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PMID: 22286061 已发表 · epublish 英语

Driver mutations in histone H3.3 and chromatin remodelling genes in paediatric glioblastoma.

Nature ·第 482 卷 ·第 7384 期 ·2012-03-16

Schwartzentruber Jeremy, Korshunov Andrey, Liu Xiao-Yang, Jones David T W, Pfaff Elke, Jacob Karine, Sturm Dominik, Fontebasso Adam M, Quang Dong-Anh Khuong, Tönjes Martje, Hovestadt Volker, Albrecht Steffen, Kool Marcel, Nantel Andre, Konermann Carolin, Lindroth Anders, Jäger Natalie, Rausch Tobias, Ryzhova Marina, Korbel Jan O, Hielscher Thomas, Hauser Peter, Garami Miklos, Klekner Almos, Bognar Laszlo, Ebinger Martin, Schuhmann Martin U, Scheurlen Wolfram, Pekrun Arnulf, Frühwald Michael C, Roggendorf Wolfgang, Kramm Christoph, Dürken Matthias, Atkinson Jeffrey, Lepage Pierre, Montpetit Alexandre, Zakrzewska Magdalena, Zakrzewski Krzystof, Liberski Pawel P, Dong Zhifeng, Siegel Peter, Kulozik Andreas E, Zapatka Marc, Guha Abhijit, Malkin David, Felsberg Jörg, Reifenberger Guido, von Deimling Andreas, Ichimura Koichi, Collins V Peter, Witt Hendrik, Milde Till, Witt Olaf, Zhang Cindy, Castelo-Branco Pedro, Lichter Peter, Faury Damien, Tabori Uri, Plass Christoph, Majewski Jacek, Pfister Stefan M, Jabado Nada

摘要

Glioblastoma multiforme (GBM) is a lethal brain tumour in adults and children. However, DNA copy number and gene expression signatures indicate differences between adult and paediatric cases. To explore the genetic events underlying this distinction, we sequenced the exomes of 48 paediatric GBM samples. Somatic mutations in the H3.3-ATRX-DAXX chromatin remodelling pathway were identified in 44% of tumours (21/48). Recurrent mutations in H3F3A, which encodes the replication-independent histone 3 variant H3.3, were observed in 31% of tumours, and led to amino acid substitutions at two critical positions within the histone tail (K27M, G34R/G34V) involved in key regulatory post-translational modifications. Mutations in ATRX (α-thalassaemia/mental retardation syndrome X-linked) and DAXX (death-domain associated protein), encoding two subunits of a chromatin remodelling complex required for H3.3 incorporation at pericentric heterochromatin and telomeres, were identified in 31% of samples overall, and in 100% of tumours harbouring a G34R or G34V H3.3 mutation. Somatic TP53 mutations were identified in 54% of all cases, and in 86% of samples with H3F3A and/or ATRX mutations. Screening of a large cohort of gliomas of various grades and histologies (n = 784) showed H3F3A mutations to be specific to GBM and highly prevalent in children and young adults. Furthermore, the presence of H3F3A/ATRX-DAXX/TP53 mutations was strongly associated with alternative lengthening of telomeres and specific gene expression profiles. This is, to our knowledge, the first report to highlight recurrent mutations in a regulatory histone in humans, and our data suggest that defects of the chromatin architecture underlie paediatric and young adult GBM pathogenesis.

文献信息
期刊
Nature
期刊简称
Nature
发表日期
2012-03-16
收录日期
2012-02-09
更新日期
2013-11-21
语言
英语
国家/地区
England
NLM ID
0410462
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