Inhibition of Chk1 by CEP-3891 Accelerates Mitotic Nuclear Fragmentation in Response to Ionizing Radiation
- 15 December 2004
- journal article
- Published by American Association for Cancer Research (AACR) in Cancer Research
- Vol. 64 (24) , 9035-9040
- https://doi.org/10.1158/0008-5472.can-04-2434
Abstract
The human checkpoint kinase Chk1 has been suggested as a target for cancer treatment. Here, we show that a new inhibitor of Chk1 kinase, CEP-3891, efficiently abrogates both the ionizing radiation (IR)-induced S and G2 checkpoints. When the checkpoints were abrogated by CEP-3891, the majority (64%) of cells showed fragmented nuclei at 24 hours after IR (6 Gy). The formation of nuclear fragmentation in IR-treated human cancer cells was directly visualized by time-lapse video microscopy of U2-OS cells expressing a green fluorescent protein-tagged histone H2B protein. Nuclear fragmentation occurred as a result of defective chromosome segregation when irradiated cells entered their first mitosis, either prematurely without S and G2 checkpoint arrest in the presence of CEP-3891 or after a prolonged S and G2 checkpoint arrest in the absence of CEP-3891. The nuclear fragmentation was clearly distinguishable from apoptosis because caspase activity and nuclear condensation were not induced. Finally, CEP-3891 not only accelerated IR-induced nuclear fragmentation, it also increased the overall cell killing after IR as measured in clonogenic survival assays. These results demonstrate that transient Chk1 inhibition by CEP-3891 allows premature mitotic entry of irradiated cells, thereby leading to accelerated onset of mitotic nuclear fragmentation and increased cell death.Keywords
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This publication has 42 references indexed in Scilit:
- Sensitization to the Lysosomal Cell Death Pathway upon Immortalization and TransformationCancer Research, 2004
- Caffeine inhibits homology-directed repair of I-SceI-induced DNA double-strand breaksOncogene, 2004
- An ATR- and Chk1-Dependent S Checkpoint Inhibits Replicon Initiation following UVC-Induced DNA DamageMolecular and Cellular Biology, 2002
- Therapeutic Exploitation of Checkpoint Defects in Cancer Cells Lacking p53 FunctionCell Cycle, 2002
- Activation of mammalian Chk1 during DNA replication arrestThe Journal of cell biology, 2001
- Absence of Apparent Phenotype in Mice Lacking Cdc25C Protein PhosphataseMolecular and Cellular Biology, 2001
- Checkpoint Adaptation Precedes Spontaneous and Damage-Induced Genomic Instability in YeastMolecular and Cellular Biology, 2001
- How does radiation kill cells?Current Opinion in Chemical Biology, 1999
- Direct evidence that radiation induced micronuclei of early embryos require a mitosis for expressionRadiation and Environmental Biophysics, 1991
- The effects of ionizing radiation on cell cycle progression in ataxia telangiectasiaMutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 1984