bioRxiv · 10.1101/752295
Alternative polyadenylation drives oncogenic gene expression in pancreatic ductal adenocarcinoma
Abstract
Alternative polyadenylation (APA) is a gene regulatory process that dictates mRNA 3-UTR length, resulting in changes in mRNA stability and localization. APA is frequently disrupted in cancer and promotes tumorigenesis through altered expression of oncogenes and tumor suppressors. Pan-cancer analyses have revealed common APA events across the tumor landscape; however, little is known about tumor type-specific alterations that may uncover novel events and vulnerabilities. Here we integrate RNA-sequencing data from the Genotype-Tissue Expression (GTEx) project and The Cancer Genome Atlas (TCGA) to comprehensively analyze APA events in 148 pancreatic ductal adenocarcinomas (PDAs). We report widespread, recurrent and functionally relevant 3-UTR alterations associated with gene expression changes of known and newly identified PDA growth-promoting genes and experimentally validate the effects of these APA events on expression. We find enrichment for APA events in genes associated with known PDA pathways, loss of tumor-suppressive miRNA binding sites, and increased heterogeneity in 3-UTR forms of metabolic genes. Survival analyses reveal a subset of 3-UTR alterations that independently characterize a poor prognostic cohort among PDA patients. Finally, we identify and validate the casein kinase CK1 as an APA-regulated therapeutic target in PDA. Knockdown or pharmacological inhibition of CK1 attenuates PDA cell proliferation and clonogenic growth. Our single-cancer analysis reveals APA as an underappreciated driver of pro-tumorigenic gene expression in PDA via the loss of miRNA regulation.
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Venkat, S., Tisdale, A. A., Schwarz, J. R., Alahmari, A. A., Maurer, H. C., Olive, K. P., Eng, K. H., Feigin, M. E.. 2019-08-30. Alternative polyadenylation drives oncogenic gene expression in pancreatic ductal adenocarcinoma. https://doi.org/10.1101/752295
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