Histone methylation has important roles in regulating transcription, genome integrity and epigenetic inheritance. Historically, methylated histone arginine and lysine residues have been considered static modifications because of the low levels of methyl-group turnover in chromatin. The recent identification of enzymes that antagonize or remove histone methylation has changed this view and now the dynamic nature of these modifications is being appreciated. Here, we examine the enzymatic and structural basis for the mechanisms that these enzymes use to counteract histone methylation and provide insights into their substrate specificity and biological function
AbstractN-Methylation of lysine and arginine residues has emerged as a major mechanism of transcript...
Post-translational modifications of histones play an important role in regulating chromatin dynamics...
Cell type specification, transcription factor binding site selection and transcriptional regulation ...
Histone methylation has important roles in regulating transcription, genome integrity and epigenetic...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone methylation plays fundamental roles in regulating chromatin‐based processes. With the discov...
Histone modifications regulate chromatin structure, gene transcription, and other nuclear processes....
One of the most fundamental questions in the control of gene expression in mammals is how epigenetic...
Viliam Čizmazia Roles of histone H3 lysine methylation in the gene expression regulation Abstract Hi...
AbstractN-Methylation of lysine and arginine residues has emerged as a major mechanism of transcript...
Post-translational modifications of histones play an important role in regulating chromatin dynamics...
Cell type specification, transcription factor binding site selection and transcriptional regulation ...
Histone methylation has important roles in regulating transcription, genome integrity and epigenetic...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone modifications are thought to regulate chromatin structure, transcription and other nuclear p...
Histone methylation plays fundamental roles in regulating chromatin‐based processes. With the discov...
Histone modifications regulate chromatin structure, gene transcription, and other nuclear processes....
One of the most fundamental questions in the control of gene expression in mammals is how epigenetic...
Viliam Čizmazia Roles of histone H3 lysine methylation in the gene expression regulation Abstract Hi...
AbstractN-Methylation of lysine and arginine residues has emerged as a major mechanism of transcript...
Post-translational modifications of histones play an important role in regulating chromatin dynamics...
Cell type specification, transcription factor binding site selection and transcriptional regulation ...