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Network analysis and proteomic identification of vimentin as a key regulator associated with invasion and metastasis in human hepatocellular carcinoma cells

机译:网络分析和蛋白质组学鉴定波形蛋白是与人肝癌细胞侵袭和转移相关的关键调控因子

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摘要

Poor prognoses have long been associated with the high relapse and metastasis of human hepatocellular carcinoma (HCC). To achieve long-term survival, it is necessary to identify new HCC biomarkers and investigate their roles in cell mobility and invasiveness. Of note, overexpression of vimentin (Vim) was significantly correlated with tumor nuclear grade (p= 0.01) and the invasive potential, indicating that Vim may be a promising candidate in regulating HCC metastasis. RNA interference-mediated silencing of Vim (siVim) suppressed the invasive and migratory propensity, and matrix metalloproteinase (MMP)-9 activity, and elicited morphological changes in poorly differentiated SK-Hep-1 cells. Moreover, we performed a comprehensive proteomic analysis to survey global protein changes mediated by siVim in SK-Hep-1 cells. Significant changes in cytoskeleton protein but not messenger RNA levels encoding these targeted proteins were observed. All of the data in the current study and a network analysis implied that abolition of Vim may disturb the expression and stability of various cytoskeletal proteins through promoting the ubiquitin system, resulting in impaired cell adhesion and motility. Collectively, an integrated approach represents a modality to explore novel relationships in a proteome complex and highlights the functional roles of Vim in HCC metastasis. This article is part of a Special Issue entitled: Translational Proteomics.
机译:预后很差一直与人类肝细胞癌(HCC)的高复发和转移有关。为了实现长期生存,有必要鉴定新的HCC生物标志物并研究它们在细胞迁移和侵袭性中的作用。值得注意的是,波形蛋白(Vim)的过表达与肿瘤核分级(p = 0.01)和侵袭能力显着相关,表明Vim可能是调节HCC转移的有希望的候选者。 RNA干扰介导的Vim沉默(siVim)抑制了侵袭和迁移倾向以及基质金属蛋白酶(MMP)-9活性,并在分化差的SK-Hep-1细胞中引起了形态变化。此外,我们进行了全面的蛋白质组分析,以调查siVim介导的SK-Hep-1细胞中的全球蛋白质变化。观察到细胞骨架蛋白发生了显着变化,但编码这些靶向蛋白的信使RNA水平未见变化。当前研究和网络分析中的所有数据均表明,废除Vim可能会通过促进遍在蛋白系统干扰多种细胞骨架蛋白的表达和稳定性,从而导致细胞粘附和运动能力受损。总的来说,一种综合的方法代表了一种探索蛋白质组复合体中新关系的方式,并突出了Vim在HCC转移中的功能作用。本文是《问题蛋白质组学》特刊的一部分。

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