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K27M mutation in histone H3.3 defines clinically and biologically distinct subgroups of pediatric diffuse intrinsic pontine gliomas

Acta Neuropathologica · 2012 · Vol. 124(3) · pp. 439–447
Dong-Anh Khuong-QuangPawel BuczkowiczPatricia RakopoulosXiao-Yang LiuAdam M. FontebassoÉric BouffetUte BartelsSteffen AlbrechtJeremy SchwartzentruberLouis LétourneauMathieu BourgeyGuillaume BourqueAlexandre MontpetitGeneviève BourretPierre LepageAdam FlemingPeter LichterMarcel KoolAndreas von DeimlingDominik SturmAndrey KorshunovDamien FauryDavid JonesJacek MajewskiStefan M. PfisterNada JabadoCynthia Hawkins

Abstract

Pediatric glioblastomas (GBM) including diffuse intrinsic pontine gliomas (DIPG) are devastating brain tumors with no effective therapy. Here, we investigated clinical and biological impacts of histone H3.3 mutations. Forty-two DIPGs were tested for H3.3 mutations. Wild-type versus mutated (K27M-H3.3) subgroups were compared for HIST1H3B, IDH, ATRX and TP53 mutations, copy number alterations and clinical outcome. K27M-H3.3 occurred in 71 %, TP53 mutations in 77 % and ATRX mutations in 9 % of DIPGs. ATRX mutations were more frequent in older children (p < 0.0001). No G34V/R-H3.3, IDH1/2 or H3.1 mutations were identified. K27M-H3.3 DIPGs showed specific copy number changes, including all gains/amplifications of PDGFRA and MYC/PVT1 loci. Notably, all long-term survivors were H3.3 wild type and this group of patients had better overall survival. K27M-H3.3 mutation defines clinically and biologically distinct subgroups and is prevalent in DIPG, which will impact future therapeutic trial design. K27M- and G34V-H3.3 have location-based incidence (brainstem/cortex) and potentially play distinct roles in pediatric GBM pathogenesis. K27M-H3.3 is universally associated with short survival in DIPG, while patients wild-type for H3.3 show improved survival. Based on prognostic and therapeutic implications, our findings argue for H3.3-mutation testing at diagnosis, which should be rapidly integrated into the clinical decision-making algorithm, particularly in atypical DIPG.

Glioma Diagnosis and TreatmentEpigenetics and DNA MethylationChromatin Remodeling and CancerATRXHistone H3MutationHistoneIDH1MedicineBiologyCancer researchInternal medicineOncology

MeSH terms

AdolescentChildChild, PreschoolFemaleGliomaHistonesHumansInfantMaleMutationPonsPrognosisSurvival RateBrain Stem NeoplasmsGene Expression Profiling

Funding

  • Genome Canada
  • Genome British Columbia
  • Bundesministerium für Bildung und Forschung
  • Deutsche Krebshilfe
  • Fondation des Etoiles
  • Canadian Institutes of Health Research
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