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Structural Changes Enable Start Codon Recognition by the Eukaryotic Translation Initiation Complex

机译:结构的变化使真核翻译起始复合体能够开始密码子识别。

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During eukaryotic translation initiation, initiator tRNA does not insert fully into the P decoding site on the 40S ribosomal subunit. This conformation (POUT) is compatible with scanning mRNA for the AUG start codon. Base pairing with AUG is thought to promote isomerization to a more stable conformation (P_(IN)) that arrests scanning and promotes dissociation of eIF1 from the 40S subunit. Here, we present a cryoEM reconstruction of a yeast preinitiation complex at 4.0 ? resolution with initiator tRNA in the PIN state, prior to eIF1 release. The structure reveals stabilization of the codon-anticodon duplex by the N-terminal tail of eIF1A, changes in the structure of eIF1 likely instrumental in its subsequent release, and changes in the conformation of eIF2. The mRNA traverses the entire mRNA cleft and makes connections to the regulatory domain of eIF2a, eIF1A, and ribosomal elements that allow recognition of context nucleotides surrounding the AUG codon.
机译:在真核翻译起始过程中,启动子tRNA不能完全插入40S核糖体亚基的P解码位点。此构象(POUT)与扫描AUG起始密码子的mRNA兼容。与AUG的碱基配对被认为可促进异构化为更稳定的构象(P_(IN)),从而阻止扫描并促进eIF1从40S亚基的解离。在这里,我们提出了一个在4.0?酵母预初始化复合物的cryoEM重建。在eIF1释放之前,启动器tRNA处于PIN状态时解析。该结构揭示了eIF1A的N末端尾部对密码子-反密码子双链体的稳定性,eIF1的结构变化(可能在其后续释放中起重要作用)以及eIF2的构象变化。 mRNA遍历整个mRNA裂口,并与eIF2a,eIF1A和核糖体元件的调节域相连,从而可以识别AUG密码子周围的背景核苷酸。

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