Options
Cell cycle-dependent formation of Cdc45-Claspin complexes in human cells is compromized by UV-mediated DNA damage
Date Issued
2013-08-27
Date Available
2013-11-29T09:50:30Z
Abstract
The replication factor Cdc45 has essential functions in the initiation and elongation steps of eukaryotic DNA replication and plays an important role in the intra-S-phase checkpoint. Its interactions with other replication proteins during the cell cycle and after intra-S-phase checkpoint activation are only partially characterized. In the present study, we show that the C terminal part of Cdc45 may mediate its interactions with Claspin. The interactions of human Cdc45 with the three replication factors Claspin, replication protein A and DNA polymerase δ are maximal during the S phase. Following UVC-induced DNA damage, Cdc45–Claspin complex formation is reduced, whereas the binding of Cdc45 to replication protein A is not affected. We also show that treatment of cells with UCN-01 and phosphatidylinositol 3-kinase-like kinase inhibitors does not rescue the UV-induced destabilization of Cdc45–Claspin interactions, suggesting that the loss of the interaction between Cdc45 and Claspin occurs upstream of ataxia telangiectasia and Rad 3-related activation in the intra-S-phase checkpoint.
Other Sponsorship
SFI Grant 07/RFP/GENF472 & 08/IN.1/B2064
Type of Material
Journal Article
Publisher
Wiley Blackwell (Blackwell Publishing)
Journal
FEBS Journal
Volume
280
Issue
19
Start Page
4888
End Page
4902
Copyright (Published Version)
2013 Wiley Blackwell (Blackwell Publishing)
Language
English
Status of Item
Peer reviewed
This item is made available under a Creative Commons License
File(s)
Loading...
Name
Paper105.pdf
Size
2.4 MB
Format
Adobe PDF
Checksum (MD5)
f10f352026c717202dd67a8198b00fe7
Owning collection