Crystallographic studies of elongation factor G
- 1 December 1995
- journal article
- review article
- Published by Canadian Science Publishing in Biochemistry and Cell Biology
- Vol. 73 (11-12) , 1209-1216
- https://doi.org/10.1139/o95-130
Abstract
The elongation factors G (EF-G) and Tu (EF-Tu) go through a number of conformation states in their functional cycles. Since they both are GTPases, have similar G domains and domains II, and have similar interactions with the nucleotides, then GTP hydrolysis must occur in similar ways. The crystal structures of two conformational states are known for EF-G and three are known for EF-Tu. The conformations of EF-G∙GDP and EF-Tu∙GTP are closely related. EF-Tu goes through a large conformational change upon GTP cleavage. This conformational change is to a large extent due to an altered interaction between the G domain and domains II and III. A number of kirromycin-resistant mutations are situated at the interface between domains I and III. The interface between the G domain and domain V in EF-G corresponds with this dynamic interface in EF-Tu. The contact area in EF-G is small and dominated by interactions between charged amino acids, which are part of a system that is observed to undergo conformational changes. Furthermore, a number of fusidic acid resistant mutants have been identified in this area. All of this evidence makes it likely that EF-G undergoes a large conformational change in its functional cycle. If the structures and conformational states of the elongation factors are related to a scheme in which the ribosome oscillates between two conformations, the pretranslocational and posttranslocational states, a model is arrived at in which EF-Tu drives the reaction in one direction and EF-G in the opposite. This may lead to the consequence that the GTP state of one factor is similar to the GDP state of the other. At the GTP hydrolysis state, the structures of the factors will be close to superimposable.Key words: elongation factor G, elongation factor Tu, crystal structures, conformational changes, ribosomal conformation.Keywords
This publication has 19 references indexed in Scilit:
- Starvation in vivo for aminoacyl-tRNA increases the spatial separation between the two ribosomal subunitsCell, 1994
- Synergism between the GTPase Activities of EF-Tu·GTP and EF-G·GTP on Empty Ribosomes: Elongation Factors as Stimulators of the Ribosomal Oscillation between Two ConformationsJournal of Molecular Biology, 1994
- Mutations to kirromycin resistance occur in the interface of domains I and III of EF‐Tu·GTPFEBS Letters, 1994
- Alpha plus beta folds revisited: some favoured motifsStructure, 1993
- Crystal structure of active elongation factor Tu reveals major domain rearrangementsNature, 1993
- Refined structure of elongation factor EF-Tu from Escherichia coliJournal of Molecular Biology, 1992
- MOLSCRIPT: a program to produce both detailed and schematic plots of protein structuresJournal of Applied Crystallography, 1991
- Conformational changes in ribosomes upon interaction with elongation factorsBiochimie, 1989
- Structural studies of ribosomesProgress in Biophysics and Molecular Biology, 1982
- The role of guanosine 5′-triphosphate in polypeptide chain elongationBiochimica et Biophysica Acta (BBA) - Reviews on Bioenergetics, 1978