AbstractOn evolutionary grounds, it has been advocated for more than 40 years that RNA generally, and more recently rRNA in particular, may participate, catalytically, in protein biosynthesis. A specific molecular mechanism has never been proposed. We suggest here that the N-1 position(s) in one or more of the ∼4 pseudouridine (Ψ) residues in E. coli 23 S rRNA catalyzes transfer of the aminoacyl moiety from the 3′-terminus of peptidyl tRNA in the P site to aminoacyl tRNA in the A site of the ribosome. Evidence that supports the proposal in the case of E. coli ribosomes, and relevant information pertaining to eukaryotic ribosomes, is summarized. Essential features of the evidence are that (i) the N-1 position in 1-acetylthymine (a direct ana...
In human rRNA, at least 104 specific uridine residues are modified to pseudouridine. Many of these p...
AbstractPseudouridines are found in virtually all ribosomal RNAs but their function is unknown. Ther...
SummaryPeptide bond formation is a fundamental reaction in biology, catalyzed by the ribosomal pepti...
AbstractOn evolutionary grounds, it has been advocated for more than 40 years that RNA generally, an...
AbstractThe finding that the universal ribosomal peptidyl transferase is an RNA enzyme casts new lig...
AbstractDuring the nucleolar maturation of eukaryotic ribosomal RNAs, many selected uridines are con...
Pseudouridine synthases are enzymes responsible for modifying uridines to pseudouridines in a site-s...
AbstractBackground: One of the most significant questions in understanding the origin of life concer...
AbstractBackground: The ‘RNA world’ hypothesis proposes that the early history of life on earth cons...
Sherpa Romeo green journal. Permission to archive final published versionPseudouridine synthases in...
AbstractPeptide bond formation and peptide release are catalyzed in the active site of the large sub...
AbstractHelix 89 of the 23S rRNA connects ribosomal peptidyltransferase center and elongation factor...
AbstractPseudouridine (Ψ) synthases catalyze the isomerization of specific uridines in cellular RNAs...
RluB catalyses the modification of U2605 to pseudouridine (Ψ) in a stem-loop at the peptidyl transfe...
Sherpa Romeo green journal. Open access article. Creative Commons Attribution-NonCommercial 4.0 In...
In human rRNA, at least 104 specific uridine residues are modified to pseudouridine. Many of these p...
AbstractPseudouridines are found in virtually all ribosomal RNAs but their function is unknown. Ther...
SummaryPeptide bond formation is a fundamental reaction in biology, catalyzed by the ribosomal pepti...
AbstractOn evolutionary grounds, it has been advocated for more than 40 years that RNA generally, an...
AbstractThe finding that the universal ribosomal peptidyl transferase is an RNA enzyme casts new lig...
AbstractDuring the nucleolar maturation of eukaryotic ribosomal RNAs, many selected uridines are con...
Pseudouridine synthases are enzymes responsible for modifying uridines to pseudouridines in a site-s...
AbstractBackground: One of the most significant questions in understanding the origin of life concer...
AbstractBackground: The ‘RNA world’ hypothesis proposes that the early history of life on earth cons...
Sherpa Romeo green journal. Permission to archive final published versionPseudouridine synthases in...
AbstractPeptide bond formation and peptide release are catalyzed in the active site of the large sub...
AbstractHelix 89 of the 23S rRNA connects ribosomal peptidyltransferase center and elongation factor...
AbstractPseudouridine (Ψ) synthases catalyze the isomerization of specific uridines in cellular RNAs...
RluB catalyses the modification of U2605 to pseudouridine (Ψ) in a stem-loop at the peptidyl transfe...
Sherpa Romeo green journal. Open access article. Creative Commons Attribution-NonCommercial 4.0 In...
In human rRNA, at least 104 specific uridine residues are modified to pseudouridine. Many of these p...
AbstractPseudouridines are found in virtually all ribosomal RNAs but their function is unknown. Ther...
SummaryPeptide bond formation is a fundamental reaction in biology, catalyzed by the ribosomal pepti...