4.7 Article

ETV4 promotes late development of prostatic intraepithelial neoplasia and cell proliferation through direct and p53-mediated downregulation of p21

期刊

JOURNAL OF HEMATOLOGY & ONCOLOGY
卷 13, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s13045-020-00943-w

关键词

Prostate cancer; Mouse model; ETV4; ETS proteins; Cell proliferation; Cell cycle; p53; p21

资金

  1. Istituto Toscano Tumori
  2. Istituto per lo Studio, la Prevenzione e la Rete Oncologica (ISPRO), Florence, Tuscany, Italy

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Background ETV4 is one of the ETS proteins overexpressed in prostate cancer (PC) as a result of recurrent chromosomal translocations. In human prostate cell lines, ETV4 promotes migration, invasion, and proliferation; however, its role in PC has been unclear. In this study, we have explored the effects of ETV4 expression in the prostate in a novel transgenic mouse model. Methods We have created a mouse model with prostate-specific expression of ETV4 (ETV4 mice). By histochemical and molecular analysis, we have investigated in these engineered mice the expression of p21, p27, and p53. The implications of our in vivo findings have been further investigated in human cells lines by chromatin-immunoprecipitation (ChIP) and luciferase assays. Results ETV4 mice, from two independent transgenic lines, have increased cell proliferation in their prostate and two-thirds of them, by the age of 10 months, developed mouse prostatic intraepithelial neoplasia (mPIN). In these mice,cdkn1aand its p21 protein product were reduced compared to controls; p27 protein was also reduced. By ChIP assay in human prostate cell lines, we show that ETV4 binds to a specific site (-704/-696 bp upstream of the transcription start) in theCDKN1Apromoter that was proven, by luciferase assay, to be functionally competent. ETV4 further controlsCDKN1Aexpression by downregulating p53 protein: this reduction of p53 was confirmed in vivo in ETV4 mice. Conclusions ETV4 overexpression results in the development of mPIN but not in progression to cancer. ETV4 increases prostate cell proliferation through multiple mechanisms, including downregulation ofCDKN1Aand its p21 protein product: this in turn is mediated through direct binding of ETV4 to theCDKN1Apromoter and through the ETV4-mediated decrease of p53. This multi-faceted role of ETV4 in prostate cancer makes it a potential target for novel therapeutic approaches that could be explored in this ETV4 transgenic model.

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