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Modeling T-cell acute lymphoblastic leukemia induced by the SCL and LMO1 oncogenes.

机译:模拟由SCL和LMO1癌基因诱导的T细胞急性淋巴细胞白血病。

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摘要

Deciphering molecular events required for full transformation of normal cells into cancer cells remains a challenge. In T-cell acute lymphoblastic leukemia (T-ALL), the genes encoding the TAL1/SCL and LMO1/2 transcription factors are recurring targets of chromosomal translocations, whereas NOTCH1 is activated in >50% of samples. Here we show that the SCL and LMO1 oncogenes collaborate to expand primitive thymocyte progenitors and inhibit later stages of differentiation. Together with pre-T-cell antigen receptor (pre-TCR) signaling, these oncogenes provide a favorable context for the acquisition of activating Notch1 mutations and the emergence of self-renewing leukemia-initiating cells in T-ALL. All tumor cells harness identical and specific Notch1 mutations and Tcrbeta clonal signature, indicative of clonal dominance and concurring with the observation that Notch1 gain of function confers a selective advantage to SCL-LMO1 transgenic thymocytes. Accordingly, a hyperactive Notch1 allele accelerates leukemia onset induced by SCL-LMO1 and bypasses the requirement for pre-TCR signaling. Finally, the time to leukemia induced by the three transgenes corresponds to the time required for clonal expansion from a single leukemic stem cell, suggesting that SCL, LMO1, and Notch1 gain of function, together with an active pre-TCR, might represent the minimum set of complementing events for the transformation of susceptible thymocytes.
机译:破解正常细胞完全转化为癌细胞所需的分子事件仍然是一个挑战。在T细胞急性淋巴细胞白血病(T-ALL)中,编码TAL1 / SCL和LMO1 / 2转录因子的基因是染色体易位的复发靶标,而NOTCH1在50%以上的样品中被激活。在这里,我们显示SCL和LMO1癌基因共同协作以扩大原始胸腺细胞祖细胞并抑制分化的后期阶段。这些癌基因与前T细胞抗原受体(pre-TCR)信号传导一起,为获得激活的Notch1突变和在T-ALL中出现自我更新的白血病起始细胞提供了有利的环境。所有肿瘤细胞都利用相同和特定的Notch1突变和Tcrbeta克隆特征,表明克隆占优势,并同意Notch1功能获得赋予SCL-LMO1转基因胸腺细胞选择性优势。因此,过度活跃的Notch1等位基因加速了由SCL-LMO1诱导的白血病发作,并绕过了TCR前信号转导的要求。最后,由三种转基因诱导的白血病发生时间与从单个白血病干细胞克隆扩增所需的时间相对应,这表明SCL,LMO1和Notch1功能获得以及活跃的TCR活性可能是最小的。易感胸腺细胞转化的一系列互补事件。

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