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首页> 外文期刊>RNA >Mutational analysis of human eIF4AIII identifies regions necessary for exon junction complex formation and nonsense-mediated mRNA decay.
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Mutational analysis of human eIF4AIII identifies regions necessary for exon junction complex formation and nonsense-mediated mRNA decay.

机译:人类eIF4AIII的突变分析可确定外显子连接复合物形成和无义介导的mRNA降解所必需的区域。

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摘要

The exon junction complex (EJC) is deposited on mRNAs by the process of pre-mRNA splicing and is a key effector of downstream mRNA metabolism. We previously demonstrated that human eIF4AIII, which is essential for nonsense-mediated mRNA decay (NMD), constitutes at least part of the RNA-binding platform anchoring other EJC components to the spliced mRNA. To determine the regions of eIF4AIII that are functionally important for EJC formation, for binding to other EJC components, and for NMD, we now report results of an extensive mutational analysis of human eIF4AIII. Using GFP-, GST- or Flag-fusions of eIF4AIII versions containing site-specific mutations or truncations, we analyzed subcellular localizations, protein-protein interactions, and EJC formation in vivo and in vitro. We also tested whether mutant proteins could rescue NMD inhibition resulting from RNAi depletion of endogenous eIF4AIII. Motifs Ia and VI, which are conserved among the eIF4A family of RNA helicases (DEAD-box proteins), are crucial for EJC formation and NMD, as is one eIF4AIII-specific region. An additional eIF4AIII-specific motif forms part of the binding site for MLN51, another EJC core component. Mutations in the canonical Walker A and B motifs that eliminate RNA-dependent ATP hydrolysis by eIF4AIII in vitro are of no detectable consequence for EJC formation and NMD activation. Implications of these findings are discussed in the context of other recent results and a new structural model for human eIF4AIII based on the known crystal structure of Saccharomyces cerevisiae eIF4AI.
机译:外显子连接复合体(EJC)通过预mRNA剪接过程沉积在mRNA上,并且是下游mRNA代谢的关键效应子。先前我们证明了人类eIF4AIII(对无意义介导的mRNA衰变(NMD)至关重要)构成了将其他EJC组件锚定到剪接的mRNA的RNA结合平台的至少一部分。为了确定eIF4AIII对EJC的形成,与其他EJC成分的结合以及对NMD具有功能重要性的区域,我们现在报告对人eIF4AIII进行广泛突变分析的结果。使用包含位点特异性突变或截短的eIF4AIII版本的GFP,GST或Flag融合蛋白,我们分析了体内外的亚细胞定位,蛋白-蛋白相互作用和EJC形成。我们还测试了突变蛋白是否可以挽救内源性eIF4AIII的RNAi消耗所导致的NMD抑制。在ehel4A家族的RNA解旋酶(DEAD-box蛋白)中保守的基序Ia和VI与一个eIF4AIII特异性区域一样,对于EJC的形成和NMD至关重要。另一个eIF4AIII特异性基序形成MLN51(另一个EJC核心组件)的结合位点的一部分。在规范的Walker A和B图案中,通过eIF4AIII消除了RNA依赖性ATP水解的突变,对于EJC的形成和NMD的激活没有可检测的结果。这些结果的含义在其他近期结果和基于酿酒酵母eIF4AI已知晶体结构的人类eIF4AIII新结构模型的背景下进行了讨论。

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