Shimuta Ken, Nakajo Nobushige, Uto Katsuhiro, Hayano Yoshimasa, Okazaki Kenji, Sagata Noriyuki
Department of Biology, Graduate School of Sciences, Kyushu University, Hakozaki 6-10-1, Fukuoka 812-8581, Japan.
EMBO J. 2002 Jul 15;21(14):3694-703. doi: 10.1093/emboj/cdf357.
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.
在非洲爪蟾胚胎中,细胞周期延长以及Cdc25A(一种Cdk2酪氨酸15磷酸酶)的降解在中囊胚转换(MBT)时自然发生,此时生理DNA复制检查点被认为是由指数增加的核质比激活的。在这里我们表明,检查点激酶Chk1而非Cds1(Chk2)在MBT时以母源/合子基因产物调节的方式被短暂激活,并且对于此转换时的细胞周期延长和Cdc25A降解至关重要。一种组成型活性形式的Chk1在体外可磷酸化Cdc25A,并能在MBT前胚胎中迅速将其靶向降解。然而,有趣的是,对于这种降解,Cdc25A在Ser73处还需要先前不依赖Chk1的磷酸化。异位表达的人Cdc25A可与非洲爪蟾Cdc25A以相同方式降解。最后,MBT时Cdc25A的降解是后期细胞存活的先决条件。因此,生理复制检查点在MBT时由发育线索短暂激活,并且被激活的Chk1仅与一种未知激酶一起将Cdc25A靶向降解以确保后期发育。