Biology Department, Boston College, 140 Commonwealth Avenue, Chestnut Hill, MA 02467, USA.
Differentiation. 2011 Feb;81(2):133-40. doi: 10.1016/j.diff.2010.11.001. Epub 2010 Dec 8.
CPEB-mediated polyadenylation-induced translation of several developmentally important mRNAs drives Xenopus laevis oocyte meiotic progression and production of fertilizable eggs. To date, the signal transduction events that induce CPEB activation remain somewhat unclear, however, XGef has been shown to be involved in this process. P42 MAPK (ERK2) activity and XRINGO accumulation are also required for the activating phosphorylation of CPEB. We show here that XGef activity influences the early meiotic function of XRINGO/CDK1, a novel component of the progesterone signaling pathway. An XGef-specific antibody depresses XRINGO-induced GVBD, whereas XGef overexpression accelerates this process. XGef and CPEB interact with XRINGO in immature and maturing oocyte extracts and XGef, XRINGO and ERK2 interact directly in vitro. These data suggest that an XGef/XRINGO/ERK2/CPEB complex forms in ovo during early meiotic resumption. Notably, specific inhibition of XRINGO/CDK1 activity in CPEB phosphorylation-competent extracts completely blocks phosphorylation of CPEB, which suggests that XRINGO/CDK1 directly phosphorylates CPEB. Finally, overexpression of XGef (65-360), which cannot bind CPEB or ERK2, but is capable of XRINGO association, blocks XRINGO-induced meiotic progression potentially through titration of endogenous XRINGO. Combined, our results suggest that XGef is involved in XRINGO/CDK1 mediated activation of CPEB and that an XGef/XRINGO/ERK2/CPEB complex forms in ovo to facilitate this process.
CPEB 介导的多聚腺苷酸化诱导的几种发育重要的 mRNAs 的翻译驱动非洲爪蟾卵母细胞减数分裂进展和可受精卵子的产生。迄今为止,诱导 CPEB 激活的信号转导事件仍然有些不清楚,然而,XGef 已被证明参与了这个过程。P42 MAPK(ERK2)活性和 XRINGO 的积累也需要 CPEB 的激活磷酸化。我们在这里表明,XGef 活性影响 XRINGO/CDK1 的早期减数分裂功能,这是孕酮信号通路的一个新组成部分。XGef 特异性抗体抑制 XRINGO 诱导的 GVBD,而 XGef 过表达加速这个过程。XGef 和 CPEB 与不成熟和成熟卵母细胞提取物中的 XRINGO 相互作用,XGef、XRINGO 和 ERK2 直接在体外相互作用。这些数据表明,在早期减数恢复期间,在卵中形成了一个 XGef/XRINGO/ERK2/CPEB 复合物。值得注意的是,在 CPEB 磷酸化能力的提取物中,XRINGO/CDK1 活性的特异性抑制完全阻断了 CPEB 的磷酸化,这表明 XRINGO/CDK1 直接磷酸化 CPEB。最后,XGef(65-360)的过表达,它不能结合 CPEB 或 ERK2,但能够与 XRINGO 结合,通过内源性 XRINGO 的滴定来阻断 XRINGO 诱导的减数分裂进展,这表明 XGef 参与了 XRINGO/CDK1 介导的 CPEB 激活,并且在卵中形成了一个 XGef/XRINGO/ERK2/CPEB 复合物来促进这个过程。