Chk1 is activated transiently and targets Cdc25A for degradation at the Xenopus midblastula transition
Open Access
- 15 July 2002
- journal article
- research article
- Published by Springer Nature in The EMBO Journal
- Vol. 21 (14) , 3694-3703
- https://doi.org/10.1093/emboj/cdf357
Abstract
In Xenopus embryos, cell cycle elongation and degradation of Cdc25A (a Cdk2 Tyr15 phosphatase) occur naturally at the midblastula transition (MBT), at which time a physiological DNA replication checkpoint is thought to be activated by the exponentially increased nucleo‐cytoplasmic ratio. Here we show that the checkpoint kinase Chk1, but not Cds1 (Chk2), is activated transiently at the MBT in a maternal/zygotic gene product‐regulated manner and is essential for cell cycle elongation and Cdc25A degradation at this transition. A constitutively active form of Chk1 can phosphorylate Cdc25A in vitro and can target it rapidly for degradation in pre‐MBT embryos. Intriguingly, for this degradation, however, Cdc25A also requires a prior Chk1‐independent phosphorylation at Ser73. Ectopically expressed human Cdc25A can be degraded in the same way as Xenopus Cdc25A. Finally, Cdc25A degradation at the MBT is a prerequisite for cell viability at later stages. Thus, the physiological replication checkpoint is activated transiently at the MBT by developmental cues, and activated Chk1, only together with an unknown kinase, targets Cdc25A for degradation to ensure later development.Keywords
This publication has 48 references indexed in Scilit:
- Cell cycle checkpoint signaling through the ATM and ATR kinasesGenes & Development, 2001
- Rapid Destruction of Human Cdc25A in Response to DNA DamageScience, 2000
- Implications for Chk1 Regulation: The 1.7 Å Crystal Structure of Human Cell Cycle Checkpoint Kinase Chk1Cell, 2000
- DNA Damage and Checkpoint PathwaysCell, 1998
- Atm-Deficient Mice: A Paradigm of Ataxia TelangiectasiaCell, 1996
- Diversification of cell cycle controls in developing embryosCurrent Opinion in Cell Biology, 1995
- Identification of a developmental timer regulating the stability of embryonic cyclin A and a new somatic A-type cyclin at gastrulation.Genes & Development, 1995
- Completion of DNA replication is monitored by a feedback system that controls the initiation of mitosis in vitro: Studies in XenopusCell, 1990
- The c-mos proto-oncogene product is a cytostatic factor responsible for meiotic arrest in vertebrate eggsNature, 1989
- A major developmental transition in early xenopus embryos: I. characterization and timing of cellular changes at the midblastula stageCell, 1982