Ribosomal RNA (rRNA) carries extensive 2'-O-methyl marks at functionally important sites. This simple chemical modification is thought to confer stability, promote RNA folding, and contribute to generate a heterogenous ribosome population with a yet-uncharacterized function. 2'-O-methylation occurs both in archaea and eukaryotes and is accomplished by the Box C/D RNP enzyme in an RNA-guided manner. Extensive and partially conflicting structural information exists for the archaeal enzyme, while no structural data is available for the eukaryotic enzyme. The yeast Box C/D RNP consists of a guide RNA, the RNA-primary binding protein Snu13, the two scaffold proteins Nop56 and Nop58, and the enzymatic module Nop1. Here we present the high-resolut...
Archaeal fibrillarin (aFib) is a well-characterized S-adenosyl methionine (SAM)-dependent RNA 2′-O-m...
In Eukaryotes, specific methylation of 2'-0 ribose moieties in ribosomal RNA (rRNA) is guided by th...
Fibrillarin, the methyltransfersase for 2\u27-O-methylation modification in RNAs is the catalytic co...
Ribosomal RNA (rRNA) carries extensive 2′-O-methyl marks at functionally important sites. This simpl...
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...
RNA modifications confer complexity to the 4-nucleotide polymer; nevertheless, their exact function ...
In eukaryotes, many Box C/D small nucleolar RNAs base pair with ribosomal RNA through short compleme...
2’-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP...
Stable cellular RNAs undergo a variety of post-transcriptional modifications, most of which are evol...
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 ...
2'-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP...
Archaeal fibrillarin (aFib) is a well-characterized S-adenosyl methionine (SAM)-dependent RNA 2′-O-m...
In Eukaryotes, specific methylation of 2'-0 ribose moieties in ribosomal RNA (rRNA) is guided by th...
Fibrillarin, the methyltransfersase for 2\u27-O-methylation modification in RNAs is the catalytic co...
Ribosomal RNA (rRNA) carries extensive 2′-O-methyl marks at functionally important sites. This simpl...
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...
RNA modifications confer complexity to the 4-nucleotide polymer; nevertheless, their exact function ...
In eukaryotes, many Box C/D small nucleolar RNAs base pair with ribosomal RNA through short compleme...
2’-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP...
Stable cellular RNAs undergo a variety of post-transcriptional modifications, most of which are evol...
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 ...
2'-O-rRNA methylation, which is essential in eukaryotes and archaea, is catalysed by the Box C/D RNP...
Archaeal fibrillarin (aFib) is a well-characterized S-adenosyl methionine (SAM)-dependent RNA 2′-O-m...
In Eukaryotes, specific methylation of 2'-0 ribose moieties in ribosomal RNA (rRNA) is guided by th...
Fibrillarin, the methyltransfersase for 2\u27-O-methylation modification in RNAs is the catalytic co...