Laboratory of Genome Integrity, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
1] Laboratory of Genome Integrity, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA [2].
Nature. 2014 Oct 2;514(7520):107-11. doi: 10.1038/nature13483. Epub 2014 Jul 27.
Self-renewal is the hallmark feature both of normal stem cells and cancer stem cells. Since the regenerative capacity of normal haematopoietic stem cells is limited by the accumulation of reactive oxygen species and DNA double-strand breaks, we speculated that DNA damage might also constrain leukaemic self-renewal and malignant haematopoiesis. Here we show that the histone methyl-transferase MLL4, a suppressor of B-cell lymphoma, is required for stem-cell activity and an aggressive form of acute myeloid leukaemia harbouring the MLL-AF9 oncogene. Deletion of MLL4 enhances myelopoiesis and myeloid differentiation of leukaemic blasts, which protects mice from death related to acute myeloid leukaemia. MLL4 exerts its function by regulating transcriptional programs associated with the antioxidant response. Addition of reactive oxygen species scavengers or ectopic expression of FOXO3 protects MLL4(-/-) MLL-AF9 cells from DNA damage and inhibits myeloid maturation. Similar to MLL4 deficiency, loss of ATM or BRCA1 sensitizes transformed cells to differentiation, suggesting that myeloid differentiation is promoted by loss of genome integrity. Indeed, we show that restriction-enzyme-induced double-strand breaks are sufficient to induce differentiation of MLL-AF9 blasts, which requires cyclin-dependent kinase inhibitor p21(Cip1) (Cdkn1a) activity. In summary, we have uncovered an unexpected tumour-promoting role of genome guardians in enforcing the oncogene-induced differentiation blockade in acute myeloid leukaemia.
自我更新是正常干细胞和癌症干细胞的标志性特征。由于正常造血干细胞的再生能力受到活性氧和 DNA 双链断裂积累的限制,我们推测 DNA 损伤也可能限制白血病的自我更新和恶性造血。在这里,我们表明组蛋白甲基转移酶 MLL4(B 细胞淋巴瘤的抑制剂)是干细胞活性和携带 MLL-AF9 癌基因的急性髓系白血病的侵袭形式所必需的。MLL4 的缺失增强了白血病母细胞的髓系生成和髓系分化,从而保护小鼠免受与急性髓系白血病相关的死亡。MLL4 通过调节与抗氧化反应相关的转录程序发挥其功能。添加活性氧清除剂或异位表达 FOXO3 可保护 MLL4(-/-)MLL-AF9 细胞免受 DNA 损伤并抑制髓系成熟。与 MLL4 缺失相似,ATM 或 BRCA1 的缺失使转化细胞对分化敏感,这表明髓系分化是由基因组完整性的丧失所促进的。事实上,我们表明,限制酶诱导的双链断裂足以诱导 MLL-AF9 母细胞的分化,这需要细胞周期蛋白依赖性激酶抑制剂 p21(Cip1)(Cdkn1a)的活性。总之,我们揭示了基因组守护者在急性髓系白血病中发挥了意想不到的促进肿瘤作用,以强制执行致癌基因诱导的分化阻断。