Widespread shortening of 3'UTRs by alternative cleavage and polyadenylation activates oncogenes in cancer cells Journal Article


Authors: Mayr, C.; Bartel, D. P.
Article Title: Widespread shortening of 3'UTRs by alternative cleavage and polyadenylation activates oncogenes in cancer cells
Abstract: In cancer cells, genetic alterations can activate proto-oncogenes, thereby contributing to tumorigenesis. However, the protein products of oncogenes are sometimes overexpressed without alteration of the proto-oncogene. Helping to explain this phenomenon, we found that when compared to similarly proliferating nontransformed cell lines, cancer cell lines often expressed substantial amounts of mRNA isoforms with shorter 30 untranslated regions (UTRs). These shorter isoforms usually resulted from alternative cleavage and polyadenylation (APA). The APA had functional consequences, with the shorter mRNA isoforms exhibiting increased stability and typically producing ten-fold more protein, in part through the loss of microRNA-mediated repression. Moreover, expression of the shorter mRNA isoform of the proto-oncogene IGF2BP1/IMP-1 led to far more oncogenic transformation than did expression of the full-length, annotated mRNA. The high incidence of APA in cancer cells, with consequent loss of 3'UTR repressive elements, suggests a pervasive role for APA in oncogene activation without genetic alteration.
Keywords: microrna; protein; targets; posttranscriptional regulation; transgenic mice; 3' untranslated regions; gene-expression; binding; messenger-rna polyadenylation; site selection; rich elements; cyclin d2
Journal Title: Cell
Volume: 138
Issue: 4
ISSN: 0092-8674
Publisher: Cell Press  
Date Published: 2009-08-01
Start Page: 673
End Page: 684
Language: English
ACCESSION: ISI:000269156100010
DOI: 10.1016/j.cell.2009.06.016
PROVIDER: wos
PMCID: PMC2819821
PUBMED: 19703394
Notes: --- - Article - "Source: Wos"
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  1. Christine Mayr
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