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Vol. 14, Issue 9, 3898-3910, September 2003
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* Genome Damage and Stability Centre, University of Sussex, Falmer, Brighton, BN19RQ, United Kingdom;
School of Biological Sciences, University of Sussex, Falmer, Brighton, BN19QG, United Kingdom
Submitted March 7, 2003;
Revised April 30, 2003;
Accepted April 30, 2003
Monitoring Editor: Mark Solomon
The DNA damage/replication checkpoints act by sensing the presence of damaged DNA or stalled replication forks and initiate signaling pathways that arrest cell cycle progression. Here we report the cloning and characterization of Xenopus orthologues of the RFCand PCNA-related checkpoint proteins. XRad17 shares regions of homology with the five subunits of Replication factor C. XRad9, XRad1, and XHus1 (components of the 9-1-1 complex) all show homology to the DNA polymerase processivity factor PCNA. We demonstrate that these proteins associate with chromatin and are phosphorylated when replication is inhibited by aphidicolin. Phosphorylation of X9-1-1 is caffeine sensitive, but the chromatin association of XRad17 and the X9-1-1 complex after replication block is unaffected by caffeine. This suggests that the X9-1-1 complex can associate with chromatin independently of XAtm/XAtr activity. We further demonstrate that XRad17 is essential for the chromatin binding and checkpoint-dependent phosphorylation of X9-1-1 and for the activation of XChk1 when the replication checkpoint is induced by aphidicolin. XRad17 is not, however, required for the activation of XCds1 in response to dsDNA ends.
Article published online ahead of print. Mol. Biol. Cell 10.1091/mbc.E03030138. Article and publication date are available at www.molbiolcell.org/cgi/doi/10.1091/mbc.E03-03-0138.
Corresponding author. E-mail address: h.d.lindsay{at}sussex.ac.uk.
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