首页> 外文OA文献 >Translational Silencing of Ceruloplasmin Requires the Essential Elements of mRNA Circularization: Poly(A) Tail, Poly(A)-Binding Protein, and Eukaryotic Translation Initiation Factor 4G
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Translational Silencing of Ceruloplasmin Requires the Essential Elements of mRNA Circularization: Poly(A) Tail, Poly(A)-Binding Protein, and Eukaryotic Translation Initiation Factor 4G

机译:铜蓝蛋白的翻译沉默需要mRNA环化的基本要素:Poly(A)尾巴,Poly(A)结合蛋白和真核翻译起始因子4G

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摘要

Ceruloplasmin (Cp) is a glycoprotein secreted by the liver and monocytic cells and probably plays roles in inflammation and iron metabolism. We showed previously that gamma interferon (IFN-γ) induced Cp synthesis by human U937 monocytic cells but that the synthesis was subsequently halted by a transcript-specific translational silencing mechanism involving the binding of a cytosolic factor(s) to the Cp mRNA 3′ untranslated region (UTR). To investigate how protein interactions at the Cp 3′-UTR inhibit translation initiation at the distant 5′ end, we considered the “closed-loop” model of mRNA translation. In this model, the transcript termini are brought together by interactions of poly(A)-binding protein (PABP) with both the poly(A) tail and initiation factor eIF4G. The effect of these elements on Cp translational control was tested using chimeric reporter transcripts in rabbit reticulocyte lysates. The requirement for poly(A) was shown since the cytosolic inhibitor from IFN-γ-treated cells minimally inhibited the translation of a luciferase reporter upstream of the Cp 3′-UTR but almost completely blocked the translation of a transcript containing a poly(A) tail. Likewise, a requirement for poly(A) was shown for silencing of endogenous Cp mRNA. We considered the possibility that the cytosolic inhibitor blocked the interaction of PABP with the poly(A) tail or with eIF4G. We found that neither of these interactions were inhibited, as shown by immunoprecipitation of PABP followed by quantitation of the poly(A) tail by reverse transcription-PCR and of eIF4G by immunoblot analysis. We considered the alternate possibility that these interactions were required for translational silencing. When PABP was depleted from the reticulocyte lysate with anti-human PABP antibody, the cytosolic factor did not inhibit translation of the chimeric reporter, thus showing the requirement for PABP. Similarly, in lysates treated with anti-human eIF4G antibody, the cytosolic extract did not inhibit the translation of the chimeric reporter, thereby showing a requirement for eIF4G. These data show that translational silencing of Cp requires interactions of three essential elements of mRNA circularization, poly(A), PABP, and eIF4G. We suggest that Cp mRNA circularization brings the cytosolic Cp 3′-UTR-binding factor into the proximity of the translation initiation site, where it silences translation by an undetermined mechanism. These results suggest that in addition to its important function in increasing the efficiency of translation, transcript circularization may serve as an essential structural determinant for transcript-specific translational control.
机译:铜蓝蛋白(Cp)是肝脏和单核细胞分泌的一种糖蛋白,可能在炎症和铁代谢中起作用。先前我们证明了γ-干扰素(IFN-γ)诱导了人类U937单核细胞的Cp合成,但随后该合成被转录物特异性翻译沉默机制(涉及胞质因子与Cp mRNA 3'的结合)所终止。非翻译区(UTR)。为了研究Cp 3'-UTR处的蛋白质相互作用如何抑制5'末端的翻译起始,我们考虑了mRNA翻译的“闭环”模型。在此模型中,转录末端通过聚(A)结合蛋白(PABP)与聚(A)尾部和起始因子eIF4G的相互作用而聚集在一起。使用兔网织红细胞裂解物中的嵌合报告基因,测试了这些元素对Cp翻译控制的影响。显示了对poly(A)的需求,因为来自IFN-γ处理的细胞的胞质抑制剂对Cp 3'-UTR上游的萤光素酶报告基因的翻译具有最小的抑制作用,但几乎完全阻止了含有poly(A)的转录本的翻译) 尾巴。同样,显示了沉默内源性Cp mRNA对poly(A)的需求。我们考虑了溶质抑制剂阻止PABP与poly(A)尾巴或eIF4G相互作用的可能性。我们发现,这些相互作用都没有被抑制,如PABP的免疫沉淀,随后通过逆转录PCR定量的poly(A)尾和通过免疫印迹分析定量的eIF4G所示。我们考虑了这些相互作用是翻译沉默所必需的另一种可能性。当用抗人PABP抗体从网状细胞裂解物中去除PABP时,胞质因子不抑制嵌合报道分子的翻译,因此显示出对PABP的需求。类似地,在用抗人eIF4G抗体处理的裂解物中,胞质提取物不抑制嵌合报道分子的翻译,从而显示出对eIF4G的需求。这些数据表明,Cp的翻译沉默需要mRNA环化的三个基本元素,poly(A),PABP和eIF4G的相互作用。我们建议,Cp mRNA环化将胞浆Cp 3'-UTR结合因子带入翻译起始位点附近,在那里它通过不确定的机制使翻译沉默。这些结果表明,除了其在提高翻译效率中的重要作用外,转录物环化还可以作为转录物特异性翻译控制的重要结构决定因素。

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