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Genome-wide DNA methylation patterns in pancreatic ductal adenocarcinoma reveal epigenetic deregulation of SLIT-ROBO, ITGA2 and MET signaling

Authors :
Lynn Fink
Sean M. Grimmond
Ann-Marie Patch
Sarah Song
Jianmin Wu
Amber L. Johns
Giovanni Butturini
Karin S. Kassahn
Conrad Leonard
Michelle Thomas
Marina Pajic
Rita T. Lawlor
Clare Watson
Suzanne Manning
Vincenzo Corbo
Giuseppe Zamboni
Anna Malpaga
Mark J. Cowley
Stephen H. Kazakoff
David Miller
Craig Nourse
Ilse Rooman
David L. A. Wood
Stefano Crippa
Nic Waddell
Anthony J. Gill
Peter Bailey
Paola Castelli
Katia Nones
Andrew V. Biankin
Massimo Falconi
Angelika N. Christ
Aldo Scarpa
Mark Pinese
John V. Pearson
Marc D. Jones
Darrin Taylor
David K. Chang
Source :
International Journal of Cancer. 135:1110-1118
Publication Year :
2014
Publisher :
Wiley, 2014.

Abstract

The importance of epigenetic modifications such as DNA methylation in tumorigenesis is increasingly being appreciated. To define the genome-wide pattern of DNA methylation in pancreatic ductal adenocarcinomas (PDAC), we captured the methylation profiles of 167 untreated resected PDACs and compared them to a panel of 29 adjacent nontransformed pancreata using high-density arrays. A total of 11,634 CpG sites associated with 3,522 genes were significantly differentially methylated (DM) in PDAC and were capable of segregating PDAC from non-malignant pancreas, regardless of tumor cellularity. As expected, PDAC hypermethylation was most prevalent in the 5' region of genes (including the proximal promoter, 5'UTR and CpG islands). Approximately 33% DM genes showed significant inverse correlation with mRNA expression levels. Pathway analysis revealed an enrichment of aberrantly methylated genes involved in key molecular mechanisms important to PDAC: TGF-β, WNT, integrin signaling, cell adhesion, stellate cell activation and axon guidance. Given the recent discovery that SLIT-ROBO mutations play a clinically important role in PDAC, the role of epigenetic perturbation of axon guidance was pursued in more detail. Bisulfite amplicon deep sequencing and qRT-PCR expression analyses confirmed recurrent perturbation of axon guidance pathway genes SLIT2, SLIT3, ROBO1, ROBO3, ITGA2 and MET and suggests epigenetic suppression of SLIT-ROBO signaling and up-regulation of MET and ITGA2 expression. Hypomethylation of MET and ITGA2 correlated with high gene expression, which was associated with poor survival. These data suggest that aberrant methylation plays an important role in pancreatic carcinogenesis affecting core signaling pathways with potential implications for the disease pathophysiology and therapy.

Details

ISSN :
00207136
Volume :
135
Database :
OpenAIRE
Journal :
International Journal of Cancer
Accession number :
edsair.doi...........015ebd4eadb1a79ecdde6c033f6df52f
Full Text :
https://doi.org/10.1002/ijc.28765