Conformational Changes of Elongation Factor G on the Ribosome during tRNA Translocation
Author(s) -
Jinzhong Lin,
Matthieu G. Gag,
David Bulkley,
Thomas A. Steitz
Publication year - 2015
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2014.11.049
Subject(s) - ribosome , biology , ef tu , elongation factor , eukaryotic ribosome , t arm , transfer rna , conformational change , translation (biology) , biophysics , gtpase , peptidyl transferase , chromosomal translocation , protein biosynthesis , p site , microbiology and biotechnology , crystallography , biochemistry , messenger rna , rna , chemistry , gene
The universally conserved GTPase elongation factor G (EF-G) catalyzes the translocation of tRNA and mRNA on the ribosome after peptide bond formation. Despite numerous studies suggesting that EF-G undergoes extensive conformational rearrangements during translocation, high-resolution structures exist for essentially only one conformation of EF-G in complex with the ribosome. Here, we report four atomic-resolution crystal structures of EF-G bound to the ribosome programmed in the pre- and posttranslocational states and to the ribosome trapped by the antibiotic dityromycin. We observe a previously unseen conformation of EF-G in the pretranslocation complex, which is independently captured by dityromycin on the ribosome. Our structures provide insights into the conformational space that EF-G samples on the ribosome and reveal that tRNA translocation on the ribosome is facilitated by a structural transition of EF-G from a compact to an elongated conformation, which can be prevented by the antibiotic dityromycin.
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