Molecular recognition of histone H3 by the WD40 protein WDR5
- 9 July 2006
- journal article
- research article
- Published by Springer Nature in Nature Structural & Molecular Biology
- Vol. 13 (8) , 698-703
- https://doi.org/10.1038/nsmb1116
Abstract
The WD40-repeat protein WDR5 is a conserved subunit of Trithorax (TRX) histone methyltransferase complexes. WDR5 has been reported to selectively bind dimethylated Lys4 (K4me2) in histone H3 to promote K4 trimethylation by TRX. To elucidate the basis of this binding specificity, we have determined the crystal structure of WDR5 bound to a histone H3 peptide bearing K4me2. The structure reveals that the N terminus of histone H3 binds as a 310-helix in the central depression formed by the WD40 repeats. R2 in histone H3 is bound in the acidic channel in the protein's core, whereas K4me2 is solvent exposed and does not engage in direct interactions with WDR5. Functional studies confirm that WDR5 recognizes A1, R2 and T3 in histone H3 but has virtually identical affinities for the unmodified and mono-, di- and trimethylated forms of K4, demonstrating that it does not discriminate among different degrees of methylation of this residue.Keywords
This publication has 53 references indexed in Scilit:
- Recognition of Histone H3 Lysine-4 Methylation by the Double Tudor Domain of JMJD2AScience, 2006
- Chromatin architectureCurrent Opinion in Structural Biology, 2006
- The effects of BIG-3 on osteoblast differentiation are not dependent upon endogenously produced BMPsExperimental Cell Research, 2005
- The many colours of chromodomainsBioEssays, 2004
- Structure of a β-TrCP1-Skp1-β-Catenin ComplexMolecular Cell, 2003
- Structural Basis for Phosphodependent Substrate Selection and Orientation by the SCFCdc4 Ubiquitin LigaseCell, 2003
- Histone methyltransferase activity associated with a human multiprotein complex containing the Enhancer of Zeste proteinGenes & Development, 2002
- Role of Histone H3 Lysine 27 Methylation in Polycomb-Group SilencingScience, 2002
- Cloning and Characterization of a Novel WD-40 Repeat Protein That Dramatically Accelerates Osteoblastic DifferentiationJournal of Biological Chemistry, 2001
- Refinement of Macromolecular Structures by the Maximum-Likelihood MethodActa Crystallographica Section D-Biological Crystallography, 1997