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首页> 外文期刊>Molecular and Cellular Biology >Phosphorylation of Eukaryotic Elongation Factor 2 (eEF2) by Cyclin A–Cyclin-Dependent Kinase 2 Regulates Its Inhibition by eEF2 Kinase
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Phosphorylation of Eukaryotic Elongation Factor 2 (eEF2) by Cyclin A–Cyclin-Dependent Kinase 2 Regulates Its Inhibition by eEF2 Kinase

机译:细胞周期蛋白A细胞周期蛋白依赖性激酶2磷酸化的真核生物延伸因子2(eEF2)调节其通过eEF2激酶的抑制作用。

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摘要

Protein synthesis is highly regulated via both initiation and elongation. One mechanism that inhibits elongation is phosphorylation of eukaryotic elongation factor 2 (eEF2) on threonine 56 (T56) by eEF2 kinase (eEF2K). T56 phosphorylation inactivates eEF2 and is the only known normal eEF2 functional modification. In contrast, eEF2K undergoes extensive regulatory phosphorylations that allow diverse pathways to impact elongation. We describe a new mode of eEF2 regulation and show that its phosphorylation by cyclin A–cyclin-dependent kinase 2 (CDK2) on a novel site, serine 595 (S595), directly regulates T56 phosphorylation by eEF2K. S595 phosphorylation varies during the cell cycle and is required for efficient T56 phosphorylation in vivo. Importantly, S595 phosphorylation by cyclin A-CDK2 directly stimulates eEF2 T56 phosphorylation by eEF2K in vitro, and we suggest that S595 phosphorylation facilitates T56 phosphorylation by recruiting eEF2K to eEF2. S595 phosphorylation is thus the first known eEF2 modification that regulates its inhibition by eEF2K and provides a novel mechanism linking the cell cycle machinery to translational control. Because all known eEF2 regulation is exerted via eEF2K, S595 phosphorylation may globally couple the cell cycle machinery to regulatory pathways that impact eEF2K activity.
机译:蛋白质合成通过引发和延伸受到高度调节。抑制伸长的一种机制是通过eEF2激酶(eEF2K)在苏氨酸56(T56)上的真核伸长因子2(eEF2)磷酸化。 T56磷酸化使eEF2失活,并且是唯一已知的正常eEF2功能修饰。相反,eEF2K经历了广泛的调节磷酸化,从而允许多种途径影响延伸。我们描述了一种新的eEF2调节模式,并表明其在一个新位点丝氨酸595(S595)上的细胞周期蛋白A–细胞周期蛋白依赖性激酶2(CDK2)的磷酸化直接调节eEF2K的T56磷酸化。 S595磷酸化在细胞周期中会发生变化,是体内有效T56磷酸化所必需的。重要的是,细胞周期蛋白A-CDK2的S595磷酸化直接刺激了eEF2K体外的eEF2 T56磷酸化,我们建议S595磷酸化通过将eEF2K募集到eEF2来促进T56磷酸化。因此,S595磷酸化是第一个已知的eEF2修饰,可调节其对eEF2K的抑制作用,并提供将细胞周期机制与翻译控制联系起来的新颖机制。因为所有已知的eEF2调节都是通过eEF2K进行的,所以S595磷酸化可能会整体将细胞​​周期机制耦合到影响eEF2K活性的调节途径。

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