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Hox Genes: From Leukemia to Hematopoietic Stem Cell Expansion

机译:HOX基因:从白血病到造血干细胞扩张

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Hox genes are clearly implicated in leukemia; however, neither the specificity of the leukemogenic potential among Hox genes of different paralog groups nor the role of the homeodomain is clear. We tested the leukemogenic potential of various NUP98-Hox fusion genes alone and with MEIS1. All genes tested had a significant overlapping effect in bone marrow cells in vitro. However, not all formed strong leukemogenic NUP98 fusion genes; but together with overexpression of MEIS1, all induced myeloid leukemia. This phenomenon was also seen with NUP98 fusions containing only the homeodomain of the corresponding Hox protein. We then exploited the strong transforming potential of NUP98-HOXD13 and NUP98-HOXA10 to establish preleukemic myeloid lines composed of early myeloid progenitors with extensive in vitro self-renewal capacity, short-term myeloid repopulating activity, and low propensity for spontaneous leukemic conversion. We also showed that MEIS1 can efficiently induce their conversion to leukemic stem cells, thus providing a novel model for the study of leukemic progression. In contrast to the leukemogenic effect of most of the Hox genes tested, HOXB4 has the ability to increase the self-renewal of hematopoietic stem cells without disrupting normal differentiation. On the basis of the discovery that the leukemogenic gene HOXA9 can also expand hematopoietic stem cells, we compared the ability of NUP98-Hox fusions to that of HOXB4 to trigger HSC expansion in vitro. Our preliminary results indicate that the expanding potential of HOXB4 is retained and even augmented by fusion to NUP98. Moreover, even greater expansion may be possible using Abd-B-like Hox fusions genes.
机译:Hox基因明显涉及白血病;然而,不同帕洛洛葡组的Hox基因中的白血病潜力的特异性也不清楚同源肿瘤的作用。我们通过Meis1测试了各种NUP98-HOX融合基因的白血病潜力。测试的所有基因在体外骨髓细胞中具有显着的重叠效果。但是,并非所有形成强的白血病Nup98融合基因;但是与梅斯1的过度表达一起,所有诱导骨髓白血病。在NUP98含有仅含有相应的HOX蛋白的同源域的NUP98融合也可以看到这种现象。然后,我们利用了NUP98-HOXD13和NUP98-HOXA10的强大转化潜力,建立了由早期骨髓祖细胞组成的前期血糖髓样,具有广泛的体外自我更新能力,短期霉菌重新迁移活性,以及​​用于自发白血病转化的低倾向。我们还表明,Meis1可以有效地诱导其转化为白血病干细胞,从而为白血病进展提供了一种新型模型。与测试的大多数Hox基因的白血病效应相反,HoxB4具有增加造血干细胞的自我更新而不破坏正常分化。在发现白血病基因Hoxa9也可以扩张造血干细胞的基础上,我们将NUP98-HOX融合的能力与HoxB4的能力进行了比较,以在体外引发HSC膨胀。我们的初步结果表明,通过融合到NUP98,保留了HoxB4的扩张潜力,甚至被融合。此外,使用ABD-B样HOX融合基因可能可能是更大的膨胀。

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