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Dissecting the early steps of MLL induced leukaemogenic transformation using a mouse model of AML

机译:用AML的小鼠模型对MLL诱导的白细胞生成转化的早期步骤解剖

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Leukaemogenic mutations commonly disrupt cellular differentiation and/or enhance proliferation, thus perturbing the regulatory programs that control self-renewal and differentiation of stem and progenitor cells. Translocations involving the Mll1 ( Kmt2a ) gene generate powerful oncogenic fusion proteins, predominantly affecting infant and paediatric AML and ALL patients. The early stages of leukaemogenic transformation are typically inaccessible from human patients and conventional mouse models. Here, we take advantage of cells conditionally blocked at the multipotent haematopoietic progenitor stage to develop a MLL-r model capturing early cellular and molecular consequences of MLL-ENL expression based on a clear clonal relationship between parental and leukaemic cells. Through a combination of scRNA-seq, ATAC-seq and genome-scale CRISPR-Cas9 screening, we identify pathways and genes likely to drive the early phases of leukaemogenesis. Finally, we demonstrate the broad utility of using matched parental and transformed cells for small molecule inhibitor studies by validating both previously known and other potential therapeutic targets.
机译:白细胞生成突变通常破坏细胞分化和/或增强增殖,从而扰动了控制茎和祖细胞的自我更新和分化的监管程序。涉及MLL1(KMT2A)基因的易位产生强大的致癌融合蛋白,主要影响婴儿和儿科AML和所有患者。白细胞生成转化的早期阶段通常可被人类患者和常规小鼠模型无法进入。这里,我们利用条件封闭在多能血液吞噬阶段的细胞,以产生MLL-R模型,捕获MLL-EL表达的早期细胞和分子后果,基于父母生物和白血病细胞之间的透明克隆关系。通过ScRNA-SEQ,ATAC-SEQ和基因组QUARPR-CAS9筛选的组合,我们识别可能导致白血病早期阶段的途径和基因。最后,我们通过验证先前已知的和其他潜在的治疗靶标,证明使用匹配的亲本和转化细胞进行小分子抑制剂研究的广泛效用。

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