University of Cambridge Department of Haematology, Cambridge Institute for Medical Research, Cambridge, United Kingdom.
Mol Cell Biol. 2012 Feb;32(4):763-73. doi: 10.1128/MCB.05745-11. Epub 2011 Dec 12.
The ETS transcription factor Elf-4 is an important regulator of hematopoietic stem cell (HSC) and T cell homeostasis. To gain insights into the transcriptional circuitry within which Elf-4 operates, we used comparative sequence analysis coupled with chromatin immunoprecipitation (ChIP) with microarray technology (ChIP-chip) assays for specific chromatin marks to identify three promoters and two enhancers active in hematopoietic and endothelial cell lines. Comprehensive functional validation of each of these regulatory regions in transgenic mouse embryos identified a tissue-specific enhancer (-10E) that displayed activity in fetal liver, dorsal aorta, vitelline vessels, yolk sac, and heart. Integration of a ChIP-sequencing (ChIP-Seq) data set for 10 key stem cell transcription factors showed Pu.1, Fli-1, and Erg were bound to the -10E element, and mutation of three highly conserved ETS sites within the enhancer abolished its activity. Finally, the transcriptional repressor Gfi1b was found to bind to and repress one of the Elf-4 promoters (-30P), and we show that this repression of Elf-4 is important for the maturation of primary fetal liver erythroid cells. Taken together, our results provide a comprehensive overview of the transcriptional control of Elf-4 within the hematopoietic system and, thus, integrate Elf-4 into the wider transcriptional regulatory networks that govern hematopoietic development.
ETS 转录因子 Elf-4 是造血干细胞 (HSC) 和 T 细胞稳态的重要调节因子。为了深入了解 Elf-4 作用的转录调控回路,我们使用比较序列分析结合染色质免疫沉淀 (ChIP) 和微阵列技术 (ChIP-chip) 检测特定染色质标记物,鉴定了在造血和内皮细胞系中活跃的三个启动子和两个增强子。在转基因小鼠胚胎中对这些调控区域的每个区域进行全面的功能验证,鉴定出一个组织特异性增强子 (-10E),该增强子在胎肝、背主动脉、卵黄囊和心脏中具有活性。整合了 10 个关键干细胞转录因子的 ChIP-测序 (ChIP-Seq) 数据集,显示 Pu.1、Fli-1 和 Erg 与 -10E 元件结合,并且增强子内三个高度保守的 ETS 位点的突变使其失去活性。最后,发现转录抑制因子 Gfi1b 与 Elf-4 的一个启动子 (-30P) 结合并抑制其活性,我们表明 Elf-4 的这种抑制对于原代胎肝红细胞的成熟是重要的。总之,我们的结果提供了 Elf-4 在造血系统中转录调控的全面概述,从而将 Elf-4 整合到调控造血发育的更广泛的转录调控网络中。