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Mutations in SETD2 and genes affecting histone H3K36 methylation target hemispheric high-grade gliomas

Authors :
Peter Hauser
László Bognár
Alfredo Staffa
Almos Klekner
Xiaoyang Liu
Djihad Hadjadj
Stephan Busche
Miklós Garami
Adam Fleming
Adam M. Fontebasso
Marcel Kool
David T.W. Jones
Jeremy Schwartzentruber
Jacek Majewski
Stefan M. Pfister
Krzystof Zakrzewski
Nada Jabado
Noha Gerges
Dominik Sturm
Hendrik Witt
Steffen Albrecht
Dong Anh Khuong-Quang
Pierre Lepage
Pawel P. Liberski
Alexandre Montpetit
Damien Faury
Gelareh Zadeh
Andrey Korshunov
Magdalena Zakrzewska
Source :
Acta Neuropathologica
Publication Year :
2013
Publisher :
Springer Science and Business Media LLC, 2013.

Abstract

Recurrent mutations affecting the histone H3.3 residues Lys27 or indirectly Lys36 are frequent drivers of pediatric high-grade gliomas (over 30 % of HGGs). To identify additional driver mutations in HGGs, we investigated a cohort of 60 pediatric HGGs using whole-exome sequencing (WES) and compared them to 543 exomes from non-cancer control samples. We identified mutations in SETD2, a H3K36 trimethyltransferase, in 15 % of pediatric HGGs, a result that was genome-wide significant (FDR = 0.029). Most SETD2 alterations were truncating mutations. Sequencing the gene in this cohort and another validation cohort (123 gliomas from all ages and grades) showed SETD2 mutations to be specific to high-grade tumors affecting 15 % of pediatric HGGs (11/73) and 8 % of adult HGGs (5/65) while no SETD2 mutations were identified in low-grade diffuse gliomas (0/45). Furthermore, SETD2 mutations were mutually exclusive with H3F3A mutations in HGGs (P = 0.0492) while they partly overlapped with IDH1 mutations (4/14), and SETD2-mutant tumors were found exclusively in the cerebral hemispheres (P = 0.0055). SETD2 is the only H3K36 trimethyltransferase in humans, and SETD2-mutant tumors showed a substantial decrease in H3K36me3 levels (P

Details

ISSN :
14320533 and 00016322
Volume :
125
Database :
OpenAIRE
Journal :
Acta Neuropathologica
Accession number :
edsair.doi.dedup.....457be83a51a1be296c31b29d08397de4
Full Text :
https://doi.org/10.1007/s00401-013-1095-8