Panzenböck B, Bartunek P, Mapara M Y, Zenke M
Max-Delbrück-Centre for Molecular Medicine, MDC, Berlin, Germany; and the Humboldt University Berlin, Virchow Klinikum, Robert-Rössle-Klinik, Berlin, Germany.
Blood. 1998 Nov 15;92(10):3658-68.
Stem cell factor (SCF) and erythropoietin (Epo) effectively support erythroid cell development in vivo and in vitro. We have studied here an SCF/Epo-dependent erythroid progenitor cell from cord blood that can be efficiently amplified in liquid culture to large cell numbers in the presence of SCF, Epo, insulin-like growth factor-1 (IGF-1), dexamethasone, and estrogen. Additionally, by changing the culture conditions and by administration of Epo plus insulin, such progenitor cells effectively undergo terminal differentiation in culture and thereby faithfully recapitulate erythroid cell differentiation in vitro. This SCF/Epo-dependent erythroid progenitor is also present in CD34(+) peripheral blood stem cells and human bone marrow and can be isolated, amplified, and differentiated in vitro under the same conditions. Thus, highly homogenous populations of SCF/Epo-dependent erythroid progenitors can be obtained in large cell numbers that are most suitable for further biochemical and molecular studies. We demonstrate that such cells express the recently identified adapter protein p62(dok) that is involved in signaling downstream of the c-kit/SCF receptor. Additionally, cells express the cyclin-dependent kinase (CDK) inhibitors p21(cip1) and p27(kip1) that are highly induced when cells differentiate. Thus, the in vitro system described allows the study of molecules and signaling pathways involved in proliferation or differentiation of human erythroid cells.
干细胞因子(SCF)和促红细胞生成素(Epo)在体内和体外均能有效支持红系细胞的发育。我们在此研究了一种来自脐带血的SCF/Epo依赖性红系祖细胞,在SCF、Epo、胰岛素样生长因子-1(IGF-1)、地塞米松和雌激素存在的情况下,该祖细胞能在液体培养中高效扩增至大量细胞。此外,通过改变培养条件以及给予Epo加胰岛素,此类祖细胞能在培养中有效进行终末分化,从而在体外如实地重现红系细胞分化过程。这种SCF/Epo依赖性红系祖细胞也存在于CD34(+)外周血干细胞和人骨髓中,并且能在相同条件下于体外进行分离、扩增和分化。因此,能够获得大量高度均一的SCF/Epo依赖性红系祖细胞群体,这最适合进一步的生化和分子研究。我们证明此类细胞表达最近鉴定出的衔接蛋白p62(dok),其参与c-kit/SCF受体下游的信号传导。此外,细胞表达细胞周期蛋白依赖性激酶(CDK)抑制剂p21(cip1)和p27(kip1),在细胞分化时它们会被高度诱导。因此,所描述的体外系统有助于研究参与人红系细胞增殖或分化的分子和信号通路。