Kofron Matt, Puck Helbert, Standley Henrietta, Wylie Chris, Old Robert, Whitman Malcolm, Heasman Janet
Division of Developmental Biology, Cincinnati Children's Research Foundation, 3333 Burnet Avenue, Cincinnati, OH 45229, USA.
Development. 2004 Oct;131(20):5065-78. doi: 10.1242/dev.01396.
FoxH1 (Fast1) was first characterized as the transcriptional partner for Smad proteins. Together with Smad2/4, it forms the activin response factor (ARF) that binds to the Mix.2 promoter in Xenopus embryos. Foxh1 is expressed maternally in Xenopus. Depletion of maternal Foxh1 mRNA results in abnormalities of head and dorsal axis formation. We show that FoxH1 is required, together with XTcf3/beta catenin, to activate the zygotic expression of the nodal gene, Xnr3 in a Smad2-independent manner. In contrast, maternal FoxH1 acts as an inhibitor of Xnr5 and 6 transcription, preventing their upregulation on the ventral side of the embryo, by the maternal T-box transcription factor VegT. We conclude that maternal FoxH1 has essential, context-dependent roles in regulating the pattern of zygotic gene expression in the early embryo.
FoxH1(Fast1)最初被鉴定为Smad蛋白的转录伴侣。它与Smad2/4一起形成激活素反应因子(ARF),该因子可与非洲爪蟾胚胎中的Mix.2启动子结合。Foxh1在非洲爪蟾中由母体表达。母体Foxh1 mRNA的缺失会导致头部和背轴形成异常。我们发现,FoxH1与XTcf3/β连环蛋白一起,以不依赖Smad2的方式激活节点基因Xnr3的合子表达。相反,母体FoxH1作为Xnr5和6转录的抑制剂,通过母体T盒转录因子VegT阻止它们在胚胎腹侧的上调。我们得出结论,母体FoxH1在调节早期胚胎合子基因表达模式中具有重要的、依赖于上下文的作用。