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PMID: 16360315 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Rapid PIKK-dependent release of Chk1 from chromatin promotes the DNA-damage checkpoint response.

Current biology : CB ·Vol. 16 ·No. 2 ·2006-01-24 ·Pages 150-9

Smits VA, Reaper PM, Jackson SP

Abstract

Checkpoint signaling pathways are of crucial importance for the maintenance of genomic integrity. Within these pathways, the effector kinase Chk1 plays a central role in mediating cell-cycle arrest in response to DNA damage, and it does so by phosphorylating key cell-cycle regulators. By investigating the subcellular distribution of Chk1 by cell fractionation, we observed that around 20% of it localizes to chromatin during all phases of the cell cycle. Furthermore, we found that in response to DNA damage, Chk1 rapidly dissociates from the chromatin. Significantly, we observed a tight correlation between DNA-damage-induced Chk1 phosphorylation and chromatin dissociation, suggesting that phosphorylated Chk1 does not stably associate with chromatin. Consistent with these events being triggered by active checkpoint signaling, inhibition of the DNA-damage-activated kinases ATR and ATM, or siRNA-mediated downregulation of the DNA-damage mediator proteins Claspin and TopBP1, impaired DNA-damage-induced dissociation of Chk1 from chromatin. Finally, we established that Chk1 phosphorylation occurs at localized sites of DNA damage and that constitutive immobilization of Chk1 on chromatin results in a defective DNA-damage-induced checkpoint arrest. Chromatin association and dissociation appears to be important for proper Chk1 regulation. We propose that in response to DNA damage, PIKK-dependent checkpoint signaling leads to phosphorylation of chromatin-bound Chk1, resulting in its rapid release from chromatin and facilitating the transmission of DNA-damage signals to downstream targets, thereby promoting efficient cell-cycle arrest.

MeSH Terms
Ataxia Telangiectasia Mutated Proteins Cell Cycle Proteins/physiology Cell Line Checkpoint Kinase 1 Chromatin/enzymology DNA Damage DNA-Binding Proteins/physiology Humans Models, Biological Phosphorylation Protein Kinases/metabolism,physiology Protein Processing, Post-Translational Protein Serine-Threonine Kinases/physiology Signal Transduction/radiation effects Tumor Suppressor Proteins/physiology Ultraviolet Rays
Chemicals
Cell Cycle Proteins Chromatin DNA-Binding Proteins Tumor Suppressor Proteins Protein Kinases ATM protein, human ATR protein, human Ataxia Telangiectasia Mutated Proteins CHEK1 protein, human Checkpoint Kinase 1 Protein Serine-Threonine Kinases
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Smits Veronique A J
The Wellcome Trust and Cancer Research UK Gurdon Institute, Tennis Court Road, Cambridge CB2 1QN, United Kingdom. v.a.j.smits@erasmusmc.nl
Reaper Philip M
Jackson Stephen P
Article Info
Journal
Current biology : CB
Abbr.
Curr Biol
ISSN
0960-9822
Published
2006-01-24
Epub
2005-00-15
Pages
150-9
Language
English
Region
England
NLM ID
9107782
Subset
IM
Grants
Wellcome Trust · United Kingdom
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