首页> 美国卫生研究院文献>RNA >The RNA recognition motif of yeast translation initiation factor Tif3/eIF4B is required but not sufficient for RNA strand-exchange and translational activity.
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The RNA recognition motif of yeast translation initiation factor Tif3/eIF4B is required but not sufficient for RNA strand-exchange and translational activity.

机译:酵母翻译起始因子Tif3 / eIF4B的RNA识别基序是必需的但不足以实现RNA链交换和翻译活性。

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摘要

The Saccharomyces cerevisiae TIF3 gene encodes a 436-amino acid (aa) protein that is the yeast homologue of mammalian translation Initiation factor eIF4B. Tif3p can be divided into three parts, the N-terminal region with an RNA recognition motif (RRM) (aa 1-182), followed in the middle part by a sevenfold repeat of 26 amino acids rich in basic and acidic residues (as 183-350), and a C-terminal region without homology to any known sequence (aa 351-436). We have analyzed several Tif3 proteins with deletions at their N and C termini for their ability (1) to complement a tif3delta strain in vivo, (2) to stimulate Tif3-dependent translation extracts, (3) to bind to single-stranded RNA, and (4) to catalyze RNA strand-exchange in vitro. Here we report that yeast Tif3/eIF4B contains at least two RNA binding domains able to bind to single-stranded RNA. One is located in the N-terminal region of the protein carrying the RRM, the other in the C-terminal two-thirds region of Tif3p. The RRM-containing domain and three of the seven repeat motifs are essential for RNA strand-exchange activity of Tif3p and translation in vitro and for complementation of a tif3delta strain, suggesting an important role for RNA strand-exchange activity in translation.
机译:酿酒酵母TIF3基因编码一个436个氨基酸(aa)的蛋白质,该蛋白质是哺乳动物翻译起始因子eIF4B的酵母同源物。 Tif3p可以分为三部分,带有RNA识别基序(RRM)的N端区域(aa 1-182),其后是中间部分,是富含碱性和酸性残基的26个氨基酸的七倍重复(如183) -350),以及与任何已知序列均不具有同源性的C末端区域(aa 351-436)。我们已经分析了几种在其N和C末端缺失的Tif3蛋白的能力(1)在体内补充tif3delta菌株的能力,(2)刺激依赖Tif3的翻译提取物,(3)结合单链RNA, (4)在体外催化RNA链交换。在这里我们报告酵母Tif3 / eIF4B包含至少两个能够结合单链RNA的RNA结合域。一个位于携带RRM的蛋白质的N末端区域,另一个位于Tif3p的C末端三分之二区域。含RRM的结构域和七个重复基序中的三个对于Tif3p的RNA链交换活性和体外翻译以及tif3delta菌株的互补是必不可少的,表明RNA链交换活性在翻译中具有重要作用。

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