Abstract

Methylation of CpG dinucleotides is the major epigenetic modification of mammalian genomes, critical for regulating chromatin structure and gene activity. The mixed-lineage leukaemia (MLL) CXXC domain selectively binds nonmethyl-CpG DNA, and is required for transformation by MLL fusion proteins that commonly arise from recurrent chromosomal translocations in infant and secondary treatment-related acute leukaemias. To elucidate the molecular basis of nonmethyl-CpG DNA recognition, we determined the structure of the human MLL CXXC domain by multidimensional NMR spectroscopy. The CXXC domain has a novel fold in which two zinc ions are each coordinated tetrahedrally by four conserved cysteine ligands provided by two CGXCXXC motifs and two distal cysteine residues. We have identified the CXXC domain DNA binding interface by means of chemical shift perturbation analysis, cross-saturation transfer and site-directed mutagenesis. In particular, we have shown that residues in an extended surface loop are in close contact with the DNA. These data provide a template for the design of specifically targeted therapeutics for poor prognosis MLL-associated leukaemias.

Keywords

BiologyChromatinCpG siteHistoneDNA methylationDNA methyltransferaseMethylationEpigeneticsDNAMolecular biologyGeneticsMethyltransferaseGeneGene expression

MeSH Terms

Amino Acid SequenceCalorimetryCpG IslandsDNADNA Mutational AnalysisHistone MethyltransferasesHistone-Lysine N-MethyltransferaseHumansInfantLeukemiaModelsMolecularMolecular Sequence DataMutagenesisMyeloid-Lymphoid Leukemia ProteinNeoplasm ProteinsProtein BindingProtein MethyltransferasesProtein StructureSecondaryProtein StructureTertiarySequence AlignmentSolutionsSpectrometryMassElectrospray Ionization

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Publication Info

Year
2006
Type
article
Volume
25
Issue
19
Pages
4503-4512
Citations
168
Access
Closed

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168
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Cite This

Mark D. Allen, Charles G. Grummitt, Christine Hilcenko et al. (2006). Solution structure of the nonmethyl‐CpG‐binding CXXC domain of the leukaemia‐associated MLL histone methyltransferase. The EMBO Journal , 25 (19) , 4503-4512. https://doi.org/10.1038/sj.emboj.7601340

Identifiers

DOI
10.1038/sj.emboj.7601340
PMID
16990798
PMCID
PMC1589984

Data Quality

Data completeness: 86%