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首页> 外文期刊>Oncogene >Plakoglobin interacts with and increases the protein levels of metastasis suppressor Nm23-H2 and regulates the expression of Nm23-H1
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Plakoglobin interacts with and increases the protein levels of metastasis suppressor Nm23-H2 and regulates the expression of Nm23-H1

机译:血浆珠蛋白与转移抑制因子Nm23-H2相互作用并增加其蛋白水平并调节Nm23-H1的表达

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摘要

Plakoglobin (γ-catenin) is a homolog of β-catenin with similar dual adhesive and signaling functions. The adhesive function of these proteins is mediated by their interactions with cadherins, whereas their signaling activity is regulated by association with various intracellular partners. In this respect, β-catenin has a well-defined oncogenic activity through its role in the Wnt signaling pathway, whereas plakoglobin acts as a tumor/metastasis suppressor through mechanisms that remain unclear. We previously expressed plakoglobin in SCC9 squamous carcinoma cells (SCC9-P) and observed a mesenchymal-to-epidermoid transition. Comparison of the protein and RNA profiles of parental SCC9 cells and SCC9-P transfectants identified various differentially expressed proteins and transcripts, including the nonmetastatic protein 23 (Nm23). In this study, we show that Nm23-H1 mRNA and Nm23-H2 protein are increased after plakoglobin expression. Coimmunoprecipitation and confocal microscopy studies using SCC9-P and various epithelial cell lines with endogenous plakoglobin expression revealed that Nm23 interacts with plakoglobin, cadherins and α-catenin. Furthermore, Nm23-H2 is the primary isoform involved in these interactions, which occur prominently in the cytoskeleton-associated pool of cellular proteins. In addition, we show that plakoglobin–Nm23 interaction requires the N-terminal (α-catenin interacting) domain of plakoglobin. Our data suggest that by increasing the expression and stability of Nm23, plakoglobin has a role in regulating the metastasis suppressor activity of Nm23, which may further provide a potential mechanism for the tumor/metastasis suppressor function of plakoglobin itself.
机译:Plagloglobin(γ-catenin)是β-catenin的同系物,具有相似的双重粘附和信号传导功能。这些蛋白质的粘附功能是由它们与钙黏着蛋白的相互作用介导的,而它们的信号传导活性则通过与各种细胞内伴侣的结合来调节。在这方面,β-catenin通过其在Wnt信号通路中的作用而具有明确的致癌活性,而Plagaglobin通过尚不清楚的机制充当肿瘤/转移抑制因子。我们以前在SCC9鳞状细胞癌细胞(SCC9-P)中表达了珠蛋白,并观察到间充质到表皮的过渡。亲本SCC9细胞和SCC9-P转染子的蛋白质和RNA谱的比较确定了各种差异表达的蛋白质和转录本,包括非转移性蛋白质23(Nm23)。在这项研究中,我们显示了Plamglobin表达后,Nm23-H1 mRNA和Nm23-H2蛋白增加。使用SCC9-P和具有内源性珠蛋白表达的各种上皮细胞系进行的共免疫沉淀和共聚焦显微镜研究表明,Nm23与珠蛋白,钙粘蛋白和α-连环蛋白相互作用。此外,Nm23-H2是参与这些相互作用的主要同工型,主要发生在细胞骨架相关的细胞蛋白池中。此外,我们证明了珠蛋白与Nm23的相互作用需要珠蛋白的N末端(α-连环蛋白相互作用)域。我们的数据表明,通过增加Nm23的表达和稳定性,斑白蛋白可调节Nm23的转移抑制活性,这可能进一步为斑白蛋白本身的肿瘤/转移抑制功能提供潜在的机制。

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