The Chk1/Cdc25A Pathway as Activators of the Cell Cycle in Neuronal Death Induced by Camptothecin
Open Access
- 23 August 2006
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 26 (34) , 8819-8828
- https://doi.org/10.1523/jneurosci.2593-06.2006
Abstract
Cell cycle regulators appear to play a paradoxical role in neuronal death. We have shown previously that cyclin-dependent kinases (CDKs), along with their downstream effectors, Rb (retinoblastoma) and E2F/DP1 (E2 promoter binding factor/deleted in polyposis 1), regulate neuronal death evoked by the DNA damaging agent camptothecin. However, the mechanism by which CDKs are activated in this model is unclear. The cell division cycle 25A (Cdc25A) phosphatase is a critical regulator of cell cycle CDKs in proliferating cells. In cortical neurons, we presently show that expression of Cdc25A promotes death even in the absence of DNA damage. Importantly, Cdc25A activity is rapidly increased during DNA damage treatment. Inhibition of Cdc25A blocks death and reduces cyclin D1-associated kinase activity and Rb phosphorylation. This indicates that endogenous Cdc25A activity is important for regulation of cell cycle-mediated neuronal death. We also examined how Cdc25A activity is regulated after DNA damage. Cultured embryonic cortical neurons have a significant basal activity of checkpoint kinase 1 (Chk1), a kinase that regulates cell cycle arrest. During camptothecin treatment of neurons, this activity is rapidly downregulated with a concomitant increase in Cdc25A activity. Importantly, expression of wild-type Chk1, but not kinase-dead Chk1, inhibits the camptothecin-induced increase in Cdc25A activity. In addition, Chk1 expression also promotes survival in the presence of the DNA-damaging agent. Together, our data suggest that a Chk1/Cdc25A activity participates in activation of a cell cycle pathway-mediated death signal in neurons. These data also define how a proliferative signal may be abnormally activated in a postmitotic environment.Keywords
This publication has 75 references indexed in Scilit:
- Cell‐cycle regulators are involved in transient cerebral ischemia induced neuronal apoptosis in female ratsFEBS Letters, 2005
- Role of cyclin D1 cytoplasmic sequestration in the survival of postmitotic neuronsOncogene, 2003
- Regulation of the Retinoblastoma-Dependent Mdm2 and E2F-1 Signaling Pathways during Neuronal ApoptosisMolecular and Cellular Neuroscience, 2001
- The Cell Cycle Cdc25A Tyrosine Phosphatase Is Activated in Degenerating Postmitotic Neurons in Alzheimer's DiseaseThe American Journal of Pathology, 2000
- Induction and Modulation of Cerebellar Granule Neuron Death by E2F-1Published by Elsevier ,2000
- E2F1 Mediates Death of B-amyloid-treated Cortical Neurons in a Manner Independent of p53 and Dependent on Bax and Caspase 3Journal of Biological Chemistry, 2000
- Involvement of Cell Cycle Elements, Cyclin-dependent Kinases, pRb, and E2F·DP, in B-amyloid-induced Neuronal DeathJournal of Biological Chemistry, 1999
- Involvement of p53 in DNA Strand Break‐induced Apoptosis in Postmitotic CNS NeuronsEuropean Journal of Neuroscience, 1996
- Requirement for tyrosine phosphorylation of Cdk4 in Gl arrest induced by ultraviolet irradiationNature, 1995
- Induction and rejoining of radiation-induced DNA single-strand breaks: “tail moment” as a function of position in the cell cycleMutation Research/DNA Repair, 1993