Staal Frank J T, van Noort Mascha, Strous Ger J, Clevers Hans C
Department of Immunology, Erasmus University Rotterdam/University Hospital Rotterdam, The Netherlands.
EMBO Rep. 2002 Jan;3(1):63-8. doi: 10.1093/embo-reports/kvf002. Epub 2001 Dec 19.
beta-catenin mediates Wnt signaling by acting as the essential co-activator for TCF transcription factors. Wnt signaling increases the half-life and therefore the absolute level of beta-catenin in responding cells. The current model states that these changes in beta-catenin stability set the threshold for Wnt signaling. However, we find that pharmacological inhibition of proteasome activity by ALLN leads to accumulation of cytosolic beta-catenin but not to increased TCF-mediated transcription. In addition, in temperature-sensitive ubiquitylation mutant CHO cells inhibition of ubiquitylation increases beta-catenin levels, but does not induce transcriptional activation of TCF reporter genes. Using an antibody specific for beta-catenin dephosphorylated at residues Ser37 and Thr41, we show that Wnt signals specifically increase the levels of dephosphorylated beta-catenin, whereas ALLN does not. We conclude that changes in the phosphorylation status of the N-terminus of beta-catenin that occur upon Wnt signaling independently affect the signaling properties and half-life of beta-catenin. Hence, Wnt signals are transduced via N-terminally dephosphorylated beta-catenin.
β-连环蛋白作为TCF转录因子的必需共激活因子介导Wnt信号通路。Wnt信号通路增加了β-连环蛋白的半衰期,从而提高了反应细胞中β-连环蛋白的绝对水平。目前的模型表明,β-连环蛋白稳定性的这些变化设定了Wnt信号通路的阈值。然而,我们发现ALLN对蛋白酶体活性的药理抑制导致胞质β-连环蛋白的积累,但不会导致TCF介导的转录增加。此外,在温度敏感的泛素化突变CHO细胞中,泛素化的抑制增加了β-连环蛋白的水平,但不会诱导TCF报告基因的转录激活。使用针对Ser37和Thr41残基处去磷酸化的β-连环蛋白的特异性抗体,我们发现Wnt信号特异性地增加了去磷酸化β-连环蛋白的水平,而ALLN则不会。我们得出结论,Wnt信号通路时β-连环蛋白N端磷酸化状态的变化独立地影响β-连环蛋白的信号特性和半衰期。因此,Wnt信号通过N端去磷酸化的β-连环蛋白进行转导。