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γ干扰素介导的转录本选择性翻译沉默由铜蓝蛋白mRNA 3'非翻译区中的一个新型结构元件指导。

Transcript-selective translational silencing by gamma interferon is directed by a novel structural element in the ceruloplasmin mRNA 3' untranslated region.

作者信息

Sampath Prabha, Mazumder Barsanjit, Seshadri Vasudevan, Fox Paul L

机构信息

Department of Cell Biology, The Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, Ohio 44195, USA.

出版信息

Mol Cell Biol. 2003 Mar;23(5):1509-19. doi: 10.1128/MCB.23.5.1509-1519.2003.

Abstract

Transcript-selective translational control of eukaryotic gene expression is often directed by a structural element in the 3' untranslated region (3'-UTR) of the mRNA. In the case of ceruloplasmin (Cp), induced synthesis of the protein by gamma interferon (IFN-gamma) in U937 monocytic cells is halted by a delayed translational silencing mechanism requiring the binding of a cytosolic inhibitor to the Cp 3'-UTR. Silencing requires the essential elements of mRNA circularization, i.e., eukaryotic initiation factor 4G, poly(A)-binding protein, and poly(A) tail. We here determined the minimal silencing element in the Cp 3'-UTR by progressive deletions from both termini. A minimal, 29-nucleotide (nt) element was determined by gel shift assay to be sufficient for maximal binding of the IFN-gamma-activated inhibitor of translation (GAIT), an as-yet-unidentified protein or complex. The interaction was shown to be functional by an in vitro translation assay in which the GAIT element was used as a decoy to overcome translational silencing. Mutation analysis showed that the GAIT element contained a 5-nt terminal loop, a weak 3-bp helix, an asymmetric internal bulge, and a proximal 6-bp helical stem. Two invariant loop residues essential for binding activity were identified. Ligation of the GAIT element immediately downstream of a luciferase reporter conferred the translational silencing response to the heterologous transcript in vitro and in vivo; a construct containing a nonbinding, mutated GAIT element was ineffective. Translational silencing of Cp, and possibly other transcripts, mediated by the GAIT element may contribute to the resolution of the local inflammatory response following cytokine activation of macrophages.

摘要

真核基因表达的转录本选择性翻译控制通常由mRNA的3'非翻译区(3'-UTR)中的结构元件引导。就铜蓝蛋白(Cp)而言,U937单核细胞中γ干扰素(IFN-γ)诱导的该蛋白合成通过一种延迟的翻译沉默机制而停止,该机制需要一种胞质抑制剂与Cp 3'-UTR结合。沉默需要mRNA环化的基本元件,即真核起始因子4G、聚腺苷酸结合蛋白和聚腺苷酸尾巴。我们在此通过从两端进行逐步缺失来确定Cp 3'-UTR中的最小沉默元件。通过凝胶迁移试验确定一个最小的29个核苷酸(nt)的元件足以实现IFN-γ激活的翻译抑制剂(GAIT,一种尚未鉴定的蛋白质或复合物)的最大结合。通过体外翻译试验表明这种相互作用具有功能,在该试验中GAIT元件被用作诱饵来克服翻译沉默。突变分析表明GAIT元件包含一个5-nt的末端环、一个弱的3-bp螺旋、一个不对称的内部凸起和一个近端的6-bp螺旋茎。鉴定出了两个对结合活性至关重要的不变环残基。将GAIT元件连接到荧光素酶报告基因的紧邻下游,在体外和体内赋予了对异源转录本的翻译沉默反应;包含非结合性突变GAIT元件的构建体无效。由GAIT元件介导的Cp以及可能其他转录本的翻译沉默可能有助于巨噬细胞细胞因子激活后局部炎症反应的消退。

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