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首页> 外文期刊>Nucleic acids research >Structural analysis of the yeast Dhh1–Pat1 complex reveals how Dhh1 engages Pat1, Edc3 and RNA in mutually exclusive interactions
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Structural analysis of the yeast Dhh1–Pat1 complex reveals how Dhh1 engages Pat1, Edc3 and RNA in mutually exclusive interactions

机译:酵母Dhh1-Pat1复合物的结构分析揭示了Dhh1如何在相互排斥的相互作用中与Pat1,Edc3和RNA结合

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摘要

Translational repression and deadenylation of eukaryotic mRNAs result either in the sequestration of the transcripts in a nontranslatable pool or in their degradation. Removal of the 5′ cap structure is a crucial step that commits deadenylated mRNAs to 5′-to-3′ degradation. Pat1, Edc3 and the DEAD-box protein Dhh1 are evolutionary conserved factors known to participate in both translational repression and decapping, but their interplay is currently unclear. We report the 2.8 ? resolution structure of yeast Dhh1 bound to the N-terminal domain of Pat1. The structure shows how Pat1 wraps around the C-terminal RecA domain of Dhh1, docking onto the Phe-Asp-Phe (FDF) binding site. The FDF-binding site of Dhh1 also recognizes Edc3, revealing why the binding of Pat1 and Edc3 on Dhh1 are mutually exclusive events. Using co-immunoprecipitation assays and structure-based mutants, we demonstrate that the mode of Dhh1-Pat1 recognition is conserved in humans. Pat1 and Edc3 also interfere and compete with the RNA-binding properties of Dhh1. Mapping the RNA-binding sites on Dhh1 with a crosslinking–mass spectrometry approach shows a large RNA-binding surface around the C-terminal RecA domain, including the FDF-binding pocket. The results suggest a model for how Dhh1-containing messenger ribonucleoprotein particles might be remodeled upon Pat1 and Edc3 binding.
机译:真核mRNA的翻译抑制和去甲腺苷酸化作用导致转录物被隔离在不可翻译的库中或被降解。 5'帽结构的去除是使去甲腺苷酸化的mRNA发生5'至3'降解的关键步骤。 Pat1,Edc3和DEAD-box蛋白Dhh1是已知参与翻译抑制和解盖的进化保守因子,但目前尚不清楚它们之间的相互作用。我们报告2.8? Dhh1的高分辨率结构绑定到Pat1的N末端域。该结构显示Pat1如何环绕Dhh1的C端RecA结构域,对接至Phe-Asp-Phe(FDF)结合位点。 Dhh1的FDF结合位点也识别Edc3,这揭示了为什么Dhh1上Pat1和Edc3的结合是相互排斥的事件。使用共免疫沉淀测定法和基于结构的突变体,我们证明了Dhh1-Pat1识别的模式在人类中是保守的。 Pat1和Edc3也干扰Dhh1的RNA结合特性并与之竞争。用交联质谱法对Dhh1上的RNA结合位点进行定位,发现在C端RecA结构域周围有一个大的RNA结合表面,包括FDF结合口袋。结果提出了一个模型,该模型用于如何在Pat1和Edc3结合后重塑含Dhh1的信使核糖核蛋白颗粒。

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