Genomic footprints of activated telomere maintenance mechanisms in cancer

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Documents

  • Lina Sieverling
  • Chen Hong
  • Sandra D. Koser
  • Philip Ginsbach
  • Kortine Kleinheinz
  • Barbara Hutter
  • Delia M. Braun
  • Isidro Cortés-Ciriano
  • Ruibin Xi
  • Rolf Kabbe
  • Peter J. Park
  • Roland Eils
  • Matthias Schlesner
  • Kadir C. Akdemir
  • Eva G. Alvarez
  • Adrian Baez-Ortega
  • Rameen Beroukhim
  • Paul C. Boutros
  • David D.L. Bowtell
  • Benedikt Brors
  • Kathleen H. Burns
  • Peter J. Campbell
  • Kin Chan
  • Ken Chen
  • Isidro Cortés-Ciriano
  • Ana Dueso-Barroso
  • Andrew J. Dunford
  • Paul A. Edwards
  • Xavier Estivill
  • Dariush Etemadmoghadam
  • Lars Feuerbach
  • J. Lynn Fink
  • Milana Frenkel-Morgenstern
  • Dale W. Garsed
  • Mark Gerstein
  • Dmitry A. Gordenin
  • David Haan
  • James E. Haber
  • Julian M. Hess
  • Barbara Hutter
  • Marcin Imielinski
  • David T.W. Jones
  • Young Seok Ju
  • Marat D. Kazanov
  • Leszek J. Klimczak
  • Youngil Koh
  • Jan O. Korbel
  • Kiran Kumar
  • Nikos Sidiropoulos
  • Weischenfeldt, Joachim Lütken
  • PCAWG Structural Variation Working Group
  • PCAWG Consortium

Cancers require telomere maintenance mechanisms for unlimited replicative potential. They achieve this through TERT activation or alternative telomere lengthening associated with ATRX or DAXX loss. Here, as part of the ICGC/TCGA Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium, we dissect whole-genome sequencing data of over 2500 matched tumor-control samples from 36 different tumor types aggregated within the ICGC/TCGA Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium to characterize the genomic footprints of these mechanisms. While the telomere content of tumors with ATRX or DAXX mutations (ATRX/DAXXtrunc) is increased, tumors with TERT modifications show a moderate decrease of telomere content. One quarter of all tumor samples contain somatic integrations of telomeric sequences into non-telomeric DNA. This fraction is increased to 80% prevalence in ATRX/DAXXtrunc tumors, which carry an aberrant telomere variant repeat (TVR) distribution as another genomic marker. The latter feature includes enrichment or depletion of the previously undescribed singleton TVRs TTCGGG and TTTGGG, respectively. Our systematic analysis provides new insight into the recurrent genomic alterations associated with telomere maintenance mechanisms in cancer.

Original languageEnglish
Article number733
JournalNature Communications
Volume11
Issue number1
ISSN2041-1723
DOIs
Publication statusPublished - 2020

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