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SET domain
Plant SET Domain-Containing Proteins: Structure, Function and Regulation
Automethylation of PRC2 Promotes H3K27 Methylation and Is Impaired in H3K27M Pediatric Glioma
Engaging Chromatin: PRC2 Structure Meets Function
Structural Chemistry of Human SET Domain Protein Methyltransferases Matthieu Schapira*,1,2
Structural Origins for the Product Specificity of SET Domain Protein Methyltransferases
Structure, Activity and Function of the NSD3 Proteinlysine
Interaction of SET Domains with Histones and Nucleic Acid Structures in Active Chromatin
Structure and Function of SET and MYND Domain-Containing Proteins
Enzymatic Mechanism and Product Specificity of SET-Domain Protein Lysine Methyltransferases
SET Domain–Mediated Lysine Methylation Controls Growth in Lower Organisms and Transcriptional Machinery in Hosts
Methyl-Cpg-Binding Domain Protein 1 (MBD1)
Binding Specificity of ASHH2 CW-Domain Towards H3k4me1 Ligand Is Coupled to Its Structural Stability Through Its Α1-Helix
PRC2 Is High Maintenance
Specificity and Mechanism of the Histone Methyltransferase Pr-Set7
The EZH2 SANT1 Domain Is a Histone Reader Providing Sensitivity to The
Minireview Structures of SET Domain Proteins
Histone H3 Tail Binds a Unique Sensing Pocket in EZH2 to Activate the PRC2 Methyltransferase
The CW Domain, a Structural Module Shared Amongst Vertebrates, Vertebrate-Infecting Parasites and Higher Plants
Top View
Molecular Architecture of Human Polycomb Repressive Complex 2
The Implications of Alternative Splicing in the ENCODE Protein Complement
A Homeotic Mutation in the Trithorax SET Domain Impedes Histone Binding
The SET-Domain Protein Superfamily: Protein Lysine Methyltransferases
Transition State for the NSD2-Catalyzed Methylation of Histone H3 Lysine 36
No Easy Way out for EZH2: Its Pleiotropic, Noncanonical Effects on Gene Regulation and Cellular Function
Review SET Domain Protein Lysine Methyltransferases