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首页> 外文期刊>Cell cycle >Phosphorylation of Cdc25C by pp90Rsk contributes to a G2 cell cycle arrest in Xenopus cycling egg extracts.
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Phosphorylation of Cdc25C by pp90Rsk contributes to a G2 cell cycle arrest in Xenopus cycling egg extracts.

机译:pp90Rsk将Cdc25C磷酸化有助于非洲爪蟾循环卵提取物中G2细胞周期的阻滞。

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摘要

In unfertilized Xenopus eggs, the p42 mitogen activated protein kinase (p42MAPK) pathway is known to maintain cell cycle arrest at metaphase of meiosis II. However, constitutive activation of p42MAPK in post-meiotic, cycling Xenopus egg extracts can lead to either a G2 or M-phase arrest of the cell cycle, depending on the timing of p42MAPK activation. Here, we examined the molecular mechanism by which activation of the p42MAPK pathway during interphase leads to cell cycle arrest in G2. When either a recombinant wild type Cdc25C(WT) or a mutated form of Cdc25C, in which serine 287 was replaced by an alanine (S287A), was added to cycling egg extracts, S287A accelerated entry into M-phase. Furthermore, the addition of S287A overcame the G2 arrest caused by p42MAPK, driving the extract into M-phase. p90Rsk a kinase that is the target of p42MAPK, was phosphorylated and activated (pp90Rsk) in the G2-arrested egg extracts, and was able to phosphorylate WT but not S287A in vitro. 14-3-3 proteins were associated with endogenous Cdc25C in G2-arrested extracts. Cdc25C(WT) that had been phosphorylated by pp90(Rsk) bound 14-3-3zeta, whereas S287A could not. These data suggest that the link between the p42MAPK signaling pathway and Cdc25C involves the activation of pp90Rsk and its phosphorylation of Cdc25C at S287, causing the binding of 14-3-3 proteins. We propose that the binding of 14-3-3 proteins to pp90Rsk phosphorylated-Cdc25C results in a G2 arrest in a manner similar to the cell cycle delays induced by differentiation signals that occur later in embryonic development.
机译:在未受精的非洲爪蟾卵中,已知p42丝裂原活化蛋白激酶(p42MAPK)途径可在减数分裂II中期维持细胞周期停滞。但是,减数分裂后循环爪蟾卵提取物中p42MAPK的组成性激活可能导致细胞周期的G2或M期停滞,具体取决于p42MAPK激活的时间。在这里,我们检查了分子机制,通过这种分子机制在相间期激活p42MAPK途径导致G2细胞周期停滞。将重组的野生型Cdc25C(WT)或突变形式的Cdc25C(其中丝氨酸287被丙氨酸替代)(S287A)添加到循环卵提取物中时,S287A加速进入M期。此外,S287A的添加克服了由p42MAPK引起的G2阻滞,使提取物进入M期。 p90Rsk是p42MAPK的靶标激酶,在被G2阻滞的卵提取物中被磷酸化和激活(pp90Rsk),并且能够在体外磷酸化WT,但不能磷酸化S287A。 14-3-3蛋白与G2捕集的提取物中的内源性Cdc25C相关。已被pp90(Rsk)磷酸化的Cdc25C(WT)结合了14-3-3zeta,而S287A不能。这些数据表明,p42MAPK信号传导途径与Cdc25C之间的联系涉及pp90Rsk的激活及其在S287处Cdc25C的磷酸化,从而导致14-3-3蛋白的结合。我们提出,将14-3-3蛋白与pp90Rsk磷酸化的Cdc25C结合会导致G2阻滞,其方式类似于在胚胎发育后期发生的分化信号所诱导的细胞周期延迟。

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