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miR-380-5p represses p53 to control cellular survival and is associated with poor outcome in MYCN-amplified neuroblastoma

Swarbrick, Alexander; Woods, Susan L; Shaw, Alexander; Balakrishnan, Asha; Phua, Yuwei; Nguyen, Akira; Chanthery, Yvan; Lim, Lionel; Ashton, Lesley J; Judson, Robert L; Huskey, Noelle; Blelloch, Robert; Haber, Michelle; Norris, Murray D; Lengyel, Peter; Hackett, Christopher S; Preiss, Thomas; Chetcuti, Albert; Sullivan, Christopher S; Marcusson, Eric G; Weiss, William; L'Etoile, Noelle; Goga, Andrei
Inactivation of the p53 tumor suppressor pathway allows cell survival in times of stress and occurs in many human cancers; however, normal embryonic stem cells and some cancers such as neuroblastoma maintain wild-type human TP53 and mouse Trp53 (referred to collectively as p53 herein). Here we describe a miRNA, miR-380-5p, that represses p53 expression via a conserved sequence in the p53 3' untranslated region (UTR). miR-380-5p is highly expressed in mouse embryonic stem cells and neuroblastomas, and high expression correlates with poor outcome in neuroblastomas with neuroblastoma derived v-myc myelocytomatosis viral-related oncogene (MYCN) amplification. miR-380 overexpression cooperates with activated HRAS oncoprotein to transform primary cells, block oncogene-induced senescence and form tumors in mice. Conversely, inhibition of endogenous miR-380-5p in embryonic stem or neuroblastoma cells results in induction of p53, and extensive apoptotic cell death. In vivo delivery of a miR-380-5p antagonist decreases tumor size in an orthotopic mouse model of neuroblastoma. We demonstrate a new mechanism of p53 regulation in cancer and stem cells and uncover a potential therapeutic target for neuroblastoma.
PMCID:3019350
PMID: 20871609
ISSN: 1546-170x
CID: 2137102