Hanna Lynn A, Foreman Ruth K, Tarasenko Illya A, Kessler Daniel S, Labosky Patricia A
Department of Cell and Developmental Biology, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104-6058, USA.
Genes Dev. 2002 Oct 15;16(20):2650-61. doi: 10.1101/gad.1020502.
Critical to our understanding of the developmental potential of stem cells and subsequent control of their differentiation in vitro and in vivo is a thorough understanding of the genes that control stem cell fate. Here, we report that Foxd3, a member of the forkhead family of transcriptional regulators, is required for maintenance of embryonic cells of the early mouse embryo. Foxd3-/- embryos die after implantation at approximately 6.5 days postcoitum with a loss of epiblast cells, expansion of proximal extraembryonic tissues, and a distal, mislocalized anterior organizing center. Moreover, it has not been possible to establish Foxd3-/- ES cell lines or to generate Foxd3-/- teratocarcinomas. Chimera analysis reveals that Foxd3 function is required in the epiblast and that Foxd3-/- embryos can be rescued by a small number of wild-type cells. Foxd3-/- mutant blastocysts appear morphologically normal and express Oct4, Sox2, and Fgf4, but when placed in vitro the inner cell mass initially proliferates and then fails to expand even when Fgf4 is added. These results establish Foxd3 as a factor required for the maintenance of progenitor cells in the mammalian embryo.
对于我们理解干细胞的发育潜能以及随后在体外和体内对其分化的控制而言,透彻了解控制干细胞命运的基因至关重要。在此,我们报告叉头转录调节因子家族成员Foxd3是维持小鼠早期胚胎的胚胎细胞所必需的。Foxd3基因敲除的胚胎在大约交配后6.5天着床后死亡,伴随着外胚层细胞的丧失、近端胚外组织的扩张以及远端异位的前组织中心。此外,无法建立Foxd3基因敲除的胚胎干细胞系或产生Foxd3基因敲除的畸胎瘤。嵌合体分析表明,外胚层需要Foxd3发挥功能,并且少量野生型细胞可以挽救Foxd3基因敲除的胚胎。Foxd3基因敲除的突变胚泡在形态上看似正常,并表达Oct4、Sox2和Fgf4,但置于体外时,即使添加Fgf4,内细胞团最初增殖后也无法进一步扩增。这些结果确立了Foxd3是维持哺乳动物胚胎中祖细胞所必需的一个因子。