Transfer RNA (tRNA)
tRNA or transfer RNA plays a key role in translation, the process of synthesizing proteins from amino acids in a sequence specified by information contained in messenger RNA[1][2]. During this process, triplets of nucleotides (codons) of the messenger RNA are translated according to the genetic code into one of the 20 amino acids. tRNAs serve as the dictionary in this translation process.

They contain a specific triplet nucleotide sequence, the anticodon, and they get attached to a specific (cognate) amino acid. During protein synthesis by ribosomes, tRNAs deliver the correct amino acids through interactions of their anticodon region with the complementary codons on the messenger RNA. Apart from their distinct anticodon regions, different tRNAs have very similar structures, allowing them to all fit into the tRNA-binding sites on the ribosome.
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3D Structures of tRNA
Updated on 29-March-2026
- Cys-tRNA
- Sec-tRNA (selenocysteine-tRNA)
- Glu-tRNA
- 1gtr, 1gts – EcRNA + Glu-tRNA synthetase
- 1g59 – TtRNA + Glu-tRNA synthetase
- 1n77 – TtRNA + Glu-tRNA synthetase + ATP
- 2cv0 – TtRNA + Glu-tRNA synthetase + Glu
- 2cv2 – TtRNA + Glu-tRNA synthetase + Glu-AMS
- 2cv1 – TtRNA + Glu-tRNA synthetase + ATP + Glu
- 1n78, 2dxi – TtRNA + Glu-tRNA synthetase + glutamol-ATP
- 2d6f – RNA + Glu-tRNA amidotransferase – Methanothermobacter thermautotrophicus
- 2der, 2det, 2deu – EcRNA + MNMA
- 5hr6, 5hr7 – EcRNA + RLMN
- 1gtr, 1gts – EcRNA + Glu-tRNA synthetase
- Gln-tRNA
- Gly-tRNA
- His-tRNA
- Ile-tRNA
- Leu-tRNA
- 1wz2 – PhRNA + Leu-tRNA synthetase
- 2bte, 2byt – TtRNA + Leu-tRNA synthase
- 2v0g – TtRNA + Leu-tRNA synthase + antifungal agent
- 2nqp, 2nr0, 2nre – EcRNA + tRNA pseudouridine synthase
- 4aq7, 4cqn – EcRNA + Leu-tRNA synthetase + Leu-AMP
- 4arc – EcRNA + Leu-tRNA synthetase + Leu
- 4ari, 4as1, 3zjt, 3zju, 3zjv – EcRNA + Leu-tRNA synthetase + benzoxarborole
- 3zgz – EcRNA + Leu-tRNA synthetase + agrocin
- 2zzm – MjRNA + ATRM5
- 3j5y, 3j5s – hRNA + ERF1 + ERF3A + mRNA
- 5ah5 – RNA + Leu-tRNA synthetase + Leu-AMS – Agrobacterium radiobacter
- 1wz2 – PhRNA + Leu-tRNA synthetase
- Lys-tRNA
- PyroLys-tRNA
- 2zni – RNA + PyrLys-tRNA synthetase – Desulfitobacterium hafniense
- 2zni – RNA + PyrLys-tRNA synthetase – Desulfitobacterium hafniense
- Met-tRNA
- 2csx – AaRNA + Met-tRNA synthetase
- 2csx – AaRNA + Met-tRNA synthetase
- Phe-tRNA
- 1ehz, 4tna, 6tna, 1tra, 1tn2, 1tn1, 1fcw – yRNA
- 1eiy, 2iy5, 3tup – TtRNA + Phe-tRNA synthetase
- 2iy5 – TtRNA + Phe-tRNA synthetase + Phe-AMP
- 3tup – hRNA + Phe-tRNA synthetase
- 3foz, 2zm5 – EcRNA + tRNA isopentenyltransferase
- 2zxu – EcRNA + tRNA isopentenyltransferase + DMASPP
- 4yco – EcRNA + tRNA dihydrouridine synthetase
- 3q1q, 3q1r – TmRNA + RNase
- 3izy – bRNA + IF-2
- 1ehz, 4tna, 6tna, 1tra, 1tn2, 1tn1, 1fcw – yRNA
- Pro-tRNA
- Ser-tRNA
- 1ser – TtRNA + Ser-tRNA synthetase
- 1ser – TtRNA + Ser-tRNA synthetase
- Thr-tRNA
- Trp-tRNA
- Tyr-tRNA
- Val-tRNA
- Initiator tRNA (Formyl-methionine-tRNA)
- tRNA
