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首页> 外文期刊>Journal of molecular signaling >Abundance, complexation, and trafficking of Wnt/β-catenin signaling elements in response to Wnt3a
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Abundance, complexation, and trafficking of Wnt/β-catenin signaling elements in response to Wnt3a

机译:Wnt /β-catenin信号元件响应Wnt3a的丰度,复合和运输

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BackgroundWnt3a regulates a canonical signaling pathway in early development that controls the nuclear accumulation of β-catenin and its activation of Lef/Tcf-sensitive transcription of developmentally important genes.ResultsUsing totipotent mouse F9 teratocarcinoma cells expressing Frizzled-1 and biochemical analyses, we detail the influence of Wnt3a stimulation on the expression, complexation, and subcellular trafficking of key signaling elements of the canonical pathway, i.e., Dishevelled-2, Axin, glycogen synthase kinase-3β, and β-catenin. Cellular content of β-catenin and Axin, and phospho-glycogen synthase kinase-3β, but not Dishevelled-2, increases in response to Wnt3a. Subcellular localization of Axin in the absence of Wnt3a is symmetric, found evenly distributed among plasma membrane-, cytosol-, and nuclear-enriched fractions. Dishevelled-2, in contrast, is found predominately in the cytosol, whereas β-catenin is localized to the plasma membrane-enriched fraction. Wnt3a stimulates trafficking of Dishevelled-2, Axin, and glycogen synthase kinase-3β initially to the plasma membrane, later to the nucleus. Bioluminescence resonance energy transfer measurements reveal that complexes of Axin with Dishevelled-2, with glycogen synthase kinase-3β, and with β-catenin are demonstrable and they remain relatively stable in response to Wnt3a stimulation, although trafficking has occurred. Mammalian Dishevelled-1 and Dishevelled-2 display similar patterns of trafficking in response to Wnt3a, whereas that of Dishevelled-3 differs from the other two.ConclusionThis study provides a detailed biochemical analysis of signaling elements key to Wnt3a regulation of the canonical pathway. We quantify, for the first time, the Wnt-dependent regulation of cellular abundance and intracellular trafficking of these signaling molecules. In contrast, we observe little effect of Wnt3a stimulation on the level of protein-protein interactions among these constituents of Axin-based complexes themselves.
机译:背景Wnt3a调控早期发育中的典型信号通路,该通路控制β-catenin的核积累及其对重要基因的Lef / Tcf敏感转录的激活。 Wnt3a刺激对规范途径的关键信号传导元件,例如Dishevelled-2,Axin,糖原合酶激酶-3β和β-catenin的表达,复合和亚细胞运输的影响。响应Wnt3a,β-catenin和Axin和磷酸糖原合酶激酶3β(而非Dishevelled-2)的细胞含量增加。在Wnt3a不存在的情况下,Axin的亚细胞定位是对称的,发现在质膜​​,细胞质和核富集组分之间均匀分布。相反,Dishevelled-2主要存在于细胞质中,而β-catenin位于质膜富集部分。 Wnt3a刺激Dishevelled-2,Axin和糖原合酶激酶3β最初先运输到质膜,然后再运输到细胞核。生物发光共振能量转移测量表明,尽管已经发生了贩运,但Axin与Dishevelled-2,糖原合酶激酶-3β和β-catenin的复合物是可证实的,并且它们在响应Wnt3a刺激时仍保持相对稳定。哺乳动物Dishevelled-1和Dishevelled-2在响应Wnt3a时表现出相似的运输模式,而Dishevelled-3则与其他两个不同。结论本研究对Wnt3a调控经典途径的关键信号分子进行了详细的生化分析。我们首次量化了这些信号分子的细胞丰度和细胞内运输的Wnt依赖调节。相反,我们观察到Wnt3a刺激对基于Axin的复合物本身的这些成分之间的蛋白质相互作用的影响很小。

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