Přehled o publikaci
2017
Structural Basis for Polyproline-Mediated Ribosome Stalling and Rescue by the Translation Elongation Factor EF-P
HUTER, P., S. ARENZ, L.V. BOCK, M. GRAF, J.O. FRISTER et. al.Basic information
Original name
Structural Basis for Polyproline-Mediated Ribosome Stalling and Rescue by the Translation Elongation Factor EF-P
Authors
HUTER, P. (276 Germany), S. ARENZ (276 Germany), L.V. BOCK (276 Germany), M. GRAF (276 Germany), J.O. FRISTER (276 Germany), A. HEUER (276 Germany), L. PEIL (233 Estonia), A.L. STAROSTA (276 Germany), I. WOHLGEMUTH (276 Germany), F. PESKE (276 Germany), Jiří NOVÁČEK (203 Czech Republic, guarantor, belonging to the institution), O. BERNINGHAUSEN (276 Germany), H. GRUBMULLER (276 Germany), T. TENSON (233 Estonia), R. BECKMANN (276 Germany), M.V. RODNINA (276 Germany), A.C. VAIANA (276 Germany) and D.N. WILSON (276 Germany)
Edition
Molecular Cell, CAMBRIDGE, CELL PRESS, 2017, 1097-2765
Other information
Language
English
Type of outcome
Article in a journal
Country of publisher
United States of America
Confidentiality degree
is not subject to a state or trade secret
References:
RIV identification code
RIV/00216224:14740/17:00100397
Organization
Středoevropský technologický institut – Repository – Repository
UT WoS
000414250700007
Keywords in English
PEPTIDE-BOND FORMATION; AMINOACYL-TRANSFER-RNA; MOLECULAR-DYNAMICS; PROTEIN-SYNTHESIS; 70S RIBOSOME; CRYO-EM; CRYSTAL-STRUCTURE; PROLINE RESIDUES; FACTOR EIF5A; MECHANISM
Links
LM2015043, research and development project.
Changed: 5/9/2020 12:41, RNDr. Daniel Jakubík
Abstract
V originále
Ribosomes synthesizing proteins containing consecutive proline residues become stalled and require rescue via the action of uniquely modified translation elongation factors, EF-P in bacteria, or archaeal/eukaryotic a/eIF5A. To date, no structures exist of EF-P or eIF5A in complex with translating ribosomes stalled at polyproline stretches, and thus structural insight into how EF-P/eIF5A rescue these arrested ribosomes has been lacking. Here we present cryo-EM structures of ribosomes stalled on proline stretches, without and with modified EF-P. The structures suggest that the favored conformation of the polyproline-containing nascent chain is incompatible with the peptide exit tunnel of the ribosome and leads to destabilization of the peptidyltRNA. Binding of EF-P stabilizes the P-site tRNA, particularly via interactions between its modification and the CCA end, thereby enforcing an alternative conformation of the polyproline-containing nascent chain, which allows a favorable substrate geometry for peptide bond formation.