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首页> 外文期刊>Leukemia: Official journal of the Leukemia Society of America, Leukemia Research Fund, U.K >Bmi1 is essential for leukemic reprogramming of myeloid progenitor cells.
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Bmi1 is essential for leukemic reprogramming of myeloid progenitor cells.

机译:Bmi1 对于髓系祖细胞的白血病重编程至关重要。

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The polycomb group (PcG) proteins, particularly Bmi1, have an essential role in maintaining the self-renewing capacity of leukemic stem cells (LSCs). Although one of their major targets in LSCs is known to be the Ink4a/Arf tumor suppressor gene locus, the role of PcG proteins in the leukemic reprogramming of target cells into LSCs is not well characterized. In this study, Bmi1(-/-) granulocyte/macrophage progenitors (GMPs) were transformed with the leukemic fusion gene MLL-AF9. Although Bmi1 was not essential to the immortalization of GMPs in vitro, Bmi1(-/-) cells showed enhanced differentiation and retained less LSCs. A number of genes were derepressed in the absence of Bmi1 including potential tumor suppressor genes. Transplantation assays demonstrated that Bmi1 was indispensable for the development of leukemia in vivo and deletion of both the Ink4a and Arf genes only partially restored the leukemogenic capacity of Bmi1(-/-) LSCs. Of note, the complementation of immortalized Bmi1(-/-)Ink4a-Arf(-/-) GMPs with Bmi1 failed to restore the expression of the majority of deregulated genes and leukemogenic activity in vivo. These findings indicate that Bmi1 is essential for the faithful reprogramming of myeloid progenitors into LSCs and unveil that leukemic fusion genes require PcG proteins exerting an effect in concert to establish LSC-specific transcriptional profiles, which confer full leukemogenic activity on LSCs.
机译:多梳组 (PcG) 蛋白,尤其是 Bmi1,在维持白血病干细胞 (LSC) 的自我更新能力方面起着至关重要的作用。尽管已知它们在 LSC 中的主要靶标之一是 Ink4a/Arf 抑癌基因位点,但 PcG 蛋白在靶细胞白血病重编程为 LSC 中的作用尚未得到很好的表征。本研究将Bmi1(-/-)粒细胞/巨噬细胞祖细胞(GMPs)与白血病融合基因MLL-AF9转化。尽管 Bmi1 对体外 GMP 的永生化不是必需的,但 Bmi1(-/-) 细胞表现出增强的分化并保留较少的 LSC。在没有 Bmi1 的情况下,许多基因被解除抑制,包括潜在的肿瘤抑制基因。移植试验表明,Bmi1 在体内对白血病的发展是必不可少的,Ink4a 和 Arf 基因的缺失仅部分恢复了 Bmi1(-/-) LSC 的白血病生成能力。值得注意的是,永生化的 Bmi1(-/-)Ink4a-Arf(-/-) GMP 与 Bmi1 的互补未能恢复体内大多数失调基因的表达和白血病生成活性。这些发现表明,Bmi1 对于将髓系祖细胞忠实地重编程为 LSC 至关重要,并揭示了白血病融合基因需要 PcG 蛋白协同发挥作用以建立 LSC 特异性转录谱,从而赋予 LSC 充分的白血病生成活性。

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