首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Assembly of Functional Ribonucleoprotein Complexes by AU-rich Element RNA-binding Protein 1 (AUF1) Requires Base-dependent and -independent RNA Contacts
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Assembly of Functional Ribonucleoprotein Complexes by AU-rich Element RNA-binding Protein 1 (AUF1) Requires Base-dependent and -independent RNA Contacts

机译:富含AU元素的RNA结合蛋白1(AUF1)组装功能性核糖蛋白复合物需要碱基依赖性和非依赖性RNA接触

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摘要

AU-rich element RNA-binding protein 1 (AUF1) regulates the stability and/or translational efficiency of diverse mRNA targets, including many encoding products controlling the cell cycle, apoptosis, and inflammation by associating with AU-rich elements residing in their 3′-untranslated regions. Previous biochemical studies showed that optimal AUF1 binding requires 33–34 nucleotides with a strong preference for U-rich RNA despite observations that few AUF1-associated cellular mRNAs contain such extended U-rich domains. Using the smallest AUF1 isoform (p37AUF1) as a model, we employed fluorescence anisotropy-based approaches to define thermodynamic parameters describing AUF1 ribonucleoprotein (RNP) complex formation across a panel of RNA substrates. These data demonstrated that 15 nucleotides of AU-rich sequence were sufficient to nucleate high affinity p37AUF1 RNP complexes within a larger RNA context. In particular, p37AUF1 binding to short AU-rich RNA targets was significantly stabilized by interactions with a 3′-purine residue and largely base-independent but non-ionic contacts 5′ of the AU-rich site. RNP stabilization by the upstream RNA domain was associated with an enhanced negative change in heat capacity consistent with conformational changes in protein and/or RNA components, and fluorescence resonance energy transfer-based assays demonstrated that these contacts were required for p37AUF1 to remodel local RNA structure. Finally, reporter mRNAs containing minimal high affinity p37AUF1 target sequences associated with AUF1 and were destabilized in a p37AUF1-dependent manner in cells. These findings provide a mechanistic explanation for the diverse population of AUF1 target mRNAs but also suggest how AUF1 binding could regulate protein and/or microRNA binding events at adjacent sites.
机译:富含AU的元素RNA结合蛋白1(AUF1)通过与位于其3'端的富含AU的元素相关联来调节多种mRNA靶标的稳定性和/或翻译效率,包括控制细胞周期,凋亡和炎症的许多编码产物-非翻译区域。先前的生化研究表明,最佳AUF1结合需要33-34个核苷酸,其中富含U的RNA非常偏爱,尽管观察到很少有与AUF1相关的细胞mRNA包含此类扩展的U富集域。以最小的AUF1亚型(p37 AUF1 )为模型,我们采用基于荧光各向异性的方法来定义热力学参数,以描述跨整个RNA底物的AUF1核糖蛋白(RNP)复合物的形成。这些数据表明富含AU的序列的15个核苷酸足以在更大的RNA范围内成核高亲和力的p37 AUF1 RNP复合物。尤其是,p37 AUF1 与短的富含AU的RNA靶标的结合通过与3'-嘌呤残基和富含AU的位点的5'-非基本接触但非离子接触的相互作用而显着稳定。上游RNA结构域对RNP的稳定作用与热容量的负变化增强相关,与蛋白质和/或RNA组分的构象变化一致,基于荧光共振能量转移的分析表明这些接触是p37 重塑局部RNA结构。最后,含有与AUF1相关的最小的高亲和力p37 AUF1 靶序列的报告基因mRNA在细胞中以p37 AUF1 依赖性的方式失稳。这些发现为AUF1靶mRNA的多样化群体提供了机械学解释,但也暗示了AUF1结合如何调节邻近位点的蛋白质和/或microRNA结合事件。

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