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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >MEIS1 regulates an HLF-oxidative stress axis in MLL-fusion gene leukemia
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MEIS1 regulates an HLF-oxidative stress axis in MLL-fusion gene leukemia

机译:MEIS1调节MLL融合基因白血病中的HLF氧化应激轴

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Leukemias with MLL translocations are often found in infants and are associated with poor outcomes. The pathogenesis of MLL-fusion leukemias has been linked to upregulation of HOX/MEIS1 genes. The functions of the Hox/Meis1 complex in leukemia, however, remain elusive. Here, we used inducible Meis1-knockout mice coupled with MLL-AF9 knock in mice to decipher the mechanistic role of Meis1 in established MLL leukemia. We demonstrate that Meis1 is essential for maintenance of established leukemia. In addition, in both the murine model and human leukemia cells, we found that Meis1 loss led to increased oxidative stress, oxygen flux, and apoptosis. Gene expression and chromatin immunoprecipitation studies revealed hepatic leukemia factor (HLF) as a target gene of Meis1. Hypoxia or HLF expression reversed the oxidative stress, rescuing leukemia development in Meis1-deficient cells. Thus, the leukemia-promoting properties of Meis1 are at least partly mediated by a low oxidative state, aided by HLF. These results suggest that stimulants of oxidative metabolism could have therapeutic potential in leukemia treatment.
机译:具有MLL易位的白血病通常在婴儿中发现,并与不良预后相关。 MLL融合性白血病的发病机制与HOX / MEIS1基因的上调有关。然而,Hox / Meis1复合物在白血病中的功能仍然难以捉摸。在这里,我们使用诱导性Meis1基因敲除小鼠与MLL-AF9敲入小鼠相结合,来解读Meis1在已建立的MLL白血病中的机制作用。我们证明,Meis1对维持已建立的白血病至关重要。此外,在鼠模型和人类白血病细胞中,我们发现Meis1缺失导致氧化应激,氧气通量和细胞凋亡增加。基因表达和染色质免疫沉淀研究表明,肝白血病因子(HLF)是Meis1的靶基因。缺氧或HLF表达逆转了氧化应激,挽救了Meis1缺陷细胞中的白血病发展。因此,在HLF的辅助下,Meis1的促白血病特性至少部分由低氧化态介导。这些结果表明,氧化代谢的刺激物在白血病治疗中可能具有治疗潜力。

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