Abstract Box C/D ribonucleoprotein complexes are RNA-guided methyltransferases that methylate the ribose 2’-OH of RNA. The central ‘guide RNA’ has box C and D motifs at its ends, which are crucial for activity. Archaeal guide RNAs have a second box C’/D’ motif pair that is also essential for function. This second motif is poorly conserved in eukaryotes and its function is uncertain. Conflicting literature data report that eukaryotic box C’/D’ motifs do or do not bind proteins specialized to recognize box C/D-motifs and are or are not important for function. Despite this uncertainty, the architecture of eukaryotic 2’-O-methylation enzymes is thought to be similar to that of their archaeal counterpart. Here, we use biochemistry, X-ray crystal...
In all three kingdoms of life, nucleotides in riboso-mal RNA (rRNA) are post-transcriptionally modif...
In eukaryotes, many Box C/D small nucleolar RNAs base pair with ribosomal RNA through short compleme...
Stable cellular RNAs undergo a variety of post-transcriptional modifications, most of which are evol...
Box C/D ribonucleoprotein complexes are RNA-guided methyltransferases that methylate the ribose 2’-O...
Box C/D RNA protein complexes (RNPs) catalyze site-specific 2'-O-methylation of RNA with specificity...
Ribosomal RNA (rRNA) carries extensive 2'-O-methyl marks at functionally important sites. This simpl...
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 ...
International audiencePost-transcriptional modifications are essential to the cell life cycle, as th...
Ribosomal RNA (rRNA) carries extensive 2′-O-methyl marks at functionally important sites. This simpl...
2’-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP...
2'-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP...
Post-transcriptional modifications of RNA molecules occur in all three domains of life and influence...
RNAs undergo different posttranscriptional chemical modifications, which affect their structural sta...
In all three kingdoms of life, nucleotides in riboso-mal RNA (rRNA) are post-transcriptionally modif...
In eukaryotes, many Box C/D small nucleolar RNAs base pair with ribosomal RNA through short compleme...
Stable cellular RNAs undergo a variety of post-transcriptional modifications, most of which are evol...
Box C/D ribonucleoprotein complexes are RNA-guided methyltransferases that methylate the ribose 2’-O...
Box C/D RNA protein complexes (RNPs) catalyze site-specific 2'-O-methylation of RNA with specificity...
Ribosomal RNA (rRNA) carries extensive 2'-O-methyl marks at functionally important sites. This simpl...
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 ...
International audiencePost-transcriptional modifications are essential to the cell life cycle, as th...
Ribosomal RNA (rRNA) carries extensive 2′-O-methyl marks at functionally important sites. This simpl...
2’-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP...
2'-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP...
Post-transcriptional modifications of RNA molecules occur in all three domains of life and influence...
RNAs undergo different posttranscriptional chemical modifications, which affect their structural sta...
In all three kingdoms of life, nucleotides in riboso-mal RNA (rRNA) are post-transcriptionally modif...
In eukaryotes, many Box C/D small nucleolar RNAs base pair with ribosomal RNA through short compleme...
Stable cellular RNAs undergo a variety of post-transcriptional modifications, most of which are evol...