The translation elongation machinery in fungi differs from other eukaryotes in its dependence upon eukaryotic elongation factor 3 (eEF3). eEF3 is essential in vivo and required for each cycle of the translation elongation process in vitro. Models predict eEF3 affects the delivery of cognate aminoacyl-tRNA, a function performed by eEF1A, by removing deacylated tRNA from the ribosomal Exit site. To dissect eEF3 function and its link to the A-site activities of eEF1A, we have identified a temperature-sensitive allele of the YEF3 gene. The F650S substitution, located between the two ATP binding cassettes, reduces both ribosome-dependent and intrinsic ATPase activities.In vivo this mutation increases sensitivity to aminoglycosidic drugs, causes ...
G-proteins play critical roles in many cellular processes and are regulated by accessory proteins th...
The translation elongation factor 1 complex (eEF1) plays a central role in protein synthesis, delive...
Although the actin cytoskeleton and the translation machinery are considered to be separate cellular...
Eukaryotic translation elongation factor 3 (eEF3) is a fungal-specific ATPase proposed to catalyze t...
Eukaryotic translation elongation factor 3 (eEF3) is a fungal-specific ATPase proposed to catalyze t...
Eukaryotic translation elongation factor 3 (eEF3) is a fungal-specific ATPase proposed to catalyze t...
Translation, the mechanism by which proteins are synthesized based on the information encoded in mRN...
In most eukaryotic organisms, translation elongation requires two highly conserved elongation factor...
Translation elongation is mediated by ribosomes and multiple soluble factors, many of which are cons...
In addition to the conserved translation elongation factors eEF1A and eEF2, fungi require a third es...
A series of mutations in the highly conserved N153KMD156GTP-binding motif of theSaccharomyces cerevi...
In addition to the standard set of translation factors common in eukaryotic organisms, protein synth...
In addition to the standard set of translation factors common in eukaryotic organisms, protein synth...
In addition to the standard set of translation factors common in eukaryotic organisms, protein synth...
Previous studies have suggested that phosphorylation of translation elongation factor 1A (eEF1A) can...
G-proteins play critical roles in many cellular processes and are regulated by accessory proteins th...
The translation elongation factor 1 complex (eEF1) plays a central role in protein synthesis, delive...
Although the actin cytoskeleton and the translation machinery are considered to be separate cellular...
Eukaryotic translation elongation factor 3 (eEF3) is a fungal-specific ATPase proposed to catalyze t...
Eukaryotic translation elongation factor 3 (eEF3) is a fungal-specific ATPase proposed to catalyze t...
Eukaryotic translation elongation factor 3 (eEF3) is a fungal-specific ATPase proposed to catalyze t...
Translation, the mechanism by which proteins are synthesized based on the information encoded in mRN...
In most eukaryotic organisms, translation elongation requires two highly conserved elongation factor...
Translation elongation is mediated by ribosomes and multiple soluble factors, many of which are cons...
In addition to the conserved translation elongation factors eEF1A and eEF2, fungi require a third es...
A series of mutations in the highly conserved N153KMD156GTP-binding motif of theSaccharomyces cerevi...
In addition to the standard set of translation factors common in eukaryotic organisms, protein synth...
In addition to the standard set of translation factors common in eukaryotic organisms, protein synth...
In addition to the standard set of translation factors common in eukaryotic organisms, protein synth...
Previous studies have suggested that phosphorylation of translation elongation factor 1A (eEF1A) can...
G-proteins play critical roles in many cellular processes and are regulated by accessory proteins th...
The translation elongation factor 1 complex (eEF1) plays a central role in protein synthesis, delive...
Although the actin cytoskeleton and the translation machinery are considered to be separate cellular...