Hikasa Hiroki, Sokol Sergei Y
Department of Microbiology and Molecular Genetics, Harvard Medical School, and Department of Medicine, Beth Israel Deaconess Medical Center, 330 Brookline Avenue, Boston, MA 02215, USA.
Development. 2004 Oct;131(19):4725-34. doi: 10.1242/dev.01369. Epub 2004 Aug 25.
Frodo is a novel conserved regulator of Wnt signaling that has been identified by its association with Dishevelled, an intracellular component of Wnt signal transduction. To understand further how Frodo functions, we have analyzed its role in neural development using specific morpholino antisense oligonucleotides. We show that Frodo and the closely related Dapper synergistically regulate head development and morphogenesis. Both genes were cell-autonomously required for neural tissue formation, as defined by the pan-neural markers sox2 and nrp1. By contrast, beta-catenin was not required for pan-neural marker expression, but was involved in the control of the anteroposterior patterning. In the mesoderm, Frodo and Dapper were essential for the expression of the organizer genes chordin, cerberus and Xnr3, but they were not necessary for the expression of siamois and goosecoid, established targets of beta-catenin signaling. Embryos depleted of either gene showed a decreased transcriptional response to TCF3-VP16, a beta-catenin-independent transcriptional activator. Whereas the C terminus of Frodo binds Dishevelled, we demonstrate that the conserved N-terminal domain associates with TCF3. Based on these observations, we propose that Frodo and Dapper link Dsh and TCF to regulate Wnt target genes in a pathway parallel to that of beta-catenin.
弗罗多是一种新发现的Wnt信号保守调节因子,它是通过与蓬乱蛋白(Dishevelled,Wnt信号转导的一种细胞内成分)的关联而被鉴定出来的。为了进一步了解弗罗多的功能,我们使用特异性吗啉代反义寡核苷酸分析了它在神经发育中的作用。我们发现弗罗多和与之密切相关的达珀蛋白(Dapper)协同调节头部发育和形态发生。如泛神经标记物sox2和nrp1所定义的,这两个基因对于神经组织形成都是细胞自主必需的。相比之下,β-连环蛋白对于泛神经标记物的表达不是必需的,但参与前后模式的控制。在中胚层中,弗罗多和达珀蛋白对于组织者基因脊索蛋白(chordin)、Cerberus和Xnr3的表达是必需的,但对于β-连环蛋白信号的既定靶标暹罗蛋白(siamois)和鹅膏蕈氨酸(goosecoid)的表达不是必需的。缺失任何一个基因的胚胎对TCF3-VP16(一种不依赖β-连环蛋白的转录激活因子)的转录反应都降低。虽然弗罗多的C末端与蓬乱蛋白结合,但我们证明保守的N末端结构域与TCF3相关联。基于这些观察结果,我们提出弗罗多和达珀蛋白将蓬乱蛋白和TCF联系起来,以在与β-连环蛋白平行的途径中调节Wnt靶基因。