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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Down-regulation of the RUNX1-target gene NR4A3 contributes to hematopoiesis deregulation in familial platelet disorder/acute myelogenous leukemia.
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Down-regulation of the RUNX1-target gene NR4A3 contributes to hematopoiesis deregulation in familial platelet disorder/acute myelogenous leukemia.

机译:RUNX1靶基因NR4A3的下调有助于家族性血小板疾病/急性粒细胞性白血病的造血功能失调。

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摘要

RUNX1 encodes a DNA-binding alpha subunit of the core-binding factor, a heterodimeric transcription factor. RUNX1 is a master regulatory gene in hematopoiesis and its disruption is one of the most common aberrations in acute leukemia. Inactivating or dominant-negative mutations in the RUNX1 gene have been also identified in pedigrees of familial platelet disorders with a variable propensity to develop acute myeloid leukemia (FPD/AML). We performed analysis of hematopoiesis from 2 FPD/AML pedigrees with 2 distinct RUNX1 germline mutations, that is, the R139X in a pedigree without AML and the R174Q mutation in a pedigree with AML. Both mutations induced a marked increase in the clonogenic potential of immature CD34(+)CD38(-) progenitors, with some self-renewal capacities observed only for R174Q mutation. This increased proliferation correlated with reduction in the expression of NR4A3, a gene previously implicated in leukemia development. We demonstrated that NR4A3 was a direct target of RUNX1 and that restoration of NR4A3 expression partially reduced the clonogenic potential of patient progenitors. We propose that the down-regulation of NR4A3 in RUNX1-mutated hematopoietic progenitors leads to an increase in the pool of cells susceptible to be hit by secondary leukemic genetic events.
机译:RUNX1编码核心结合因子(异二聚体转录因子)的DNA结合α亚基。 RUNX1是造血过程中的主要调控基因,其破坏是急性白血病中最常见的畸变之一。 RUNX1基因的失活或显性负突变也已在家族性血小板疾病的谱系中被鉴定出来,而家族性血小板疾病具有发展为急性髓性白血病(FPD / AML)的可变倾向。我们对来自2个FPD / AML谱系的血细胞生成进行了分析,该谱系具有2个不同的RUNX1种系突变,即,没有AML的谱系中的R139X和有AML的谱系中的R174Q突变。这两个突变诱导未成熟的CD34(+)CD38(-)祖细胞的克隆形成潜力显着增加,并且仅R174Q突变观察到一些自我更新能力。这种增加的增殖与NR4A3表达的降低有关,NR4A3是一种与白血病发展有关的基因。我们证明了NR4A3是RUNX1的直接靶标,并且恢复NR4A3表达可部分降低患者祖细胞的克隆形成潜力。我们建议在RUNX1突变的造血祖细胞中NR4A3的下调导致易受继发性白血病遗传事件侵袭的细胞池增加。

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