Riou J F, Delarue M, Méndez A P, Boucaut J C
Laboratoire de Biologie Moléculaire et Cellulaire du Développement, groupe Biologie Expérimentale, UMR CNRS 7622, Université Paris VI, 9 quai Saint-Bernard, 75005, Paris, France.
Mech Dev. 1998 Nov;78(1-2):3-15. doi: 10.1016/s0925-4773(98)00118-x.
Genes encoding fibroblast growth factors (FGFs) are expressed in early Xenopus neurulae in the prospective midbrain-hindbrain boundary (MHB) region of the neural plate. These expression domains overlap those of XWnt-1 and XEn-2, raising the question of the role of FGF signalling in the regulation of these genes, and more generally about the function of FGF during Xenopus midbrain development. We report that explants from the prospective MHB grafted into the anterior neural plate in midneurula stage embryos induce XWnt-1 expression and, at a lower frequency, XEn-2 expression in the vicinity of the graft. Such a process is likely to involve FGF signalling. Implantation of FGF4- or FGF8-soaked beads in the prospective forebrain at neurula and tailbud stages causes the up-regulation of XWnt-1 and XEn-2 in the dorsal and lateral region of the anterior midbrain. This effect is not relayed by endogenous FGF genes since exogenous FGFs inhibit the expression of endogenous XFGF3 or XFGF8. However, consequences of grafting MHB or implanting FGF4 or FGF8 beads on tadpole brain development are different. MHB grafts induce ectopic mesencephalic structures, strongly suggesting that a region homologous to the isthmic organizer of amniotes is specified as early as the midneurula stage. In contrast, exogenous FGFs do not cause the formation of ectopic mesencephalic structures but an overgrowth of mesencephalon and diencephalon. We propose that FGF signals from the prospective MHB play a crucial role in the spatial regulation of XWnt-1 and XEn-2 expression in the posterior midbrain, but that the full organizing activity of the MHB involves other factors in combination with FGF.
编码成纤维细胞生长因子(FGFs)的基因在非洲爪蟾神经胚早期神经板的预期中脑 - 后脑边界(MHB)区域表达。这些表达域与XWnt - 1和XEn - 2的表达域重叠,这就引出了FGF信号在这些基因调控中的作用问题,更普遍地说,是关于FGF在非洲爪蟾中脑发育过程中的功能问题。我们报道,将预期MHB的外植体移植到神经胚中期胚胎的前神经板中,会在移植部位附近诱导XWnt - 1表达,并且在较低频率下诱导XEn - 2表达。这样的过程可能涉及FGF信号传导。在神经胚期和尾芽期将浸泡过FGF4或FGF8的珠子植入预期前脑,会导致前中脑背侧和外侧区域的XWnt - 1和XEn - 2上调。这种效应不是由内源性FGF基因传递的,因为外源性FGF会抑制内源性XFGF3或XFGF8的表达。然而,移植MHB或植入FGF4或FGF8珠子对蝌蚪脑发育的影响是不同的。MHB移植诱导异位中脑结构,强烈表明与羊膜动物峡部组织者同源的区域早在神经胚中期就已特化。相比之下,外源性FGF不会导致异位中脑结构的形成,而是导致中脑和间脑过度生长。我们提出,来自预期MHB的FGF信号在中脑后部XWnt - 1和XEn - 2表达的空间调控中起关键作用,但MHB的完全组织活性涉及与FGF结合的其他因素。