Department of Neuroscience, Baylor College of Medicine, Houston, TX 77030, USA.
Program in Development, Disease Models and Therapeutics, Baylor College of Medicine, Houston, TX 77030, USA.
Development. 2023 Oct 1;150(19). doi: 10.1242/dev.202047. Epub 2023 Oct 9.
The Foxi3 transcription factor, expressed in the neural plate border at the end of gastrulation, is necessary for the formation of posterior placodes and is thus important for ectodermal patterning. We have created two knock-in mouse lines expressing GFP or a tamoxifen-inducible Cre recombinase to show that Foxi3 is one of the earliest genes to label the border between the neural tube and epidermis, and that Foxi3-expressing neural plate border progenitors contribute primarily to cranial placodes and epidermis from the onset of expression, but not to the neural crest or neural tube lineages. By simultaneously knocking out Foxi3 in neural plate border cells and following their fates, we show that neural plate border cells lacking Foxi3 contribute to all four lineages of the ectoderm - placodes, epidermis, crest and neural tube. We contrast Foxi3 with another neural plate border transcription factor, Zic5, the progenitors of which initially contribute broadly to all germ layers until gastrulation and gradually become restricted to the neural crest lineage and dorsal neural tube cells. Our study demonstrates that Foxi3 uniquely acts early at the neural plate border to restrict progenitors to a placodal and epidermal fate.
Foxi3 转录因子在原肠胚末期的神经板边缘表达,对于后脑板的形成是必需的,因此对外胚层模式形成很重要。我们创建了两个表达 GFP 或他莫昔芬诱导型 Cre 重组酶的敲入小鼠系,以表明 Foxi3 是最早标记神经管和表皮之间边界的基因之一,并且表达 Foxi3 的神经板边缘祖细胞主要有助于颅板和表皮的起始表达,但不参与神经嵴或神经管谱系。通过同时敲除神经板边缘细胞中的 Foxi3 并追踪其命运,我们表明缺乏 Foxi3 的神经板边缘细胞有助于外胚层 - 板、表皮、嵴和神经管的所有四个谱系。我们将 Foxi3 与另一个神经板边缘转录因子 Zic5 进行对比,其祖细胞最初广泛贡献于所有胚层,直到原肠胚期,并逐渐局限于神经嵴谱系和背侧神经管细胞。我们的研究表明,Foxi3 在神经板边缘早期独特地发挥作用,将祖细胞限制为颅板和表皮命运。