首页> 外文期刊>Development >Runx1 is required for zebrafish blood and vessel development and expression of a human RUNX1-CBF2T1 transgene advances a model for studies of leukemogenesis.
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Runx1 is required for zebrafish blood and vessel development and expression of a human RUNX1-CBF2T1 transgene advances a model for studies of leukemogenesis.

机译:Runx1是斑马鱼血液和血管发育所必需的,而人RUNX1-CBF2T1转基因的表达则促进了白血病发生研究的模型。

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RUNX1/AML1/CBFA2 is essential for definitive hematopoiesis, and chromosomal translocations affecting RUNX1 are frequently involved in human leukemias. Consequently, the normal function of RUNX1 and its involvement in leukemogenesis remain subject to intensive research. To further elucidate the role of RUNX1 in hematopoiesis, we cloned the zebrafish ortholog (runx1) and analyzed its function using this model system. Zebrafish runx1 is expressed in hematopoietic and neuronal cells during early embryogenesis. runx1 expression in the lateral plate mesoderm co-localizes with the hematopoietic transcription factor scl, and expression of runx1 is markedly reduced in the zebrafish mutants spadetail and cloche. Transient expression of runx1 in cloche embryos resulted in partial rescue of the hematopoietic defect. Depletion of Runx1 with antisense morpholino oligonucleotides abrogated the development of both blood and vessels, as demonstrated by loss of circulation, incomplete development of vasculature and the accumulation of immature hematopoietic precursors. The block in definitive hematopoiesis is similar to that observed in Runx1 knockout mice, implying that zebrafish Runx1 has a function equivalent to that in mammals. Our data suggest that zebrafish Runx1 functions in both blood and vessel development at the hemangioblast level, and contributes to both primitive and definitive hematopoiesis. Depletion of Runx1 also caused aberrant axonogenesis and abnormal distribution of Rohon-Beard cells, providing the first functional evidence of a role for vertebrate Runx1 in neuropoiesis. To provide a base for examining the role of Runx1 in leukemogenesis, we investigated the effects of transient expression of a human RUNX1-CBF2T1 transgene [product of the t(8;21) translocation in acute myeloid leukemia] in zebrafish embryos. Expression of RUNX1-CBF2T1 caused disruption of normal hematopoiesis, aberrant circulation, internal hemorrhages and cellular dysplasia. These defects reproduce those observed in Runx1-depleted zebrafish embryos and RUNX1-CBF2T1 knock-in mice. The phenotype obtained with transient expression of RUNX1-CBF2T1 validates the zebrafish as a model system to study t(8;21)-mediated leukemogenesis.
机译:RUNX1 / AML1 / CBFA2对于确定性造血至关重要,影响RUNX1的染色体易位经常参与人类白血病。因此,RUNX1的正常功能及其在白血病发生中的作用仍需深入研究。为了进一步阐明RUNX1在造血中的作用,我们克隆了斑马鱼直系同源物(runx1),并使用此模型系统分析了其功能。斑马鱼runx1在早期胚胎发生过程中在造血和神经元细胞中表达。外侧板中胚层中的runx1表达与造血转录因子scl共定位,并且在斑马鱼突变体spadetail和cloche中runx1的表达显着降低。钟形胚胎中runx1的瞬时表达导致部分造血缺陷的抢救。 Runx1的反义吗啉代寡核苷酸耗竭消除了血液和血管的发育,这表现为循环丧失,脉管系统发育不完全和造血前体的积累。最终造血功能的阻滞类似于在Runx1基因敲除小鼠中观察到的现象,这表明斑马鱼Runx1具有与哺乳动物相同的功能。我们的数据表明,斑马鱼Runx1在成血成血管细胞水平上在血液和血管发育中均起作用,并且有助于原始和确定性造血功能。 Runx1的消耗还引起异常的轴突发生和Rohon-Beard细胞的异常分布,这为脊椎动物Runx1在神经生成中的作用提供了第一个功能证据。为了提供检验Runx1在白血病发生中的作用的基础,我们研究了人RUNX1-CBF2T1转基因[在急性髓性白血病中t(8; 21)易位的产物]在斑马鱼胚胎中的瞬时表达的影响。 RUNX1-CBF2T1的表达引起正常的造血,血液循环异常,内部出血和细胞发育异常的破坏。这些缺陷重现了在Runx1缺失的斑马鱼胚胎和RUNX1-CBF2T1敲入小鼠中观察到的缺陷。通过瞬时表达RUNX1-CBF2T1获得的表型证实了斑马鱼作为研究t(8; 21)介导的白血病发生的模型系统。

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