Gerlach Jan P, Emmink Benjamin L, Nojima Hisashi, Kranenburg Onno, Maurice Madelon M
Department of Cell Biology, Center for Molecular Medicine, Heidelberglaan 100, Utrecht 3584CX, The Netherlands.
Department of Surgery, University Medical Center Utrecht, Heidelberglaan 100, Utrecht 3584CX, The Netherlands.
Open Biol. 2014 Nov;4(11):140120. doi: 10.1098/rsob.140120.
Wnt/β-catenin signalling controls development and adult tissue homeostasis and causes cancer when inappropriately activated. In unstimulated cells, an Axin1-centred multi-protein complex phosphorylates the transcriptional co-activator β-catenin, marking it for degradation. Wnt signalling antagonizes β-catenin proteolysis, leading to its accumulation and target gene expression. How Wnt stimulation alters the size distribution, composition and activity of endogenous Axin1 complexes remains poorly understood. Here, we employed two-dimensional blue native/SDS-PAGE to analyse endogenous Axin1 and β-catenin complexes during Wnt signalling. We show that the size range of Axin1 complexes is conserved between species and remains largely unaffected by Wnt stimulation. We detect a striking Wnt-dependent, cytosolic accumulation of both non-phosphorylated and phosphorylated β-catenin within a 450 kDa Axin1-based complex and in a distinct, Axin1-free complex of 200 kDa. These results argue that during Wnt stimulation, phosphorylated β-catenin is released from the Axin1 complex but fails to undergo immediate degradation. Importantly, in APC-mutant cancer cells, the distribution of Axin1 and β-catenin complexes strongly resembles that of Wnt-stimulated cells. Our findings argue that Wnt signals and APC mutations interfere with the turnover of phosphorylated β-catenin. Furthermore, our results suggest that the accumulation of small-sized β-catenin complexes may serve as an indicator of Wnt pathway activity in primary cancer cells.
Wnt/β-连环蛋白信号通路控制着发育和成年组织的稳态,在不适当激活时会引发癌症。在未受刺激的细胞中,以轴蛋白1(Axin1)为中心的多蛋白复合物会使转录共激活因子β-连环蛋白磷酸化,使其被标记以便降解。Wnt信号通路拮抗β-连环蛋白的蛋白水解作用,导致其积累并引发靶基因表达。Wnt刺激如何改变内源性Axin1复合物的大小分布、组成和活性,目前仍知之甚少。在这里,我们采用二维蓝色非变性/SDS-PAGE来分析Wnt信号通路中的内源性Axin1和β-连环蛋白复合物。我们发现,Axin1复合物的大小范围在不同物种间是保守的,并且在很大程度上不受Wnt刺激的影响。我们在一个基于450 kDa Axin1的复合物以及一个独特的、不含Axin1的200 kDa复合物中检测到非磷酸化和磷酸化的β-连环蛋白均有显著的、依赖Wnt的胞质积累。这些结果表明,在Wnt刺激过程中,磷酸化的β-连环蛋白从Axin1复合物中释放出来,但未能立即降解。重要的是,在APC突变的癌细胞中Axin1和β-连环蛋白复合物的分布与Wnt刺激的细胞非常相似。我们的研究结果表明,Wnt信号和APC突变会干扰磷酸化β-连环蛋白的周转。此外,我们的结果表明,小尺寸β-连环蛋白复合物的积累可能作为原发性癌细胞中Wnt通路活性的一个指标。