Methyltransferases (MTases) compose a large family of enzymes which have the ability to methylate a diverse set of targets, ranging from the three major biopolymers DNA, RNA and protein to small molecules. Most of these MTases use the cofactor S-Adenosyl-L-Methionine (AdoMet) as their methyl source. Given the important biological role of methylation, e.g. in epigenetic regulation of gene activity and the vast potential of targeted functionalization in biology, diagnostics and nanotechnology, it should come as no surprise that recent years have seen significant efforts in the development of AdoMet analogues with the aim of transferring moieties other than simple methyl groups. Two major classes of AdoMet analogues currently exist- the doubly...
Methyl group transfer from S-adenosyl-l-methionine (AdoMet) to various substrates including DNA, pro...
Methyl group transfer from S-adenosyl-l-methionine (AdoMet) to various substrates including DNA, pro...
Methyltransferases (MTases) have become an important tool for site-specific alkylation and biomolecu...
Methyltransferases (MTases) compose a large family of enzymes which have the ability to methylate a ...
Methyltransferases (MTases) form a large family of enzymes that methylate a diverse set of targets, ...
Methyltransferases catalyze specific transfers of methyl groups from the ubiquitous cofactor S-adeno...
The main methyl donor in biological systems is S-Adenosyl-L-methionin (AdoMet). It is naturally synt...
Methyltransferases catalyze specific transfers of methyl groups from the ubiquitous cofactor <i>S</i...
Methyltransferases catalyze highly specific transfers of methyl groups from the ubiquitous cofactor ...
DNA methyltransferases catalyse the transfer of a methyl group from the ubiquitous cofactor S-adenos...
Methyltransferases catalyze highly specific transfers of methyl groups from the ubiquitous cofactor ...
Many cellular processes are regulated by covalent modifications of DNA and proteins. Different enzym...
Posttranslational protein methylation has been connected to important regulatory mechanisms in cells...
DNA methyltransferases catalyse the transfer of a methyl group from the ubiquitous cofactor S-adenos...
DNA methyltransferases catalyse the transfer of a methyl group from the ubiquitous cofactor S-adenos...
Methyl group transfer from S-adenosyl-l-methionine (AdoMet) to various substrates including DNA, pro...
Methyl group transfer from S-adenosyl-l-methionine (AdoMet) to various substrates including DNA, pro...
Methyltransferases (MTases) have become an important tool for site-specific alkylation and biomolecu...
Methyltransferases (MTases) compose a large family of enzymes which have the ability to methylate a ...
Methyltransferases (MTases) form a large family of enzymes that methylate a diverse set of targets, ...
Methyltransferases catalyze specific transfers of methyl groups from the ubiquitous cofactor S-adeno...
The main methyl donor in biological systems is S-Adenosyl-L-methionin (AdoMet). It is naturally synt...
Methyltransferases catalyze specific transfers of methyl groups from the ubiquitous cofactor <i>S</i...
Methyltransferases catalyze highly specific transfers of methyl groups from the ubiquitous cofactor ...
DNA methyltransferases catalyse the transfer of a methyl group from the ubiquitous cofactor S-adenos...
Methyltransferases catalyze highly specific transfers of methyl groups from the ubiquitous cofactor ...
Many cellular processes are regulated by covalent modifications of DNA and proteins. Different enzym...
Posttranslational protein methylation has been connected to important regulatory mechanisms in cells...
DNA methyltransferases catalyse the transfer of a methyl group from the ubiquitous cofactor S-adenos...
DNA methyltransferases catalyse the transfer of a methyl group from the ubiquitous cofactor S-adenos...
Methyl group transfer from S-adenosyl-l-methionine (AdoMet) to various substrates including DNA, pro...
Methyl group transfer from S-adenosyl-l-methionine (AdoMet) to various substrates including DNA, pro...
Methyltransferases (MTases) have become an important tool for site-specific alkylation and biomolecu...