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Cryo-EM study of start codon selection during archaeal translation initiation

机译:在古细菌翻译起始过程中选择起始密码子的Cryo-EM研究

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摘要

Eukaryotic and archaeal translation initiation complexes have a common structural core comprising e/aIF1, e/aIF1A, the ternary complex (TC, e/aIF2-GTP-Met-tRNAiMet) and mRNA bound to the small ribosomal subunit. e/aIF2 plays a crucial role in this process but how this factor controls start codon selection remains unclear. Here, we present cryo-EM structures of the full archaeal 30S initiation complex showing two conformational states of the TC. In the first state, the TC is bound to the ribosome in a relaxed conformation with the tRNA oriented out of the P site. In the second state, the tRNA is accommodated within the peptidyl (P) site and the TC becomes constrained. This constraint is compensated by codon/anticodon base pairing, whereas in the absence of a start codon, aIF2 contributes to swing out the tRNA. This spring force concept highlights a mechanism of codon/anticodon probing by the initiator tRNA directly assisted by aIF2.
机译:真核和古细菌翻译起始复合物具有共同的结构核心,包括e / aIF1,e / aIF1A,三元复合物(TC,e / aIF2-GTP-Met-tRNAi Met )和与小分子结合的mRNA。核糖体亚基。 e / aIF2在此过程中起着至关重要的作用,但尚不清楚该因​​素如何控制起始密码子的选择。在这里,我们介绍了完整的古细菌30S起始复合物的低温电磁结构,显示了TC的两个构象状态。在第一种状态下,TC以轻松的构型与核糖体结合,而tRNA则位于P位点之外。在第二种状态下,tRNA被容纳在肽基(P)位点内,并且TC受到约束。该限制通过密码子/反密码子碱基配对来补偿,而在没有起始密码子的情况下,aIF2有助于使tRNA消失。该弹簧力概念强调了直接由aIF2辅助的启动子tRNA进行密码子/反密码子探测的机制。

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