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首页> 外文期刊>The Biochemical Journal >Structural and functional similarities between the central eukaryotic initiation factor (eIF)4A-binding domain of mammalian eIF4G and the eIF4A-binding domain of yeast eIF4G.
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Structural and functional similarities between the central eukaryotic initiation factor (eIF)4A-binding domain of mammalian eIF4G and the eIF4A-binding domain of yeast eIF4G.

机译:哺乳动物eIF4G的中央真核起始因子(eIF)4A结合结构域与酵母eIF4G的eIF4A结合结构域之间的结构和功能相似性。

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摘要

The translation eukaryotic initiation factor (eIF)4G of the yeast Saccharomyces cerevisiae interacts with the RNA helicase eIF4A (a member of the DEAD-box protein family; where DEAD corresponds to Asp-Glu-Ala-Asp) through a C-terminal domain in eIF4G (amino acids 542-883). Mammalian eIF4G has two interaction domains for eIF4A, a central domain and a domain close to the C-terminus. This raises the question of whether eIF4A binding to eIF4G is conserved between yeast and mammalian cells or whether it is different. We isolated eIF4G1 mutants defective in eIF4A binding and showed that these mutants are strongly impaired in translation and growth. Extracts from mutants displaying a temperature-sensitive phenotype for growth have low in vitro translation activity, which can be restored by addition of the purified eIF4G1-eIF4E complex, but not by eIF4E alone. Analysis of mutant eIF4G(542-883) proteins defective in eIF4A binding shows that the interaction of yeast eIF4A with eIF4G1 depends on amino acid motifs that are conserved between the yeast eIF4A-binding site and the central eIF4A-binding domain of mammalian eIF4G. We show that mammalian eIF4A binds tightly to yeast eIF4G1 and, furthermore, that mutant yeast eIF4G(542-883) proteins, which do not bind yeast eIF4A, do not interact with mammalian eIF4A. Despite the conservation of the eIF4A-binding site in eIF4G and the strong sequence conservation between yeast and mammalian eIF4A (66% identity; 82% similarity at the amino acid level) mammalian eIF4A does not substitute for the yeast factor in vivo and is not functional in a yeast in vitro translation system.
机译:酵母酿酒酵母的翻译真核起始因子(eIF)4G与RNA解旋酶eIF4A(DEAD-box蛋白家族的成员;其中DEAD对应于Asp-Glu-Ala-Asp)通过C末端结构域相互作用eIF4G(氨基酸542-883)。哺乳动物eIF4G具有两个eIF4A相互作用域,一个中央域和一个靠近C末端的域。这就提出了一个问题,即在酵母和哺乳动物细胞之间,eIF4A与eIF4G的结合是否保守,或者是否不同。我们分离出eIF4A结合缺陷的eIF4G1突变体,并表明这些突变体在翻译和生长中受到严重损害。表现出对温度敏感的表型生长的突变体的提取物具有较低的体外翻译活性,可以通过添加纯化的eIF4G1-eIF4E复合物来恢复,但不能单独通过eIF4E来恢复。对eIF4A结合缺陷的突变eIF4G(542-883)蛋白的分析表明,酵母eIF4A与eIF4G1的相互作用取决于酵母eIF4A结合位点与哺乳动物eIF4G中央eIF4A结合域之间保守的氨基酸基序。我们显示哺乳动物eIF4A与酵母eIF4G1紧密结合,此外,不与酵母eIF4A结合的突变酵母eIF4G(542-883)蛋白不会与哺乳动物eIF4A相互作用。尽管在eIF4G中保留了eIF4A结合位点,并且在酵母和哺乳动物eIF4A之间具有很强的序列保守性(66%的同一性;在氨基酸水平上有82%的相似性),哺乳动物的eIF4A不能替代体内的酵母因子,因此无法发挥作用在酵母体外翻译系统中。

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