2IP expression in PCa.
Main Methods:
- Overexpression of Ezh2 in normal prostatic cells and knockdown of Ezh2 in PCa cells using small interfering RNA (siRNA).
- Chromatin immunoprecipitation (ChIP) assays to detect Ezh2 complex binding to the hDAB2IP promoter.
- Analysis of histone modifications (methyl H3, HDAC1) at the hDAB2IP promoter region.
Main Results:
- Increased Ezh2 expression in normal cells suppressed hDAB2IP expression, while Ezh2 knockdown in PCa cells increased hDAB2IP expression.
- Ezh2 complex (Eed, Suz12) associated with the hDAB2IP promoter in PCa cells but not in normal cells.
- Ezh2 regulates hDAB2IP expression via histone H3 Lys-27 trimethylation at the promoter.
Conclusions:
- The hDAB2IP gene is a direct target of Ezh2 in prostatic epithelium.
- Ezh2-mediated epigenetic silencing of hDAB2IP contributes to its down-regulation in prostate cancer.
- Targeting Ezh2 may represent a therapeutic strategy for PCa by restoring hDAB2IP expression.
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