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The Yeast Eukaryotic Initiation Factor 4G (eIF4G) HEAT Domain Interacts with eIF1 and eIF5 and Is Involved in Stringent AUG Selection

机译:酵母真核生物起始因子4G(eIF4G)HEAT域与eIF1和eIF5相互作用,并参与严格的AUG选择

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摘要

Eukaryotic initiation factor 4G (eIF4G) promotes mRNA recruitment to the ribosome by binding to the mRNA cap- and poly(A) tail-binding proteins eIF4E and Pap1p. eIF4G also binds eIF4A at a distinct HEAT domain composed of five stacks of antiparallel α-helices. The role of eIF4G in the later steps of initiation, such as scanning and AUG recognition, has not been defined. Here we show that the entire HEAT domain and flanking residues of Saccharomyces cerevisiae eIF4G2 are required for the optimal interaction with the AUG recognition factors eIF5 and eIF1. eIF1 binds simultaneously to eIF4G and eIF3c in vitro, as shown previously for the C-terminal domain of eIF5. In vivo, cooverexpression of eIF1 or eIF5 reverses the genetic suppression of an eIF4G HEAT domain Ts− mutation by eIF4A overexpression. In addition, excess eIF1 inhibits growth of a second eIF4G mutant defective in eIF4E binding, which was also reversed by cooverexpression of eIF4A. Interestingly, excess eIF1 carrying the sui1-1 mutation, known to relax the accuracy of start site selection, did not inhibit the growth of the eIF4G mutant, and sui1-1 reduced the interaction between eIF4G and eIF1 in vitro. Moreover, a HEAT domain mutation altering eIF4G moderately enhances translation from a non-AUG codon. These results strongly suggest that the binding of the eIF4G HEAT domain to eIF1 and eIF5 is important for maintaining the integrity of the scanning ribosomal preinitiation complex.
机译:真核起始因子4G(eIF4G)通过与mRNA cap和poly(A)尾部结合蛋白eIF4E和Pap1p结合,促进mRNA募集到核糖体。 eIF4G还在不同的HEAT结构域上结合eIF4A,该结构域由五叠反平行的α螺旋组成。 eIF4G在启动的后续步骤(例如扫描和AUG识别)中的作用尚未定义。在这里,我们显示了酿酒酵母eIF4G2的整个HEAT域和侧翼残基对于与AUG识别因子eIF5和eIF1进行最佳相互作用是必需的。 eIF1在体外同时与eIF4G和eIF3c结合,如先前对eIF5的C端结构域所示。在体内,eIF1或eIF5的共表达逆转了eIF4A过表达对eIF4G HEAT域Ts-突变的遗传抑制。此外,过量的eIF1会抑制第二个eIF4E结合缺陷的eIF4G突变体的生长,这也可以通过eIF4A的共过表达来逆转。有趣的是,携带sui1-1突变的多余eIF1可以放松起始位点选择的准确性,但并未抑制eIF4G突变体的生长,而sui1-1在体外降低了eIF4G与eIF1之间的相互作用。此外,改变eIF4G的HEAT域突变适度增强了来自非AUG密码子的翻译。这些结果强烈表明,eIF4G HEAT域与eIF1和eIF5的结合对于维持扫描核糖体预起始复合体的完整性很重要。

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