Melotti P, Calabretta B
Departments of Microbiology and Immunology, Jefferson Cancer Institute, Thomas Jefferson University, Philadelphia, PA USA.
Blood. 1996 Mar 15;87(6):2221-34.
To provide insight into the mechanisms by which c-myb regulates hematopoiesis, we analyzed the expression of markers for multiple hematopoietic lineages in differentiating parental embryonic stem (ES) cells and in ES cells transfected with c-myb or with a mutant c-myb deficient in DNA binding and assessed the ability of these cells to undergo hematopoietic commitment and colony formation. Undifferentiated ES cells transfected with intact c-myb, but not cells transfected with mutant c-myb, expressed CD34, c-kit, GATA1, and flt3 mRNA as well as surface CD34, c-kit, and flt3 product. In contrast, the kinetics of GATA-2 mRNA expression was identical in parental and Myb-transfected ES cells. Transient expression assays suggested transactivation of gene expression dependent on interaction with Myb binding sites in the CD34 and GATA1 5' flanking regions. Undifferentiated parental and c-myb mutant-transfected ES cells were not clonogenic, whereas c-myb transfectants formed erythromyeloid colonies in methylcellulose cultures in the absence of added hematopoietic growth factors and, at higher frequency, in the presence of kit and flt-3 ligands. Colony formation was suppressed by treatment with antisense oligodeoxynucleotides specifically downregulating c-kit and flt-3 expression. These findings indicate that c-myb regulates hematopoietic commitment and progenitor cell proliferation and differentiation through the activation of certain genes that define the stem/progenitor cell compartment.
为深入了解c-myb调控造血作用的机制,我们分析了多个造血谱系标志物在分化的亲代胚胎干细胞(ES细胞)、转染了c-myb或缺乏DNA结合能力的突变型c-myb的ES细胞中的表达情况,并评估了这些细胞进行造血定向分化和集落形成的能力。转染完整c-myb的未分化ES细胞,而非转染突变型c-myb的细胞,表达CD34、c-kit、GATA1和flt3 mRNA以及表面CD34、c-kit和flt3产物。相比之下,亲代ES细胞和转染Myb的ES细胞中GATA-2 mRNA的表达动力学是相同的。瞬时表达分析表明,基因表达的反式激活依赖于与CD34和GATA1 5'侧翼区域中Myb结合位点的相互作用。未分化的亲代ES细胞和转染c-myb突变体的ES细胞不具有克隆形成能力,而转染c-myb的细胞在无添加造血生长因子的甲基纤维素培养物中形成红系髓系集落,在有kit和flt-3配体存在时形成频率更高。用特异性下调c-kit和flt-3表达的反义寡脱氧核苷酸处理可抑制集落形成。这些发现表明,c-myb通过激活某些定义干细胞/祖细胞区室的基因来调控造血定向分化以及祖细胞的增殖和分化。