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首页> 外文期刊>Journal of Molecular Biology >GTP-dependent Recognition of the Methionine Moiety on Initiator tRNA by Translation Factor eIF2.
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GTP-dependent Recognition of the Methionine Moiety on Initiator tRNA by Translation Factor eIF2.

机译:翻译因子eIF2对启动子tRNA上蛋氨酸部分的GTP依赖性识别。

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摘要

Eukaryotic translation initiation factor 2 (eIF2) is a G-protein that functions as a central switch in the initiation of protein synthesis. In its GTP-bound state it delivers the methionyl initiator tRNA (Met-tRNA(i)) to the small ribosomal subunit and releases it upon GTP hydrolysis following the recognition of the initiation codon. We have developed a complete thermodynamic framework for the assembly of the Saccharomyces cerevisiae eIF2.GTP.Met-tRNA(i) ternary complex and have determined the effect of the conversion of GTP to GDP on eIF2's affinity for Met-tRNA(i) in solution. In its GTP-bound state the factor forms a positive interaction with the methionine moiety on Met-tRNA(i) that is disrupted when GTP is replaced with GDP, while contacts between the factor and the body of the tRNA remain intact. This positive interaction with the methionine residue on the tRNA may serve to ensure that only charged initiator tRNA enters the initiation pathway. The toggling on and off of the factor's interaction with the methionine residue is likely to play an important role in the mechanism of initiator tRNA release upon initiation codon recognition. In addition, we show that the conserved base-pair A1:U72, which is known to be a critical identity element distinguishing initiator from elongator methionyl tRNA, is required for recognition of the methionine moiety by eIF2. Our data suggest that a role of this base-pair is to orient the methionine moiety on the initiator tRNA in its recognition pocket on eIF2.
机译:真核翻译起始因子2(eIF2)是一种G蛋白,在蛋白质合成的起始过程中起着中心开关的作用。在其与GTP结合的状态下,它将甲硫酰基引发剂tRNA(Met-tRNA(i))传递至小的核糖体亚基,并在识别起始密码子后经GTP水解释放。我们已经开发了用于酿酒酵母eIF2.GTP.Met-tRNA(i)三元复合物组装的完整热力学框架,并确定了GTP转化为GDP对eIF2对溶液中Met-tRNA(i)亲和力的影响。在其与GTP结合的状态下,该因子与Met-tRNA(i)上的蛋氨酸部分形成正相互作用,当GTP替换为GDP时,该因子被破坏,而该因子与tRNA主体之间的接触保持完整。与tRNA上甲硫氨酸残基的这种正相互作用可以确保仅带电荷的引发剂tRNA进入引发途径。在起始密码子识别后,切换与蛋氨酸残基的相互作用的开关可能在启动子tRNA释放的机制中起重要作用。此外,我们表明,保守的碱基对A1:U72是已知的区分启动子和延伸剂甲硫酰基tRNA的关键同一性元素,是eIF2识别甲硫氨酸部分所必需的。我们的数据表明,该碱基对的作用是使启动子tRNA上的蛋氨酸部分位于eIF2的识别口袋中。

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