Elp3, the catalytic subunit of the eukaryotic Elongator complex, is a lysine acetyltransferase that acetylates the C5 position of wobble-base uridines (U34) in transfer RNAs (tRNAs). This Elongator-dependent RNA acetylation of anticodon bases affects the ribosomal translation elongation rates and directly links acetyl-CoA metabolism to both protein synthesis rates and the proteome integrity. Of note, several human diseases, including various cancers and neurodegenerative disorders, correlate with the dysregulation of Elongator’s tRNA modification activity. In this review, we focus on recent findings regarding the structure of Elp3 and the role of acetyl-CoA during its unique modification reaction
Elongator is a conserved, multi-protein complex discovered in Saccharomyces cerevisiae, loss of whic...
Transfer RNA (tRNA) molecules are essential to decode messenger RNA codons during protein synthesis....
Post-transcriptional modifications on transfer RNA (tRNA) molecules occur frequently but their impli...
Elp3, the catalytic subunit of the eukaryotic Elongator complex, is a lysine acetyltransferase that ...
The Elongator complex catalyzes posttranscriptional tRNA modifications by attaching carboxy-methyl (...
International audienceDuring translation elongation, decoding is based on the recognition of codons ...
Transfer RNA (tRNA) is subject to a multitude of posttranscriptional modifications which can profoun...
Transfer RNA (tRNA) is subject to a multitude of posttranscriptional modifications which can profoun...
The highly conserved Elongator complex modifies transfer RNAs (tRNAs) in their wobble base position,...
Elongator is a conserved, multi-protein complex discovered in Saccharomyces cerevisiae, loss of whic...
Transfer RNA (tRNA) molecules are essential to decode messenger RNA codons during protein synthesis....
Post-transcriptional modifications on transfer RNA (tRNA) molecules occur frequently but their impli...
Elp3, the catalytic subunit of the eukaryotic Elongator complex, is a lysine acetyltransferase that ...
The Elongator complex catalyzes posttranscriptional tRNA modifications by attaching carboxy-methyl (...
International audienceDuring translation elongation, decoding is based on the recognition of codons ...
Transfer RNA (tRNA) is subject to a multitude of posttranscriptional modifications which can profoun...
Transfer RNA (tRNA) is subject to a multitude of posttranscriptional modifications which can profoun...
The highly conserved Elongator complex modifies transfer RNAs (tRNAs) in their wobble base position,...
Elongator is a conserved, multi-protein complex discovered in Saccharomyces cerevisiae, loss of whic...
Transfer RNA (tRNA) molecules are essential to decode messenger RNA codons during protein synthesis....
Post-transcriptional modifications on transfer RNA (tRNA) molecules occur frequently but their impli...