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人类 eIF4E 通过刺激 eIF4A 解旋酶活性促进 mRNA 重排。

Human eIF4E promotes mRNA restructuring by stimulating eIF4A helicase activity.

机构信息

Department of Molecular and Cell Biology, College of Biological Sciences, University of California, Davis, CA 95616, USA.

出版信息

Proc Natl Acad Sci U S A. 2013 Aug 13;110(33):13339-44. doi: 10.1073/pnas.1303781110. Epub 2013 Jul 30.

Abstract

Elevated eukaryotic initiation factor 4E (eIF4E) levels frequently occur in a variety of human cancers. Overexpression of eIF4E promotes cellular transformation by selectively increasing the translation of proliferative and prosurvival mRNAs. These mRNAs possess highly structured 5'-UTRs that impede ribosome recruitment and scanning, yet the mechanism for how eIF4E abundance elevates their translation is not easily explained by its cap-binding activity. Here, we show that eIF4E possesses an unexpected second function in translation initiation by strongly stimulating eukaryotic initiation factor 4A (eIF4A) helicase activity. Importantly, we demonstrate that this activity promotes mRNA restructuring in a manner that is independent of its cap-binding function. To explain these findings, we show that the eIF4E-binding site in eukaryotic initiation factor 4G (eIF4G) functions as an autoinhibitory domain to modulate its ability to stimulate eIF4A helicase activity. Binding of eIF4E counteracts this autoinhibition, enabling eIF4G to stimulate eIF4A helicase activity. Finally, we have successfully separated the two functions of eIF4E to show that its helicase promoting activity increases the rate of translation by a mechanism that is distinct from its cap-binding function. Based on our results, we propose that maintaining a connection between eIF4E and eIF4G throughout scanning provides a plausible mechanism to explain how eIF4E abundance selectively stimulates the translation of highly structured proliferation and tumor-promoting mRNAs.

摘要

真核起始因子 4E(eIF4E)水平升高通常发生在多种人类癌症中。eIF4E 的过表达通过选择性增加增殖和生存促进 mRNA 的翻译来促进细胞转化。这些 mRNA 具有高度结构化的 5'-UTR,阻碍核糖体募集和扫描,但 eIF4E 丰度如何增加它们的翻译的机制不能轻易地用其帽子结合活性来解释。在这里,我们表明 eIF4E 在翻译起始中具有意想不到的第二个功能,即强烈刺激真核起始因子 4A(eIF4A)解旋酶活性。重要的是,我们证明这种活性以独立于其帽子结合功能的方式促进 mRNA 重排。为了解释这些发现,我们表明真核起始因子 4G(eIF4G)中的 eIF4E 结合位点作为一种自动抑制结构域,调节其刺激 eIF4A 解旋酶活性的能力。eIF4E 的结合抵消了这种自动抑制作用,使 eIF4G 能够刺激 eIF4A 解旋酶活性。最后,我们成功地分离了 eIF4E 的两个功能,表明其解旋酶促进活性通过一种与帽子结合功能不同的机制增加了翻译的速率。基于我们的结果,我们提出在扫描过程中保持 eIF4E 和 eIF4G 之间的连接提供了一个合理的机制来解释为什么 eIF4E 丰度选择性地刺激高度结构化的增殖和促进肿瘤的 mRNA 的翻译。

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