For more than 50 years, the methylation of mammalian actin at histidine 73 has been known to occur1. Despite the pervasiveness of His73 methylation, which we find is conserved in several model animals and plants, its function remains unclear and the enzyme that generates this modification is unknown. Here we identify SET domain protein 3 (SETD3) as the physiological actin His73 methyltransferase. Structural studies reveal that an extensive network of interactions clamps the actin peptide onto the surface of SETD3 to orient His73 correctly within the catalytic pocket and to facilitate methyl transfer. His73 methylation reduces the nucleotide-exchange rate on actin monomers and modestly accelerates the assembly of actin filaments. Mice t...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Epigenetic regulation of gene expression plays a pivotal role in the establishment of developmental ...
AbstractThe N-terminal tails of core histones are subjected to multiple covalent modifications, incl...
For more than 50 years, the methylation of mammalian actin at histidine 73 has been known to oc...
Protein histidine methylation is a rare post-translational modification of unknown biochemical impor...
SETD3 has been recently identified as a long sought, actin specific histidine methyltransferase that...
Lysine methyltransferase family plays important roles in various cellular processes, for instance tr...
The methylation of the lysine residue can affect some fundamental biological processes, and specific...
AbstractThe N-terminal tails of core histones are subjected to multiple covalent modifications, incl...
Protein methylation plays an important role in many cellular possesses, including gene regulation, w...
Histone methylation is controlled by lysine methyltransferase enzymes to regulate the expression of ...
Histone modifications, including lysine methylation, are epigenetic marks that influence many biolog...
Posttranslational modifications (PTMs) of proteins play a crucial role in regulating protein-protein...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Histone methylation by lysine methyltransferase enzymes regulate the expression of genes implicated ...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Epigenetic regulation of gene expression plays a pivotal role in the establishment of developmental ...
AbstractThe N-terminal tails of core histones are subjected to multiple covalent modifications, incl...
For more than 50 years, the methylation of mammalian actin at histidine 73 has been known to oc...
Protein histidine methylation is a rare post-translational modification of unknown biochemical impor...
SETD3 has been recently identified as a long sought, actin specific histidine methyltransferase that...
Lysine methyltransferase family plays important roles in various cellular processes, for instance tr...
The methylation of the lysine residue can affect some fundamental biological processes, and specific...
AbstractThe N-terminal tails of core histones are subjected to multiple covalent modifications, incl...
Protein methylation plays an important role in many cellular possesses, including gene regulation, w...
Histone methylation is controlled by lysine methyltransferase enzymes to regulate the expression of ...
Histone modifications, including lysine methylation, are epigenetic marks that influence many biolog...
Posttranslational modifications (PTMs) of proteins play a crucial role in regulating protein-protein...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Histone methylation by lysine methyltransferase enzymes regulate the expression of genes implicated ...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Epigenetic regulation of gene expression plays a pivotal role in the establishment of developmental ...
AbstractThe N-terminal tails of core histones are subjected to multiple covalent modifications, incl...