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The knocking down of the oncoprotein Golgi phosphoprotein 3 in T98G cells of glioblastoma multiforme disrupts cell migration by affecting focal adhesion dynamics in a focal adhesion kinase-dependent manner

机译:多形性胶质母细胞瘤T98G细胞中癌蛋白高尔基磷蛋白3的敲低通过以粘着斑激酶依赖性方式影响粘着斑动力学来破坏细胞迁移

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摘要

Golgi phosphoprotein 3 (GOLPH3) is a conserved protein of the Golgi apparatus that in humans has been implicated in tumorigenesis. However, the precise function of GOLPH3 in malignant transformation is still unknown. Nevertheless, clinicopathological data shows that in more than a dozen kinds of cancer, including gliomas, GOLPH3 could be found overexpressed, which correlates with poor prognosis. Experimental data shows that overexpression of GOLPH3 leads to transformation of primary cells and to tumor growth enhancement. Conversely, the knocking down of GOLPH3 in GOLPH3-overexpressing tumor cells reduces tumorigenic features, such as cell proliferation and cell migration and invasion. The cumulative evidence indicate that GOLPH3 is an oncoprotein that promotes tumorigenicity by a mechanism that impact at different levels in different types of cells, including the sorting of Golgi glycosyltransferases, signaling pathways, and the actin cytoskeleton. How GOLPH3 connects mechanistically these processes has not been determined yet. Further studies are important to have a more complete understanding of the role of GOLPH3 as oncoprotein. Given the genetic diversity in cancer, a still outstanding aspect is how in this inherent heterogeneity GOLPH3 could possibly exert its oncogenic function. We have aimed to evaluate the contribution of GOLPH3 overexpression in the malignant phenotype of different types of tumor cells. Here, we analyzed the effect on cell migration that resulted from stable, RNAi-mediated knocking down of GOLPH3 in T98G cells of glioblastoma multiforme, a human glioma cell line with unique features. We found that the reduction of GOLPH3 levels produced dramatic changes in cell morphology, involving rearrangements of the actin cytoskeleton and reduction in the number and dynamics of focal adhesions. These effects correlated with decreased cell migration and invasion due to affected persistence and directionality of cell motility. Moreover, the knocking down of GOLPH3 also caused a reduction in autoactivation of focal adhesion kinase (FAK), a cytoplasmic tyrosine kinase that regulates focal adhesions. Our data support a model in which GOLPH3 in T98G cells promotes cell migration by stimulating the activity of FAK.
机译:高尔基体磷蛋白3(GOLPH3)是高尔基体的保守蛋白,在人体中已与肿瘤发生有关。但是,GOLPH3在恶性转化中的确切功能仍然未知。尽管如此,临床病理数据表明,在包括胶质瘤在内的十几种癌症中,可能发现GOLPH3过表达,这与预后不良有关。实验数据表明,GOLPH3的过表达导致原代细胞转化并促进肿瘤生长。相反,在过表达GOLPH3的肿瘤细胞中敲低GOLPH3可降低致瘤性,例如细胞增殖以及细胞迁移和侵袭。累积的证据表明,GOLPH3是一种癌蛋白,其通过在不同类型的细胞中影响不同水平的机制(包括高尔基糖基转移酶的分类,信号传导途径和肌动蛋白细胞骨架)来促进致瘤性。尚未确定GOLPH3如何通过机械方式连接这些过程。进一步研究对于更全面地了解GOLPH3作为癌蛋白的作用很重要。考虑到癌症的遗传多样性,GOLPH3在这种固有的异质性中可能如何发挥其致癌作用仍然是一个突出的方面。我们旨在评估GOLPH3过表达在不同类型肿瘤细胞恶性表型中的贡献。在这里,我们分析了胶质母细胞瘤(具有独特功能的人胶质瘤细胞系)的T98G细胞中RNAi介导的GOLPH3的稳定,RNAi介导的敲低对细胞迁移的影响。我们发现降低GOLPH3的水平会导致细胞形态发生巨大变化,包括肌动蛋白细胞骨架的重排以及粘着斑数目和动力学的减少。这些影响与细胞迁移和侵袭的减少有关,归因于细胞运动的持久性和方向性的影响。此外,敲低GOLPH3还导致粘着斑激酶(FAK)(调节粘着斑的胞浆酪氨酸激酶)的自激活降低。我们的数据支持一种模型,其中T98G细胞中的GOLPH3通过刺激FAK的活性来促进细胞迁移。

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