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Gfi1aa and Gfi1b set the pace for primitive erythroblast differentiation from hemangioblasts in the zebrafish embryo

机译:Gfi1aa和Gfi1b为斑马鱼胚胎中的成血成血管细胞与成血成血管细胞的分化设定了速度

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摘要

The transcriptional repressors Gfi1(a) and Gfi1b are epigenetic regulators with unique and overlapping roles in hematopoiesis. In different contexts, Gfi1 and Gfi1b restrict or promote cell proliferation, prevent apoptosis, influence cell fate decisions, and are essential for terminal differentiation. Here, we show in primitive red blood cells (prRBCs) that they can also set the pace for cellular differentiation. In zebrafish, prRBCs express 2 of 3 zebrafish Gfi1/1b paralogs, Gfi1aa and Gfi1b. The recently identified zebrafish gfi1aa gene trap allele qmc551 drives erythroid green fluorescent protein (GFP) instead of Gfi1aa expression, yet homozygous carriers have normal prRBCs. prRBCs display a maturation defect only after splice morpholino-mediated knockdown of Gfi1b in gfi1aaqmc551 homozygous embryos. To study the transcriptome of the Gfi1aa/1b double-depleted cells, we performed an RNA-Seq experiment on GFP-positive prRBCs sorted from 20-hour-old embryos that were heterozygous or homozygous for gfi1aaqmc551, as well as wt or morphant for gfi1b. We subsequently confirmed and extended these data in whole-mount in situ hybridization experiments on newly generated single- and double-mutant embryos. Combined, the data showed that in the absence of Gfi1aa, the synchronously developing prRBCs were delayed in activating late erythroid differentiation, as they struggled to suppress early erythroid and endothelial transcription programs. The latter highlighted the bipotent nature of the progenitors from which prRBCs arise. In the absence of Gfi1aa, Gfi1b promoted erythroid differentiation as stepwise loss of wt gfi1b copies progressively delayed Gfi1aa-depleted prRBCs even further, showing that Gfi1aa and Gfi1b together set the pace for prRBC differentiation from hemangioblasts.
机译:转录阻遏物Gfi1(a)和Gfi1b是在造血过程中具有独特作用和重叠作用的表观遗传调控因子。在不同的情况下,Gfi1和Gfi1b限制或促进细胞增殖,防止细胞凋亡,影响细胞命运的决定,并且对于终末分化至关重要。在这里,我们在原始红细胞(prRBCs)中显示,它们也可以设定细胞分化的速度。在斑马鱼中,prRBC表示3个斑马鱼Gfi1 / 1b旁系同源物中的2个,即Gfi1aa和Gfi1b。最近鉴定出的斑马鱼gfi1aa基因陷阱等位基因qmc551驱动类红绿荧光蛋白(GFP)而不是Gfi1aa表达,但纯合子携带者的prRBCs正常。 prRBC仅在剪接吗啉代介导的gfi1aa qmc551 纯合胚胎中的Gfi1b敲低后才显示成熟缺陷。为了研究Gfi1aa / 1b双耗竭细胞的转录组,我们对GFP阳性prRBCs进行了RNA-Seq实验,所述prRBCs从20小时龄的gfi1aa qmc551 杂合或纯合的胚胎中分选出来,以及gfi1b的wt或吗啡。随后,我们在新生成的单突变和双突变胚胎的整个原位杂交实验中证实并扩展了这些数据。综合起来,数据显示,在缺乏Gfi1aa的情况下,同步发展的prRBC在努力抑制晚期红系和内皮转录程序时被延迟激活红系分化。后者强调了prRBCs起源于祖细胞的双能性。在没有Gfi1aa的情况下,Gfi1b促进红系分化,因为wt gfi1b拷贝的逐步丢失会进一步延迟耗尽Gfi1aa的prRBC,这表明Gfi1aa和Gfi1b共同决定了prRBC与成血管细胞分化的速度。

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