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The exonuclease Xrn1 activates transcription and translation of mRNAs encoding membrane proteins

机译:核酸外切酶Xrn1激活编码膜蛋白的mRNA的转录和翻译

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The highly conserved 5'-3' exonuclease Xrn1 regulates gene expression in eukaryotes by coupling nuclear DNA transcription to cytosolic mRNA decay. By integrating transcriptome-wide analyses of translation with biochemical and functional studies, we demonstrate an unanticipated regulatory role of Xrn1 in protein synthesis. Xrn1 promotes translation of a specific group of transcripts encoding membrane proteins. Xrn1-dependence for translation is linked to poor structural?RNA contexts for translation initiation, is mediated by interactions with components of the translation initiation machinery and correlates with an Xrn1-dependence for mRNA localization at the endoplasmic reticulum, the translation compartment of membrane proteins. Importantly, for this group of mRNAs, Xrn1 stimulates transcription, mRNA translation and decay. Our results uncover a crosstalk between the three major stages of gene expression coordinated by Xrn1 to maintain appropriate levels of membrane proteins.
机译:高度保守的5'-3'核酸外切酶Xrn1通过将核DNA转录与胞质mRNA衰变偶联来调节真核生物中的基因表达。通过整合转录组的翻译分析与生化和功能研究,我们证明了Xrn1在蛋白质合成中的意想不到的调节作用。 Xrn1促进编码膜蛋白的特定转录组的翻译。用于翻译的Xrn1-依赖性与翻译起始的不良结构RNA环境有关,是通过与翻译起始机制的组分相互作用而介导的,并且与用于内质网,膜蛋白翻译区的mRNA的Xrn1-依赖性相关。重要的是,对于这组mRNA,Xrn1刺激转录,mRNA翻译和衰变。我们的结果揭示了Xrn1协调基因表达的三个主要阶段之间的串扰,以维持适当水平的膜蛋白。

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