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-Structure paper
Title | Structural insights into the decoding capability of isoleucine tRNAs with lysidine and agmatidine. |
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Journal, issue, pages | Nat Struct Mol Biol, Year 2024 |
Publish date | Mar 27, 2024 |
Authors | Naho Akiyama / Kensuke Ishiguro / Takeshi Yokoyama / Kenjyo Miyauchi / Asuteka Nagao / Mikako Shirouzu / Tsutomu Suzuki / |
PubMed Abstract | The anticodon modifications of transfer RNAs (tRNAs) finetune the codon recognition on the ribosome for accurate translation. Bacteria and archaea utilize the modified cytidines, lysidine (L) and ...The anticodon modifications of transfer RNAs (tRNAs) finetune the codon recognition on the ribosome for accurate translation. Bacteria and archaea utilize the modified cytidines, lysidine (L) and agmatidine (agmC), respectively, in the anticodon of tRNA to decipher AUA codon. L and agmC contain long side chains with polar termini, but their functions remain elusive. Here we report the cryogenic electron microscopy structures of tRNAs recognizing the AUA codon on the ribosome. Both modifications interact with the third adenine of the codon via a unique C-A geometry. The side chains extend toward 3' direction of the mRNA, and the polar termini form hydrogen bonds with 2'-OH of the residue 3'-adjacent to the AUA codon. Biochemical analyses demonstrated that AUA decoding is facilitated by the additional interaction between the polar termini of the modified cytidines and 2'-OH of the fourth mRNA residue. We also visualized cyclic N-threonylcarbamoyladenosine (ctA), another tRNA modification, and revealed a molecular basis how ctA contributes to efficient decoding. |
External links | Nat Struct Mol Biol / PubMed:38538915 |
Methods | EM (single particle) |
Resolution | 2.32 - 2.69 Å |
Structure data | EMDB-35001, PDB-8hsp: EMDB-35020, PDB-8htz: EMDB-35022, PDB-8hu1: |
Chemicals | ChemComp-MG: ChemComp-K: |
Source |
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Keywords | RIBOSOME / tRNA modification / decoding |