Identification of the <i>miR-106b</i> ~ <i>25</i> MicroRNA Cluster as a Proto-Oncogenic <i>PTEN</i> -Targeting Intron That Cooperates with Its Host Gene <i>MCM7</i> in Transformation

Laura Poliseno(Beth Israel Deaconess Medical Center), Leonardo Salmena(Beth Israel Deaconess Medical Center), Luisa Riccardi(Beth Israel Deaconess Medical Center), A Fornari(Fondazione Ricerca Molinette), Min Sup Song(Beth Israel Deaconess Medical Center), Robin M. Hobbs(Beth Israel Deaconess Medical Center), Paolo Sportoletti(Beth Israel Deaconess Medical Center), Shorheh Varmeh(Beth Israel Deaconess Medical Center), Ainara Egia(Beth Israel Deaconess Medical Center), Giuseppe Fedele(Brigham and Women's Hospital), Lucia E. Rameh(Boston Biomedical Research Institute), Massimo Loda(Brigham and Women's Hospital), Pier Paolo Pandolfi(Beth Israel Deaconess Medical Center)
Science Signaling
April 13, 2010
Cited by 409Open Access
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Abstract

PTEN (phosphatase and tensin homolog deleted on chromosome 10) is a tumor suppressor that antagonizes signaling through the phosphatidylinositol 3-kinase-Akt pathway. We have demonstrated that subtle decreases in PTEN abundance can have critical consequences for tumorigenesis. Here, we used a computational approach to identify miR-22, miR-25, and miR-302 as three PTEN-targeting microRNA (miRNA) families found within nine genomic loci. We showed that miR-22 and the miR-106b~25 cluster are aberrantly overexpressed in human prostate cancer, correlate with abundance of the miRNA processing enzyme DICER, and potentiate cellular transformation both in vitro and in vivo. We demonstrated that the intronic miR-106b~25 cluster cooperates with its host gene MCM7 in cellular transformation both in vitro and in vivo, so that the concomitant overexpression of MCM7 and the miRNA cluster triggers prostatic intraepithelial neoplasia in transgenic mice. Therefore, the MCM7 gene locus delivers two simultaneous oncogenic insults when amplified or overexpressed in human cancer. Thus, we have uncovered a proto-oncogenic miRNA-dependent network for PTEN regulation and defined the MCM7 locus as a critical factor in initiating prostate tumorigenesis.


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