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Transfer RNA (tRNA)

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==Structure==
==Structure==
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The structure of most tRNA is composed of <scene name='TRNA/Fullview_cartoon/1'>four helical stems</scene> arranged in a cloverleaf structure with four helical stems and an central four-way junction. The <scene name='TRNA/Acceptor_cartoon/1'>acceptor stem</scene> comprises the 5' and 3' ends of the molecule, the latter having an extension of four unpaired nucleotides, with a conserved terminal -CCA sequence at the 3' end. The anticodon stem, at the other end of the molecule is closed by the <scene name='TRNA/Anticodon_cartoon/2'>anticodon</scene> loop. The TΨC-stem and loop and the D-stem and loop form the core of the molecule.
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The structure of most tRNA<ref>PMID:4601792</ref> is composed of <scene name='TRNA/Fullview_cartoon/1'>four helical stems</scene> arranged in a cloverleaf structure with four helical stems and an central four-way junction. The <scene name='TRNA/Acceptor_cartoon/1'>acceptor stem</scene> comprises the 5' and 3' ends of the molecule, the latter having an extension of four unpaired nucleotides, with a conserved terminal -CCA sequence at the 3' end. The anticodon stem, at the other end of the molecule is closed by the <scene name='TRNA/Anticodon_cartoon/2'>anticodon</scene> loop. The TΨC-stem and loop and the D-stem and loop form the core of the molecule.
The overall shape of the molecule is that of a capital "L" letter. The two arms of the "L" are formed by the stacking of the acceptor and TΨC-stem on one side, and of the anticodon and D-stem on the other side. <scene name='TRNA/Tertiary_interactions/1'>Tertiary interactions</scene> between the TΨC- and D-loop form the corner of the L-shape and stabilise the structure. Non-Watson-Crick <scene name='43/433638/H_bonding/1'>hydrogen bonding</scene> is important in this core.
The overall shape of the molecule is that of a capital "L" letter. The two arms of the "L" are formed by the stacking of the acceptor and TΨC-stem on one side, and of the anticodon and D-stem on the other side. <scene name='TRNA/Tertiary_interactions/1'>Tertiary interactions</scene> between the TΨC- and D-loop form the corner of the L-shape and stabilise the structure. Non-Watson-Crick <scene name='43/433638/H_bonding/1'>hydrogen bonding</scene> is important in this core.

Revision as of 04:47, 16 October 2017

Yeast Phe-tRNA (PDB code 1ehz)

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3D Structures of tRNA

Updated on 16-October-2017


See Also

References

  1. Monajemi H, Omar NY, Daud MN, Zain SM, Abdullah WA. The role of initiator tRNAimet in fidelity of initiation of protein synthesis. Nucleosides Nucleotides Nucleic Acids. 2011 Sep;30(9):726-39. doi:, 10.1080/15257770.2011.605780. PMID:21902474 doi:http://dx.doi.org/10.1080/15257770.2011.605780
  2. Motorin Y, Helm M. tRNA stabilization by modified nucleotides. Biochemistry. 2010 Jun 22;49(24):4934-44. PMID:20459084 doi:10.1021/bi100408z
  3. Kim SH, Suddath FL, Quigley GJ, McPherson A, Sussman JL, Wang AH, Seeman NC, Rich A. Three-dimensional tertiary structure of yeast phenylalanine transfer RNA. Science. 1974 Aug 2;185(4149):435-40. PMID:4601792

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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