SummaryThe 2′ OH of the peptidyl-tRNA substrate is thought to be important for catalysis of both peptide bond formation and peptide release in the ribosomal active site. The release reaction also specifically depends on a release factor protein (RF) to hydrolyze the ester linkage of the peptidyl-tRNA upon recognition of stop codons in the A site. Here, we demonstrate that certain amino acid substitutions (in particular those containing hydroxyl or thiol groups) in the conserved GGQ glutamine of release factor RF1 can rescue defects in the release reaction associated with peptidyl-tRNA substrates lacking a 2′ OH. We explored this rescue effect through biochemical and computational approaches that support a model where the 2′ OH of the P-site...
The chemical step of protein synthesis, peptide bond formation, is catalyzed by the large subunit of...
The ribosome is the molecular machine responsible for protein synthesis in all living organisms. Its...
We report the crystal structure of a translation termination complex formed by the Thermus thermophi...
SummaryThe 2′ OH of the peptidyl-tRNA substrate is thought to be important for catalysis of both pep...
AbstractPeptide bond formation and peptide release are catalyzed in the active site of the large sub...
SummaryBacterial translation termination is mediated by release factors RF1 and RF2, which recognize...
In all contemporary organisms, the active site of the ribosome—the peptidyl transferase center—catal...
Termination of protein synthesis on the ribosome involves hydrolysis of the ester bond between the P...
Role of RNA backbone groups for ribosomal catalysis S u m m a r y The ribosomal peptidyl transferase...
Translation terminates by releasing the polypeptide chain in one of two chemical reactions catalyzed...
In the termination phase of protein synthesis, class I release factors, RF1 and RF2, have the abilit...
SummaryPeptide bond formation is a fundamental reaction in biology, catalyzed by the ribosomal pepti...
In this issue of Chemistry & Biology, Lang et al. (2008) add an important step toward a molecular un...
The termination of protein synthesis occurs through the specific recognition of a stop codon in the ...
AbstractRapid protein synthesis in bacteria requires the G proteins IF2, EF-Tu, EF-G, and RF3. These...
The chemical step of protein synthesis, peptide bond formation, is catalyzed by the large subunit of...
The ribosome is the molecular machine responsible for protein synthesis in all living organisms. Its...
We report the crystal structure of a translation termination complex formed by the Thermus thermophi...
SummaryThe 2′ OH of the peptidyl-tRNA substrate is thought to be important for catalysis of both pep...
AbstractPeptide bond formation and peptide release are catalyzed in the active site of the large sub...
SummaryBacterial translation termination is mediated by release factors RF1 and RF2, which recognize...
In all contemporary organisms, the active site of the ribosome—the peptidyl transferase center—catal...
Termination of protein synthesis on the ribosome involves hydrolysis of the ester bond between the P...
Role of RNA backbone groups for ribosomal catalysis S u m m a r y The ribosomal peptidyl transferase...
Translation terminates by releasing the polypeptide chain in one of two chemical reactions catalyzed...
In the termination phase of protein synthesis, class I release factors, RF1 and RF2, have the abilit...
SummaryPeptide bond formation is a fundamental reaction in biology, catalyzed by the ribosomal pepti...
In this issue of Chemistry & Biology, Lang et al. (2008) add an important step toward a molecular un...
The termination of protein synthesis occurs through the specific recognition of a stop codon in the ...
AbstractRapid protein synthesis in bacteria requires the G proteins IF2, EF-Tu, EF-G, and RF3. These...
The chemical step of protein synthesis, peptide bond formation, is catalyzed by the large subunit of...
The ribosome is the molecular machine responsible for protein synthesis in all living organisms. Its...
We report the crystal structure of a translation termination complex formed by the Thermus thermophi...