Grebbin Britta Moyo, Hau Ann-Christin, Groß Anja, Anders-Maurer Marie, Schramm Jasmine, Koss Matthew, Wille Christoph, Mittelbronn Michel, Selleri Licia, Schulte Dorothea
Institute of Neurology (Edinger Institute), J. W. Goethe University Medical School, German Cancer Consortium (DKTK), Heinrich-Hoffmann Str. 7, Frankfurt D-60528, Germany.
Department of Cell and Developmental Biology, Weill Medical College of Cornell University, 1300 York Avenue, New York, NY 10065, USA.
Development. 2016 Jul 1;143(13):2281-91. doi: 10.1242/dev.128033. Epub 2016 May 25.
TALE-homeodomain proteins function as components of heteromeric complexes that contain one member each of the PBC and MEIS/PREP subclasses. We recently showed that MEIS2 cooperates with the neurogenic transcription factor PAX6 in the control of adult subventricular zone (SVZ) neurogenesis in rodents. Expression of the PBC protein PBX1 in the SVZ has been reported, but its functional role(s) has not been investigated. Using a genetic loss-of-function mouse model, we now show that Pbx1 is an early regulator of SVZ neurogenesis. Targeted deletion of Pbx1 by retroviral transduction of Cre recombinase into Pbx2-deficient SVZ stem and progenitor cells carrying floxed alleles of Pbx1 significantly reduced the production of neurons and increased the generation of oligodendrocytes. Loss of Pbx1 expression in neuronally committed neuroblasts in the rostral migratory stream in a Pbx2 null background, by contrast, severely compromised cell survival. By chromatin immunoprecipitation from endogenous tissues or isolated cells, we further detected PBX1 binding to known regulatory regions of the neuron-specific genes Dcx and Th days or even weeks before the respective genes are expressed during the normal program of SVZ neurogenesis, suggesting that PBX1 might act as a priming factor to mark these genes for subsequent activation. Collectively, our results establish that PBX1 regulates adult neural cell fate determination in a manner beyond that of its heterodimerization partner MEIS2.
TALE-同源结构域蛋白作为异源复合物的组成成分发挥作用,该复合物分别包含一个PBC和MEIS/PREP亚类的成员。我们最近发现,MEIS2与神经源性转录因子PAX6协同作用,控制啮齿动物成年脑室下区(SVZ)的神经发生。已有报道SVZ中PBC蛋白PBX1的表达,但尚未对其功能作用进行研究。利用基因功能缺失小鼠模型,我们现在表明Pbx1是SVZ神经发生的早期调节因子。通过将Cre重组酶逆转录病毒转导到携带Pbx1侧翼等位基因的Pbx2缺陷型SVZ干细胞和祖细胞中,靶向缺失Pbx1显著减少了神经元的产生,并增加了少突胶质细胞的生成。相比之下,在Pbx2基因敲除背景下,吻侧迁移流中已定向分化为神经元的神经母细胞中Pbx1表达缺失,严重损害了细胞存活。通过对内源性组织或分离细胞进行染色质免疫沉淀,我们进一步检测到在SVZ神经发生正常程序中,相应基因表达前数天甚至数周,PBX1就与神经元特异性基因Dcx和Th的已知调控区域结合,这表明PBX1可能作为一种引发因子,标记这些基因以便随后激活。总的来说,我们的结果表明,PBX1以一种不同于其异二聚体伙伴MEIS2的方式调节成年神经细胞命运的决定。