Chen Jing, Kremer Christopher S, Bender Timothy P
Department of Molecular Physiology, University of Virginia Health System, PO Box 800734, Charlottesville, Virginia, VA 22908-0734, USA.
Oncogene. 2002 Mar 14;21(12):1859-69. doi: 10.1038/sj.onc.1205003.
Friend murine erythroleukemia (MEL) cells are transformed erythroid precursors that are held in an immature and proliferating state but can be induced to differentiate in vivo by treatment with a variety of chemical agents such as N, N-hexamethylene bisacetamide (HMBA). To investigate the role of Myb proteins in maintaining MEL cells in an immature and proliferating state we have produced stable transfectants in the C19 MEL cell line that contain a dominant interfering Myb allele (MEnT) under the control of an inducible mouse metallothionein I promoter. When expression of MEnT protein was induced with ZnCl2, the stable transfectants differentiated with kinetics that were similar to wild type C19 MEL cells treated with HMBA, including induction of alpha-globin mRNA expression, assembly of hemoglobin and growth arrest. Expression of endogenous c-myb and c-myc was also decreased in response to MEnT. Expression of mad-1 mRNA was rapidly increased in response to expression of MEnT resulting in a shift from predominantly c-Myc/Max complexes to predominantly Mad/Max containing complexes. These results strongly suggest that C19 MEL cells are held in an immature and proliferating state by a pathway that is dependent on Myb activity.
弗瑞德小鼠红白血病(MEL)细胞是转化的红系前体细胞,它们处于未成熟和增殖状态,但可以通过用多种化学试剂如N,N - 六亚甲基双乙酰胺(HMBA)处理在体内诱导分化。为了研究Myb蛋白在维持MEL细胞处于未成熟和增殖状态中的作用,我们在C19 MEL细胞系中产生了稳定转染子,其在可诱导的小鼠金属硫蛋白I启动子的控制下含有显性干扰Myb等位基因(MEnT)。当用ZnCl2诱导MEnT蛋白表达时,稳定转染子以与用HMBA处理的野生型C19 MEL细胞相似的动力学进行分化,包括α-珠蛋白mRNA表达的诱导、血红蛋白的组装和生长停滞。内源性c-myb和c-myc的表达也因MEnT而降低。mad-1 mRNA的表达响应于MEnT的表达而迅速增加,导致从主要是c-Myc/Max复合物转变为主要是含有Mad/Max的复合物。这些结果强烈表明,C19 MEL细胞通过依赖于Myb活性的途径维持在未成熟和增殖状态。