首页> 外文期刊>Nucleic Acids Research >Staufen1-mediated mRNA decay induces Requiem mRNA decay through binding of Staufen1 to the Requiem 3'UTR
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Staufen1-mediated mRNA decay induces Requiem mRNA decay through binding of Staufen1 to the Requiem 3'UTR

机译:Staufen1介导的mRNA衰减通过Staufen1与Requiem 3'UTR的结合诱导Requiem mRNA的衰减

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摘要

Requiem (REQ/DPF2) was originally identified as an apoptosis-inducing protein in mouse myeloid cells and belongs to the novel Kruppel-type zinc finger d4-protein family of proteins, which includes neuro-d4 (DPF1) and cer-d4 (DPF3). Interestingly, when a portion of the REQ messenger ribonucleic acid (mRNA) 3' untranslated region (3'UTR), referred to as G8, was overexpressed in K562 cells, beta-globin expression was induced, suggesting that the 3'UTR of REQ mRNA plays a physiological role. Here, we present evidence that the REQ mRNA 3'UTR, along with its trans-acting factor, Staufen1 (STAU1), is able to reduce the level of REQ mRNA via STAU1-mediated mRNA decay (SMD). By screening a complementary deoxyribonucleic acid (cDNA) expression library with an RNA-ligand binding assay, we identified STAU1 as an interactor of the REQ mRNA 3'UTR. Specifically, we provide evidence that STAU1 binds to putative 30-nucleotide stem-loop-structured RNA sequences within the G8 region, which we term the protein binding site core; this binding triggers the degradation of REQ mRNA and thus regulates translation. Furthermore, we demonstrate that siRNA-mediated silencing of either STAU1 or UPF1 increases the abundance of cellular REQ mRNA and, consequently, the REQ protein, indicating that REQ mRNA is a target of SMD
机译:安魂曲(REQ / DPF2)最初被鉴定为是小鼠骨髓细胞中的一种凋亡诱导蛋白,属于新型Kruppel型锌指d4蛋白家族,包括神经d4(DPF1)和cer-d4(DPF3) )。有趣的是,当一部分REQ信使核糖核酸(mRNA)3'非翻译区(3'UTR)(称为G8)在K562细胞中过度表达时,诱导了β-珠蛋白表达,表明REQ的3'UTR mRNA发挥生理作用。在这里,我们提供证据表明REQ mRNA 3'UTR及其反式作用因子Staufen1(STAU1)能够通过STAU1介导的mRNA衰变(SMD)降低REQ mRNA的水平。通过筛选互补的脱氧核糖核酸(cDNA)表达库与RNA配体结合测定,我们确定STAU1作为REQ mRNA 3'UTR的相互作用者。具体而言,我们提供证据表明STAU1与G8区域内假定的30个核苷酸的茎环结构RNA序列结合,我们称其为蛋白质结合位点核心;这种结合会触发REQ mRNA的降解,从而调节翻译。此外,我们证明siRNA介导的STAU1或UPF1沉默增加细胞REQ mRNA的丰度,因此增加了REQ蛋白,表明REQ mRNA是SMD的靶标

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