A unique conformation of the anticodon stem-loop is associated with the capacity of tRNAfMet to initiate protein synthesis
Open Access
- 23 July 2008
- journal article
- research article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 36 (15) , 4894-4901
- https://doi.org/10.1093/nar/gkn462
Abstract
In all organisms, translational initiation takes place on the small ribosomal subunit and two classes of methionine tRNA are present. The initiator is used exclusively for initiation of protein synthesis while the elongator is used for inserting methionine internally in the nascent polypeptide chain. The crystal structure of Escherichia coli initiator tRNAfMet has been solved at 3.1 Å resolution. The anticodon region is well-defined and reveals a unique structure, which has not been described in any other tRNA. It encompasses a Cm32•A38 base pair with a peculiar geometry extending the anticodon helix, a base triple between A37 and the G29-C41 pair in the major groove of the anticodon stem and a modified stacking organization of the anticodon loop. This conformation is associated with the three GC basepairs in the anticodon stem, characteristic of initiator tRNAs and suggests a mechanism by which the translation initiation machinery could discriminate the initiator tRNA from all other tRNAs.Keywords
This publication has 45 references indexed in Scilit:
- Structural basis for mRNA and tRNA positioning on the ribosomeProceedings of the National Academy of Sciences, 2006
- Structure of the 70 S Ribosome Complexed with mRNA and tRNAScience, 2006
- Toward the structural genomics of complexes: Crystal structure of a PE/PPE protein complex from Mycobacterium tuberculosisProceedings of the National Academy of Sciences, 2006
- Scaling and assessment of data qualityActa Crystallographica Section D-Biological Crystallography, 2005
- Coot: model-building tools for molecular graphicsActa Crystallographica Section D-Biological Crystallography, 2004
- Use of TLS parameters to model anisotropic displacements in macromolecular refinementActa Crystallographica Section D-Biological Crystallography, 2001
- The crystal structure of yeast phenylalanine tRNA at 2.0 Å resolution: cleavage by Mg 2+ in 15-year old crystals 1 1Edited by J. KarnJournal of Molecular Biology, 2000
- Singly and Bifurcated Hydrogen-bonded Base-pairs in tRNA Anticodon Hairpins and RibozymesJournal of Molecular Biology, 1999
- Refinement of Macromolecular Structures by the Maximum-Likelihood MethodActa Crystallographica Section D-Biological Crystallography, 1997
- The CCP4 suite: programs for protein crystallographyActa Crystallographica Section D-Biological Crystallography, 1994