International audienceRNA methylation is the most abundant and evolutionarily conserved chemical modification of bases or ribose in noncoding and coding RNAs. This rather simple modification has nevertheless major consequences on the function of maturated RNA molecules and ultimately on their cellular fates. The methyl group employed in the methylation is almost universally derived from S-adenosyl-L-methionine via a simple SN2 displacement reaction. However, in some rare cases, the carbon originates from N5,N10-methylenetetrahydrofolate (CH2=THF). Here, a methylene group is transferred first and requires a subsequent reduction step (2e-+H+) via the flavin adenine dinucleotide hydroquinone (FADH-) to form the final methylated derivative. Thi...
The flavoprotein TrmFO methylates specifically the C5 carbon of the highly conserved uridine 54 in t...
Efficient protein synthesis in all organisms requires the post-transcriptional methylation of specif...
International audienceThe flavoprotein TrmFO methylates specifically the C5 carbon of the highly con...
International audienceRNA methylation is the most abundant and evolutionarily conserved chemical mod...
International audienceRNAs contain structurally and functionally important modified nucleosides. Met...
International audienceComparative genome analyses have led to the discovery and characterization of ...
International audienceTrmFO is a tRNA methyltransferase that uses methylenetetrahydrofolate (CH2THF)...
RNAs contain structurally and functionally important modified nucleosides. Methylation, the most fre...
TrmFO is a tRNA methyltransferase that uses methylenetetrahydrofolate (CH<sub>2</sub>THF) and flavin...
<p>Comparative genome analyses have led to the discovery and characterization of novel flavin- and f...
International audienceTo facilitate production of functional enzymes and to study their mechanisms, ...
The flavoprotein TrmFO methylates specifically the C5 carbon of the highly conserved uridine 54 in t...
Efficient protein synthesis in all organisms requires the post-transcriptional methylation of specif...
International audienceThe flavoprotein TrmFO methylates specifically the C5 carbon of the highly con...
International audienceRNA methylation is the most abundant and evolutionarily conserved chemical mod...
International audienceRNAs contain structurally and functionally important modified nucleosides. Met...
International audienceComparative genome analyses have led to the discovery and characterization of ...
International audienceTrmFO is a tRNA methyltransferase that uses methylenetetrahydrofolate (CH2THF)...
RNAs contain structurally and functionally important modified nucleosides. Methylation, the most fre...
TrmFO is a tRNA methyltransferase that uses methylenetetrahydrofolate (CH<sub>2</sub>THF) and flavin...
<p>Comparative genome analyses have led to the discovery and characterization of novel flavin- and f...
International audienceTo facilitate production of functional enzymes and to study their mechanisms, ...
The flavoprotein TrmFO methylates specifically the C5 carbon of the highly conserved uridine 54 in t...
Efficient protein synthesis in all organisms requires the post-transcriptional methylation of specif...
International audienceThe flavoprotein TrmFO methylates specifically the C5 carbon of the highly con...