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Loss of ATRX, Genome Instability, and an Altered DNA Damage Response Are Hallmarks of the Alternative Lengthening of Telomeres Pathway

PLoS Genetics · 2012 · Vol. 8(7) · pp. e1002772–e1002772
Courtney A. LovejoyWen‐Di LiSteven ReisenweberSupawat ThongthipJoanne BrunoTitia de LangeSaurav DeJohn H.J. PetriniPatricia SungMaria JasinJoseph RosenbluhYaara ZwangBarbara A. WeirCharlie HattonElena V. IvanovaLaura E. MacConaillMegan HannaWilliam C. HahnNeal F. LueRoger R. ReddelYuchen JiaoKenneth W. KinzlerBert VogelsteinNickolas PapadopoulosAlan K. Meeker

Abstract

The Alternative Lengthening of Telomeres (ALT) pathway is a telomerase-independent pathway for telomere maintenance that is active in a significant subset of human cancers and in vitro immortalized cell lines. ALT is thought to involve templated extension of telomeres through homologous recombination, but the genetic or epigenetic changes that unleash ALT are not known. Recently, mutations in the ATRX/DAXX chromatin remodeling complex and histone H3.3 were found to correlate with features of ALT in pancreatic neuroendocrine cancers, pediatric glioblastomas, and other tumors of the central nervous system, suggesting that these mutations might contribute to the activation of the ALT pathway in these cancers. We have taken a comprehensive approach to deciphering ALT by applying genomic, molecular biological, and cell biological approaches to a panel of 22 ALT cell lines, including cell lines derived in vitro. Here we show that loss of ATRX protein and mutations in the ATRX gene are hallmarks of ALT-immortalized cell lines. In addition, ALT is associated with extensive genome rearrangements, marked micronucleation, defects in the G2/M checkpoint, and altered double-strand break (DSB) repair. These attributes will facilitate the diagnosis and treatment of ALT positive human cancers.

Telomeres, Telomerase, and SenescenceDNA Repair MechanismsGenomics and Chromatin DynamicsATRXTelomereBiologyDeath-associated protein 6Genome instabilityChromatinDNA repairEpigeneticsTelomeraseHistone

MeSH terms

X-linked Nuclear ProteinDNA DamageDNA RepairDNA HelicasesHeLa CellsHistonesHumansNuclear ProteinsSignal TransductionTelomereMolecular ChaperonesTelomeraseChromatin Assembly and DisassemblyGenomic InstabilityAdaptor Proteins, Signal Transducing

Funding

  • U.S. Department of Defense
  • National Institutes of Health
  • Cancer Council NSW
  • National Institute on Aging
Citations
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