Wang X, Scott E, Sawyers C L, Friedman A D
Johns Hopkins Oncology Center, Division of Pediatric Oncology, Baltimore, MD, USA.
Blood. 1999 Jul 15;94(2):560-71.
Within hematopoiesis, C/EBPalpha is expressed only in myeloid cells, and PU.1 is expressed mainly in myeloid and B-lymphoid cells. C/EBPalpha-deficient mice lack the neutrophil lineage and retain monocytes, whereas PU.1-deficient mice lack monocytes and have severely reduced neutrophils. We expressed a C/EBPalpha-estrogen receptor ligand-binding domain fusion protein, C/EBPalphaWT-ER, in 32D cl3 myeloblasts. 32D cl3 cells proliferate in interleukin-3 (IL-3) and differentiate to neutrophils in granulocyte colony-stimulating factor (G-CSF). In the presence of estradiol, C/EBPalphaWT-ER induced morphologic differentiation and the expression of the myeloperoxidase, lactoferrin, and G-CSF receptor mRNAs. C/EBPalphaWT-ER also induced a G1/S cell cycle block, with induction of p27 and Rb hypophosphorylation. bcr-ablp210 prevented 32D cl3 cell differentiation. Activation of C/EBPalpha-ER in 32D-bcr-ablp210 or Ba/F3 B-lymphoid cells induced cell cycle arrest independent of terminal differentiation. C/EBPalphaWT-ER induced endogenous PU.1 mRNA within 8 hours in both 32D cl3 and Ba/F3 cells, even in the presence of cycloheximide, indicating that C/EBPalpha directly activates the PU.1 gene. However, activation of a PU.1-ER fusion protein in 32D cl3 cells induced myeloperoxidase (MPO) RNA but not terminal differentiation. Thus, C/EBPalpha acts downstream of G-CSF and upstream of PU.1, p27, and potentially other factors to induce myeloblasts to undergo granulocytic differentiation and cell cycle arrest.
在造血过程中,C/EBPα仅在髓系细胞中表达,而PU.1主要在髓系细胞和B淋巴细胞中表达。C/EBPα缺陷小鼠缺乏中性粒细胞谱系而保留单核细胞,而PU.1缺陷小鼠缺乏单核细胞且中性粒细胞严重减少。我们在32D cl3成髓细胞中表达了一种C/EBPα-雌激素受体配体结合域融合蛋白C/EBPαWT-ER。32D cl3细胞在白细胞介素-3(IL-3)中增殖,并在粒细胞集落刺激因子(G-CSF)作用下分化为中性粒细胞。在雌二醇存在的情况下,C/EBPαWT-ER诱导形态学分化以及髓过氧化物酶、乳铁蛋白和G-CSF受体mRNA的表达。C/EBPαWT-ER还诱导G1/S细胞周期阻滞,并伴随p27的诱导和Rb的去磷酸化。bcr-ablp210阻止32D cl3细胞分化。在32D-bcr-ablp210或Ba/F3 B淋巴细胞中激活C/EBPα-ER可诱导细胞周期停滞,而与终末分化无关。C/EBPαWT-ER在32D cl3和Ba/F3细胞中均在8小时内诱导内源性PU.1 mRNA表达,即使存在放线菌酮,这表明C/EBPα直接激活PU.1基因。然而,在32D cl3细胞中激活PU.1-ER融合蛋白可诱导髓过氧化物酶(MPO)RNA表达,但不能诱导终末分化。因此,C/EBPα在G-CSF下游、PU.1、p27以及可能的其他因子上游发挥作用,诱导成髓细胞进行粒细胞分化和细胞周期停滞。