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The Histone 3′-Terminal Stem-Loop-Binding Protein Enhances Translation through a Functional and Physical Interaction with Eukaryotic Initiation Factor 4G (eIF4G) and eIF3

机译:组蛋白3'-末端茎环结合蛋白通过与真核起始因子4G(eIF4G)和eIF3的功能和物理相互作用增强翻译

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摘要

Metazoan cell cycle-regulated histone mRNAs are unique cellular mRNAs in that they terminate in a highly conserved stem-loop structure instead of a poly(A) tail. Not only is the stem-loop structure necessary for 3′-end formation but it regulates the stability and translational efficiency of histone mRNAs. The histone stem-loop structure is recognized by the stem-loop-binding protein (SLBP), which is required for the regulation of mRNA processing and turnover. In this study, we show that SLBP is required for the translation of mRNAs containing the histone stem-loop structure. Moreover, we show that the translation of mRNAs ending in the histone stem-loop is stimulated in Saccharomyces cerevisiae cells expressing mammalian SLBP. The translational function of SLBP genetically required eukaryotic initiation factor 4E (eIF4E), eIF4G, and eIF3, and expressed SLBP coisolated with S. cerevisiae initiation factor complexes that bound the 5′ cap in a manner dependent on eIF4G and eIF3. Furthermore, eIF4G coimmunoprecipitated with endogenous SLBP in mammalian cell extracts and recombinant SLBP and eIF4G coisolated. These data indicate that SLBP stimulates the translation of histone mRNAs through a functional interaction with both the mRNA stem-loop and the 5′ cap that is mediated by eIF4G and eIF3.
机译:后生动物细胞周期调控的组蛋白mRNA是独特的细胞mRNA,因为它们以高度保守的茎环结构而不是poly(A)尾部终止。茎环结构不仅是3'端形成所必需的,而且还调节组蛋白mRNA的稳定性和翻译效率。组蛋白茎环结构被茎环结合蛋白(SLBP)识别,这是调节mRNA加工和周转所必需的。在这项研究中,我们表明SLBP是翻译包含组蛋白茎环结构的mRNA所必需的。此外,我们表明在表达哺乳动物SLBP的酿酒酵母细胞中刺激了以组蛋白茎环结尾的mRNA的翻译。 SLBP的翻译功能在遗传上需要真核生物起始因子4E(eIF4E),eIF4G和eIF3,并表达SLBP与酿酒酵母起始因子复合物共分离,后者以依赖eIF4G和eIF3的方式结合5'帽。此外,eIF4G与内源性SLBP在哺乳动物细胞提取物中共免疫沉淀,重组SLBP和eIF4G共分离。这些数据表明,SLBP通过与mRNA茎环和eIF4G和eIF3介导的5'帽的功能相互作用,刺激组蛋白mRNA的翻译。

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