Landry Josette-Renée, Kinston Sarah, Knezevic Kathy, de Bruijn Marella F T R, Wilson Nicola, Nottingham Wade T, Peitz Michael, Edenhofer Frank, Pimanda John E, Ottersbach Katrin, Göttgens Berthold
Department of Haematology, Cambridge Institute for Medical Research, Cambridge University, Cambridge, United Kingdom.
Blood. 2008 Mar 15;111(6):3005-14. doi: 10.1182/blood-2007-07-098830. Epub 2008 Jan 9.
Transcription factors such as Scl/Tal1, Lmo2, and Runx1 are essential for the development of hematopoietic stem cells (HSCs). However, the precise mechanisms by which these factors interact to form transcriptional networks, as well as the identity of the genes downstream of these regulatory cascades, remain largely unknown. To this end, we generated an Scl(-/-) yolk sac cell line to identify candidate Scl target genes by global expression profiling after reintroduction of a TAT-Scl fusion protein. Bioinformatics analysis resulted in the identification of 9 candidate Scl target transcription factor genes, including Runx1 and Runx3. Chromatin immunoprecipitation confirmed that both Runx genes are direct targets of Scl in the fetal liver and that Runx1 is also occupied by Scl in the yolk sac. Furthermore, binding of an Scl-Lmo2-Gata2 complex was demonstrated to occur on the regions flanking the conserved E-boxes of the Runx1 loci and was shown to transactivate the Runx1 element. Together, our data provide a key component of the transcriptional network of early hematopoiesis by identifying downstream targets of Scl that can explain key aspects of the early Scl(-/-) phenotype.
转录因子如Scl/Tal1、Lmo2和Runx1对造血干细胞(HSC)的发育至关重要。然而,这些因子相互作用形成转录网络的精确机制,以及这些调控级联下游基因的身份,在很大程度上仍然未知。为此,我们构建了一个Scl(-/-)卵黄囊细胞系,通过重新引入TAT-Scl融合蛋白后进行全局表达谱分析来鉴定候选Scl靶基因。生物信息学分析鉴定出9个候选Scl靶转录因子基因,包括Runx1和Runx3。染色质免疫沉淀证实,这两个Runx基因都是胎儿肝脏中Scl的直接靶标,并且Runx1在卵黄囊中也被Scl占据。此外,还证明Scl-Lmo2-Gata2复合物在Runx1基因座保守E盒侧翼区域结合,并能反式激活Runx1元件。总之,我们的数据通过鉴定Scl的下游靶标,为早期造血转录网络提供了一个关键组成部分,这些靶标可以解释早期Scl(-/-)表型的关键方面。