首页> 外文期刊>Japanese Journal of Cancer Research >VCP (p97) Regulates NFkappaB Signaling Pathway, Which Is Important for Metastasis of Osteosarcoma Cell Line.
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VCP (p97) Regulates NFkappaB Signaling Pathway, Which Is Important for Metastasis of Osteosarcoma Cell Line.

机译:VCP(p97)调节NFkappaB信号通路,这对于骨肉瘤细胞系的转移很重要。

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In order to identify genes associated with metastasis, suppression subtractive hybridization (SSH) was performed using murine osteosarcoma cell line Dunn and its subline with higher metastatic potential, LM8. SSH revealed expression of the gene encoding valosin-containing protein (VCP; also known as p97) to be constitutively activated in LM8 cells, but it declined in Dunn cells when the cells became confluent. Because VCP is known to be involved in the ubiquitination process of Inhibitor-kappaBalpha (IkappaBalpha), an inhibitor of nuclear factor-kappaB (NFkappaB), whether VCP influences NFkappaB activation or not was examined by using VCP-transfected Dunn cells (Dunn / VCPs). When stimulated with tumor necrosis factor-alpha (TNFalpha), Dunn / VCPs showed constantly activated NFkappaB, although in the original Dunn cells and control vector transfectant (Dunn / Dunn-c) NFkappaB activation ceased when the cells became confluent. Western immunoblot analysis showed an increase of phosphorylated IkappaBalpha (p-IkappaBalpha) in the cytoplasm of confluent Dunn / Dunn-c cells compared to that of Dunn / VCPs. Therefore, decrease of p-IkappaBalpha degrading activity might be responsible for the decrease in NFkappaB activation. In vitro apoptosis assay demonstrated increased apoptosis rates of Dunn / Dunn-c cells after TNFalpha stimulation compared to those of Dunn / VCPs and LM8 cells. In vivo metastasis assay showed increased incidences of metastatic events in Dunn / VCP-1 inoculated male C3H mice compared to those in Dunn / Dunn-c inoculated mice. These findings suggested that VCP expression plays an important role in the metastatic process. Anti-apoptotic potential in these cells owing to constant NFkappaB activation via efficient cytoplasmic p-IkappaBalpha degrading activity may explain the increased metastatic potential of these cells.
机译:为了鉴定与转移相关的基因,使用鼠骨肉瘤细胞株Dunn及其转移潜能较高的亚系LM8进行抑制消减杂交(SSH)。 SSH揭示了编码含valosin的蛋白质(VCP;也称为p97)的基因的表达在LM8细胞中被组成性激活,但在邓恩细胞中融合后,其表达下降。由于已知VCP参与了抑制剂-κB(IkappaBalpha)(一种核因子-κB抑制剂(NFkappaB)的泛素化过程,因此使用VCP转染的Dunn细胞(Dunn / VCPs)检查了VCP是否影响NFkappaB的活化。 )。当受到肿瘤坏死因子-α(TNFalpha)刺激时,Dunn / VCPs不断激活NFkappaB,尽管在原始Dunn细胞和对照载体转染子(Dunn / Dunn-c)中,当细胞融合后,NFkappaB的激活就停止了。 Western免疫印迹分析显示,与Dunn / VCP相比,融合的Dunn / Dunn-c细胞的细胞质中磷酸化的IkappaBalpha(p-IkappaBalpha)增加。因此,p-IkappaBalpha降解活性的降低可能是NFkappaB激活降低的原因。体外凋亡试验表明,与Dunn / VCPs和LM8细胞相比,TNFα刺激后Dunn / Dunn-c细胞的凋亡率增加。体内转移试验显示,与Dunn / Dunn-c接种的小鼠相比,在Dunn / VCP-1接种的雄性C3H小鼠中转移事件的发生率增加。这些发现表明,VCP表达在转移过程中起重要作用。由于通过有效的胞质p-IkappaBalpha降解活性而不断地激活NFkappaB,这些细胞中的抗凋亡潜力可能解释了这些细胞的转移潜力增加。

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