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首页> 外文期刊>The journal of clinical investigation >Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia
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Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia

机译:Zeb1调节抑制急性髓鞘性白血病所需的造血干细胞序列

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摘要

Zeb1 , a zinc finger E-box binding homeobox epithelial-mesenchymal transition (EMT) transcription factor, confers properties of “stemness,” such as self-renewal, in cancer. Yet little is known about the function of Zeb1 in adult stem cells. Here, we used the hematopoietic system as a well-established paradigm of stem cell biology to evaluate Zeb1 -mediated regulation of adult stem cells. We employed a conditional genetic approach using the Mx1-Cre system to specifically knock out (KO) Zeb1 in adult hematopoietic stem cells (HSCs) and their downstream progeny. Acute genetic deletion of Zeb1 led to rapid-onset thymic atrophy and apoptosis-driven loss of thymocytes and T cells. A profound cell-autonomous self-renewal defect and multilineage differentiation block were observed in Zeb1 -KO HSCs. Loss of Zeb1 in HSCs activated transcriptional programs of deregulated HSC maintenance and multilineage differentiation genes and of cell polarity consisting of cytoskeleton-, lipid metabolism/lipid membrane–, and cell adhesion–related genes. Notably, epithelial cell adhesion molecule (EpCAM) expression was prodigiously upregulated in Zeb1 -KO HSCs, which correlated with enhanced cell survival, diminished mitochondrial metabolism, ribosome biogenesis, and differentiation capacity and an activated transcriptomic signature associated with acute myeloid leukemia (AML) signaling. ZEB1 expression was downregulated in AML patients, and Zeb1 KO in the malignant counterparts of HSCs — leukemic stem cells (LSCs) — accelerated MLL-AF9– and Meis1a/Hoxa9 -driven AML progression, implicating Zeb1 as a tumor suppressor in AML LSCs. Thus, Zeb1 acts as a transcriptional regulator in hematopoiesis, critically coordinating HSC self-renewal, apoptotic, and multilineage differentiation fates required to suppress leukemic potential in AML.
机译:Zeb1,锌指E箱结合Homeobox上皮 - 间充质转换(EMT)转录因子,赋予癌症中的“茎干”的性质,例如自我更新。然而,关于Zeb1在成人干细胞中的功能很少。在这里,我们使用造血系统作为干细胞生物学的良好范式,以评估ZeB1介质的成人干细胞调节。我们采用了一种有条件的遗传方法,使用MX1-CRE系统在成人造血干细胞(HSC)中特别敲出(KO)Zeb1及其下游后代。 Zeb1的急性遗传缺失导致快速发作的胸腺萎缩和细胞凋亡驱动的胸腺细胞和T细胞的丧失。在Zeb1 -KO HSC中观察到一种深刻的细胞自主重新更新缺陷和多线子分化块。 HSC中的Zeb1中的损失活化的HSC维持和多重分化基因和由细胞骨架,脂质代谢/脂质膜 - 以及细胞粘附相关基因组成的细胞极性的转录程序。值得注意的是,在ZeB1 -KO HSC中,在Zeb1 -KO HSC中升高上皮细胞粘附分子(EPCAM)表达,其与增强的细胞存活,降低线粒体代谢,核糖体生物发生和分化能力和与急性髓性白血病(AML)信号相关的活化转录组签名相关联。 。 Zeb1表达在AML患者中下调,HSC - 白血病干细胞(LSCs)的恶性对应物中的Zeb1 Ko - 加速了MLL-AF9-和Meis1A / Hoxa9 -drviven AML进展,将Zeb1视为AML LSC中的肿瘤抑制剂。因此,Zeb1用作血液缺陷中的转录调节剂,统治性协调HSC自我更新,凋亡和多重分化率,以抑制AML中的白血病潜力所需的。

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