Bielinska M, Narita N, Heikinheimo M, Porter S B, Wilson D B
Department of Pediatrics, Washington University School of Medicine, St Louis, MO, USA.
Blood. 1996 Nov 15;88(10):3720-30.
During mouse embryogenesis the first hematopoietic and endothelial cells form in blood islands located between layers of visceral endoderm and mesoderm in the yolk sac. The role of visceral endoderm in primitive hematopoiesis and vasculogenesis is not well understood. We have assessed the consequences of a lack of visceral endoderm on blood cell and vessel formation using embryoid bodies derived from mouse embryonic stem (ES) cells deficient in GATA-4, a transcription factor expressed in yolk sac endoderm. When differentiated in vitro, these mutant embryoid bodies do not develop an external visceral endoderm layer. We found that Gata4-/- embryoid bodies, grown either in suspension culture or attached to a substratum, are defective in primitive hematopoiesis and vasculogenesis as evidenced by a lack of recognizable blood islands and vascular channels and a reduction in the expression of the primitive erythrocyte marker epsilon y-globin. Expression of the endothelial cell transcripts FIk-1, FIt-1, and platelet-endothelial cell adhesion molecule (PECAM) was not affected in the mutant embryoid bodies. Gata4-/- ES cells retained the capacity to differentiate into primitive erythroblasts and endothelial cells when cultured in methylcellulose or matrigel. Analysis of chimeric mice, generated by injecting Gata4-/- ES cells into 8-cell stage embryos of ROSA26 transgenic animals, showed that Gata4-/- ES cells can form blood islands and vessels when juxtaposed to visceral endoderm in vivo. We conclude that the visceral endoderm is not essential for the differentiation of primitive erythrocytes or endothelial cells, but this cell layer plays an important role in the formation and organization of yolk sac blood islands and vessels.
在小鼠胚胎发育过程中,最早的造血细胞和内皮细胞形成于卵黄囊内胚层和中胚层之间的血岛中。内胚层在原始造血和血管生成中的作用尚未完全明确。我们利用源自缺乏GATA-4(一种在卵黄囊内胚层表达的转录因子)的小鼠胚胎干细胞(ES细胞)的胚状体,评估了内胚层缺失对血细胞和血管形成的影响。当在体外进行分化时,这些突变胚状体不会形成外部的内胚层层。我们发现,无论是悬浮培养还是贴壁培养,Gata4-/-胚状体在原始造血和血管生成方面均存在缺陷,表现为缺乏可识别的血岛和血管通道,以及原始红细胞标志物εγ-珠蛋白的表达降低。突变胚状体中内皮细胞转录本FIk-1、FIt-1和血小板内皮细胞黏附分子(PECAM)的表达未受影响。当在甲基纤维素或基质胶中培养时,Gata4-/- ES细胞保留了分化为原始成红细胞和内皮细胞的能力。通过将Gata4-/- ES细胞注射到ROSA26转基因动物的8细胞期胚胎中产生的嵌合小鼠分析表明,Gata4-/- ES细胞在体内与内胚层并列时能够形成血岛和血管。我们得出结论,内胚层对于原始红细胞或内皮细胞的分化并非必不可少,但该细胞层在卵黄囊血岛和血管的形成及组织中发挥着重要作用。