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Notch signaling expands a pre-malignant pool of T-cell acute lymphoblastic leukemia clones without affecting leukemia-propagating cell frequency

机译:Notch Signaling扩展了一种不影响白血病繁殖细胞频率的T细胞急性淋巴细胞白血病克隆的恶性恶性池

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摘要

NOTCH1 pathway activation contributes to the pathogenesis of over 60% of T-cell acute lymphoblastic leukemia (T-ALL). While Notch is thought to exert the majority of its effects through transcriptional activation of Myc, it also likely has independent roles in T-ALL malignancy. Here, we utilized a zebrafish transgenic model of T-ALL, where Notch does not induce Myc transcription, to identify a novel Notch gene expression signature that is also found in human T-ALL and is regulated independently of Myc. Cross-species microarray comparisons between zebrafish and mammalian disease identified a common T-ALL gene signature, suggesting that conserved genetic pathways underlie T-ALL development. Functionally, Notch expression induced a significant expansion of pre-leukemic clones; however, a majority of these clones were not fully transformed and could not induce leukemia when transplanted into recipient animals. Limiting-dilution cell transplantation revealed that Notch signaling does not increase the overall frequency of leukemia-propagating cells (LPCs), either alone or in collaboration with Myc. Taken together, these data indicate that a primary role of Notch signaling in T-ALL is to expand a population of pre-malignant thymocytes, of which a subset acquire the necessary mutations to become fully transformed LPCs.
机译:Notch1途径激活有助于超过60%的T细胞急性淋巴细胞白血病(T-all)的发病机制。虽然陷波是通过Myc的转录激活发挥其大部分的大部分,但它也可能在T-acl疾病中具有独立的作用。在这里,我们利用了T-all的斑马鱼转基因模型,其中缺口不会诱导MyC转录,以鉴定新的陷波基因表达签名,该表达签名也是在人T-全部中发现的,并且由Myc独立调节。斑马鱼和哺乳动物疾病之间的跨物种微阵列比较鉴定了一种常见的T-all基因签名,表明保守的遗传途径提出了T-all发展。在功能上,Notch表达诱导白血病前克隆的显着扩增;然而,大多数这些克隆没有完全转化,并且在移植到受体动物时不能诱导白血病。限制稀释细胞移植揭示了Notch信号传导不会增加白血病繁殖细胞(LPC)的总频率,单独或与MyC合作。在一起,这些数据表明,T-All在T-all中的主要作用是扩展群体的血清群体,其中子集中捕获必要的突变以完全转化的LPC。

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