Fleury Maud, Eliades Alexia, Carlsson Peter, Lacaud Georges, Kouskoff Valerie
Cancer Research UK Stem Cell Hematopoiesis Group, Cancer Research UK Manchester Institute, The University of Manchester, Wilmslow Road, Manchester M20 4BX, UK.
Department of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg 40530, Sweden.
Development. 2015 Oct 1;142(19):3307-20. doi: 10.1242/dev.124685. Epub 2015 Aug 20.
The molecular mechanisms orchestrating early mesoderm specification are still poorly understood. In particular, how alternate cell fate decisions are regulated in nascent mesoderm remains mostly unknown. In the present study, we investigated both in vitro in differentiating embryonic stem cells, and in vivo in gastrulating embryos, the lineage specification of early mesodermal precursors expressing or not the Forkhead transcription factor FOXF1. Our data revealed that FOXF1-expressing mesoderm is derived from FLK1(+) progenitors and that in vitro this transcription factor is expressed in smooth muscle and transiently in endothelial lineages, but not in hematopoietic cells. In gastrulating embryos, FOXF1 marks most extra-embryonic mesoderm derivatives including the chorion, the allantois, the amnion and a subset of endothelial cells. Similarly to the in vitro situation, FOXF1 expression is excluded from the blood islands and blood cells. Further analysis revealed an inverse correlation between hematopoietic potential and FOXF1 expression in vivo with increased commitment toward primitive erythropoiesis in Foxf1-deficient embryos, whereas FOXF1-enforced expression in vitro was shown to repress hematopoiesis. Altogether, our data establish that during gastrulation, FOXF1 marks all posterior primitive streak extra-embryonic mesoderm derivatives with the remarkable exception of the blood lineage. Our study further suggests that this transcription factor is implicated in actively restraining the specification of mesodermal progenitors to hematopoiesis.
调控早期中胚层特化的分子机制仍知之甚少。特别是,新生中胚层中细胞命运的交替决定是如何被调控的,目前大多仍不清楚。在本研究中,我们在体外分化的胚胎干细胞以及体内原肠胚形成期的胚胎中,研究了表达或不表达叉头转录因子FOXF1的早期中胚层前体细胞的谱系特化。我们的数据显示,表达FOXF1的中胚层来源于FLK1(+)祖细胞,并且在体外,该转录因子在内皮谱系中短暂表达,在平滑肌中表达,但在造血细胞中不表达。在原肠胚形成期的胚胎中,FOXF1标记了大多数胚外中胚层衍生物,包括绒毛膜、尿囊、羊膜和一部分内皮细胞。与体外情况类似,血岛和血细胞中不表达FOXF1。进一步分析显示,体内造血潜能与FOXF1表达呈负相关,在Foxf1基因缺陷的胚胎中,向原始红细胞生成的定向分化增加,而在体外强制表达FOXF1则会抑制造血。总之,我们的数据表明,在原肠胚形成过程中,FOXF1标记了所有后原条胚外中胚层衍生物,但血细胞谱系明显例外。我们的研究进一步表明,该转录因子参与了主动抑制中胚层祖细胞向造血方向的特化。