Binding to Nonmethylated CpG DNA Is Essential for Target Recognition, Transactivation, and Myeloid Transformation by an MLL Oncoprotein
Open Access
- 1 December 2004
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 24 (23) , 10470-10478
- https://doi.org/10.1128/mcb.24.23.10470-10478.2004
Abstract
The MLL gene is a frequent target for leukemia-associated chromosomal translocations that generate dominant-acting chimeric oncoproteins. These invariably contain the amino-terminal 1,400 residues of MLL fused with one of a variety of over 30 distinct nuclear or cytoplasmic partner proteins. Despite the consistent inclusion of the MLL amino-terminal region in leukemia oncoproteins, little is known regarding its molecular contributions to MLL-dependent oncogenesis. Using high-resolution mutagenesis, we identified three MLL domains that are essential for in vitro myeloid transformation via mechanisms that do not compromise subnuclear localization. These include the CXXC/Basic domain and two novel domains of unknown function. Point mutations in the CXXC domain that eliminate myeloid transformation by an MLL fusion protein also abolished recognition and binding of nonmethylated CpG DNA sites in vitro and transactivation in vivo. Our results define a critical role for the CXXC DNA binding domain in MLL-associated oncogenesis, most likely via epigenetic recognition of CpG DNA sites within the regulatory elements of target genes.Keywords
This publication has 46 references indexed in Scilit:
- DNA methylation patterns and epigenetic memoryGenes & Development, 2002
- MLL translocations specify a distinct gene expression profile that distinguishes a unique leukemiaNature Genetics, 2001
- The Elongation Domain of ELL Is Dispensable but Its ELL-Associated Factor 1 Interaction Domain Is Essential for MLL-ELL-Induced LeukemogenesisMolecular and Cellular Biology, 2001
- MLL2: A New Mammalian Member of the trx/MLL Family of GenesGenomics, 1999
- Isolation and characterization of a Pufferfish MLL (Mixed lineage leukemia)-like gene (fMll) reveals evolutionary conservation in vertebrate genes related to Drosophila trithoraxOncogene, 1998
- Structure and expression pattern of human ALR, a novel gene with strong homology to ALL-1 involved in acute leukemia and to Drosophila trithoraxOncogene, 1997
- Altered Hox expression and segmental identity in Mll-mutant miceNature, 1995
- The t(4;11) chromosome translocation of human acute leukemias fuses the ALL-1 gene, related to Drosophila trithorax, to the AF-4 geneCell, 1992
- Involvement of a homolog of Drosophila trithorax by 11q23 chromosomal translocations in acute leukemiasCell, 1992
- A trithorax–like gene is interrupted by chromosome 11q23 translocations in acute leukaemiasNature Genetics, 1992