Proceedings of the National Academy of Sciences · 2005 · 99 citations · 34 references
ChromatinGenome InstabilityDna DamageNatural SciencesGenomic MechanismMolecular BiologyDna ReplicationDna Damage-induced PhosphorylationSystems BiologyMedicineCell BiologyTelomere MaintenanceMutagenesis
Several protein kinases from diverse eukaryotes known to perform important roles in DNA repair have also been shown to play critical roles in telomere maintenance. Here, we report that the human telomere-associated protein TRF2 is rapidly phosphorylated in response to DNA damage. We find that the phosphorylated form of TRF2 is not bound to telomeric DNA, as is the ground form of TRF2, and is rapidly localized to damage sites. Our results suggest that the ataxia-telangiectasia-mutated (ATM) protein kinase signal-transduction pathway is primarily responsible for the DNA damage-induced phosphorylation of TRF2. Unlike DNA damage-induced phosphorylation of other ATM targets, the phosphorylated form of TRF2 is transient, being detected rapidly at DNA damage sites postirradiation, but largely dissipated by 2 hours. In addition, we report that the phosphorylated form of TRF2 is present at telomeres in cell types undergoing telomere-based crisis and a recombination-driven, telomerase-independent, alternative lengthening of telomeres (ALT) pathway, likely as a consequence of a telomere-based DNA damage response. Our results link the induction of TRF2 phosphorylation to the DNA damage-response system, providing an example of direct cross-talk via a signaling pathway between these two major cellular processes essential for genomic stability, telomere maintenance, and DNA repair.
34
A DNA damage checkpoint response in telomere-initiated senescence
Fabrizio d’Adda di Fagagna, Philip M. Reaper, Lorena Clay-Farrace et al. · Nature · 2003 · 2.7K citations
Mammalian Telomeres End in a Large Duplex Loop
Jack D. Griffith, Laurey Comeau, Soraya I. Rosenfield et al. · Cell · 1999 · 2.4K citations · Full text
TRF2 Protects Human Telomeres from End-to-End Fusions
Bas van Steensel, Agata Smogorzewska, Titia de Lange · Cell · 1998 · 1.7K citations · Full text
DNA Damage Foci at Dysfunctional Telomeres
Hiroyuki Takai, Agata Smogorzewska, Titia de Lange · Current Biology · 2003 · 1.4K citations · Full text