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真核翻译起始因子 eIF4E 的生化和结构见解。

Biochemical and Structural Insights into the Eukaryotic Translation Initiation Factor eIF4E.

机构信息

Institute for Research in Immunology and Cancer (IRIC), Department of Pathology and Cell Biology, Universite de Montreal, Pavillion Marcelle-Coutu, Chemin Polytechnique, Montreal, Quebec, Canada.

出版信息

Curr Protein Pept Sci. 2019;20(6):525-535. doi: 10.2174/1389203720666190110142438.

Abstract

A major question in cell and cancer biology is concerned with understanding the flow of information from gene to protein. Indeed, many studies indicate that the proteome can be decoupled from the transcriptome. A major source of this decoupling is post-transcriptional regulation. The eukaryotic translation initiation factor eIF4E serves as an excellent example of a protein that can modulate the proteome at the post-transcriptional level. eIF4E is elevated in many cancers thus highlighting the relevance of this mode of control to biology. In this review, we provide a brief overview of various functions of eIF4E in RNA metabolism e.g. in nuclear-cytoplasmic RNA export, translation, RNA stability and/or sequestration. We focus on the modalities of eIF4E regulation at the biochemical and particularly structural level. In this instance, we describe not only the importance for the m7Gcap eIF4E interaction but also of recently discovered non-traditional RNA-eIF4E interactions as well as cap-independent activities of eIF4E. Further, we describe several distinct structural modalities used by the cell and some viruses to regulate or co-opt eIF4E, substantially extending the types of proteins that can regulate eIF4E from the traditional eIF4E-binding proteins (e.g. 4E-BP1 and eIF4G). Finally, we provide an overview of the results of targeting eIF4E activity in the clinic.

摘要

细胞和癌症生物学中的一个主要问题是了解从基因到蛋白质的信息传递。事实上,许多研究表明,蛋白质组可以与转录组解耦。这种解耦的一个主要来源是转录后调控。真核翻译起始因子 eIF4E 是一个可以在转录后水平调节蛋白质组的蛋白质的极好例子。eIF4E 在许多癌症中升高,这突出了这种控制模式对生物学的相关性。在这篇综述中,我们简要概述了 eIF4E 在 RNA 代谢中的各种功能,例如核细胞质 RNA 输出、翻译、RNA 稳定性和/或隔离。我们专注于生化水平,特别是结构水平上 eIF4E 调节的方式。在这种情况下,我们不仅描述了 m7Gcap eIF4E 相互作用的重要性,还描述了最近发现的非传统 RNA-eIF4E 相互作用以及 eIF4E 的无帽依赖性活性。此外,我们描述了细胞和一些病毒用来调节或篡夺 eIF4E 的几种不同的结构方式,从传统的 eIF4E 结合蛋白(例如 4E-BP1 和 eIF4G)大大扩展了可以调节 eIF4E 的蛋白质类型。最后,我们概述了在临床上靶向 eIF4E 活性的结果。

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