首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >G_2 arrest in Xenopus oocytes depends on phosphorylation of cdc25 by protein kinase A
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G_2 arrest in Xenopus oocytes depends on phosphorylation of cdc25 by protein kinase A

机译:爪蟾卵母细胞中的G_2阻滞取决于蛋白激酶A对cdc25的磷酸化作用

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Xenopus oocytes, which are arrested in G_2 of meiosis I, contain complexes of cyclin B―cdc2 (M phase-promoting factor) that are kept repressed by inhibitory phosphorylations on cdc2 at Thr-14 and Tyr-15. Progesterone induces a cytoplasmic signaling pathway that leads to activation of cdc25, the phosphatase that removes these phosphorylations, catalyzing entry into M phase. It has been known for 25 years that high levels of cAMP and protein kinase A (PKA) are required to maintain the G_2 arrest and that a drop in PKA activity is required for M phase-promoting factor activation, but no physiological targets of PKA have been identified. We present evidence that cdc25 is a critical target of PKA. (ⅰ) In vitro, cdc25 Ser-287 serves as a major site of phosphorylation by PKA, resulting in sequestration by 14-3-3. (ⅱ) Endogenous cdc25 is phosphorylated on Ser-287 in oocytes and dephosphorylated in response to progesterone just before cdc2 dephosphorylation and M-phase entry. (ⅲ) High PKA activity maintains phosphorylation of Ser-287 in vivo, whereas inhibition of PKA by its heat-stable inhibitor (PKI) induces dephosphorylation of Ser-287. (ⅳ) Overexpression of mutant cdc25 (S287A) bypasses the ability of PKA to maintain oocytes in G_2 arrest. These findings argue that cdc25 is a physiologically relevant target of PKA in oocytes. In the early embryonic cell cycles, Ser-287 is phosphorylated during interphase and dephosphorylated just before cdc2 activation and mitotic entry. Thus, in addition to its role in checkpoint arrest, cdc25 Ser-287 serves as a site for regulation during normal, unperturbed cell cycles.
机译:被停在减数分裂I的G_2中的非洲爪蟾卵母细胞含有细胞周期蛋白B-cdc2(M相促进因子)复合物,这些复合物在Thr-14和Tyr-15上被cdc2的抑制性磷酸化所抑制。孕酮诱导细胞质信号转导途径,从而导致cdc25活化,磷酸酶去除这些磷酸化,催化进入M期。 25年以来,已知需要高水平的cAMP和蛋白激酶A(PKA)来维持G_2阻滞,并且MKA促进M期激活因子激活需要PKA活性下降,但是PKA的生理学指标没有被确定。我们提供的证据表明,cdc25是PKA的关键靶标。 (ⅰ)在体外,cdc25 Ser-287是PKA磷酸化的主要位点,导致14-3-3被隔离。 (ⅱ)内源性cdc25在卵母细胞中在Ser-287上被磷酸化,并响应于孕酮而在cdc2脱磷酸化和M期进入之前脱磷酸化。 (ⅲ)高的PKA活性在体内维持Ser-287的磷酸化,而通过其热稳定抑制剂(PKI)抑制PKA诱导Ser-287的去磷酸化。 (ⅳ)突变型cdc25(S287A)的过表达绕过了PKA维持卵母细胞G_2停滞的能力。这些发现表明,cdc25是卵母细胞中PKA的生理相关靶标。在早期胚胎细胞周期中,Ser-287在中间相期间被磷酸化,而在cdc2激活和有丝分裂进入之前被去磷酸化。因此,除了在检查点停滞中发挥作用外,cdc25 Ser-287还可以在正常,稳定的细胞周期中进行调节。

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