Cancer Science Institute of Singapore, National University of Singapore, Singapore.
Stem Cells. 2010 Oct;28(10):1869-81. doi: 10.1002/stem.507.
Runx1 is essential for the generation of hematopoietic stem cells (HSCs) and is frequently mutated in human leukemias. However, the cis-regulatory mechanisms modulating the Runx1 gene expression remain to be elucidated. Herewith, we report the identification of an intronic Runx1 enhancer, Runx1 +24 mouse conserved noncoding element (mCNE), using a combinatorial in silico approach involving comparative genomics and retroviral integration sites mapping. The Runx1 +24 mCNE was found to possess hematopoietic-specific enhancer activity in both zebrafish and mouse models. Significantly, this enhancer is active specifically in hemogenic endothelial cells (ECs) at sites where the de novo generation of HSCs occurs. The activity of this enhancer is also strictly restricted to HSCs within the hematopoietic compartment of the adult bone marrow. We anticipate that Runx1 +24 mCNE HSC enhancer will serve as a molecular handle for tracing and/or manipulating hemogenic ECs/HSCs behavior in vivo, and consequently become an invaluable tool for research on stem cell and cancer biology.
Runx1 对于造血干细胞(HSCs)的生成至关重要,并且在人类白血病中经常发生突变。然而,调节 Runx1 基因表达的顺式调控机制仍有待阐明。在此,我们通过涉及比较基因组学和逆转录病毒整合位点映射的组合计算方法,报道了一个内含子 Runx1 增强子 Runx1 +24 小鼠保守非编码元件(mCNE)的鉴定。发现 Runx1 +24 mCNE 在斑马鱼和小鼠模型中均具有造血特异性增强子活性。重要的是,该增强子仅在新生成 HSCs 的部位特异性地在造血内皮细胞(EC)中起作用。该增强子的活性也严格局限于成年骨髓造血部分内的 HSCs。我们预计,Runx1 +24 mCNE HSC 增强子将作为一种分子手段,用于在体内追踪和/或操纵造血内皮细胞/ HSCs 的行为,并因此成为研究干细胞和癌症生物学的宝贵工具。