Nakajo N, Oe T, Uto K, Sagata N
Faculty of Science, Kyushu University, Hakozaki 6-10-1, Fukuoka, 812-8581, Japan.
Dev Biol. 1999 Mar 15;207(2):432-44. doi: 10.1006/dbio.1998.9178.
Chk1 kinase, a DNA damage/replication G2 checkpoint kinase, has recently been shown to phosphorylate and inhibit Cdc25C, a Cdc2 Tyr-15 phosphatase, thereby directly linking the G2 checkpoint to negative regulation of Cdc2. Immature Xenopus oocytes are arrested naturally at the first meiotic prophase (prophase I) or the late G2 phase, with sustained Cdc2 Tyr-15 phosphorylation. Here we have cloned a Xenopus homolog of Chk1, determined its developmental expression, and examined its possible role in prophase I arrest of oocytes. Xenopus Chk1 protein is expressed at approximately constant levels throughout oocyte maturation and early embryogenesis. Overexpression of wild-type Chk1 in oocytes prevents the release from prophase I arrest by progesterone. Conversely, specific inhibition of endogenous Chk1 either by overexpression of a dominant-negative Chk1 mutant or by injection of a neutralizing anti-Chk1 antibody facilitates prophase I release by progesterone. Moreover, when ectopically expressed in oocytes, a Chk1-nonphosphorylatable Cdc25C mutant alone can induce prophase I release much more efficiently than wild-type Cdc25C; if endogenous Chk1 function is inhibited, however, even wild-type Cdc25C can induce the release very efficiently. These results suggest strongly that Chk1 is involved in physiological prophase I arrest of Xenopus oocytes via the direct phosphorylation and inhibition of Cdc25C. We discuss the possibility that Chk1 might function either as a G2 checkpoint kinase or as an ordinary cell cycle regulator in prophase-I-arrested oocytes.
Chk1激酶是一种DNA损伤/复制G2期检查点激酶,最近研究表明它可磷酸化并抑制Cdc25C(一种Cdc2 Tyr-15磷酸酶),从而将G2期检查点与Cdc2的负调控直接联系起来。未成熟的非洲爪蟾卵母细胞自然停滞于第一次减数分裂前期(前期I)或G2晚期,Cdc2 Tyr-15持续磷酸化。在此,我们克隆了非洲爪蟾Chk1的同源物,确定了其发育表达情况,并研究了它在卵母细胞前期I停滞中可能发挥的作用。非洲爪蟾Chk1蛋白在整个卵母细胞成熟和早期胚胎发育过程中表达水平大致恒定。在卵母细胞中过表达野生型Chk1可阻止孕酮诱导的从前期I停滞中的释放。相反,通过过表达显性负性Chk1突变体或注射中和性抗Chk1抗体特异性抑制内源性Chk1,可促进孕酮诱导的前期I释放。此外,当在卵母细胞中异位表达时,单独的一种Chk1不可磷酸化的Cdc25C突变体比野生型Cdc25C能更有效地诱导前期I释放;然而,如果内源性Chk1功能被抑制,即使是野生型Cdc25C也能非常有效地诱导释放。这些结果有力地表明,Chk1通过直接磷酸化并抑制Cdc25C参与非洲爪蟾卵母细胞的生理性前期I停滞。我们讨论了Chk1可能作为G2期检查点激酶或作为前期I停滞卵母细胞中的普通细胞周期调节因子发挥作用的可能性。