A human Cds1-related kinase that functions downstream of ATM protein in the cellular response to DNA damage
- Alexandra L. Brown*,
- Chang-Hun Lee*,
- Julie K. Schwarz†,
- Nesanet Mitiku*,
- Helen Piwnica-Worms†,‡, and
- Jay H. Chung*,§
- *Molecular Hematology Branch, National Heart, Lung, and Blood Institute, National Institutes of Health, Building 10-7D13, 10 Center Drive, Bethesda, MD, 20892-1654; and †Department of Cell Biology and Physiology and ‡Howard Hughes Medical Institute, Washington University School of Medicine, Box 8228, 660 South Euclid Avenue, St. Louis, MO 63110
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Communicated by Joan V. Ruderman, Harvard Medical School, Boston, MA (received for review November 21, 1998)
Abstract
Checkpoints maintain the order and fidelity of the eukaryotic cell cycle, and defects in checkpoints contribute to genetic instability and cancer. Much of our current understanding of checkpoints comes from genetic studies conducted in yeast. In the fission yeast Schizosaccharomyces pombe (Sp), SpRad3 is an essential component of both the DNA damage and DNA replication checkpoints. The SpChk1 and SpCds1 protein kinases function downstream of SpRad3. SpChk1 is an effector of the DNA damage checkpoint and, in the absence of SpCds1, serves an essential function in the DNA replication checkpoint. SpCds1 functions in the DNA replication checkpoint and in the S phase DNA damage checkpoint. Human homologs of both SpRad3 and SpChk1 but not SpCds1 have been identified. Here we report the identification of a human cDNA encoding a protein (designated HuCds1) that shares sequence, structural, and functional similarity to SpCds1. HuCds1 was modified by phosphorylation and activated in response to ionizing radiation. It was also modified in response to hydroxyurea treatment. Functional ATM protein was required for HuCds1 modification after ionizing radiation but not after hydroxyurea treatment. Like its fission yeast counterpart, human Cds1 phosphorylated Cdc25C to promote the binding of 14-3-3 proteins. These findings suggest that the checkpoint function of HuCds1 is conserved in yeast and mammals.
Footnotes
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↵ § To whom reprint requests should be addressed. e-mail: jhchung{at}helix.nih.gov.
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Data deposition: The sequence reported in this paper has been deposited in the GenBank database (accession no. AF096279).
- ABBREVIATIONS:
- HU,
- hydroxyurea;
- AT,
- ataxia telangiectasia;
- ATM,
- AT mutated;
- ATR,
- AT- and rad3+-related;
- FHA,
- fork head associated;
- PI,
- phosphoinositide;
- GFP,
- green fluorescent protein;
- GST,
- glutathione S-transferase
- Copyright © 1999, The National Academy of Sciences








