Selvakumaran M, Liebermann D, Hoffman-Liebermann B
Department of Biochemistry and Biophysics, University of Pennsylvania School of Medicine, Philadelphia 19104-6059.
Blood. 1993 May 1;81(9):2257-62.
Conditional mutants of the myeloblastic leukemic M1 cell line, expressing the chimeric mycer transgene, have been established. It is shown that M1 mycer cells, like M1, undergo terminal differentiation coupled to growth arrest and programmed cell death (apoptosis) after treatment with the physiologic differentiation inducer interleukin-6. However, when beta-estradiol is included in the culture medium, M1 mycer cells respond to differentiation inducers like M1 myc cell lines, where the differentiation program is blocked at an intermediate stage. By manipulating the function of the mycer transgene product, it is shown that there is a 10-hour window during myeloid differentiation, from 30 to 40 hours after the addition of the differentiation inducer, when the terminal differentiation program switches from being dependent on c-myc suppression to becoming c-myc suppression independent, where activation of c-myc has no apparent effect on mature macrophages. M1 mycer cell lines provide a powerful tool to increase our understanding of the role of c-myc in normal myelopoiesis and in leukemogenesis, also providing a strategy to clone c-myc target genes.
已建立表达嵌合型mycer转基因的髓母细胞白血病M1细胞系的条件性突变体。结果表明,M1 mycer细胞与M1细胞一样,在用生理分化诱导剂白细胞介素-6处理后,会经历与生长停滞和程序性细胞死亡(凋亡)相关的终末分化。然而,当在培养基中加入β-雌二醇时,M1 mycer细胞对分化诱导剂的反应类似于M1 myc细胞系,其分化程序在中间阶段被阻断。通过操纵mycer转基因产物的功能,结果表明在髓系分化过程中有一个10小时的窗口期,即在添加分化诱导剂后30至40小时,此时终末分化程序从依赖c-myc抑制转变为不依赖c-myc抑制,其中c-myc的激活对成熟巨噬细胞没有明显影响。M1 mycer细胞系为增进我们对c-myc在正常髓系造血和白血病发生中的作用的理解提供了一个有力工具,也为克隆c-myc靶基因提供了一种策略。