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Analysis of the Signaling Activities of Localization Mutants of β-Catenin during Axis Specification in Xenopus

机译:非洲爪蟾轴心定点过程中β-catenin定位突变体的信号传导活性分析

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摘要

In Xenopus embryos, β-catenin has been shown to be both necessary and sufficient for the establishment of dorsal cell fates. This signaling activity is thought to depend on the binding of β-catenin to members of the Lef/Tcf family of transcription factors and the regulation of gene expression by this complex. To test whether β-catenin must accumulate in nuclei to establish dorsal cell fate, we constructed various localization mutants that restrict β-catenin to either the plasma membrane, the cytosol, or the nucleus. When overexpressed in Xenopus embryos, the proteins localize as predicted, but surprisingly all forms induce an ectopic axis, indicative of inducing dorsal cell fates. Given this unexpected result, we focused on the membrane-tethered form of β-catenin to resolve the apparent discrepancy between its membrane localization and the hypothesized role of nuclear β-catenin in establishing dorsal cell fate. We demonstrate that overexpression of membrane-tethered β-catenin elevates the level of free endogenous β-catenin, which subsequently accumulates in nuclei. Consistent with the hypothesis that it is this pool of non–membrane-associated β-catenin that signals in the presence of membrane-tethered β-catenin, overexpression of cadherin, which binds free β-catenin, blocks the axis-inducing activity of membrane- tethered β-catenin. The mechanism by which ectopic membrane-tethered β-catenin increases the level of endogenous β-catenin likely involves competition for the adenomatous polyposis coli (APC) protein, which in other systems has been shown to play a role in degradation of β-catenin. Consistent with this hypothesis, membrane-tethered β-catenin coimmunoprecipitates with APC and relocalizes APC to the membrane in cells. Similar results are observed with ectopic plakoglobin, casting doubt on a normal role for plakoglobin in axis specification and indicating that ectopic proteins that interact with APC can artifactually elevate the level of endogenous β-catenin, likely by interfering with its degradation. These results highlight the difficulty in interpreting the activity of an ectopic protein when it is assayed in a background containing the endogenous protein. We next investigated whether the ability of β-catenin to interact with potential protein partners in the cell may normally be regulated by phosphorylation. Compared with nonphosphorylated β-catenin, β-catenin phosphorylated by glycogen synthase kinase-3 preferentially associates with microsomal fractions expressing the cytoplasmic region of N-cadherin. These results suggest that protein–protein interactions of β-catenin can be influenced by its state of phosphorylation, in addition to prior evidence that this phosphorylation modulates the stability of β-catenin.
机译:在非洲爪蟾胚胎中,β-catenin已被证明对于建立背细胞命运既必要又充分。该信号传导活性被认为取决于β-catenin与转录因子Lef / Tcf家族成员的结合以及该复合物对基因表达的调节。为了测试β-catenin是否必须在细胞核中积累以建立背细胞命运,我们构建了各种定位突变体,将β-catenin限制在质膜,细胞质或细胞核中。当在非洲爪蟾胚胎中过表达时,这些蛋白质会像预期的那样定位,但是令人惊讶的是所有形式都诱导异位轴,表明诱导背细胞命运。鉴于这一出乎意料的结果,我们专注于β-catenin的膜束缚形式,以解决其膜定位与假定的β-catenin核在建立背细胞命运中的作用之间的明显差异。我们证明膜束缚的β-catenin的过表达提高了游离内源性β-catenin的水平,后者随后在细胞核中积累。与这一假说相一致的是,这种非膜相关的β-catenin池在存在与膜连接的β-catenin时发出信号,钙粘蛋白的过表达与游离的β-catenin结合,阻止了膜的轴诱导活性-拴系β-连环蛋白。异位膜连接的β-catenin升高内源性β-catenin水平的机制可能涉及对腺瘤性息肉病大肠杆菌(APC)蛋白的竞争,该蛋白在其他系统中已显示出对β-catenin降解的作用。与此假设相一致,膜连接的β-连环蛋白与APC共沉淀并重新定位APC到细胞膜中。异位珠蛋白可观察到相似的结果,令人怀疑珠蛋白在轴规格中的正常作用,并表明与APC相互作用的异位蛋白可能通过干扰其降解而人为地提高了内源性β-catenin的水平。这些结果突出了在含有内源蛋白质的背景中检测异位蛋白质的活性时难以解释其活性。接下来,我们研究了β-catenin与细胞中潜在蛋白伴侣相互作用的能力是否通常可以通过磷酸化来调节。与未磷酸化的β-catenin相比,被糖原合酶激酶3磷酸化的β-catenin优先与表达N-cadherin细胞质区域的微粒体级分结合。这些结果表明,除了先前的证据表明这种磷酸化调节β-catenin的稳定性外,β-catenin的蛋白质间相互作用还可能受到其磷酸化状态的影响。

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