Xanthos Jennifer B, Kofron Matthew, Tao Qinghua, Schaible Kyle, Wylie Christopher, Heasman Janet
Division of Developmental Biology, Children's Hospital Medical Center, 3333 Burnet Avenue, Cincinnati, Ohio 45229-3039, USA.
Development. 2002 Sep;129(17):4027-43. doi: 10.1242/dev.129.17.4027.
Since the three main pathways (the Wnt, VegT and BMP pathways) involved in organizer and axis formation in the Xenopus embryo are now characterized, the challenge is to understand their interactions. Here three comparisons were made. Firstly, we made a systematic comparison of the expression of zygotic genes in sibling wild-type, VegT-depleted (VegT(-)), beta-catenin-depleted (beta-catenin(-)) and double depleted (VegT(-)/beta-catenin(-)) embryos and placed early zygotic genes into specific groups. In the first group some organizer genes, including chordin, noggin and cerberus, required the activity of both the Wnt pathway and the VegT pathway to be expressed. A second group including Xnr1, 2, 4 and Xlim1 were initiated by the VegT pathway but their dorsoventral pattern and amount of their expression was regulated by the Wnt pathway. Secondly, we compared the roles of the Wnt and VegT pathways in producing dorsal signals. Explant co-culture experiments showed that the Wnt pathway did not cause the release of a dorsal signal from the vegetal mass independent from the VegT pathway. Finally we compared the extent to which inhibiting Smad 1 phosphorylation in one area of VegT(-), or beta-catenin(-) embryos would rescue organizer and axis formation. We found that BMP inhibition with cm-BMP7 mRNA had no rescuing effects on VegT(-) embryos, while cm-BMP7 and noggin mRNA caused a complete rescue of the trunk, but not of the anterior pattern in beta-catenin(-) embryos.
由于非洲爪蟾胚胎中参与组织者和轴形成的三条主要信号通路(Wnt、VegT和BMP信号通路)现已明确,当前面临的挑战是了解它们之间的相互作用。本文进行了三项比较。首先,我们对野生型、VegT缺失(VegT(-))、β-连环蛋白缺失(β-连环蛋白(-))和双缺失(VegT(-)/β-连环蛋白(-))的同胞胚胎中合子基因的表达进行了系统比较,并将早期合子基因分为特定类别。在第一类中,一些组织者基因,包括脊索蛋白、头蛋白和Cerberus,需要Wnt信号通路和VegT信号通路的活性才能表达。第二类包括Xnr1、2、4和Xlim1,由VegT信号通路启动,但其背腹模式和表达量受Wnt信号通路调控。其次,我们比较了Wnt信号通路和VegT信号通路在产生背侧信号中的作用。外植体共培养实验表明,Wnt信号通路不会独立于VegT信号通路从植物极释放背侧信号。最后,我们比较了在VegT(-)或β-连环蛋白(-)胚胎的一个区域抑制Smad 1磷酸化对组织者和轴形成的挽救程度。我们发现,用cm-BMP7 mRNA抑制BMP对VegT(-)胚胎没有挽救作用,而cm-BMP7和头蛋白mRNA可完全挽救β-连环蛋白(-)胚胎的躯干,但不能挽救其前部模式。