Fission Yeast Rad17 Associates with Chromatin in Response to Aberrant Genomic Structures
Open Access
- 1 May 2001
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 21 (10) , 3289-3301
- https://doi.org/10.1128/mcb.21.10.3289-3301.2001
Abstract
Fission yeast checkpoint protein Rad17 is required for the DNA integrity checkpoint responses. A fraction of Rad17 is chromatin bound independent of the other checkpoint proteins throughout the cell cycle. Here we show that in response to DNA damage induced by either methyl methanesulfonate treatment or ionizing radiation, increased levels of Rad17 bind to chromatin. Following S-phase stall induced by hydroxyurea or a cdc22 mutation, the chromatin-bound Rad17 progressively dissociates from the chromatin. After S-phase arrest by hydroxyurea in cds1Δ or rad3Δ cells or by replication mutants, Rad17 remains chromatin bound. Rad17 is able to complex in vivo with an Rfc small subunit, Rfc2, but not with Rfc1. Furthermore, cells with rfc1Δ are checkpoint proficient, suggesting that Rfc1 does not have a role in checkpoint function. A checkpoint-defective mutant protein, Rad17(K118E), which has similar nuclear localization to that of the wild type, is unable to bind ATP and has reduced ability in chromatin binding. Mutant Rad17(K118E) protein also has reduced ability to complex with Rfc2, suggesting that Lys118 of Rad17 plays a role in Rad17-Rfc small-subunit complex formation and chromatin association. However, in therad17.K118E mutant cells, Cds1 can be activated by hydroxyurea. Together, these results suggest that Rad17 binds to chromatin in response to an aberrant genomic structure generated from DNA damage, replication mutant arrest, or hydroxyurea arrest in the absence of Cds1. Rad17 is not required to bind chromatin when genomic structures are protected by hydroxyurea-activated Cds1. The possible checkpoint events induced by chromatin-bound Rad17 are discussed.Keywords
This publication has 56 references indexed in Scilit:
- [56] Molecular genetic analysis of fission yeast Schizosaccharomyces pombePublished by Elsevier ,2004
- Retention of the Human Rad9 Checkpoint Complex in Extraction-resistant Nuclear Complexes after DNA DamagePublished by Elsevier ,2000
- Human DNA Damage Checkpoint Protein hRAD9 Is a 3′ to 5′ ExonucleasePublished by Elsevier ,2000
- A sliding clamp model for the Rad1 family of cell cycle checkpoint proteins.Published by Elsevier ,1999
- Cdc25 Mitotic Inducer Targeted by Chk1 DNA Damage Checkpoint KinaseScience, 1997
- rad -Dependent Response of the chk1 -Encoded Protein Kinase at the DNA Damage CheckpointScience, 1996
- Yeast Checkpoint Genes in DNA Damage Processing: Implications for Repair and ArrestScience, 1995
- A kinase from fission yeast responsible for blocking mitosis in S phaseNature, 1995
- Anatomy of a DNA replication fork revealed by reconstitution of SV40 DNA replication in vitroNature, 1994
- The functions and consensus motifs of nine types of peptide segments that form different types of nucleotide‐binding sitesEuropean Journal of Biochemistry, 1994