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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Cytoprotective autophagy maintains leukemia-initiating cells in murine myeloid leukemia
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Cytoprotective autophagy maintains leukemia-initiating cells in murine myeloid leukemia

机译:细胞保护性自噬可维持鼠骨髓性白血病中的白血病起始细胞

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Despite advances in the treatment of acute myeloid leukemia (AML), relapse and drug resistance frequently occur. Therefore, detailed mechanisms of refractoriness, including leukemia-initiating cell (LIC) biology, should be elucidated to treat AML. The self-degradative property of cytosolic macromolecules is central to autophagy and can contribute to homeostasis and stress response. Recent reports suggest the importance of autophagy in hematopoietic stem cells and various tumors. Thus, this study investigated the functional role of autophagy in AML maintenance and drug resistance using tamoxifen-inducible conditional knockout mice of Atg5 or Atg7, which are essential genes for autophagy, combined with an mixed lineage leukemia-eleven nineteen leukemia-induced murine AML model. Inactivation of autophagy by deletion of Atg5 or Atg7 prolonged survival in leukemic mice and reduced functional LICs. Atg7-deficient LICs displayed enhanced mitochondrial activity and reactive oxygen species production together with increased cell death. In addition, Atg7 deletion markedly decreased peripheral blood leukemia cells, concurrent with increased apoptosis, suggesting a higher dependency on autophagy compared with bone marrow leukemia cells. Finally, cytarabine (AraC) treatment activated autophagy in LICs, and Atg7 deletion potentiated the therapeutic effects of AraC, which included decreased LICs and prolonged survival, suggesting that autophagy contributes to AraC resistance. Our results highlight the intratumoral heterogeneity related to autophagy in AML and the unique role of autophagy in leukemia development and drug resistance.
机译:尽管在急性髓细胞性白血病(AML)的治疗方面取得了进步,但复发和耐药性仍经常发生。因此,应阐明难治性的详细机制,包括白血病启动细胞(LIC)生物学,以治疗AML。胞质大分子的自降解特性是自噬的关键,可以促进体内稳态和应激反应。最近的报道表明自噬在造血干细胞和各种肿瘤中的重要性。因此,本研究通过使用他莫昔芬诱导的条件性敲除小鼠Atg5或Atg7(它们是自噬的必要基因)与混合谱系白血病-十一十九白血病诱导的鼠AML模型结合使用,研究了自噬在AML维持和耐药中的功能作用。 。通过缺失Atg5或Atg7来使自噬失活可以延长白血病小鼠的生存期,并降低功能性LIC。 Atg7缺陷的LICs显示增强的线粒体活性和活性氧产生以及增加的细胞死亡。此外,Atg7缺失明显减少了外周血白血病细胞,并增加了凋亡,提示与骨髓白血病细胞相比,对自噬的依赖性更高。最后,阿糖胞苷(AraC)处理激活了LICs中的自噬,而Atg7缺失增强了AraC的治疗效果,包括降低LICs和延长生存期,这表明自噬有助于AraC抵抗。我们的结果强调了与AML中自噬相关的肿瘤内异质性以及自噬在白血病发生发展和耐药中的独特作用。

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