Arginine methylation has emerged as a widespread post-translational modification with influence over myriad cellular processes. However, the molecular mechanisms underlying such methylarginine-dependent phenomena remain unclear. To aid in this research, a facile method was developed to install methylarginine analogues on recombinant protein for use in biochemical, biophysical, and structural studies. Through chemical conjugation of novel α,β-unsaturated amidine precursors with proteins, methylarginine mimics can be displayed with control of methylation site, extent, and regiospecificity. Analogue installation into histones using this strategy produced modified proteins that were recognized by antibodies specific to endogenous methylarginine...
The methylation of arginine residues is a prevalent posttranslational modification found in both nuc...
The methylation of arginine residues is a prevalent posttranslational modification found in both nuc...
Lysine and arginine methyltransferases participate in the post-translational modification of histone...
Arginine methylation has emerged as a widespread post-translational modification with influence over...
Epigenetic regulation of gene expression is critical to development, cellular homeostasis, and disea...
SummaryHistone lysine residues can be mono-, di-, or trimethylated. These posttranslational modifica...
Biological methylation is defined as the transfer of a methyl group from S-adenosyl-L-methionine(SAM...
AbstractNucleosomes, the fundamental building blocks of eukaryotic chromatin, undergo post-synthetic...
Protein arginine methyltransferases (PRMTs) are (S)-adenosylmethionine (SAM)-dependent methyltransfe...
Chapter 1 introduces the Protein Arginine Methyltransferases (PRMTs) as epigenetic regulators that ...
Posttranslational protein methylation has been connected to important regulatory mechanisms in cells...
SummaryHistone lysine residues can be mono-, di-, or trimethylated. These posttranslational modifica...
Nature has evolved 20 amino acids that comprise all the proteins that compose living things. The lim...
Arginine residues can be modified in three different ways to produce asymmetric dimethylarginine (AD...
The methylation of arginine residues is a prevalent posttranslational modification found in both nuc...
The methylation of arginine residues is a prevalent posttranslational modification found in both nuc...
The methylation of arginine residues is a prevalent posttranslational modification found in both nuc...
Lysine and arginine methyltransferases participate in the post-translational modification of histone...
Arginine methylation has emerged as a widespread post-translational modification with influence over...
Epigenetic regulation of gene expression is critical to development, cellular homeostasis, and disea...
SummaryHistone lysine residues can be mono-, di-, or trimethylated. These posttranslational modifica...
Biological methylation is defined as the transfer of a methyl group from S-adenosyl-L-methionine(SAM...
AbstractNucleosomes, the fundamental building blocks of eukaryotic chromatin, undergo post-synthetic...
Protein arginine methyltransferases (PRMTs) are (S)-adenosylmethionine (SAM)-dependent methyltransfe...
Chapter 1 introduces the Protein Arginine Methyltransferases (PRMTs) as epigenetic regulators that ...
Posttranslational protein methylation has been connected to important regulatory mechanisms in cells...
SummaryHistone lysine residues can be mono-, di-, or trimethylated. These posttranslational modifica...
Nature has evolved 20 amino acids that comprise all the proteins that compose living things. The lim...
Arginine residues can be modified in three different ways to produce asymmetric dimethylarginine (AD...
The methylation of arginine residues is a prevalent posttranslational modification found in both nuc...
The methylation of arginine residues is a prevalent posttranslational modification found in both nuc...
The methylation of arginine residues is a prevalent posttranslational modification found in both nuc...
Lysine and arginine methyltransferases participate in the post-translational modification of histone...