DNA damage-induced degradation of Cdc25A does not lead to inhibition of Cdk2 activity in mouse embryonic stem cells
Jazyk angličtina Země Velká Británie, Anglie Médium print
Typ dokumentu časopisecké články, práce podpořená grantem
PubMed
20104581
DOI
10.1002/stem.311
Knihovny.cz E-zdroje
- MeSH
- aktivace enzymů genetika MeSH
- buněčné linie MeSH
- buněčný cyklus genetika MeSH
- CDC geny fyziologie MeSH
- centrozom enzymologie MeSH
- checkpoint kinasa 1 MeSH
- checkpoint kinasa 2 MeSH
- cyklin-dependentní kinasa 2 genetika MeSH
- cytoplazma enzymologie MeSH
- DNA genetika účinky záření MeSH
- embryonální kmenové buňky cytologie enzymologie MeSH
- fosfatasy cdc25 genetika MeSH
- G1 fáze genetika MeSH
- ionizující záření MeSH
- kinasa 3 glykogensynthasy metabolismus MeSH
- kinasa glykogensynthasy 3beta MeSH
- myši MeSH
- oprava DNA MeSH
- poškození DNA genetika MeSH
- protein-serin-threoninkinasy genetika MeSH
- proteinkinasy genetika MeSH
- signální transdukce genetika MeSH
- zvířata MeSH
- Check Tag
- myši MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- Cdc25a protein, mouse MeSH Prohlížeč
- Cdk2 protein, mouse MeSH Prohlížeč
- checkpoint kinasa 1 MeSH
- checkpoint kinasa 2 MeSH
- Chek1 protein, mouse MeSH Prohlížeč
- Chek2 protein, mouse MeSH Prohlížeč
- cyklin-dependentní kinasa 2 MeSH
- DNA MeSH
- fosfatasy cdc25 MeSH
- Gsk3b protein, mouse MeSH Prohlížeč
- kinasa 3 glykogensynthasy MeSH
- kinasa glykogensynthasy 3beta MeSH
- protein-serin-threoninkinasy MeSH
- proteinkinasy MeSH
Cyclin-dependent kinase two (Cdk2) is the major regulator of the G1/S transition and the target of an activated G1 checkpoint in somatic cells. In the presence of DNA damage, Cdk2 kinase activity is abrogated by a deficiency of Cdc25A phosphatase, which is marked by Chk1/Chk2 for proteasomal degradation. Embryonic stem cells (ESCs) lack a G1 checkpoint response. In this study, we analyzed the G1 checkpoint pathways in mouse ESCs (mESCs) in the presence of DNA double-strand breaks evoked by ionizing radiation (IR). We show that checkpoint pathways, which operate during G1 phase in somatic cells, are activated in mESCs after IR; however, Cdk2 activity is not abolished. We demonstrate that Cdc25A is degraded in mESCs, but this degradation is not regulated by Chk1 and Chk2 kinases because they are sequestered to the centrosome. Instead, Cdc25A degradation is governed by glycogen synthase kinase-3beta kinase. We hypothesize that Cdc25A degradation does not inhibit Cdk2 activity because a considerable proportion of Cdk2 molecules localize to the cytoplasm and centrosomes in mESCs, where they may be sheltered from regulation by nuclear Cdc25A. Finally, we show that a high Cdk2 activity, which is irresponsive to DNA damage, is the driving force of the rapid escape of mESCs from G1 phase after DNA damage.
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