Nicolis S, Ottolenghi S, Papayannopoulou T, Baiocchi M, Migliaccio G, Adamson J, Migliaccio A R
Dipartimento di Genetica e di Biologia dei Microrganismi, Università di Milano, Italy.
Exp Hematol. 1993 May;21(5):665-70.
Erythroid differentiation involves the activation of a number of erythroid-specific genes, most of which, including the globin genes and the erythropoietin receptor (Epo-R) gene, are, at least in part, regulated by the transcription factor GATA-1. In order to understand the relationship, if any, between expression of GATA-1, response to Epo and erythroid differentiation, we analyzed the expression of GATA-1, Epo-R and globin genes in an Epo-dependent human cell line, UT-7 Epo. The results were compared to those obtained with the parental granulocyte-macrophage colony-stimulating factor (GM-CSF)-dependent cell line, UT-7, which has a predominantly megakaryoblastic phenotype and is unable to proliferate continuously in the presence of Epo. UT-7 Epo and UT-7 expressed similar levels of GATA-1 mRNA and binding activity. The two lines also expressed comparable levels of Epo-R mRNA while the number of Epo-binding sites on UT-7 Epo cells was one-sixth the number of UT-7 cells (2400 +/- 3 vs. 13,800 +/- 300). This difference in the number of binding sites could be due to differences in cell surface (UT-7 cells are 20% smaller than the parental UT-7 cells) or in receptor turnover. By Northern analysis, UT-7 cells expressed detectable levels of beta- and gamma-globin but not alpha-globin. In comparison, UT-7 Epo cells expressed alpha-globin and higher levels of gamma-globin (5-fold) and beta-globin (from barely to clearly detectable). Globin chains (alpha, beta and gamma) were clearly detectable by affinity chromatography in UT-7 Epo but not in UT-7 cells. The frequency of the cells which expressed beta- and gamma-globin genes in the two cell populations was measured by immunofluorescence with beta- and gamma-specific antibodies. The number of gamma-positive cells and their fluorescence intensity were higher in UT-7 Epo than in UT-7 cells (0 to 17% barely positive cells and 23 to 40% clearly positive cells, respectively), indicating that the increase in globin mRNA observed in UT-7 Epo is due to both an increase of gene expression per cell and an increase in numbers of cells containing gamma-globin. The levels of GATA-1, Epo-R and globin mRNA expressed were not affected by a 24-hour incubation of either cell line with Epo, GM-CSF or interleukin-3 (IL-3).(ABSTRACT TRUNCATED AT 400 WORDS)
红细胞分化涉及许多红细胞特异性基因的激活,其中大多数基因,包括珠蛋白基因和促红细胞生成素受体(Epo - R)基因,至少部分受转录因子GATA - 1调控。为了了解GATA - 1表达、对Epo的反应和红细胞分化之间的关系(如果存在的话),我们分析了Epo依赖的人细胞系UT - 7 Epo中GATA - 1、Epo - R和珠蛋白基因的表达。将结果与亲代粒细胞 - 巨噬细胞集落刺激因子(GM - CSF)依赖的细胞系UT - 7的结果进行比较,UT - 7主要具有巨核母细胞表型,在Epo存在下不能持续增殖。UT - 7 Epo和UT - 7表达相似水平的GATA - 1 mRNA和结合活性。这两个细胞系也表达相当水平的Epo - R mRNA,而UT - 7 Epo细胞上Epo结合位点的数量是UT - 7细胞的六分之一(2400±3对13800±300)。结合位点数量的这种差异可能是由于细胞表面的差异(UT - 7细胞比亲代UT - 7细胞小20%)或受体周转的差异。通过Northern分析,UT - 7细胞表达可检测水平的β和γ珠蛋白,但不表达α珠蛋白。相比之下,UT - 7 Epo细胞表达α珠蛋白以及更高水平的γ珠蛋白(5倍)和β珠蛋白(从几乎检测不到到明显可检测到)。通过亲和层析在UT - 7 Epo中可清楚检测到珠蛋白链(α、β和γ),但在UT - 7细胞中未检测到。用β和γ特异性抗体通过免疫荧光测量两个细胞群体中表达β和γ珠蛋白基因的细胞频率。UT - 7 Epo中γ阳性细胞的数量及其荧光强度高于UT - 7细胞(分别为0至17%几乎阳性细胞和23至40%明显阳性细胞),这表明在UT - 7 Epo中观察到的珠蛋白mRNA增加是由于每个细胞基因表达的增加以及含有γ珠蛋白的细胞数量增加。用Epo、GM - CSF或白细胞介素 - 3(IL - 3)对任一细胞系进行24小时孵育,均不影响GATA - 1、Epo - R和珠蛋白mRNA的表达水平。(摘要截短于400字)