Gibbs J D, Liebermann D A, Hoffman B
Fels Institute for Cancer Research and Molecular Biology, Temple University, Philadelphia, PA, USA.
Oncogene. 2008 Jan 3;27(1):98-106. doi: 10.1038/sj.onc.1210627. Epub 2007 Jun 25.
Deregulated growth and blocks in differentiation collaborate in the multistage process of leukemogenesis. Previously, we have shown that ectopic expression of the zinc finger transcription factor Egr-1 in M1 myeloblastic leukemia cells promotes terminal differentiation with interleukin-6 (IL-6). In addition, we have shown that deregulated expression of the oncogene E2F-1 blocks the myeloid terminal differentiation program, resulting in proliferation of immature cells in the presence of IL-6. Here it is shown that the positive regulator of differentiation Egr-1 abrogates the E2F-1-driven block in myeloid terminal differentiation. The M1E2F-1/Egr-1 cells underwent G(0)/G(1) arrest and functional macrophage maturation following treatment with IL-6. Furthermore, Egr-1 diminished the aggressiveness of M1E2F-1 leukemias and abrogated the leukemic potential of IL-6-treated M1E2F-1 cells. Previously, we reported that Egr-1 abrogated the block in terminal myeloid differentiation imparted by deregulated c-myc, which blocks differentiation at a later stage than E2F-1, resulting in cells that have the characteristics of functionally mature macrophages that did not undergo G(0)/G(1) arrest. Taken together, this work extends and highlights the tumor suppressor role of Egr-1, with Egr-1 behaving as a tumor suppressor against two oncogenes, each blocking myeloid differentiation by a different mechanism. These findings suggest that Egr-1 and/or Egr-1 target genes may be useful tools to treat or suppress oncogene-driven hematological malignancies.
生长失调和分化受阻在白血病发生的多阶段过程中相互作用。此前,我们已经表明,锌指转录因子Egr-1在M1髓母细胞白血病细胞中的异位表达可促进其与白细胞介素-6(IL-6)的终末分化。此外,我们还表明,癌基因E2F-1的表达失调会阻断髓系终末分化程序,导致未成熟细胞在IL-6存在下增殖。本文表明,分化的正向调节因子Egr-1可消除E2F-1驱动的髓系终末分化阻滞。用IL-6处理后,M1E2F-1/Egr-1细胞进入G(0)/G(1)期停滞并实现功能性巨噬细胞成熟。此外,Egr-1降低了M1E2F-1白血病的侵袭性,并消除了IL-6处理的M1E2F-1细胞的白血病潜能。此前,我们报道Egr-1消除了由失调的c-myc所导致的终末髓系分化阻滞,c-myc在比E2F-1更晚的阶段阻断分化,产生具有功能成熟巨噬细胞特征但未进入G(0)/G(1)期停滞的细胞。综上所述,这项工作扩展并突出了Egr-1的肿瘤抑制作用,Egr-1作为针对两种癌基因的肿瘤抑制因子,每种癌基因通过不同机制阻断髓系分化。这些发现表明,Egr-1和/或Egr-1靶基因可能是治疗或抑制癌基因驱动的血液系统恶性肿瘤的有用工具。