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Evasion of cell senescence in SHH medulloblastoma

  • Lukas Tamayo-Orrego
  • , Shannon M. Swikert
  • , Frédéric Charron*
  • *Corresponding author for this work

Research output: Contribution to journalComment/debatepeer-review

Abstract

The mechanisms leading to brain tumor formation are poorly understood. Using Ptch1+/− mice as a medulloblastoma model, sequential mutations were found to shape tumor evolution. Initially, medulloblastoma preneoplastic lesions display loss of heterozygosity of the Ptch1 wild-type allele, an event associated with cell senescence in preneoplasia. Subsequently, p53 mutations lead to senescence evasion and progression from preneoplasia to medulloblastoma. These findings are consistent with a model where high levels of Hedgehog signaling caused by the loss of the tumor suppressor Ptch1 lead to oncogene-induced senescence and drive p53 mutations. Thus, cell senescence is an important characteristic of a subset of SHH medulloblastoma and might explain the acquisition of somatic TP53 mutations in human medulloblastoma. This mode of medulloblastoma formation contrasts with the one characterizing Li-Fraumeni patients with medulloblastoma, where TP53 germ-line mutations cause chromothriptic genomic instability and lead to mutations in Hedgehog signaling genes, which drive medulloblastoma growth. Here we discuss in detail these 2 alternative mechanisms leading to medulloblastoma tumorigenesis.

Original languageEnglish
Pages (from-to)2102-2107
Number of pages6
JournalCell Cycle
Volume15
Issue number16
DOIs
Publication statusPublished - 17 Aug 2016

Keywords / Materials (for Non-textual outputs)

  • cell senescence
  • Medulloblastoma; p53
  • preneoplasia
  • Ptch1
  • sonic hedgehog
  • TP53

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