首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Ringo/Cyclin-dependent Kinase and Mitogen-activated Protein Kinase Signaling Pathways Regulate the Activity of the Cell Fate Determinant Musashi to Promote Cell Cycle Re-entry in Xenopus Oocytes
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Ringo/Cyclin-dependent Kinase and Mitogen-activated Protein Kinase Signaling Pathways Regulate the Activity of the Cell Fate Determinant Musashi to Promote Cell Cycle Re-entry in Xenopus Oocytes

机译:Ringo /细胞周期蛋白依赖性激酶和丝裂原激活的蛋白激酶信号通路调节细胞命运决定因素武藏的活动以促进非洲爪蟾卵母细胞的细胞周期再进入。

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摘要

Cell cycle re-entry during vertebrate oocyte maturation is mediated through translational activation of select target mRNAs, culminating in the activation of mitogen-activated protein kinase and cyclin B/cyclin-dependent kinase (CDK) signaling. The temporal order of targeted mRNA translation is crucial for cell cycle progression and is determined by the timing of activation of distinct mRNA-binding proteins. We have previously shown in oocytes from Xenopus laevis that the mRNA-binding protein Musashi targets translational activation of early class mRNAs including the mRNA encoding the Mos proto-oncogene. However, the molecular mechanism by which Musashi function is activated is unknown. We report here that activation of Musashi1 is mediated by Ringo/CDK signaling, revealing a novel role for early Ringo/CDK function. Interestingly, Musashi1 activation is subsequently sustained through mitogen-activated protein kinase signaling, the downstream effector of Mos mRNA translation, thus establishing a positive feedback loop to amplify Musashi function. The identified regulatory sites are present in mammalian Musashi proteins, and our data suggest that phosphorylation may represent an evolutionarily conserved mechanism to control Musashi-dependent target mRNA translation.
机译:脊椎动物卵母细胞成熟过程中的细胞周期再进入是通过选择靶标mRNA的翻译激活介导的,最终激活丝裂原激活的蛋白激酶和细胞周期蛋白B /细胞周期蛋白依赖性激酶(CDK)信号传导。靶向的mRNA翻译的时间顺序对于细胞周期进程至关重要,并由不同的mRNA结合蛋白的激活时间决定。我们以前已经在非洲爪蟾的卵母细胞中显示,mRNA结合蛋白Musashi靶向早期类mRNA的翻译激活,包括编码Mos原癌基因的mRNA。但是,激活武藏功能的分子机制尚不清楚。我们在这里报告说,Musashi1的激活是由Ringo / CDK信号传导介导的,揭示了早期Ringo / CDK功能的新型作用。有趣的是,Musashi1的激活随后通过促分裂原活化的蛋白激酶信号传导(Mos mRNA翻译的下游效应子)得以持续,从而建立了一个正反馈回路来放大Musashi功能。哺乳动物的Musashi蛋白中存在已确定的调控位点,我们的数据表明磷酸化可能代表了一种进化上保守的机制,可以控制Musashi依赖性靶mRNA的翻译。

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