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Flk2/Flt3 promotes both myeloid and lymphoid development by expanding non–self-renewing multipotent hematopoietic progenitor cells

机译:Flk2 / Flt3通过扩增非自我更新的多能造血祖细胞来促进髓样和淋巴样发育

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摘要

Defining differentiation pathways is central to understanding the pathogenesis of hematopoietic disorders, including leukemia. The function of the receptor tyrosine kinase Flk2 (Flt3) in promoting myeloid development remains poorly defined, despite being commonly mutated in acute myeloid leukemia. We investigated the effect of Flk2 deficiency on myelopoiesis, focusing on specification of progenitors between HSC and mature cells. We provide evidence that Flk2 is critical for proliferative expansion of multipotent progenitors that are common precursors for all lymphoid and myeloid lineages, including megakaryocyte/erythroid (MegE) cells. Flk2 deficiency impaired the generation of both lymphoid and myeloid progenitors by abrogating propagation of their common upstream precursor. At steady state, downstream compensatory mechanisms masked the effect of Flk2 deficiency on mature myeloid output, whereas transplantation of purified progenitors revealed impaired generation of all mature lineages. Flk2 deficiency did not affect lineage choice, thus dissociating the role of Flk2 in promoting cell expansion and regulating cell fate. Surprisingly, despite impairing myeloid development, Flk2 deficiency afforded protection against myeloablative insult. This survival advantage was attributed to reduced cell cycling and proliferation of progenitors in Flk2-deficient mice. Our data support the existence of a common Flk2+ intermediate for all hematopoietic lineages and provide insight into how activating Flk2 mutations promote hematopoietic malignancy by non–Flk2-expressing myeloid cells.
机译:定义分化途径对于了解包括白血病在内的造血疾病的发病机理至关重要。尽管酪氨酸激酶Flk2(Flt3)通常在急性髓样白血病中发生突变,但其在促进髓样发育中的功能仍知之甚少。我们研究了Flk2缺乏对骨髓生成的影响,重点研究了HSC和成熟细胞之间的祖细胞规格。我们提供的证据表明,Flk2对于多能祖细胞的增殖扩展至关重要,而多能祖细胞是所有淋巴和髓系谱系(包括巨核细胞/红系(MegE)细胞)的常见前体。 Flk2缺乏症通过废除它们共同的上游前体的繁殖而损害了淋巴样和髓样祖细胞的生成。在稳定状态下,下游的补偿机制掩盖了Flk2缺乏对成熟髓样输出的影响,而纯化祖细胞的移植则显示了所有成熟谱系的生成受到损害。 Flk2缺乏并不影响沿袭选择,因此解散了Flk2在促进细胞扩增和调节细胞命运方面的作用。出人意料的是,尽管损害了骨髓的发育,但Flk2缺乏症却提供了抵抗骨髓清除性损伤的保护。这种存活优势归因于Flk2缺陷小鼠的细胞周期减少和祖细胞增殖。我们的数据支持所有造血谱系都存在常见的Flk2 + 中间体,并提供有关激活Flk2突变如何通过非Flk2表达骨髓细胞促进造血系统恶性肿瘤的见识。

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