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首页> 外文期刊>The Journal of biological chemistry >Fission Yeast Receptor of Activated C Kinase (RACK1) Ortholog Cpc2 Regulates Mitotic Commitment through Wee1 Kinase
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Fission Yeast Receptor of Activated C Kinase (RACK1) Ortholog Cpc2 Regulates Mitotic Commitment through Wee1 Kinase

机译:活化C激酶(Rack1)orthologCPC2通过WEE1激酶调节有丝分裂的酵母受体

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In the fission yeast Schizosaccharomyces pombe, Wee1-dependent inhibitory phosphorylation of the highly conserved Cdc2/Cdk1 kinase determines the mitotic onset when cells have reached a defined size. The receptor of activated C kinase (RACK1) is a scaffolding protein strongly conserved among eukaryotes which binds to other proteins to regulate multiple processes in mammalian cells, including the modulation of cell cycle progression during G1/S transition. We have recently described that Cpc2, the fission yeast ortholog to RACK1, controls from the ribosome the activation of MAPK cascades and the cellular defense against oxidative stress by positively regulating the translation of specific genes whose products participate in the above processes. Intriguingly, mutants lacking Cpc2 display an increased cell size at division, suggesting the existence of a specific cell cycle defect at the G2/M transition. In this work we show that protein levels of Wee1 mitotic inhibitor are increased in cells devoid of Cpc2, whereas the levels of Cdr2, a Wee1 inhibitor, are down-regulated in the above mutant. On the contrary, the kinetics of G1/S transition was virtually identical both in control and Cpc2-less strains. Thus, our results suggest that in fission yeast Cpc2/RACK1 positively regulates from the ribosome the mitotic onset by modulating both the protein levels and the activity of Wee1. This novel mechanism of translational control of cell cycle progression might be conserved in higher eukaryotes.
机译:在裂变酵母Schizosaccharomyces Pombe中,当细胞达到定义的尺寸时,高度保守的CDC2 / CDK1激酶的WEE1依赖性抑制磷酸化决定了丝分裂发作。活化的C激酶(Rack1)的受体是在与其他蛋白质结合以调节哺乳动物细胞中的多种过程的真核生物中强烈地保守的支架蛋白,包括在G1 / s转变期间调节细胞周期进展。我们最近描述了CPC2,裂变酵母直向理到Rack1,通过核糖体对核糖体的激活和抗氧化应激的激活,通过阳性调节产品参与上述方法的特定基因的翻译。有趣的是,缺乏CPC2的突变体在划分时显示出增加的细胞尺寸,表明G2 / M转变处的特定细胞周期缺陷存在。在这项工作中,我们表明,在缺乏CPC2的细胞中,WEE1有丝分裂抑制剂的蛋白质水平增加,而CDR2的水平是在上述突变体中下调。相反,G1 / S转变的动力学在对照和CPC2的菌株中几乎相同。因此,我们的结果表明,在裂变酵母CPC2 / Rack1中,通过调节蛋白质水平和WEE1的活性,从核糖体发作来正常调节。这种细胞周期进展的这种翻译控制机制可能在更高的真核生物中被保守。

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