- 2dr7, 2dr9, 2drb, 2zh3, 2zh4, 2zh5, 2zh7, 2zh8, 2zh9, 2zhb, 3ouy, 3ov7, 3ova, 3ovb, 3ovs – RNA 33-mer + CCA adding enzyme
- 2dr8, 2dra, 2zh1, 2zh2, 2zh6, 2zha – RNA 33-mer + CCA adding enzyme + nucleotide
- 3eph, 3epj, 3epk, 3epl – RNA + ytRNA isopentenyltransferase
- 3b0v – TtRNA + tRNA dihydrouridine synthetase
- 4yvi, 4yvj, 4yvk – RNA + tRNA methyltransferase + sinefungin – Haemophilus influenzae
- 2dr7, 2dr9, 2drb, 2zh3, 2zh4, 2zh5, 2zh7, 2zh8, 2zh9, 2zhb, 3ouy, 3ov7, 3ova, 3ovb, 3ovs – RNA 33-mer + CCA adding enzyme
- tRNA in the ribosome
- 4v9c, 486d, 1mj1, 1ml5, 1pn7, 1pn8, 1zo1, 1zo3, 3deg, 3ep2, 3eq3, 3eq4, 3j46, 4v49, 4v4v, 4v4w, 4v50, 4v5h, 4v69, 4v6d, 4v6e, 4v6k, 4v6l, 4v6n, 4v6o, 4v6p, 4v6q, 4v6r, 4v6s, 4v6v, 4v6y, 4v6z, 4v70, 4v71, 4v72, 4v73, 4v74, 4v75, 4v76, 4v77, 4v78, 4v79, 4v7a, 4v7c, 4v7d, 4v9c, 3j7z, 3j9z, 3ja1, 4woi, 5gad, 5gae, 5gag, 5gah, 5gaf – EcRNA
- 1jgo, 1jgp, 1jgq, 1xnq, 1xnr, 2om7, 3t1h, 3t1y, 4gkj, 4gkk, 4jv5, 4jya, 4v42, 4v48, 4v4i, 4v4j, 4v4p, 4v4r, 4v4s, 4v4t, 4v4x, 4v4y, 4v4z, 4v51, 4v5a, 4v5c, 4v5d, 4v5e, 4v5f, 4v5g, 4v5j, 4v5k, 4v5l, 4v5m, 4v5n, 4v5p, 4v5q, 4v5r, 4v5s, 4v63, 4v67, 4v68, 4v6a, 4v6f, 4v6g, 4v7l, 4v7m, 4v7p, 4v87, 4v8b, 4v8c, 4v8d, 4v8e, 4v8f, 4v8j, 4v8n, 4v8o, 4v8q, 4v95, 4v97, 4v9a, 4v9b, 4v9h, 4v9i, 4v9j, 4v9n, 4v9q, 4v9r, 4v9s, 1vvj, 4l47, 4l71, 4lel, 4lfz, 4lnt, 4lsk, 4lt8, 4p70, 1vy4, 1vy5, 1vy6, 1vy7, 4p6f, 4w29, 4w2e, 4w2f, 4w2g, 4w2h, 4w2i, 4wt8, 4wpo, 4wqf, 4wqu, 4wqy, 4y4p, 4tua, 4tub, 4tuc, 4tud, 4tue, 4z8c, 4zer, 4z3s, 4wq1, 4wqr, 4wr6, 4wra, 4wro, 4wsd, 4wsm, 4wt1, 4wu1, 4wzd, 4wzo, 5aa0, 5d8b, 4w4g, 4ypb, 4yzv, 5doy, 5e7k, 5e81, 5el4, 5el5 – TtRNA
- 1njm, 1njp – RNA – Deinococcus radiodurans
- 1qvf – HmRNA
- 3j0l, 3j0o, 3j0p, 3j0q, 4uje, 4ujc, 4ujd, 3j92, 3jaj, 3jan, 3jag, 3jah, 3jai – RNA – rabbit
- 3j16, 3j6b, 4v6i, 4v8y, 4v8z, 5gak – yRNA
- 4v4n – MjRNA
- 4v5z – RNA - dog
- 4v6u – RNA – Pyrococcus furiosuso
- 4v6w – RNA – Drosophila melanogaster
- 4v6x, 3j7y, 3j9m, 4ug0, 5a8l – hRNA
- 4v7e – RNA - wheat
- 4v7h – RNA - Thermomyces lanuginosus
- 4v8m – RNA – Trypanosoma brucei
- 3j7a, 3jbn, 3jbo, 3jbp – RNA – Plasmodium falciparum
- 3j7r, 4v19, 5aj3, 5aj4 – RNA - pig
- 4wj3 – PaRNA
- 3j9w – BsRNA
- 3jbu – RNA - Bolitoglossa
- 4v9c, 486d, 1mj1, 1ml5, 1pn7, 1pn8, 1zo1, 1zo3, 3deg, 3ep2, 3eq3, 3eq4, 3j46, 4v49, 4v4v, 4v4w, 4v50, 4v5h, 4v69, 4v6d, 4v6e, 4v6k, 4v6l, 4v6n, 4v6o, 4v6p, 4v6q, 4v6r, 4v6s, 4v6v, 4v6y, 4v6z, 4v70, 4v71, 4v72, 4v73, 4v74, 4v75, 4v76, 4v77, 4v78, 4v79, 4v7a, 4v7c, 4v7d, 4v9c, 3j7z, 3j9z, 3ja1, 4woi, 5gad, 5gae, 5gag, 5gah, 5gaf – EcRNA
- ↑ Biochemistry 5th ed. Berg JM, Tymoczko JL, Stryer L. New York: W H Freeman; 2002. Section 29.1 "Protein Synthesis Requires the Translation of Nucleotide Sequences Into Amino Acid Sequences" retrieved on 10/31/2018 from [1]
- ↑ Molecular Biology of the Cell. 4th ed. Section "From RNA to Protein" retrieved on 10/31/2018 from [2]
See Also
References
Reference for the structure
- Shi H, Moore PB. The crystal structure of yeast phenylalanine tRNA at 1.93 A resolution: a classic structure revisited. RNA. 2000 Aug;6(8):1091-105. PMID:10943889
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