Gene Regulation, Stem Cells & Development Laboratory, GENyO, Centre for Genomics and Oncological Research, Pfizer/University of Granada/Andalusian Regional Government, Granada, Spain.
Josep Carreras Leukemia Research Institute, School of Medicine, University of Barcelona, Barcelona, Spain.
Leukemia. 2015 Aug;29(8):1741-53. doi: 10.1038/leu.2015.74. Epub 2015 Mar 17.
Notch signaling is essential for definitive hematopoiesis, but its role in human embryonic hematopoiesis is largely unknown. We show that in hESCs the expression of the Notch ligand DLL4 is induced during hematopoietic differentiation. We found that DLL4 is only expressed in a sub-population of bipotent hematoendothelial progenitors (HEPs) and segregates their hematopoietic versus endothelial potential. We demonstrate at the clonal level and through transcriptome analyses that DLL4(high) HEPs are enriched in endothelial potential, whereas DLL4(low/-) HEPs are committed to the hematopoietic lineage, albeit both populations still contain bipotent cells. Moreover, DLL4 stimulation enhances hematopoietic differentiation of HEPs and increases the amount of clonogenic hematopoietic progenitors. Confocal microscopy analysis of whole differentiating embryoid bodies revealed that DLL4(high) HEPs are located close to DLL4(low/-) HEPs, and at the base of clusters of CD45+ cells, resembling intra-aortic hematopoietic clusters found in mouse embryos. We propose a model for human embryonic hematopoiesis in which DLL4(low/-) cells within hemogenic endothelium receive Notch-activating signals from DLL4(high) cells, resulting in an endothelial-to-hematopoietic transition and their differentiation into CD45+ hematopoietic cells.
Notch 信号通路对于确定性造血至关重要,但它在人类胚胎造血中的作用在很大程度上尚不清楚。我们发现,在 hESCs 中,Notch 配体 DLL4 的表达在造血分化过程中被诱导。我们发现 DLL4 仅在具有双向造血内皮祖细胞(HEPs)的亚群中表达,并将其造血与内皮潜能分开。我们在克隆水平和转录组分析中证明,DLL4(high) HEPs 富含内皮潜能,而 DLL4(low/-) HEPs 则倾向于造血谱系,尽管这两种细胞群仍包含双向细胞。此外,DLL4 刺激可增强 HEPs 的造血分化,并增加克隆性造血祖细胞的数量。对整个分化胚状体的共聚焦显微镜分析表明,DLL4(high) HEPs 位于 DLL4(low/-) HEPs 附近,并且位于 CD45+细胞簇的底部,类似于在小鼠胚胎中发现的主动脉内造血簇。我们提出了一个人类胚胎造血模型,其中造血内皮中的 DLL4(low/-) 细胞从 DLL4(high) 细胞接收 Notch 激活信号,导致内皮向造血的转变及其分化为 CD45+造血细胞。