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The ubiquitin ligase FBXW7 modulates leukemia-initiating cell activity by regulating MYC stability

机译:泛素连接酶FBXW7通过调节MYC稳定性来调节白血病起始细胞的活性

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Summary Sequencing efforts led to the identification of somatic mutations that could affect the self-renewal and differentiation of cancer-initiating cells. One such recurrent mutation targets the binding pocket of the ubiquitin ligase Fbxw7. Missense FBXW7 mutations are prevalent in various tumors, including T cell acute lymphoblastic leukemia (T-ALL). To study the effects of such lesions, we generated animals carrying regulatable Fbxw7 mutant alleles. Here, we show that these mutations specifically bolster cancer-initiating cell activity in collaboration with Notch1 oncogenes but spare normal hematopoietic stem cell function. We were also able to show that FBXW7 mutations specifically affect the ubiquitylation and half-life of c-Myc protein, a key T-ALL oncogene. Using animals carrying c-Myc fusion alleles, we connected Fbxw7 function to c-Myc abundance and correlated c-Myc expression to leukemia-initiating activity. Finally, we demonstrated that small-molecule-mediated suppression of MYC activity leads to T-ALL remission, suggesting an effective therapeutic strategy.
机译:总结测序工作导致了可能影响癌症启动细胞自我更新和分化的体细胞突变的鉴定。一种这样的复发突变靶向泛素连接酶Fbxw7的结合口袋。 Missense FBXW7突变在包括T细胞急性淋巴细胞白血病(T-ALL)在内的各种肿瘤中普遍存在。为了研究此类病变的影响,我们生成了携带可调节的Fbxw7突变等位基因的动物。在这里,我们显示这些突变与Notch1致癌基因协同增强了癌症起始细胞的活性,但保留了正常的造血干细胞功能。我们还能够证明FBXW7突变特别影响c-Myc蛋白(一种关键的T-ALL癌基因)的泛素化和半衰期。使用携带c-Myc融合等位基因的动物,我们将Fbxw7功能连接至c-Myc丰度,并将c-Myc表达与白血病启动活性相关。最后,我们证明了小分子介导的MYC活性抑制导致T-ALL缓解,提示了有效的治疗策略。

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