首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Functional Analysis of Dishevelled-3 Phosphorylation Identifies Distinct Mechanisms Driven by Casein Kinase 1ϵ and Frizzled5
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Functional Analysis of Dishevelled-3 Phosphorylation Identifies Distinct Mechanisms Driven by Casein Kinase 1ϵ and Frizzled5

机译:Dishevelled-3磷酸化的功能分析确定酪蛋白激酶1ϵ和Frizzled5驱动的不同机制。

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摘要

Dishevelled-3 (Dvl3), a key component of the Wnt signaling pathways, acts downstream of Frizzled (Fzd) receptors and gets heavily phosphorylated in response to pathway activation by Wnt ligands. Casein kinase 1ϵ (CK1ϵ) was identified as the major kinase responsible for Wnt-induced Dvl3 phosphorylation. Currently it is not clear which Dvl residues are phosphorylated and what is the consequence of individual phosphorylation events. In the present study we employed mass spectrometry to analyze in a comprehensive way the phosphorylation of human Dvl3 induced by CK1ϵ. Our analysis revealed >50 phosphorylation sites on Dvl3; only a minority of these sites was found dynamically induced after co-expression of CK1ϵ, and surprisingly, phosphorylation of one cluster of modified residues was down-regulated. Dynamically phosphorylated sites were analyzed functionally. Mutations within PDZ domain (S280A and S311A) reduced the ability of Dvl3 to activate TCF/LEF (T-cell factor/lymphoid enhancer factor)-driven transcription and induce secondary axis in Xenopus embryos. In contrast, mutations of clustered Ser/Thr in the Dvl3 C terminus prevented ability of CK1ϵ to induce electrophoretic mobility shift of Dvl3 and its even subcellular localization. Surprisingly, mobility shift and subcellular localization changes induced by Fzd5, a Wnt receptor, were in all these mutants indistinguishable from wild type Dvl3. In summary, our data on the molecular level (i) support previous the assumption that CK1ϵ acts via phosphorylation of distinct residues as the activator as well as the shut-off signal of Wnt/β-catenin signaling and (ii) suggest that CK1ϵ acts on Dvl via different mechanism than Fzd5.
机译:Dishevelled-3(Dvl3)是Wnt信号通路的关键组成部分,在卷曲蛋白(Fzd)受体的下游起作用,并响应Wnt配体的通路激活而被严重磷酸化。酪蛋白激酶1′(CK1′)被确定为负责Wnt诱导的Dvl3磷酸化的主要激酶。目前尚不清楚哪些Dvl残基被磷酸化以及各个磷酸化事件的结果是什么。在本研究中,我们采用质谱分析法全面分析了CK1ϵ诱导的人Dvl3的磷酸化。我们的分析显示Dvl3上有> 50个磷酸化位点;共表达CK1ϵ后,仅动态发现了这些位点中的少数位点,并且令人惊讶地,修饰簇残基的一簇的磷酸化被下调。功能上分析了动态磷酸化位点。 PDZ域内的突变(S280A和S311A)降低了Dvl3激活非洲爪蟾胚胎中TCF / LEF(T细胞因子/淋巴增强因子)驱动的转录并诱导次级轴的能力。相反,Dvl3 C末端簇状Ser / Thr的突变阻止了CK1ϵ诱导Dvl3电泳迁移率移位及其均匀亚细胞定位的能力。出乎意料的是,在所有这些突变体中,由Wnt受体Fzd5诱导的迁移率变化和亚细胞定位变化与野生型Dvl3都没有区别。总而言之,我们在分子水平上的数据(i)支持先前的假设,即CK1ϵ通过不同残基的磷酸化作为激活剂以及Wnt /β-catenin信号的关闭信号起作用,并且(ii)提示CK1ϵ通过通过与Fzd5不同的机制在Dvl上播放。

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