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The structure of an E. coli tRNAfMet A1–U72 variant shows an unusual conformation of the A1–U72 base pair

机译:大肠杆菌tRNAfMet A1-U72变体的结构显示出A1-U72碱基对的异常构象

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摘要

Translation initiation in eukaryotes and archaea involves a methionylated initiator tRNA delivered to the ribosome in a ternary complex with e/aIF2 and GTP. Eukaryotic and archaeal initiator tRNAs contain a highly conserved A1–U72 base pair at the top of the acceptor stem. The importance of this base pair to discriminate initiator tRNAs from elongator tRNAs has been established previously using genetics and biochemistry. However, no structural data illustrating how the A1–U72 base pair participates in the accurate selection of the initiator tRNAs by the translation initiation systems are available. Here, we describe the crystal structure of a mutant E. coli initiator tRNAfMetA1–U72, aminoacylated with methionine, in which the C1:A72 mismatch at the end of the tRNA acceptor stem has been changed to an A1–U72 base pair. Sequence alignments show that the mutant E. coli tRNA is a good mimic of archaeal initiator tRNAs. The crystal structure, determined at 2.8 Å resolution, shows that the A1–U72 pair adopts an unusual arrangement. A1 is in a syn conformation and forms a single H-bond interaction with U72. This interaction requires protonation of the N1 atom of A1. Moreover, the 5′ phosphoryl group folds back into the major groove of the acceptor stem and interacts with the N7 atom of G2. A possible role of this unusual geometry of the A1–U72 pair in the recognition of the initiator tRNA by its partners during eukaryotic and archaeal translation initiation is discussed.
机译:真核生物和古细菌的翻译起始涉及与e / aIF2和GTP形成三元复合体的甲硫氨酸化的起始tRNA传递到核糖体。真核和古细菌启动子tRNA在受体茎的顶部包含高度保守的A1-U72碱基对。以前已经使用遗传学和生物化学方法确定了该碱基对区分启动子tRNA和延伸子tRNA的重要性。但是,没有可用的结构数据来说明A1-U72碱基对如何参与翻译起始系统对起始tRNA的准确选择。在这里,我们描述了一个突变的大肠杆菌启动子tRNAf Met A1-U72的晶体结构,该蛋氨酸被蛋氨酸氨化,其中tRNA受体茎末端的C1:A72不匹配已更改为一个A1-U72碱基对。序列比对表明,突变的大肠杆菌tRNA是古细菌启动子tRNA的良好模拟。以2.8Å分辨率确定的晶体结构表明,A1-U72对采用了不同寻常的排列方式。 A1处于syn构象,并且与U72形成单个H键相互作用。这种相互作用需要使A1的N1原子质子化。此外,5'磷酸基折叠回到受体茎的主沟并与G 2 的N7原子相互作用。讨论了A 1 –U 72 对的这种异常几何结构在真核和古细菌翻译起始过程中被其伙伴识别启动子tRNA的可能作用。

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