Crease D J, Dyson S, Gurdon J B
Wellcome Cancer Research Campaign Institute, Tennis Court Road, Cambridge, CB2 1QR England and Department of Zoology, University of Cambridge, Cambridge, CB2 3EJ England.
Proc Natl Acad Sci U S A. 1998 Apr 14;95(8):4398-403. doi: 10.1073/pnas.95.8.4398.
The normal expression pattern of the Wnt responsive homeobox gene Siamois is restricted to the dorso-vegetal region of the Xenopus embryo. Because the Wnt signaling pathway (via beta-catenin) is active on the entire dorsal side of the early embryo, we have asked why Siamois expression is not seen in the dorsal ectoderm. Only Wnt signaling, via activation of beta-catenin, can induce directly Siamois, and signaling via the SMAD1 (BMP2/4) or SMAD2 (activin/Vg-1) pathways cannot. We now directly show that the SMAD2 pathway can cooperate with the Wnt pathway to induce expression of Siamois much more strongly than the Wnt pathway alone, in normal embryos. We demonstrate the significance of this cooperation in normal embryos by blocking the SMAD2 signaling pathway with a dominant negative activin receptor. The activin dominant negative receptor blocks this cooperative effect and reduces the expression of Siamois by threefold in early embryos. Furthermore, we find that this cooperative relationship between the SMAD2 and Wnt pathways is reciprocal. Thus, in normal embryos, the Wnt pathway can enhance induction, by the SMAD 2 pathway, of the organizer genes Gsc and Chd but not the pan-mesodermal marker genes Xbra and Eomes. We conclude that the Wnt and SMAD2 signaling pathways cooperate to induce the expression of Spemann-organizer specific genes and so help to localize their spatial expression.
Wnt反应性同源框基因Siamois的正常表达模式局限于非洲爪蟾胚胎的背侧植物区域。由于Wnt信号通路(通过β-连环蛋白)在早期胚胎的整个背侧是活跃的,我们不禁要问,为什么在背侧外胚层中没有观察到Siamois的表达。只有通过激活β-连环蛋白的Wnt信号通路能够直接诱导Siamois,而通过SMAD1(BMP2/4)或SMAD2(激活素/Vg-1)信号通路的信号传导则不能。我们现在直接表明,在正常胚胎中,SMAD2信号通路能够与Wnt信号通路协同作用,比单独的Wnt信号通路更强烈地诱导Siamois的表达。我们通过用显性负性激活素受体阻断SMAD2信号通路,证明了这种协同作用在正常胚胎中的重要性。激活素显性负性受体阻断了这种协同效应,并使早期胚胎中Siamois的表达降低了三倍。此外,我们发现SMAD2和Wnt信号通路之间的这种协同关系是相互的。因此,在正常胚胎中,Wnt信号通路能够增强由SMAD2信号通路对组织者基因Gsc和Chd的诱导,但不能增强泛中胚层标记基因Xbra和Eomes的诱导。我们得出结论,Wnt和SMAD2信号通路协同作用以诱导斯佩曼组织者特异性基因的表达,从而有助于定位它们的空间表达。