Saether Thomas, Berge Tone, Ledsaak Marit, Matre Vilborg, Alm-Kristiansen Anne Hege, Dahle Oyvind, Aubry Florence, Gabrielsen Odd Stokke
Department of Molecular Biosciences, University of Oslo, Oslo, Norway.
J Biol Chem. 2007 May 11;282(19):13994-4005. doi: 10.1074/jbc.M700755200. Epub 2007 Mar 7.
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.
c-Myb蛋白属于一组早期造血转录因子,对祖细胞的产生和增殖至关重要。这些因子被推测参与建立造血基因特有的染色质模式。在一项双杂交筛选中,我们鉴定出染色质重塑因子Mi-2α作为人c-Myb的相互作用伴侣。主要的相互作用结构域定位于Mi-2α的N端区域和c-Myb的DNA结合结构域。令人惊讶的是,功能分析表明,Mi-2α此前作为NuRD共抑制复合物中的一个亚基进行研究,却增强了c-Myb依赖的报告基因激活。一致地,在表达c-Myb的K562细胞中敲低内源性Mi-2α,导致c-Myb靶基因NMU和ADA的下调。当比较野生型和螺旋酶失活的Mi-2α时,Myb-Mi-2α共激活似乎独立于Mi-2α的ATP酶/DNA螺旋酶活性。这种意外的共激活功能的原理似乎在于Mi-2α的双重功能,如Gal4锚定实验所示,该因子能够以螺旋酶依赖的方式抑制转录,并以螺旋酶非依赖的方式激活转录。有趣的是,c-Myb的去SUMO化增强了Myb-Mi-2α的反式激活协同作用,与p300共转染时也是如此。