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首页> 外文期刊>Nature medicine >PU.1-mediated upregulation of CSF1R is crucial for leukemia stem cell potential induced by MOZ-TIF2.
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PU.1-mediated upregulation of CSF1R is crucial for leukemia stem cell potential induced by MOZ-TIF2.

机译:PU.1介导的CSF1R上调对于MOZ-TIF2诱导的白血病干细胞潜能至关重要。

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Leukemias and other cancers possess self-renewing stem cells that help to maintain the cancer. Cancer stem cell eradication is thought to be crucial for successful anticancer therapy. Using an acute myeloid leukemia (AML) model induced by the leukemia-associated monocytic leukemia zinc finger (MOZ)-TIF2 fusion protein, we show here that AML can be cured by the ablation of leukemia stem cells. The MOZ fusion proteins MOZ-TIF2 and MOZ-CBP interacted with the transcription factor PU.1 to stimulate the expression of macrophage colony-stimulating factor receptor (CSF1R, also known as M-CSFR, c-FMS or CD115). Studies using PU.1-deficient mice showed that PU.1 is essential for the ability of MOZ-TIF2 to establish and maintain AML stem cells. Cells expressing high amounts of CSF1R (CSF1R(high) cells), but not those expressing low amounts of CSF1R (CSF1R(low) cells), showed potent leukemia-initiating activity. Using transgenic mice expressing a drug-inducible suicide gene controlled by the CSF1R promoter, we cured AML by ablation of CSF1R(high) cells. Moreover, induction of AML was suppressed in CSF1R-deficient mice and CSF1R inhibitors slowed the progression of MOZ-TIF2-induced leukemia. Thus, in this subtype of AML, leukemia stem cells are contained within the CSF1R(high) cell population, and we suggest that targeting of PU.1-mediated upregulation of CSF1R expression might be a useful therapeutic approach.
机译:白血病和其他癌症拥有自我更新的干细胞,可帮助维持癌症。根除癌干细胞被认为对成功的抗癌治疗至关重要。使用由白血病相关的单核细胞白血病锌指(MOZ)-TIF2融合蛋白诱导的急性髓样白血病(AML)模型,我们在这里显示可以通过消融白血病干细胞来治愈AML。 MOZ融合蛋白MOZ-TIF2和MOZ-CBP与转录因子PU.1相互作用,以刺激巨噬细胞集落刺激因子受体(CSF1R,也称为M-CSFR,c-FMS或CD115)的表达。使用缺乏PU.1的小鼠进行的研究表明,PU.1对于MOZ-TIF2建立和维持AML干细胞的能力至关重要。表达大量CSF1R的细胞(CSF1R(高)细胞),而不是表达少量CSF1R的细胞(CSF1R(低)细胞),显示出强大的白血病启动活性。使用表达受CSF1R启动子控制的药物诱导自杀基因的转基因小鼠,我们通过消融CSF1R(high)细胞治愈了AML。此外,在CSF1R缺陷型小鼠中AML的诱导被抑制,CSF1R抑制剂减慢了MOZ-TIF2诱导的白血病的进程。因此,在这种AML亚型中,白血病干细胞包含在CSF1R(high)细胞群中,我们建议靶向PU.1介导的CSF1R表达上调可能是一种有用的治疗方法。

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