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Genomic analyses identify molecular subtypes of pancreatic cancer

Authors :
J. Lynn Fink
Jeremy L. Humphris
Katia Nones
Robert Grützmann
Anirban Maitra
Paola Capelli
Peter J. Wilson
William E. Fisher
Aldo Scarpa
Christopher J. Scarlett
Richard A. Morgan
Ann-Marie Patch
Debabrata Mukhopadhyay
Murtaugh Lc
Oliver Hofmann
Marc Giry-Laterriere
Borislav Rusev
Jennifer P. Morton
Nicole Cloonan
David A. Wheeler
Anthony J. Gill
Krishna Epari
Nam Q. Nguyen
Amber L. Johns
James G. Kench
Saadia A. Karim
Lorena Pantano
Craig Nourse
Nigel B. Jamieson
Ivon Harliwong
Stephen H. Kazakoff
Darrin Taylor
Felicity Newell
Christian Pilarsky
Giampaolo Tortora
Shivangi Wani
Nicola Waddell
Mark J. Cowley
Jaswinder S. Samra
Scott Wood
Munzy Dm
Conrad Leonard
Laura Mincarelli
Suzanne Manning
Timothy J. C. Bruxner
Mark Pinese
Michael C.J. Quinn
Hair J
Andreia V. Pinho
R. L. Sutherland
Amanda Mawson
Neil D. Merrett
Andrew Barbour
Rita T. Lawlor
Jones
Corbo
Ilse Rooman
Lorraine A. Chantrill
Marie-Claude Gingras
Christopher W. Toon
Senel Idrisoglu
Emily S. Humphrey
Kelly Quek
Sean M. Grimmond
Christopher L. Wolfgang
Oliver Holmes
Andrew V. Biankin
Fraser Duthie
Qinying Xu
Kim Moran-Jones
Gloria M. Petersen
Lisa Evers
Peter Bailey
Elizabeth A. Musgrove
Alan J. Robertson
Marina Pajic
Emily K. Colvin
John V. Pearson
Nikolajs Zeps
David K. Chang
Karin S. Kassahn
David Miller
Janet Graham
Ehsan Nourbakhsh
Ralph H. Hruban
Luis Navarro Sanchez
Ulla-Maja Bailey
Chin
Jessica A. Lovell
Angelika N. Christ
Richard A. Gibbs
Eshleman
Karin A. Oien
Christine A. Iacobuzio-Donahue
Claudio Bassi
Adnan Nagrial
Matthew J. Anderson
Owen J. Sansom
Angela Chou
Roberto Salvia
Jianmin Wu
Cell Differentiation
Basic (bio-) Medical Sciences
Laboratory for Medical and Molecular Oncology
Source :
Nature. 531(7592)
Publication Year :
2015

Abstract

Integrated genomic analysis of 456 pancreatic ductal adenocarcinomas identified 32 recurrently mutated genes that aggregate into 10 pathways: KRAS, TGF-β, WNT, NOTCH, ROBO/SLIT signalling, G1/S transition, SWI-SNF, chromatin modification, DNA repair and RNA processing. Expression analysis defined 4 subtypes: (1) squamous; (2) pancreatic progenitor; (3) immunogenic; and (4) aberrantly differentiated endocrine exocrine (ADEX) that correlate with histopathological characteristics. Squamous tumours are enriched for TP53 and KDM6A mutations, upregulation of the TP63∆N transcriptional network, hypermethylation of pancreatic endodermal cell-fate determining genes and have a poor prognosis. Pancreatic progenitor tumours preferentially express genes involved in early pancreatic development (FOXA2/3, PDX1 and MNX1). ADEX tumours displayed upregulation of genes that regulate networks involved in KRAS activation, exocrine (NR5A2 and RBPJL), and endocrine differentiation (NEUROD1 and NKX2-2). Immunogenic tumours contained upregulated immune networks including pathways involved in acquired immune suppression. These data infer differences in the molecular evolution of pancreatic cancer subtypes and identify opportunities for therapeutic development.

Details

ISSN :
14764687
Volume :
531
Issue :
7592
Database :
OpenAIRE
Journal :
Nature
Accession number :
edsair.doi.dedup.....da84f5bbe8c825ef3b1682554a8e729b