翻译因子eIF5A对基因表达的调控:hypusine修饰的eIF5A增强人细胞中无义介导的mRNA衰变。

Translation (Austin, Tex.) Pub Date : 2017-08-14 eCollection Date: 2017-01-01 DOI:10.1080/21690731.2017.1366294
Mainul Hoque, Ji Yeon Park, Yun-Juan Chang, Augusto D Luchessi, Tavane D Cambiaghi, Raghavendra Shamanna, Hartmut M Hanauske-Abel, Bart Holland, Tsafi Pe'ery, Bin Tian, Michael B Mathews
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引用次数: 18

摘要

无义介导的mRNA衰变(NMD)将蛋白质合成与mRNA转换结合在一起。它消除有缺陷的转录本,并控制某些正常mrna的丰度。我们的研究在人类细胞中建立了NMD与翻译因子eIF5A(真核起始因子5A)之间的联系。eIF5A调节蛋白质群的合成(eIF5A调节子),并经历独特的两步翻译后修饰(hypusination),由脱氧hypusine合酶和脱氧hypusine羟化酶催化。我们发现nmd易感构建体的表达增加了主要eIF5A亚型eIF5A1的缺失。当用两种eIF5A修饰酶中的任何一种的RNA干扰抑制hypusine,或用抑制脱氧hypusine羟化酶的环匹罗或去铁酮药物治疗抑制hypusine时,NMD也会减弱。RNA-Seq转录组分析鉴定了受eIF5A1及其修饰酶和关键NMD因子Upf1协调调节表达的人类基因。编码翻译系统组分的转录本得到了高度的代表,包括一些编码由选择性剪接偶联NMD (AS-NMD)控制的核糖体蛋白。我们的发现扩展并加强了eIF5A与NMD的关联,这是之前在酵母中推断的,并表明假设对人类eIF5A的这种功能很重要。此外,他们将药物介导的NMD抑制作为治疗无意义相关疾病的机会。我们认为调控mRNA的稳定性有助于eIF5A在选择性基因表达中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Regulation of gene expression by translation factor eIF5A: Hypusine-modified eIF5A enhances nonsense-mediated mRNA decay in human cells.

Regulation of gene expression by translation factor eIF5A: Hypusine-modified eIF5A enhances nonsense-mediated mRNA decay in human cells.

Nonsense-mediated mRNA decay (NMD) couples protein synthesis to mRNA turnover. It eliminates defective transcripts and controls the abundance of certain normal mRNAs. Our study establishes a connection between NMD and the translation factor eIF5A (eukaryotic initiation factor 5A) in human cells. eIF5A modulates the synthesis of groups of proteins (the eIF5A regulon), and undergoes a distinctive two-step post-translational modification (hypusination) catalyzed by deoxyhypusine synthase and deoxyhypusine hydroxylase. We show that expression of NMD-susceptible constructs was increased by depletion of the major eIF5A isoform, eIF5A1. NMD was also attenuated when hypusination was inhibited by RNA interference with either of the two eIF5A modifying enzymes, or by treatment with the drugs ciclopirox or deferiprone which inhibit deoxyhypusine hydroxylase. Transcriptome analysis by RNA-Seq identified human genes whose expression is coordinately regulated by eIF5A1, its modifying enzymes, and the pivotal NMD factor, Upf1. Transcripts encoding components of the translation system were highly represented, including some encoding ribosomal proteins controlled by alternative splicing coupled to NMD (AS-NMD). Our findings extend and strengthen the association of eIF5A with NMD, previously inferred in yeast, and show that hypusination is important for this function of human eIF5A. In addition, they advance drug-mediated NMD suppression as a therapeutic opportunity for nonsense-associated diseases. We propose that regulation of mRNA stability contributes to eIF5A's role in selective gene expression.

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