2’-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP complex in an RNA-guided manner. Despite the conservation of the methylation sites, the abundance of site-specific modifications shows variability across species and tissues, suggesting that rRNA methylation may provide a means of controlling gene expression. As all Box C/D RNPs are thought to adopt a similar structure, it remains unclear how the methylation efficiency is regulated. Here, we provide the first structural evidence that, in the context of the Box C/D RNP, the affinity of the catalytic module fibrillarin for the substrate–guide helix is dependent on the RNA sequence outside the methylation site, thus providing a mechanism by whi...
Ribosomal RNA modifications are important in optimizing ribosome function. Sugar 2′-O-methylation pe...
Stable cellular RNAs undergo a variety of post-transcriptional modifications, most of which are evol...
Ribosomes can be heterogeneous, and the major contributor to ribosome heterogeneity is variation in ...
2'-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP...
International audiencePost-transcriptional modifications are essential to the cell life cycle, as th...
RNA modifications confer complexity to the 4-nucleotide polymer; nevertheless, their exact function ...
RNA modifications confer complexity to the 4-nucleotide polymer; nevertheless, their exact function ...
Abstract Box C/D ribonucleoprotein complexes are RNA-guided methyltransferases that methylate the ri...
Box C/D RNA protein complexes (RNPs) catalyze site-specific 2'-O-methylation of RNA with specificity...
Post-transcriptional modifications of RNA molecules occur in all three domains of life and influence...
Ribosomal RNA (rRNA) carries extensive 2'-O-methyl marks at functionally important sites. This simpl...
In all three kingdoms of life, nucleotides in riboso-mal RNA (rRNA) are post-transcriptionally modif...
Ribosomal RNA (rRNA) carries extensive 2′-O-methyl marks at functionally important sites. This simpl...
Archaea use ribonucleoprotein (RNP) machines similar to those found in the eukaryotic nucleolus to ...
Ribosomal RNA modifications are important in optimizing ribosome function. Sugar 2′-O-methylation pe...
Stable cellular RNAs undergo a variety of post-transcriptional modifications, most of which are evol...
Ribosomes can be heterogeneous, and the major contributor to ribosome heterogeneity is variation in ...
2'-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP...
International audiencePost-transcriptional modifications are essential to the cell life cycle, as th...
RNA modifications confer complexity to the 4-nucleotide polymer; nevertheless, their exact function ...
RNA modifications confer complexity to the 4-nucleotide polymer; nevertheless, their exact function ...
Abstract Box C/D ribonucleoprotein complexes are RNA-guided methyltransferases that methylate the ri...
Box C/D RNA protein complexes (RNPs) catalyze site-specific 2'-O-methylation of RNA with specificity...
Post-transcriptional modifications of RNA molecules occur in all three domains of life and influence...
Ribosomal RNA (rRNA) carries extensive 2'-O-methyl marks at functionally important sites. This simpl...
In all three kingdoms of life, nucleotides in riboso-mal RNA (rRNA) are post-transcriptionally modif...
Ribosomal RNA (rRNA) carries extensive 2′-O-methyl marks at functionally important sites. This simpl...
Archaea use ribonucleoprotein (RNP) machines similar to those found in the eukaryotic nucleolus to ...
Ribosomal RNA modifications are important in optimizing ribosome function. Sugar 2′-O-methylation pe...
Stable cellular RNAs undergo a variety of post-transcriptional modifications, most of which are evol...
Ribosomes can be heterogeneous, and the major contributor to ribosome heterogeneity is variation in ...