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Integrative genome analyses identify key somatic driver mutations of small-cell lung cancer

Authors :
Peifer, Martin
Fernandez-Cuesta, Lynnette
Sos, Martin L.
George, Julie
Seidel, Danila
Kasper, Lawryn H.
Plenker, Dennis
Leenders, Frauke
Sun, Ruping
Zander, Thomas
Menon, Roopika
Koker, Mirjam
Dahmen, Ilona
Mueller, Christian
Di Cerbo, Vincenzo
Schildhaus, Hans-Ulrich
Altmueller, Janine
Baessmann, Ingelore
Becker, Christian
de Wilde, Bram
Vandesompele, Jo
Boehm, Diana
Ansen, Sascha
Gabler, Franziska
Wilkening, Ines
Heynck, Stefanie
Heuckmann, Johannes M.
Lu, Xin
Carter, Scott L.
Cibulskis, Kristian
Banerji, Shantanu
Getz, Gad
Park, Kwon-Sik
Rauh, Daniel
Gruetter, Christian
Fischer, Matthias
Pasqualucci, Laura
Wright, Gavin
Wainer, Zoe
Russell, Prudence
Petersen, Iver
Chen, Yuan
Stoelben, Erich
Ludwig, Corinna
Schnabel, Philipp
Hoffmann, Hans
Muley, Thomas
Brockmann, Michael
Engel-Riedel, Walburga
Muscarella, Lucia A.
Fazio, Vito M.
Groen, Harry
Timens, Wim
Sietsma, Hannie
Thunnissen, Erik
Smit, Egbert
Heideman, Danielle A. M.
Snijders, Peter J. F.
Cappuzzo, Federico
Ligorio, Claudia
Damiani, Stefania
Field, John
Solberg, Steinar
Brustugun, Odd Terje
Lund-Iversen, Marius
Saenger, Joerg
Clement, Joachim H.
Soltermann, Alex
Moch, Holger
Weder, Walter
Solomon, Benjamin
Soria, Jean-Charles
Validire, Pierre
Besse, Benjamin
Brambilla, Elisabeth
Brambilla, Christian
Lantuejoul, Sylvie
Lorimier, Philippe
Schneider, Peter M.
Hallek, Michael
Pao, William
Meyerson, Matthew
Sage, Julien
Shendure, Jay
Schneider, Robert
Buettner, Reinhard
Wolf, Juergen
Nuernberg, Peter
Perner, Sven
Heukamp, Lukas C.
Brindle, Paul K.
Haas, Stefan
Thomas, Roman K.
Peifer, Martin
Fernandez-Cuesta, Lynnette
Sos, Martin L.
George, Julie
Seidel, Danila
Kasper, Lawryn H.
Plenker, Dennis
Leenders, Frauke
Sun, Ruping
Zander, Thomas
Menon, Roopika
Koker, Mirjam
Dahmen, Ilona
Mueller, Christian
Di Cerbo, Vincenzo
Schildhaus, Hans-Ulrich
Altmueller, Janine
Baessmann, Ingelore
Becker, Christian
de Wilde, Bram
Vandesompele, Jo
Boehm, Diana
Ansen, Sascha
Gabler, Franziska
Wilkening, Ines
Heynck, Stefanie
Heuckmann, Johannes M.
Lu, Xin
Carter, Scott L.
Cibulskis, Kristian
Banerji, Shantanu
Getz, Gad
Park, Kwon-Sik
Rauh, Daniel
Gruetter, Christian
Fischer, Matthias
Pasqualucci, Laura
Wright, Gavin
Wainer, Zoe
Russell, Prudence
Petersen, Iver
Chen, Yuan
Stoelben, Erich
Ludwig, Corinna
Schnabel, Philipp
Hoffmann, Hans
Muley, Thomas
Brockmann, Michael
Engel-Riedel, Walburga
Muscarella, Lucia A.
Fazio, Vito M.
Groen, Harry
Timens, Wim
Sietsma, Hannie
Thunnissen, Erik
Smit, Egbert
Heideman, Danielle A. M.
Snijders, Peter J. F.
Cappuzzo, Federico
Ligorio, Claudia
Damiani, Stefania
Field, John
Solberg, Steinar
Brustugun, Odd Terje
Lund-Iversen, Marius
Saenger, Joerg
Clement, Joachim H.
Soltermann, Alex
Moch, Holger
Weder, Walter
Solomon, Benjamin
Soria, Jean-Charles
Validire, Pierre
Besse, Benjamin
Brambilla, Elisabeth
Brambilla, Christian
Lantuejoul, Sylvie
Lorimier, Philippe
Schneider, Peter M.
Hallek, Michael
Pao, William
Meyerson, Matthew
Sage, Julien
Shendure, Jay
Schneider, Robert
Buettner, Reinhard
Wolf, Juergen
Nuernberg, Peter
Perner, Sven
Heukamp, Lukas C.
Brindle, Paul K.
Haas, Stefan
Thomas, Roman K.
Publication Year :
2012

Abstract

Small-cell lung cancer (SCLC) is an aggressive lung tumor subtype with poor prognosis(1-3). We sequenced 29 SCLC exomes, 2 genomes and 15 transcriptomes and found an extremely high mutation rate of 7.4 +/- 1 protein-changing mutations per million base pairs. Therefore, we conducted integrated analyses of the various data sets to identify pathogenetically relevant mutated genes. In all cases, we found evidence for inactivation of TP53 and RB1 and identified recurrent mutations in the CREBBP, EP300 and MLL genes that encode histone modifiers. Furthermore, we observed mutations in PTEN, SLIT2 and EPHA7, as well as focal amplifications of the FGFR1 tyrosine kinase gene. Finally, we detected many of the alterations found in humans in SCLC tumors from Tp53 and Rb1 double knockout mice(4). Our study implicates histone modification as a major feature of SCLC, reveals potentially therapeutically tractable genomic alterations and provides a generalizable framework for the identification of biologically relevant genes in the context of high mutational background.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1252544102
Document Type :
Electronic Resource