Journal of Biological Chemistry · 2007 · 40 citations · 51 references
GeneticsMolecular BiologyEpigeneticsC-myb Protein BelongsTranscriptional RegulationProtein ExpressionCell RegulationGene ExpressionFunctional GenomicsCell BiologyTranscription RegulationChromatin FunctionChromatinHuman C-mybChromatin StructureChromatin RemodelingNatural SciencesGene RegulationChromatin PatternsNovel Co-activatorSystems BiologyMedicine
The c-Myb protein belongs to a group of early hematopoietic transcription factors that are important for progenitor generation and proliferation. These factors have been hypothesized to participate in establishing chromatin patterns specific for hematopoietic genes. In a two-hybrid screening we identified the chromatin remodeling factor Mi-2alpha as an interaction partner for human c-Myb. The main interacting domains were mapped to the N-terminal region of Mi-2alpha and the DNA-binding domain of c-Myb. Surprisingly, functional analysis revealed that Mi-2alpha, previously studied as a subunit in the NuRD co-repressor complex, enhanced c-Myb-dependent reporter activation. Consistently, knock-down of endogenous Mi-2alpha in c-Myb-expressing K562 cells, led to down-regulation of the c-Myb target genes NMU and ADA. When wild-type and helicase-dead Mi-2alpha were compared, the Myb-Mi-2alpha co-activation appeared to be independent of the ATPase/DNA helicase activity of Mi-2alpha. The rationale for the unexpected co-activator function seems to lie in a dual function of Mi-2alpha, by which this factor is able to repress transcription in a helicase-dependent and activate in a helicase-independent fashion, as revealed by Gal4-tethering experiments. Interestingly, desumoylation of c-Myb potentiated the Myb-Mi-2alpha transactivational co-operation, as did co-transfection with p300.
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A functional c-myb gene is required for normal murine fetal hepatic hematopoiesis
Michael L. Mucenski, Kersten McLain, Ann B. Kier et al. · Cell · 1991 · 1.1K citations
ING2 PHD domain links histone H3 lysine 4 methylation to active gene repression
Xiaobing Shi, Tao Hong, Kay L. Walter et al. · Nature · 2006 · 920 citations · Full text
Histone Modifications, Chromatin, Transcriptional Regulation +15