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Study designs to investigate Nox1 acceleration of neoplastic progression in immortalized human epithelial cells by selection of differentiation resistant cells

机译:通过选择抗分化细胞来研究永生化人上皮细胞中Nox1促进肿瘤发展的Nox1加速

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摘要

To investigate the role of NADPH oxidase homolog Nox1 at an early step of cell transformation, we utilized human gingival mucosal keratinocytes immortalized by E6/E7 of human papillomavirus (HPV) type 16 (GM16) to generate progenitor cell lines either by chronic ethanol exposure or overexpression with Nox1. Among several cobblestone epithelial cell lines obtained, two distinctive spindle cell lines – FIB and NuB1 cells were more progressively transformed exhibiting tubulogenesis and anchorage-independent growth associated with increased invasiveness. These spindle cells acquired molecular markers of epithelial mesenchymal transition (EMT) including mesenchymal vimentin and simple cytokeratins (CK) 8 and 18 as well as myogenic alpha-smooth muscle actin and caldesmon. By overexpression and knockdown experiments, we showed that Nox1 on a post-translational level regulated the stability of CK18 in an ROS-, phosphorylation- and PKCepilon-dependent manner. PKCepilon may thus be used as a therapeutic target for EMT inhibition. Taken together, Nox1 accelerates neoplastic progression by regulating structural intermediate filaments leading to EMT of immortalized human gingival epithelial cells.
机译:为了研究NADPH氧化酶同源物Nox1在细胞转化的早期过程中的作用,我们利用人乳头瘤病毒(HPV)16型(GM16)E6 / E7永生化的人牙龈粘膜角质形成细胞,通过长期乙醇暴露或Nox1过度表达。在获得的几种鹅卵石上皮细胞系中,两种独特的纺锤体细胞系– FIB和NuB1细胞被逐步转化,表现出与增生性相关的肾小管生成和锚定非依赖性生长。这些纺锤体细胞获得了上皮间质转化(EMT)的分子标记,包括间质波形蛋白和简单细胞角蛋白(CK)8和18,以及成肌的α平滑肌肌动蛋白和caldesmon。通过过表达和敲低实验,我们发现Nox1在翻译后水平上以ROS,磷酸化和PKCepilon依赖性方式调节CK18的稳定性。因此,PKCepilon可用作EMT抑制的治疗靶标。综上所述,Nox1通过调节结构性中间丝加快永生性肿瘤的发展,从而导致永生化的人类牙龈上皮细胞的EMT。

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