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A multifactor complex of eukaryotic initiation factors, eIF1, eIF2, eIF3, eIF5, and initiator tRNAMet is an important translation initiation intermediate in vivo

机译:真核生物起始因子,eIF1,eIF2,eIF3,eIF5和起始子tRNAMet的多因子复合物是体内重要的翻译起始中间体

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摘要

Translation initiation factor 2 (eIF2) bound to GTP transfers the initiator methionyl tRNA to the 40S ribosomal subunit. The eIF5 stimulates GTP hydrolysis by the eIF2/GTP/Met-tRNAiMet ternary complex on base-pairing between Met-tRNAiMet and the start codon. The eIF2, eIF5, and eIF1 all have been implicated in stringent selection of AUG as the start codon. The eIF3 binds to the 40S ribosome and promotes recruitment of the ternary complex; however, physical contact between eIF3 and eIF2 has not been observed. We show that yeast eIF5 can bridge interaction in vitro between eIF3 and eIF2 by binding simultaneously to the amino terminus of eIF3 subunit NIP1 and the amino-terminal half of eIF2β, dependent on a conserved bipartite motif in the carboxyl terminus of eIF5. Additionally, the amino terminus of NIP1 can bind concurrently to eIF5 and eIF1. These findings suggest the occurrence of an eIF3/eIF1/eIF5/eIF2 multifactor complex, which was observed in cell extracts free of 40S ribosomes and found to contain stoichiometric amounts of tRNAiMet. The multifactor complex was disrupted by the tif5-7A mutation in the bipartite motif of eIF5. Importantly, the tif5-7A mutant is temperature sensitive and displayed a substantial reduction in translation initiation at the restrictive temperature. We propose that the multifactor complex is an important intermediate in translation initiation in vivo.
机译:结合到GTP的翻译起始因子2(eIF2)将起始蛋氨酸tRNA转移到40S核糖体亚基上。在Met-tRNAiMet和起始密码子之间进行碱基配对时,eIF5会通过eIF2 / GTP / Met-tRNAiMet三元复合物刺激GTP水解。 eIF2,eIF5和eIF1都与严格选择AUG作为起始密码子有关。 eIF3与40S核糖体结合并促进三元复合物的募集;但是,尚未观察到eIF3和eIF2之间的物理接触。我们显示酵母eIF5可以通过同时绑定到eIF3亚基NIP1的氨基末端和eIF2β的氨基末端一半,从而在eIF3和eIF2之间建立体外相互作用,这取决于eIF5羧基末端的保守两部分基序。此外,NIP1的氨基末端可以同时与eIF5和eIF1结合。这些发现表明存在eIF3 / eIF1 / eIF5 / eIF2多因子复合物,该复合物在不含40S核糖体的细胞提取物中观察到,并发现含有化学计量的tRNAiMet。多因子复合物被eIF5的两部分基序中的tif5-7A突变破坏。重要的是,tif5-7A突变体对温度敏感,并且在限制性温度下表现出翻译起始的大量减少。我们建议多因素复合物是体内翻译起始中的重要中间体。

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