Hong Chang-Soo, Saint-Jeannet Jean-Pierre
Department of Animal Biology, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Mol Biol Cell. 2007 Jun;18(6):2192-202. doi: 10.1091/mbc.e06-11-1047. Epub 2007 Apr 4.
In Xenopus, the neural plate border gives rise to at least three cell populations: the neural crest, the preplacodal ectoderm, and the hatching gland. To understand the molecular mechanisms that regulate the formation of these lineages, we have analyzed the role of two transcription factors, Pax3 and Zic1, which are among the earliest genes activated in response to neural plate border-inducing signals. At the end of gastrulation, Pax3 and Zic1 are coexpressed in the neural crest forming region. In addition, Pax3 is expressed in progenitors of the hatching gland, and Zic1 is detected in the preplacodal ectoderm. Using gain of function and knockdown approaches in whole embryos and animal explants, we demonstrate that Pax3 and Zic1 are necessary and sufficient to promote hatching gland and preplacodal fates, respectively, whereas their combined activity is essential to specify the neural crest. Moreover, we show that by manipulating the levels of Pax3 and Zic1 it is possible to shift fates among these cells. These findings provide novel information on the mechanisms regulating cell fate decisions at the neural plate border.
在非洲爪蟾中,神经板边界产生至少三种细胞群体:神经嵴、前板外胚层和孵化腺。为了理解调控这些细胞谱系形成的分子机制,我们分析了两种转录因子Pax3和Zic1的作用,它们是响应神经板边界诱导信号而最早被激活的基因之一。在原肠胚形成末期,Pax3和Zic1在神经嵴形成区域共表达。此外,Pax3在孵化腺的祖细胞中表达,而Zic1在前板外胚层中被检测到。利用全胚胎和动物外植体中的功能获得和敲低方法,我们证明Pax3和Zic1分别对于促进孵化腺和前板命运是必要且充分的,而它们的联合活性对于确定神经嵴至关重要。此外,我们表明通过操纵Pax3和Zic1的水平,可以在这些细胞之间转换命运。这些发现为调控神经板边界细胞命运决定的机制提供了新信息。