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Genomic analyses identify molecular subtypes of pancreatic cancer

Authors :
Bailey, Peter
Chang, David K.
Nones, Katia
Johns, Amber L.
Patch, Ann-Marie
Gingras, Marie-Claude
Miller, David K.
Christ, Angelika N.
Bruxner, Tim J. C.
Quinn, Michael C.
Nourse, Craig
Murtaugh, L. Charles
Harliwong, Ivon
Idrisoglu, Senel
Manning, Suzanne
Nourbakhsh, Ehsan
Wani, Shivangi
Fink, Lynn
Holmes, Oliver
Chin, Venessa
Anderson, Matthew J.
Kazakoff, Stephen
Leonard, Conrad
Newell, Felicity
Waddell, Nick
Wood, Scott
Xu, Qinying
Wilson, Peter J.
Cloonan, Nicole
Kassahn, Karin S.
Taylor, Darrin
Quek, Kelly
Robertson, Alan
Pantano, Lorena
Mincarelli, Laura
Sanchez, Luis N.
Evers, Lisa
Wu, Jianmin
Pinese, Mark
Cowley, Mark J.
Jones, Marc D.
Colvin, Emily K.
Nagrial, Adnan M.
Humphrey, Emily S.
Chantrill, Lorraine A.
Mawson, Amanda
Humphris, Jeremy
Chou, Angela
Pajic, Marina
Scarlett, Christopher J.
Pinho, Andreia V.
Giry-Laterriere, Marc
Rooman, Ilse
Samra, Jaswinder S.
Kench, James G.
Lovell, Jessica A.
Merrett, Neil D.
Toon, Christopher W.
Epari, Krishna
Nguyen, Nam Q.
Barbour, Andrew
Zeps, Nikolajs
Moran-Jones, Kim
Jamieson, Nigel B.
Graham, Janet S.
Duthie, Fraser
Oien, Karin
Hair, Jane
Grützmann, Robert
Maitra, Anirban
Iacobuzio-Donahue, Christine A.
Wolfgang, Christopher L.
Morgan, Richard A.
Lawlor, Rita T.
Corbo, Vincenzo
Bassi, Claudio
Rusev, Borislav
Capelli, Paola
Salvia, Roberto
Tortora, Giampaolo
Mukhopadhyay, Debabrata
Petersen, Gloria M.
Munzy, Donna M.
Fisher, William E.
Karim, Saadia A.
Eshleman, James R.
Hruban, Ralph H.
Pilarsky, Christian
Morton, Jennifer P.
Sansom, Owen J.
Scarpa, Aldo
Musgrove, Elizabeth A.
Bailey, Ulla-Maja Hagbo
Hofmann, Oliver
Sutherland, Robert L.
Wheeler, David A.
Gill, Anthony J.
Gibbs, Richard A.
Pearson, John V.
Waddell, Nicola
Biankin, Andrew V.
Grimmond, Sean M.
Source :
Nature; March 2016, Vol. 531 Issue: 7592 p47-52, 6p
Publication Year :
2016

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/SLITsignalling, G1/Stransition, 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 TP53and KDM6Amutations, upregulation of the TP63∆Ntranscriptional 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, PDX1and MNX1). ADEX tumours displayed upregulation of genes that regulate networks involved in KRASactivation, exocrine (NR5A2and RBPJL), and endocrine differentiation (NEUROD1and 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

Language :
English
ISSN :
00280836 and 14764687
Volume :
531
Issue :
7592
Database :
Supplemental Index
Journal :
Nature
Publication Type :
Periodical
Accession number :
ejs38237067
Full Text :
https://doi.org/10.1038/nature16965