Division of Biochemistry, Mannheim Institute for Innate Immunoscience, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.
Center for Molecular Biology of Heidelberg University, DKFZ-ZMBH Alliance, Heidelberg, Germany.
J Cell Biol. 2020 Mar 2;219(3). doi: 10.1083/jcb.201906147.
Cell proliferation exerts a high demand on protein synthesis, yet the mechanisms coupling the two processes are not fully understood. A kinase and phosphatase screen for activators of translation, based on the formation of stress granules in human cells, revealed cell cycle-associated kinases as major candidates. CDK1 was identified as a positive regulator of global translation, and cell synchronization experiments showed that this is an extramitotic function of CDK1. Different pathways including eIF2α, 4EBP, and S6K1 signaling contribute to controlling global translation downstream of CDK1. Moreover, Ribo-Seq analysis uncovered that CDK1 exerts a particularly strong effect on the translation of 5'TOP mRNAs, which includes mRNAs encoding ribosomal proteins and several translation factors. This effect requires the 5'TOP mRNA-binding protein LARP1, concurrent to our finding that LARP1 phosphorylation is strongly dependent on CDK1. Thus, CDK1 provides a direct means to couple cell proliferation with biosynthesis of the translation machinery and the rate of protein synthesis.
细胞增殖对蛋白质合成有很高的需求,但将这两个过程联系起来的机制还不完全清楚。一项基于人细胞中应激颗粒形成的翻译激活物的激酶和磷酸酶筛选,揭示了细胞周期相关激酶是主要的候选物。CDK1 被鉴定为全局翻译的正调节剂,细胞同步化实验表明这是 CDK1 的有丝分裂外功能。包括 eIF2α、4EBP 和 S6K1 信号通路在内的不同途径有助于控制 CDK1 下游的全局翻译。此外,核糖体测序分析揭示 CDK1 对 5'TOP mRNA 的翻译有特别强的影响,其中包括编码核糖体蛋白和几个翻译因子的 mRNA。这种作用需要 5'TOP mRNA 结合蛋白 LARP1,同时我们发现 LARP1 的磷酸化强烈依赖于 CDK1。因此,CDK1 提供了一种直接的方法将细胞增殖与翻译机器的生物合成和蛋白质合成速率联系起来。