de la Roche Marc, Bienz Mariann
MRC Laboratory of Molecular Biology, Hills Road, Cambridge, United Kingdom.
Curr Biol. 2007 Mar 20;17(6):556-61. doi: 10.1016/j.cub.2007.01.063. Epub 2007 Feb 22.
The Wnt signaling pathway controls numerous cell fates during animal development. Its inappropriate activity can lead to cancer in many human tissues. A key effector of the canonical Wnt pathway is beta-catenin (or Drosophila Armadillo), a highly unstable phosphorylated protein that shuttles rapidly between nucleus and cytoplasm. Wnt signaling inhibits its phosphorylation and degradation; this allows it to associate with TCF/LEF factors bound to Wnt target genes and to stimulate their transcription by recruiting chromatin modifying and remodeling factors. The transcriptional activity of Armadillo/beta-catenin also depends on Pygopus (Pygo), a nuclear protein with which it associates through the Legless/BCL9 adaptor. It has been proposed that Pygo associates with TCF target genes during Wnt signaling through Armadillo and Legless to recruit a transcriptional coactivator through its Nbox motif. Here, we report that Pygo is associated constitutively with dTCF target genes in Drosophila salivary glands and tissue-culture cells. Our evidence indicates that this association depends on dTCF and on the Nbox motif of Pygo, but not on Legless. We thus propose an alternative model according to which Pygo functions at the onset of Wnt signaling, or at low signaling levels, to capture Armadillo at dTCF target genes, thus enabling the interaction between Armadillo and dTCF and, consequently, the Armadillo-mediated recruitment of transcriptional coactivators.
Wnt信号通路在动物发育过程中控制着众多细胞命运。其异常激活会在许多人体组织中引发癌症。经典Wnt通路的一个关键效应因子是β-连环蛋白(或果蝇中的犰狳蛋白),它是一种高度不稳定的磷酸化蛋白,在细胞核和细胞质之间快速穿梭。Wnt信号传导抑制其磷酸化和降解;这使其能够与结合在Wnt靶基因上的TCF/LEF因子结合,并通过招募染色质修饰和重塑因子来刺激它们的转录。犰狳蛋白/β-连环蛋白的转录活性还取决于Pygopus(Pygo),它是一种核蛋白,通过无腿蛋白/BCL9衔接蛋白与之结合。有人提出,在Wnt信号传导过程中,Pygo通过犰狳蛋白和无腿蛋白与TCF靶基因结合,通过其Nbox基序招募转录共激活因子。在这里,我们报告在果蝇唾液腺和组织培养细胞中,Pygo与dTCF靶基因组成性结合。我们的证据表明,这种结合取决于dTCF和Pygo的Nbox基序,但不取决于无腿蛋白。因此,我们提出了一种替代模型,根据该模型,Pygo在Wnt信号传导开始时或低信号水平下起作用,在dTCF靶基因处捕获犰狳蛋白,从而使犰狳蛋白与dTCF相互作用,并因此使犰狳蛋白介导的转录共激活因子的招募成为可能。