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Mutational dynamics between primary and relapse neuroblastomas

Authors :
Janine Altmüller
Sven Rahmann
Christian Gloeckner
Peter Nürnberg
Anton G. Henssen
Martin Peifer
Jessica Theissen
Daniela Beisser
Holger N. Lode
Yassen Assenov
Johannes Köster
Angelika Eggert
Frank Speleman
Corinna Ernst
Kai Oliver Henrich
Barbara Hero
Yvonne Kahlert
Frank Westermann
Matthias Fischer
Alexander Schramm
Harald Stephan
Andrea Odersky
Katleen De Preter
Christoph Plass
Christopher Schröder
Lukas C. Heukamp
E Mahlow
Kathy Astrahantseff
Sangkyun Lee
Frederik Roels
Anne Engesser
Peter Schmezer
Kristina Althoff
Johannes H. Schulte
Moritz Gartlgruber
Source :
Nature Genetics, 47(8), 872-877
Publication Year :
2015
Publisher :
Springer Science and Business Media LLC, 2015.

Abstract

Neuroblastoma is a malignancy of the developing sympathetic nervous system that is often lethal when relapse occurs. We here used whole-exome sequencing, mRNA expression profiling, array CGH and DNA methylation analysis to characterize 16 paired samples at diagnosis and relapse from individuals with neuroblastoma. The mutational burden significantly increased in relapsing tumors, accompanied by altered mutational signatures and reduced subclonal heterogeneity. Global allele frequencies at relapse indicated clonal mutation selection during disease progression. Promoter methylation patterns were consistent over disease course and were patient specific. Recurrent alterations at relapse included mutations in the putative CHD5 neuroblastoma tumor suppressor, chromosome 9p losses, DOCK8 mutations, inactivating mutations in PTPN14 and a relapse-specific activity pattern for the PTPN14 target YAP. Recurrent new mutations in HRAS, KRAS and genes mediating cell-cell interaction in 13 of 16 relapse tumors indicate disturbances in signaling pathways mediating mesenchymal transition. Our data shed light on genetic alteration frequency, identity and evolution in neuroblastoma.

Details

ISSN :
15461718 and 10614036
Volume :
47
Database :
OpenAIRE
Journal :
Nature Genetics
Accession number :
edsair.doi.dedup.....830ec4266f7655faf236e3e441d3d8af