首页> 外文期刊>International journal of biological sciences >Glycolytic Enzyme PKM2 Mediates Autophagic Activation to Promote Cell Survival in NPM1-Mutated Leukemia
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Glycolytic Enzyme PKM2 Mediates Autophagic Activation to Promote Cell Survival in NPM1-Mutated Leukemia

机译:糖酵解酶PKM2介导自噬激活,以促进NPM1突变的白血病中的细胞存活。

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Acute myeloid leukemia (AML) with mutated nucleophosmin ( NPM1 ) has been defined as a distinct leukemia entity in the 2016 updated WHO classification of myeloid neoplasm. Our previous report showed that autophagic activity was elevated in NPM1-mutated AML, but the underlying molecular mechanisms remain elusive. Mount of study provides evidence that glycometabolic enzymes are implicated in the autophagic process. Pyruvate kinase isoenzyme M2 (PKM2), a key glycolytic enzyme, has been recently reported as a tumor supporter in leukemia. However, little is known about the roles of PKM2 in autophagic activity in NPM1-mutated AML. In this study, PKM2 highly expressed in NPM1-mutated AML, and partially, high levels of PKM2 were upregulated by PTBP1. Further experiments demonstrated that PKM2 mediated autophagic activation and increased the phosphorylation of key autophagy protein Beclin-1. Importantly, functional experiments demonstrated that PKM2 contributed to cell survival via autophagic activation. Ultimately, high PKM2 expression was associated with short overall and event-free survival time in NPM1-mutated AML patients. Our findings indicate for the first time that glycolytic enzyme PKM2 mediates autophagic activation and further contributes to cell survival in NPM1-mutated AML, suggesting that PKM2 may serve as a promising target for treatment of NPM1-mutated AML.
机译:在2016年更新的WHO骨髓肿瘤分类中,具有突变的核磷蛋白(NPM1)的急性髓细胞白血病(AML)被定义为独特的白血病实体。我们以前的报告显示,在NPM1突变的AML中自噬活性升高,但潜在的分子机制仍然难以捉摸。大量研究提供了证据表明糖代谢酶与自噬过程有关。丙酮酸激酶同工酶M2(PKM2)是一种关键的糖酵解酶,最近被报道为白血病的肿瘤支持者。然而,关于NPM1突变AML中PKM2在自噬活动中的作用了解甚少。在这项研究中,PKM2在NPM1突变的AML中高度表达,而PTBP1上调了一部分高水平的PKM2。进一步的实验表明,PKM2介导自噬激活并增加了关键自噬蛋白Beclin-1的磷酸化。重要的是,功能实验表明PKM2通过自噬激活有助于细胞存活。最终,在NPM1突变的AML患者中,较高的PKM2表达与较短的总体生存时间和无事件生存时间相关。我们的发现首次表明,糖酵解酶PKM2介导自噬激活并进一步促进NPM1突变AML中的细胞存活,这表明PKM2可以作为治疗NPM1突变AML的有希望的靶标。

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