Shimauchi Y, Chiba S, Satoh N
Department of Zoology, Graduate School of Science, Kyoto University, Japan.
Int J Dev Biol. 2001 Jun;45(4):643-52.
In vertebrate embryos, the class I subtype forkhead domain gene HNF-3 is essential for the formation of the endoderm, notochord and overlying ventral neural tube. In ascidian embryos, Brachyury is involved in the formation of the notochord. Although the results of previous studies imply a role of HNF-3 in notochord differentiation in ascidian embryos, no experiments have been carried out to address this issue directly. Therefore the present study examined the developmental role of HNF-3 in ascidian notochord differentiation. When embryos were injected with a low dose of HNF-3 mRNA, their tails were shortened and when embryos were injected with a high dose of HNF-3 mRNA, which was enough to inhibit differentiation of epidermis and muscle, no obvious ectopic differentiation of endoderm or notochord cells was observed. However, co-injection of HNF-3 mRNA along with Brachyury mRNA resulted in ectopic differentiation of notochord cells in the animal hemisphere, suggesting that HNF-3 acts synergistically with Brachyury in ascidian notochord differentiation. Notochord differentiation of the A-line precursor cells depends on inducing signal(s) from endodermal cells, which can be mimicked by bFGF treatment. Treatment of notochord precursor cells isolated from the 32-cell stage embryoswith bFGF resulted in upregulation of both the HNF-3 and Brachyury genes.
在脊椎动物胚胎中,I类亚型叉头结构域基因HNF-3对于内胚层、脊索和覆盖其上的腹侧神经管的形成至关重要。在海鞘胚胎中,短尾相关蛋白参与脊索的形成。尽管先前研究的结果暗示HNF-3在海鞘胚胎的脊索分化中发挥作用,但尚未进行直接解决该问题的实验。因此,本研究检测了HNF-3在海鞘脊索分化中的发育作用。当向胚胎注射低剂量的HNF-3 mRNA时,它们的尾巴会缩短;当向胚胎注射足以抑制表皮和肌肉分化的高剂量HNF-3 mRNA时,未观察到内胚层或脊索细胞有明显的异位分化。然而,将HNF-3 mRNA与短尾相关蛋白mRNA共同注射会导致动物半球出现脊索细胞的异位分化,这表明HNF-3在海鞘脊索分化中与短尾相关蛋白协同发挥作用。A系前体细胞的脊索分化依赖于来自内胚层细胞的诱导信号,bFGF处理可模拟这种信号。用bFGF处理从32细胞期胚胎分离的脊索前体细胞,会导致HNF-3和短尾相关蛋白基因均上调。