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Mutational analysis of a Dcp2-binding element reveals general enhancement of decapping by 5'-end stem-loop structures

机译:Dcp2绑定元素的突变分析表明,通过5'端茎环结构的去盖化的一般增强

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摘要

mRNA decapping is a critical step in the control of mRNA stability and gene expression and is carried out by the Dcp2 protein. Dcp2 is an RNA-binding protein that must bind the RNA in order to recognize the cap for hydrolysis. We previously demonstrated that a 60 nucleotide (nt) element at the 5' end of the mRNA encoding Rrp41 is preferentially bound and decapped by Dcp2. Here, we demonstrate that enhanced decapping of this element is dependent on the structural integrity of its first 33 nt and not its primary sequence. The structure consists of a stem-loop positioned <10 nt from the 5' end of the mRNA. The generality of a stem-loop structure in enhanced Dcp2-mediated decapping was underscored by the identification of additional potential Dcp2 substrate mRNAs by a global analysis of human mRNAs containing a similar predicted stem-loop structure at their respective 5' end. These studies suggest a general role for 5' stem-loops in enhancing decapping activity and the utilization of this structure as a predictive tool for Dcp2 target substrates. These studies also demonstrate that Dcp2 alone in the absence of additional proteins can preferentially associate with and modulate mRNA decapping.
机译:mRNA脱盖是控制mRNA稳定性和基因表达的关键步骤,由Dcp2蛋白进行。 Dcp2是一种​​RNA结合蛋白,必须结合RNA才能识别水解帽。我们先前证明,在编码Rrp41的mRNA的5'端有一个60个核苷酸的核苷酸(nt)被Dcp2优先结合并脱盖。在这里,我们证明该元素的增强去盖作用取决于其前33 nt的结构完整性,而不是其主要序列。该结构由位于距mRNA 5'端<10 nt处的茎环组成。通过对人类mRNA的整体分析在其各自的5'末端包含相似的预测茎环结构,来鉴定其他潜在的Dcp2底物mRNA,从而强调了增强的Dcp2介导的脱盖中茎环结构的普遍性。这些研究表明5'茎环在增强脱盖活性和利用该结构作为Dcp2靶底物的预测工具中的一般作用。这些研究还表明,在没有其他蛋白质的情况下,单独的Dcp2可以优先结合并调节mRNA脱盖。

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