首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >An integrated approach to dissecting oncogene addiction implicates a Myb-coordinated self-renewal program as essential for leukemia maintenance.
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An integrated approach to dissecting oncogene addiction implicates a Myb-coordinated self-renewal program as essential for leukemia maintenance.

机译:解剖癌基因成瘾的综合方法暗示了Myb协调的自我更新计划对于维持白血病至关重要。

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Although human cancers have complex genotypes and are genomically unstable, they often remain dependent on the continued presence of single-driver mutations-a phenomenon dubbed "oncogene addiction." Such dependencies have been demonstrated in mouse models, where conditional expression systems have revealed that oncogenes able to initiate cancer are often required for tumor maintenance and progression, thus validating the pathways they control as therapeutic targets. Here, we implement an integrative approach that combines genetically defined mouse models, transcriptional profiling, and a novel inducible RNAi platform to characterize cellular programs that underlie addiction to MLL-AF9-a fusion oncoprotein involved in aggressive forms of acute myeloid leukemia (AML). We show that MLL-AF9 contributes to leukemia maintenance by enforcing a Myb-coordinated program of aberrant self-renewal involving genes linked to leukemia stem cell potential and poor prognosis in human AML. Accordingly, partial and transient Myb suppression precisely phenocopies MLL-AF9 withdrawal and eradicates aggressive AML in vivo without preventing normal myelopoiesis, indicating that strategies to inhibit Myb-dependent aberrant self-renewal programs hold promise as effective and cancer-specific therapeutics. Together, our results identify Myb as a critical mediator of oncogene addiction in AML, delineate relevant Myb target genes that are amenable to pharmacologic inhibition, and establish a general approach for dissecting oncogene addiction in vivo.
机译:尽管人类癌症具有复杂的基因型并且在基因组上不稳定,但是它们通常仍然依赖于单驱动突变的持续存在,这种现象被称为“致癌基因成瘾”。在小鼠模型中已经证明了这种依赖性,其中条件表达系统已经揭示了能够维持癌变的癌基因通常是肿瘤维持和发展所必需的,从而验证了它们作为治疗靶标控制的途径。在这里,我们实现了一种整合方法,该方法结合了遗传定义的小鼠模型,转录概况分析和新型可诱导RNAi平台,可表征细胞程序,这些程序是对MLL-AF9-成瘾性癌蛋白上瘾的基础,该蛋白参与了急性骨髓性白血病(AML)的侵袭性形式。我们显示,MLL-AF9通过执行Myb协调的异常自我更新程序来促进白血病维持,该程序涉及与白血病干细胞潜力和人类AML预后不良相关的基因。因此,部分和短暂的Myb抑制作用精确地表型化了MLL-AF9的撤退并在不预防正常的骨髓生成的情况下根除了体内的侵袭性AML,这表明抑制Myb依赖性异常自我更新程序的策略有望成为有效的癌症特异性疗法。在一起,我们的结果确定Myb是AML中癌基因成瘾的关键介质,描绘了适合药理抑制作用的相关Myb目标基因,并建立了在体内解剖癌基因成瘾的一般方法。

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