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首页> 外文期刊>PLoS One >Protein Kinase C Delta Negatively Modulates Canonical Wnt Pathway and Cell Proliferation in Colon Tumor Cell Lines
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Protein Kinase C Delta Negatively Modulates Canonical Wnt Pathway and Cell Proliferation in Colon Tumor Cell Lines

机译:蛋白激酶C三角洲负面地调节规范性Wnt途径和结肠癌细胞系中的细胞增殖。

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The tumor suppressor Adenomatous Polyposis coli (APC) gene is mutated or lost in most colon cancers. Alterations in Protein kinase C (PKC) isozyme expression and aberrant regulation also comprise early events in intestinal carcinomas. Here we show that PKCδ expression levels are decreased in colon tumor cell lines with respect to non-malignant cells. Reciprocal co-immunoprecipitation and immunofluorescence studies revealed that PKCδ interacts specifically with both full-length (from non-malignant cells) and truncated APC protein (from cancerous cells) at the cytoplasm and at the cell nucleus. Selective inhibition of PKCδ in cancer SW480 cells, which do not possess a functional β-catenin destruction complex, did not affect β-catenin-mediated transcriptional activity. However, in human colon carcinoma RKO cells, which have a normal β-catenin destruction complex, negatively affected β-catenin-mediated transcriptional activity, cell proliferation, and the expression of Wnt target genes C-MYC and CYCLIN D1. These negative effects were confirmed by siRNA-mediated knockdown of PKCδ and by the expression of a dominant negative form of PKCδ in RKO cells. Remarkably, the PKCδ stably depleted cells exhibited augmented tumorigenic activity in grafted mice. We show that PKCδ functions in a mechanism that involves regulation of β-catenin degradation, because PKCδ inhibition induces β-catenin stabilization at the cytoplasm and its nuclear presence at the C-MYC enhancer even without Wnt3a stimulation. In addition, expression of a dominant form of PKCδ diminished APC phosphorylation in intact cells, suggesting that PKCδ may modulate canonical Wnt activation negatively through APC phosphorylation.
机译:在大多数结肠癌中,抑癌性大肠息肉病(APC)基因突变或丢失。蛋白激酶C(PKC)同工酶表达和异常调节的改变还包括肠癌的早期事件。在这里,我们表明相对于非恶性细胞,PKCδ表达水平在结肠肿瘤细胞系中降低。相互免疫沉淀和免疫荧光研究表明,PKCδ与全长(来自非恶性细胞)和截短的APC蛋白(来自癌细胞)在细胞质和细胞核上特异性相互作用。不具有功能性β-catenin破坏复合物的癌症SW480细胞中PKCδ的选择性抑制不影响β-catenin介导的转录活性。然而,在具有正常β-catenin破坏复合物的人结肠癌RKO细胞中,对β-catenin介导的转录活性,细胞增殖以及Wnt靶基因C-MYC和CYCLIN D1的表达产生负面影响。 siRNA介导的PKCδ敲低和RKO细胞中PKCδ显性阴性表达的表达证实了这些负面影响。值得注意的是,PKCδ稳定耗尽的细胞在移植小鼠中表现出增强的致瘤活性。我们显示,PKCδ在涉及调节β-catenin降解的机制中起作用,因为即使没有Wnt3a刺激,PKCδ抑制作用也会在细胞质及其C-MYC增强子中诱导β-catenin稳定。此外,PKCδ显性形式的表达减少了完整细胞中的APC磷酸化,这表明PKCδ可能通过APC磷酸化来负调控经典Wnt激活。

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