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Axin-mediated CKI phosphorylation of β-catenin at Ser 45: a molecular switch for the Wnt pathway

机译:β-catenin在45位毒素上介导的CKI磷酸化:Wnt途径的分子开关

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摘要

The Wnt pathway controls numerous developmental processes via the β-catenin–TCF/LEF transcription complex. Deregulation of the pathway results in the aberrant accumulation of β-catenin in the nucleus, often leading to cancer. Normally, cytoplasmic β-catenin associates with APC and axin and is continuously phosphorylated by GSK-3β, marking it for proteasomal degradation. Wnt signaling is considered to prevent GSK-3β from phosphorylating β-catenin, thus causing its stabilization. However, the Wnt mechanism of action has not been resolved. Here we study the regulation of β-catenin phosphorylation and degradation by the Wnt pathway. Using mass spectrometry and phosphopeptide-specific antibodies, we show that a complex of axin and casein kinase I (CKI) induces β-catenin phosphorylation at a single site: serine 45 (S45). Immunopurified axin and recombinant CKI phosphorylate β-catenin in vitro at S45; CKI inhibition suppresses this phosphorylation in vivo. CKI phosphorylation creates a priming site for GSK-3β and is both necessary and sufficient to initiate the β-catenin phosphorylation–degradation cascade. Wnt3A signaling and Dvl overexpression suppress S45 phosphorylation, thereby precluding the initiation of the cascade. Thus, a single, CKI-dependent phosphorylation event serves as a molecular switch for the Wnt pathway.
机译:Wnt途径通过β-catenin–TCF / LEF转录复合物控制众多发育过程。该途径的失调导致β-连环蛋白在细胞核中异常积累,通常导致癌症。通常,细胞质β-catenin与APC和毒素结合,并被GSK-3β连续磷酸化,标志其为蛋白酶体降解。 Wnt信号传导被认为防止GSK-3β磷酸化β-连环蛋白,从而使其稳定。但是,Wnt的作用机制尚未解决。在这里,我们研究了Wnt途径对β-catenin磷酸化和降解的调控。使用质谱和磷酸肽特异性抗体,我们显示了一种毒素和酪蛋白激酶I(CKI)的复合物在单个位点上诱导β-catenin磷酸化:丝氨酸45(S45)。在S45体外免疫纯化的毒素和重组CKI磷酸化β-catenin; CKI抑制在体内抑制这种磷酸化。 CKI磷酸化为GSK-3β产生了一个启动位点,对于启动β-catenin磷酸化-降解级联反应既必要又充分。 Wnt3A信号传导和Dv1过表达抑制S45磷酸化,从而阻止级联反应的启动。因此,单个依赖CKI的磷酸化事件充当Wnt途径的分子开关。

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