Salaün Patrick, Le Breton Magali, Morales Julia, Bellé Robert, Boulben Sandrine, Mulner-Lorillon Odile, Cormier Patrick
Station Biologique de Roscoff, Université Pierre et Marie Curie (EI 37), Centre National de la Recherche Scientifique (CNRS, FRE 2775), Institut National des Sciences de l'Univers (INSU). BP 74, 29682 Roscoff, France.
Exp Cell Res. 2004 Jun 10;296(2):347-57. doi: 10.1016/j.yexcr.2004.02.013.
In sea urchins, fertilization triggers a rapid rise in protein synthesis necessary for activation of CDK1/cyclin B, the universal cell cycle regulator. It has been shown that FRAP/mTOR is required for eIF4E release from the translational repressor 4E-BP, a process that occurs upstream of de novo cyclin B synthesis. Here, we investigate whether PI 3-kinase acts independently or upstream from FRAP/mTOR in the signal transduction pathway that links fertilization to the activation of the CDK1/cyclin B complex in sea urchin egg. We found that wortmannin, a potent inhibitor of PI 3-kinase, partially inhibited the global increase in protein synthesis triggered by fertilization. Furthermore, wortmannin treatment induced partial inhibition of cyclin B translation triggered by fertilization, in correlation with an intermediate effect of the drug on 4E-BP degradation and on the dissociation of the 4E-BP/eIF4E complex induced by fertilization. Our results presented here suggest that PI 3-kinase activity is required for completion of mitotic divisions of the sea urchin embryo. Incubation of eggs with wortmannin or microinjection of wortmannin or LY 294002 affects drastically mitotic divisions induced by fertilization. In addition, we found that wortmannin treatment inhibits dephosphorylation of the tyrosine inhibitory site of CDK1. Taken together, these data suggest that PI 3-kinase acts upstream of at least two independent targets that function in the CDK1/cyclin B activation triggered by fertilization of sea urchin oocytes. We discuss the significance of these results concerning the cascade of reactions that impinge upon the activation of the CDK1/cyclin B complex that follows sea urchin oocyte fertilization.
在海胆中,受精会引发蛋白质合成的迅速增加,这是激活CDK1/细胞周期蛋白B(一种通用的细胞周期调节因子)所必需的。研究表明,FRAP/mTOR是eIF4E从翻译抑制因子4E-BP释放所必需的,这一过程发生在细胞周期蛋白B从头合成的上游。在此,我们研究了PI 3激酶在将受精与海胆卵中CDK1/细胞周期蛋白B复合物激活相联系的信号转导途径中,是独立发挥作用还是在FRAP/mTOR的上游发挥作用。我们发现,渥曼青霉素(一种有效的PI 3激酶抑制剂)部分抑制了受精引发的蛋白质合成的整体增加。此外,渥曼青霉素处理导致受精引发的细胞周期蛋白B翻译受到部分抑制,这与该药物对4E-BP降解以及受精诱导的4E-BP/eIF4E复合物解离的中间效应相关。我们在此呈现的结果表明,PI 3激酶活性是海胆胚胎有丝分裂完成所必需的。用渥曼青霉素孵育卵或显微注射渥曼青霉素或LY 294002会极大地影响受精诱导的有丝分裂。此外,我们发现渥曼青霉素处理会抑制CDK1酪氨酸抑制位点的去磷酸化。综上所述,这些数据表明PI 3激酶在由海胆卵母细胞受精触发的CDK1/细胞周期蛋白B激活中,至少在两个独立靶点的上游发挥作用。我们讨论了这些结果对于影响海胆卵母细胞受精后CDK1/细胞周期蛋白B复合物激活的一系列反应的意义。