SummaryEukaryotic translation termination is triggered by peptide release factors eRF1 and eRF3. Whereas eRF1 recognizes all three termination codons and induces hydrolysis of peptidyl tRNA, eRF3's function remains obscure. Here, we reconstituted all steps of eukaryotic translation in vitro using purified ribosomal subunits; initiation, elongation, and termination factors; and aminoacyl tRNAs. This allowed us to investigate termination using pretermination complexes assembled on mRNA encoding a tetrapeptide and to propose a model for translation termination that accounts for the cooperative action of eRF1 and eRF3 in ensuring fast release of nascent polypeptide. In this model, binding of eRF1, eRF3, and GTP to pretermination complexes first...
<p>Upon stop codon entry into the ribosomal A-site the pre-TC forms, composed of the canonical relea...
In eukaryotes, translation termination is performed by eRF1, which recognizes stop codons via its N-...
The aim of this work was to understand the molecular mechanism of translation and the mechanism of t...
AbstractAt the termination step of protein synthesis, hydrolysis of the peptidyl-tRNA is jointly cat...
Termination and ribosome recycling are essential processes in translation. In eukaryotes, a stop cod...
SummaryAfter translational termination, mRNA and P site deacylated tRNA remain associated with ribos...
SummaryTermination and ribosome recycling are essential processes in translation. In eukaryotes, a s...
AbstractThe release factor eRF1 terminates protein biosynthesis by recognizing stop codons at the A ...
In contrast to bacteria that have two release factors, RF1 and RF2, eukaryotes only possess one unre...
AbstractThe mechanism by which peptide release factor RF3 recycles RF1 and RF2 has been clarified an...
ABSTRACT When a stop codon appears at the ribosomal A site, the class I and II release factors (RFs)...
Translation termination requires eRF1 and eRF3 for polypeptide-and tRNA-release on stop codons. Addi...
AbstractAlthough the eukaryotic (eRF1) and prokaryotic (RF2) polypeptide release (translation termin...
Translation termination in eukaryotes typically requires the decoding of one of three stop codons UA...
Programmed stop codon readthrough is a post-transcription regulatory mechanism specifically increasi...
<p>Upon stop codon entry into the ribosomal A-site the pre-TC forms, composed of the canonical relea...
In eukaryotes, translation termination is performed by eRF1, which recognizes stop codons via its N-...
The aim of this work was to understand the molecular mechanism of translation and the mechanism of t...
AbstractAt the termination step of protein synthesis, hydrolysis of the peptidyl-tRNA is jointly cat...
Termination and ribosome recycling are essential processes in translation. In eukaryotes, a stop cod...
SummaryAfter translational termination, mRNA and P site deacylated tRNA remain associated with ribos...
SummaryTermination and ribosome recycling are essential processes in translation. In eukaryotes, a s...
AbstractThe release factor eRF1 terminates protein biosynthesis by recognizing stop codons at the A ...
In contrast to bacteria that have two release factors, RF1 and RF2, eukaryotes only possess one unre...
AbstractThe mechanism by which peptide release factor RF3 recycles RF1 and RF2 has been clarified an...
ABSTRACT When a stop codon appears at the ribosomal A site, the class I and II release factors (RFs)...
Translation termination requires eRF1 and eRF3 for polypeptide-and tRNA-release on stop codons. Addi...
AbstractAlthough the eukaryotic (eRF1) and prokaryotic (RF2) polypeptide release (translation termin...
Translation termination in eukaryotes typically requires the decoding of one of three stop codons UA...
Programmed stop codon readthrough is a post-transcription regulatory mechanism specifically increasi...
<p>Upon stop codon entry into the ribosomal A-site the pre-TC forms, composed of the canonical relea...
In eukaryotes, translation termination is performed by eRF1, which recognizes stop codons via its N-...
The aim of this work was to understand the molecular mechanism of translation and the mechanism of t...