Camus Anne, Perea-Gomez Aitana, Moreau Anne, Collignon Jérôme
Laboratoire de Développement des Vertébrés, Institut Jacques Monod UMR 7592 CNRS, Universités Paris 6 et 7, 2 place Jussieu, 75251 Paris, France.
Dev Biol. 2006 Jul 15;295(2):743-55. doi: 10.1016/j.ydbio.2006.03.047. Epub 2006 Apr 7.
After implantation, mouse embryos deficient for the activity of the transforming growth factor-beta member Nodal fail to form both the mesoderm and the definitive endoderm. They also fail to specify the anterior visceral endoderm, a specialized signaling center which has been shown to be required for the establishment of anterior identity in the epiblast. Our study reveals that Nodal-/- epiblast cells nevertheless express prematurely and ectopically molecular markers specific of anterior fate. Our analysis shows that neural specification occurs and regional identities characteristic of the forebrain are established precociously in the Nodal-/- mutant with a sequential progression equivalent to that of wild-type embryo. When explanted and cultured in vitro, Nodal-/- epiblast cells readily differentiate into neurons. Genes normally transcribed in organizer-derived tissues, such as Gsc and Foxa2, are also expressed in Nodal-/- epiblast. The analysis of Nodal-/-;Gsc-/- compound mutant embryos shows that Gsc activity plays no critical role in the acquisition of forebrain characters by Nodal-deficient cells. This study suggests that the initial steps of neural specification and forebrain development may take place well before gastrulation in the mouse and highlights a possible role for Nodal, at pregastrula stages, in the inhibition of anterior and neural fate determination.
植入后,缺乏转化生长因子-β成员Nodal活性的小鼠胚胎无法形成中胚层和定形内胚层。它们也无法特化前内脏内胚层,这是一个专门的信号中心,已被证明是在胚泡中建立前身份所必需的。我们的研究表明,Nodal-/-胚泡细胞仍然过早且异位地表达前命运特有的分子标记。我们的分析表明,神经特化发生,并且在Nodal-/-突变体中,前脑特有的区域身份以与野生型胚胎相当的顺序进展过早建立。当在体外进行分离培养时,Nodal-/-胚泡细胞很容易分化为神经元。通常在组织者衍生组织中转录的基因,如Gsc和Foxa2,也在Nodal-/-胚泡中表达。对Nodal-/-;Gsc-/-复合突变胚胎的分析表明,Gsc活性在Nodal缺陷细胞获得前脑特征方面没有关键作用。这项研究表明,神经特化和前脑发育的初始步骤可能在小鼠原肠胚形成之前就已经发生,并突出了Nodal在原肠胚形成前阶段对抑制前和神经命运决定的可能作用。