Phosphorylation of Xenopus Cdc25C at Ser285 Interferes with Ability to Activate a DNA Damage Replication Checkpoint in Pre-Midblastula Embryos

被引:24
作者
Bulavin, Dmitry V. [1 ]
Demidenko, Zoya N. [2 ]
Phillips, Crissy [1 ]
Moody, Sally A. [2 ]
Fornace, Albert J., Jr. [1 ]
机构
[1] NCI, Gene Response Sect, NIH, Bethesda, MD 20892 USA
[2] George Washington Univ, Med Ctr, Dept Anat & Cell Biol, Washington, DC 20037 USA
关键词
Cdc25C; Chk1; DNA damage; Checkpoints; Phosphorylation; Xenopus; pre-MBT embryo;
D O I
10.4161/cc.2.3.396
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
We have recently demonstrated that negative regulation of human Cdc25 protein phosphatases by phosphorylation at their 14-3-3 site can be antagonized through phosphorylation at an adjacent site in the -2 position. 1 Based on structural homology for different Cdc25 phosphatases, a similar regulatory pathway also could be conserved in Xenopus embryos, where cell cycle checkpoints are not operational prior to the Midblastula Transition (MBT). Here, we demonstrate that before MBT, XeCdc25C is phosphorylated on Ser285, an analogous site to Ser214 in human Cdc25C or Ser307 in Cdc25B.(1) Phosphorylation of Ser285 prevents subsequent inhibitory phosphorylation of XeCdc25C on Ser287, thus maintaining XeCdc25C in an active form. Mutation of Ser285 to alanine allows the reconstitution of a DNA damage replication checkpoint. This effect is completely dependent on Ser287 phosphorylation as additional mutation of Ser287 to alanine fully reversed the cell cycle inhibitory effect of Ser285A XeCdc25C. We propose that phosphorylation of XeCdc25C Ser285 may account for the lack of a DNA replication checkpoint in cleaving Xenopus embryos prior to the MBT.
引用
收藏
页码:263 / 266
页数:4
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