Kofron Matt, Birsoy Bilge, Houston Douglas, Tao Qinghua, Wylie Christopher, Heasman Janet
Division of Developmental Biology, Cincinnati Children's Research Foundation, Cincinnati, OH 45229-3039, USA.
Development. 2007 Feb;134(3):503-13. doi: 10.1242/dev.02739. Epub 2007 Jan 3.
Current models of canonical Wnt signaling assume that a pathway is active if beta-catenin becomes nuclearly localized and Wnt target genes are transcribed. We show that, in Xenopus, maternal LRP6 is essential in such a pathway, playing a pivotal role in causing expression of the organizer genes siamois and Xnr3, and in establishing the dorsal axis. We provide evidence that LRP6 acts by degrading axin protein during the early cleavage stage of development. In the full-grown oocyte, before maturation, we find that axin levels are also regulated by Wnt11 and LRP6. In the oocyte, Wnt11 and/or LRP6 regulates axin to maintain beta-catenin at a low level, while in the embryo, asymmetrical Wnt11/LRP6 signaling stabilizes beta-catenin and enriches it on the dorsal side. This suggests that canonical Wnt signaling may not exist in simple off or on states, but may also include a third, steady-state, modality.
经典Wnt信号通路的当前模型认为,如果β-连环蛋白进入细胞核且Wnt靶基因被转录,那么该通路就是活跃的。我们发现,在非洲爪蟾中,母体LRP6在这样一条通路中至关重要,在引发组织者基因siamois和Xnr3的表达以及建立背轴方面发挥着关键作用。我们提供的证据表明,LRP6在发育的早期卵裂阶段通过降解轴蛋白发挥作用。在成熟前的完全成熟卵母细胞中,我们发现轴蛋白水平也受Wnt11和LRP6调控。在卵母细胞中,Wnt11和/或LRP6调节轴蛋白以维持β-连环蛋白处于低水平,而在胚胎中,不对称的Wnt11/LRP6信号使β-连环蛋白稳定并在背侧富集。这表明经典Wnt信号通路可能并非简单地处于关闭或开启状态,还可能包括第三种稳态模式。