Protein synthesis in bacteria is terminated by release factors 1 or 2 (RF1/2), which, on recognition of a stop codon in the decoding site on the ribosome, promote the hydrolytic release of the polypeptide from the transfer RNA (tRNA). Subsequently, the dissociation of RF1/2 is accelerated by RF3, a guanosine triphosphatase (GTPase) that hydrolyzes GTP during the process. Here we show that—in contrast to a previous report—RF3 binds GTP and guanosine diphosphate (GDP) with comparable affinities. Furthermore, we find that RF3–GTP binds to the ribosome and hydrolyzes GTP independent of whether the P site contains peptidyl-tRNA (pre-termination state) or deacylated tRNA (post-termination state). RF3–GDP in either pre- or post-termination complex...
In bacteria, nascent peptide is released from ribosome after the completion of protein synthesis, le...
The GTPase elongation factor G (EF-G) is an important player in the complex process of protein synth...
AbstractThe bacterial translational GTPases release factor RF3 promotes translation termination by r...
Protein synthesis in bacteria is terminated by release factors 1 or 2 (RF1/2), which, on recognition...
Protein synthesis in bacteria is terminated by release factors 1 or 2 (RF1/2), which, on recognition...
Release factors RF1 and RF2 promote hydrolysis of peptidyl-tRNA during translation termination. The ...
The aim of this work was to understand the molecular mechanism of translation and the mechanism of t...
AbstractThe mechanism by which peptide release factor RF3 recycles RF1 and RF2 has been clarified an...
In bacteria, release of newly synthesized proteins from ribosomes during translation termination is ...
Termination of protein synthesis by the ribosome requires two release factor (RF) classes. The class...
AbstractRapid protein synthesis in bacteria requires the G proteins IF2, EF-Tu, EF-G, and RF3. These...
During translation termination in bacteria, the release factors RF1 and RF2 are recycled from the ri...
Protein synthesis requires several guanosine triphosphatase (GTPase) factors, including elongation f...
Protein biosynthesis is a core process in all living organisms. Assembly of the protein chain from a...
Translational GTPases (trGTPases) play key roles in facilitating protein synthesis on the ribosome. ...
In bacteria, nascent peptide is released from ribosome after the completion of protein synthesis, le...
The GTPase elongation factor G (EF-G) is an important player in the complex process of protein synth...
AbstractThe bacterial translational GTPases release factor RF3 promotes translation termination by r...
Protein synthesis in bacteria is terminated by release factors 1 or 2 (RF1/2), which, on recognition...
Protein synthesis in bacteria is terminated by release factors 1 or 2 (RF1/2), which, on recognition...
Release factors RF1 and RF2 promote hydrolysis of peptidyl-tRNA during translation termination. The ...
The aim of this work was to understand the molecular mechanism of translation and the mechanism of t...
AbstractThe mechanism by which peptide release factor RF3 recycles RF1 and RF2 has been clarified an...
In bacteria, release of newly synthesized proteins from ribosomes during translation termination is ...
Termination of protein synthesis by the ribosome requires two release factor (RF) classes. The class...
AbstractRapid protein synthesis in bacteria requires the G proteins IF2, EF-Tu, EF-G, and RF3. These...
During translation termination in bacteria, the release factors RF1 and RF2 are recycled from the ri...
Protein synthesis requires several guanosine triphosphatase (GTPase) factors, including elongation f...
Protein biosynthesis is a core process in all living organisms. Assembly of the protein chain from a...
Translational GTPases (trGTPases) play key roles in facilitating protein synthesis on the ribosome. ...
In bacteria, nascent peptide is released from ribosome after the completion of protein synthesis, le...
The GTPase elongation factor G (EF-G) is an important player in the complex process of protein synth...
AbstractThe bacterial translational GTPases release factor RF3 promotes translation termination by r...