4.8 Article

Enhancer hijacking activates GFI1 family oncogenes in medulloblastoma

期刊

NATURE
卷 511, 期 7510, 页码 428-+

出版社

NATURE PORTFOLIO
DOI: 10.1038/nature13379

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资金

  1. PedBrain Tumor Project - German Cancer Aid [109252]
  2. German Federal Ministry of Education and Research (BMBF) [01KU1201A, MedSys 0315416C, NGFNplus 01GS0883]
  3. German Cancer Research Center-Heidelberg Center for Personalized Oncology (DKFZ-HIPO)
  4. EMBL International PhD Programme
  5. Dutch Cancer Foundation KWF [2010-4713]
  6. Dutch Cancer Foundation KIKA
  7. US National Institutes of Health, National Center for Research Resources [P41 GM103504]
  8. CancerSys grant MYC-NET (German Federal Ministry of Education and Research, BMBF) [0316076A]
  9. European Commission [Health-F2-2010-260791]
  10. Helmholtz Alliance PCCC [HA-305]
  11. Hertie Foundation
  12. DKFZ
  13. California Institute for Regenerative Medicine [CIRM LA1-01747]
  14. National Cancer Institute [5P30CA030199, R01 CA159859]
  15. CureSearch for Children's Cancer Foundation

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Medulloblastoma is a highly malignant paediatric brain tumour currently treated with a combination of surgery, radiation and chemotherapy, posing a considerable burden of toxicity to the developing child. Genomics has illuminated the extensive intertumoral heterogeneity of medulloblastoma, identifying four distinct molecular subgroups. Group 3 and group 4 subgroup medulloblastomas account for most paediatric cases; yet, oncogenic drivers for these subtypes remain largely unidentified. Here we describe a series of prevalent, highly disparate genomic structural variants, restricted to groups 3 and 4, resulting in specific and mutually exclusive activation of the growth factor independent 1 family proto-oncogenes, GFI1 and GFI1B. Somatic structural variants juxtapose GFI1 or GFI1B coding sequences proximal to active enhancer elements, including super-enhancers, instigating oncogenic activity. Our results, supported by evidence from mouse models, identify GFI1 and GFI1B as prominent medulloblastoma oncogenes and implicate 'enhancer hijacking' as an efficient mechanism driving oncogene activation in a childhood cancer.

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