Literature DB >> 11333014

An extended structural signature for the tRNA anticodon loop.

P Auffinger, E Westhof.   

Abstract

Anticodon hairpins are structural motifs with contradictory functions. The recognition by aminoacyl synthetases implies extended interactions with the anticodon base triplet and thus, usually, an unfolding of the anticodon loop. The recognition by the ribosome and cognate interaction with a mRNA codon implies, on the other hand, the formation of a mini-helix with a canonical anticodon hairpin structure as observed by crystallography and NMR. To be able to understand the various properties of this motif, a precise description of its structural conservation is required. Here, on the basis of phylogenetic, structural, and molecular dynamics data, we discuss a conserved interaction established between the ribose of the U33 and the base at position 35, either a purine or a pyrimidine. This interaction involves the hydrogen bonding donor or acceptor potential of the hydroxyl group of U33 and has to be integrated in an extended definition of the anticodon hairpin. The extended structural signature provides also an explanation for the role played by pseudouridines at position 35.

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Year:  2001        PMID: 11333014      PMCID: PMC1370090          DOI: 10.1017/s1355838201002382

Source DB:  PubMed          Journal:  RNA        ISSN: 1355-8382            Impact factor:   4.942


  39 in total

1.  A critical role of water in the specific cleavage of the anticodon loop of some eukaryotic methionine initiator tRNAs.

Authors:  Marcus Perbandt; Miroslawa Z Barciszewska; Christian Betzel; Volker A Erdmann; Jan Barciszewski
Journal:  Mol Biol Rep       Date:  2003-03       Impact factor: 2.316

2.  tRNomics: analysis of tRNA genes from 50 genomes of Eukarya, Archaea, and Bacteria reveals anticodon-sparing strategies and domain-specific features.

Authors:  Christian Marck; Henri Grosjean
Journal:  RNA       Date:  2002-10       Impact factor: 4.942

3.  A domain of the actin binding protein Abp140 is the yeast methyltransferase responsible for 3-methylcytidine modification in the tRNA anti-codon loop.

Authors:  Sonia D'Silva; Steffen J Haider; Eric M Phizicky
Journal:  RNA       Date:  2011-04-25       Impact factor: 4.942

4.  A new understanding of the decoding principle on the ribosome.

Authors:  Natalia Demeshkina; Lasse Jenner; Eric Westhof; Marat Yusupov; Gulnara Yusupova
Journal:  Nature       Date:  2012-03-21       Impact factor: 49.962

5.  Coplanar and coaxial orientations of RNA bases and helices.

Authors:  Alain Laederach; Joseph M Chan; Armin Schwartzman; Eric Willgohs; Russ B Altman
Journal:  RNA       Date:  2007-03-05       Impact factor: 4.942

6.  Degeneracy of the genetic code and stability of the base pair at the second position of the anticodon.

Authors:  Jean Lehmann; Albert Libchaber
Journal:  RNA       Date:  2008-05-21       Impact factor: 4.942

7.  Analysis of genomic tRNA sets from Bacteria, Archaea, and Eukarya points to anticodon-codon hydrogen bonds as a major determinant of tRNA compositional variations.

Authors:  Ilia Targanski; Vera Cherkasova
Journal:  RNA       Date:  2008-04-25       Impact factor: 4.942

8.  Purine bases at position 37 of tRNA stabilize codon-anticodon interaction in the ribosomal A site by stacking and Mg2+-dependent interactions.

Authors:  Andrey L Konevega; Natalia G Soboleva; Valentin I Makhno; Yuri P Semenkov; Wolfgang Wintermeyer; Marina V Rodnina; Vladimir I Katunin
Journal:  RNA       Date:  2004-01       Impact factor: 4.942

9.  Emergence of a code in the polymerization of amino acids along RNA templates.

Authors:  Jean Lehmann; Michel Cibils; Albert Libchaber
Journal:  PLoS One       Date:  2009-06-03       Impact factor: 3.240

10.  Classification and energetics of the base-phosphate interactions in RNA.

Authors:  Craig L Zirbel; Judit E Sponer; Jiri Sponer; Jesse Stombaugh; Neocles B Leontis
Journal:  Nucleic Acids Res       Date:  2009-06-14       Impact factor: 16.971

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