Guo Hong, Ma Ou, Friedman Alan D
Division of Pediatric Oncology, Johns Hopkins University, Baltimore, Maryland, USA.
Division of Pediatric Oncology, Johns Hopkins University, Baltimore, Maryland, USA
J Leukoc Biol. 2014 Sep;96(3):419-26. doi: 10.1189/jlb.2AB0314-145R. Epub 2014 May 27.
C/EBPα is expressed preferentially in myeloid compared with lymphoid or erythroid cells and directs myeloid lineage specification. C/EBPα is also expressed at lower levels in HSCs and in several nonhematopoietic tissues. The Cebpa gene has a conserved, 450-bp segment at +37 kb that harbors enhancer-specific epigenetic marks and is activate in a myeloid cell line. Herein, we characterize transgenic C57BL/6 mice, in which the Cebpa enhancer and 845-bp promoter regulate a hCD4 reporter. FACS analysis, in vitro colony assays, and in vivo competitive and secondary transplantation revealed that myeloid but not MEPs or lymphoid progenitors and also functional LT-HSCs are found almost exclusively in the Cebpa-hCD4(+) compared with hCD4(-) marrow population. hCD4(+) CMP yielded predominantly myeloid, whereas hCD4(-) CMP generated mainly Meg/E colonies. Providing insight into control of CMP maturation, Cebpa and Pu.1 RNAs were preferentially expressed in hCD4(+) CMP, Scl, Gata2, Gata1, Klf1, Ets1, and Fli1 predominated in hCD4(-) CMP, and Runx1, Myb, HoxA9, and Erg levels were similar in both. Cebpa-hCD4 transgene expression was lacking in multiple nonhematopoietic tissues. In summary, the +37-kb Cebpa enhancer and promoter are sufficient for marrow myeloid progenitor and LT-HSC-specific expression.
与淋巴细胞或红细胞相比,C/EBPα在髓系细胞中优先表达,并指导髓系谱系的确定。C/EBPα在造血干细胞和几种非造血组织中的表达水平也较低。Cebpa基因在+37 kb处有一个保守的450 bp片段,该片段含有增强子特异性表观遗传标记,并在髓系细胞系中被激活。在此,我们对转基因C57BL/6小鼠进行了表征,其中Cebpa增强子和845 bp启动子调控hCD4报告基因。流式细胞术分析、体外集落测定以及体内竞争性和二次移植显示,与hCD4(-)骨髓群体相比,髓系祖细胞而非巨核系红细胞祖细胞或淋巴细胞祖细胞以及功能性长期造血干细胞几乎只存在于Cebpa-hCD4(+)群体中。hCD4(+) 共同髓系祖细胞主要产生髓系细胞,而hCD4(-) 共同髓系祖细胞主要产生巨核/红细胞集落。为深入了解共同髓系祖细胞成熟的调控机制,Cebpa和Pu.1 RNA在hCD4(+) 共同髓系祖细胞中优先表达,Scl、Gata2、Gata1、Klf1、Ets1和Fli1在hCD4(-) 共同髓系祖细胞中占主导地位,Runx1、Myb、HoxA9和Erg在两者中的水平相似。Cebpa-hCD4转基因在多种非造血组织中缺乏表达。总之,+37 kb的Cebpa增强子和启动子足以实现骨髓髓系祖细胞和长期造血干细胞特异性表达。