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Distinct classes of chromosomal rearrangements create oncogenic ETS gene fusions in prostate cancer
Scott A Tomlins1, Bharathi Laxman, Saravana M Dhanasekaran
1Michigan Center for Translational Pathology, Department of Pathology, University of Michigan Medical School, Ann Arbor, Michigan 48109, USA.
Abstract:
Recently, we identified recurrent gene fusions involving the 5' untranslated region of the androgen-regulated gene TMPRSS2 and the ETS (E26 transformation-specific) family genes ERG, ETV1 or ETV4 in most prostate cancers. Whereas TMPRSS2-ERG fusions are predominant, fewer TMPRSS2-ETV1 cases have been identified than expected on the basis of the frequency of high (outlier) expression of ETV1 (refs 3-13). Here we explore the mechanism of ETV1 outlier expression in human prostate tumours and prostate cancer cell lines. We identified previously unknown 5' fusion partners in prostate tumours with ETV1 outlier expression, including untranslated regions from a prostate-specific androgen-induced gene (SLC45A3) and an endogenous retroviral element (HERV-K_22q11.23), a prostate-specific androgen-repressed gene (C15orf21), and a strongly expressed housekeeping gene (HNRPA2B1). To study aberrant activation of ETV1, we identified two prostate cancer cell lines, LNCaP and MDA-PCa 2B, that had ETV1 outlier expression. Through distinct mechanisms, the entire ETV1 locus (7p21) is rearranged to a 1.5-megabase prostate-specific region at 14q13.3-14q21.1 in both LNCaP cells (cryptic insertion) and MDA-PCa 2B cells (balanced translocation). Because the common factor of these rearrangements is aberrant ETV1 overexpression, we recapitulated this event in vitro and in vivo, demonstrating that ETV1 overexpression in benign prostate cells and in the mouse prostate confers neoplastic phenotypes. Identification of distinct classes of ETS gene rearrangements demonstrates that dormant oncogenes can be activated in prostate cancer by juxtaposition to tissue-specific or ubiquitously active genomic loci. Subversion of active genomic regulatory elements may serve as a more generalized mechanism for carcinoma development. Furthermore, the identification of androgen-repressed and insensitive 5' fusion partners may have implications for the anti-androgen treatment of advanced prostate cancer.
Insights
Researchers found new gene fusions in prostate cancer, activating the ETV1 oncogene through genomic rearrangements. This ETV1 overexpression drives tumor development and may impact anti-androgen therapy effectiveness.
Area of Science:
- Molecular Oncology
- Genetics
- Cancer Biology
Background:
- Recurrent gene fusions involving TMPRSS2 and ETS family genes (ERG, ETV1, ETV4) are common in prostate cancer.
- The mechanism behind outlier expression of ETV1, despite fewer TMPRSS2-ETV1 fusions, remained unclear.
Purpose of the Study:
- To investigate the mechanisms driving outlier ETV1 expression in prostate tumors and cell lines.
- To understand how ETV1 locus rearrangements contribute to prostate cancer development.
Main Methods:
- Identified novel 5' fusion partners for ETV1 in prostate tumors.
- Analyzed ETV1 locus rearrangements in prostate cancer cell lines (LNCaP, MDA-PCa 2B).
- Recapitulated ETV1 overexpression in vitro and in vivo to assess neoplastic potential.
Main Results:
- Discovered new fusion partners for ETV1, including SLC45A3, HERV-K_22q11.23, C15orf21, and HNRPA2B1.
- Identified distinct genomic rearrangements (cryptic insertion, balanced translocation) of the ETV1 locus in LNCaP and MDA-PCa 2B cells.
- Demonstrated that ETV1 overexpression induces neoplastic phenotypes in benign prostate cells and mouse prostate.
Conclusions:
- Aberrant ETV1 overexpression, driven by genomic rearrangements with various regulatory elements, activates dormant oncogenes in prostate cancer.
- Subversion of active genomic loci is a potential generalized mechanism for carcinoma development.
- Androgen-insensitive fusion partners suggest implications for anti-androgen therapy in advanced prostate cancer.
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