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丝裂原活化蛋白激酶信号整合激酶1和2在氧化剂介导的真核翻译起始因子4E磷酸化中的作用。

Roles of mitogen-activated protein kinase signal-integrating kinases 1 and 2 in oxidant-mediated eIF4E phosphorylation.

作者信息

Shenberger Jeffrey S, Zhang Lianqin, Hughlock Mariah K, Ueda Takeshi, Watanabe-Fukunaga Rie, Fukunaga Rikiro

机构信息

Department of Pediatrics, The Pennsylvania State University College of Medicine, USA.

出版信息

Int J Biochem Cell Biol. 2007;39(10):1828-42. doi: 10.1016/j.biocel.2007.05.001. Epub 2007 May 10.

Abstract

Oxidative stress alters cellular metabolic processes including protein synthesis. The eukaryotic initiation factor, eIF4E, acts in the rate-limiting steps of initiation and promotes nuclear export. Phosphorylation of eIF4E by mitogen activated protein kinase signal-integrating kinases 1 and 2 (Mnk) influences the affinity of eIF4E for the 5'-mRNA cap and fosters nuclear export activity. Although phosphorylation of eIF4E on Ser209 is observed following oxidant exposure, the contribution of Mnk isoforms and the significance of phosphorylation remain elusive. Using a Mnk inhibitor and fibroblasts derived from Mnk knockout mice, we demonstrate that that H2O2 enhances eIF4E phosphorylation in cells containing Mnk1. In contrast, cells containing only Mnk2 show little change or a decrease in eIF4E phosphorylation in response to H2O2. H2O2 also shifted eIF4GI protein from the nucleus to the cytoplasm suggesting that the increases in eIF4E phosphorylation may reflect enhanced substrate availability to cytoplasmic Mnk1. In Mnk1(+/+) cells, H2O2 also enhanced eIF4E phosphorylation in the nucleus to a greater degree than in the cytoplasm, an effect not observed in cells containing Mnk2. In response to H2O2, all MEFs showed increased eIF4E:4E-BP1 and 4E-BP2:eIF4E binding and reduced eIF4E:eIF4GI binding. We also observed a dramatic increase in the amount of Mnk1 associated with eIF4E following affinity chromatography. These changes coincided with a smaller reduction in global protein synthesis in response to H2O2 in the DKO cells. These findings suggest that changes in eIF4GI distribution may enhance eIF4E phosphorylation and that the presence of either Mnk1 or 2 or any degree of eIF4E phosphorylation negatively regulates global protein synthesis in response to oxidant stress.

摘要

氧化应激会改变包括蛋白质合成在内的细胞代谢过程。真核生物起始因子eIF4E在起始的限速步骤中起作用,并促进核输出。丝裂原活化蛋白激酶信号整合激酶1和2(Mnk)对eIF4E的磷酸化会影响eIF4E与5'-mRNA帽的亲和力,并促进核输出活性。尽管在暴露于氧化剂后观察到eIF4E的Ser209位点发生磷酸化,但Mnk亚型的作用以及磷酸化的意义仍不明确。使用Mnk抑制剂和源自Mnk基因敲除小鼠的成纤维细胞,我们证明H2O2可增强含有Mnk1的细胞中eIF4E的磷酸化。相比之下,仅含有Mnk2的细胞在响应H2O2时,eIF4E磷酸化几乎没有变化或有所降低。H2O2还使eIF4GI蛋白从细胞核转移到细胞质,这表明eIF4E磷酸化的增加可能反映了细胞质中Mnk1的底物可用性增强。在Mnk1(+/+)细胞中,H2O2对细胞核中eIF4E磷酸化的增强程度也大于细胞质,而在含有Mnk2的细胞中未观察到这种效应。响应H2O2时,所有小鼠胚胎成纤维细胞(MEF)中eIF4E:4E-BP1和4E-BP2:eIF4E的结合增加,而eIF4E:eIF4GI的结合减少。亲和层析后,我们还观察到与eIF4E相关的Mnk1量显著增加。这些变化与双敲除(DKO)细胞中响应H2O2时整体蛋白质合成的较小减少相一致。这些发现表明,eIF4GI分布的变化可能会增强eIF4E的磷酸化,并且Mnk1或Mnk2的存在或任何程度的eIF4E磷酸化都会在氧化应激反应中对整体蛋白质合成产生负调控作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6295/2001257/4fdde8e23755/nihms-30758-f0001.jpg

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