首页> 美国卫生研究院文献>International Journal of Medical Sciences >Lentivirus-based RNA Silencing of Nemo-like Kinase (NLK) Inhibits the CAL 27 Human Adenosquamos Carcinoma Cells Proliferation and Blocks G0/G1 Phase to S Phase
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Lentivirus-based RNA Silencing of Nemo-like Kinase (NLK) Inhibits the CAL 27 Human Adenosquamos Carcinoma Cells Proliferation and Blocks G0/G1 Phase to S Phase

机译:Nemo样激酶(NLK)的基于慢病毒的RNA沉默抑制CAL 27人类腺鳞癌细胞的增殖并阻止G0 / G1期到S期

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摘要

>Background: The Nemo-like kinase (NLK) is a serine/threonine-protein kinase that involved in a number of signaling pathways regulating cell fate. Variation of NLK has been shown to be associated with the risk of cancer. However, the function of NLK in oral adenosquamous carcinoma cells line CAL-27 is unknown.>Methods: In this study, we evaluated the function of NLK in CAL-27 cells by using lentivirus-mediated RNA silence. The targeted gene expression, cell proliferation and cell cycle are investigated by RT-PCR, western-blot, MTT method, colony forming assay and flow cytometry analysis respectively.>Results: After NLK silencing, the number of colonies was significantly reduced (54±5 colonies/well compared with 262±18 colonies/well in non-infected or 226±4 colonies/well in negative control group (sequence not related to NLK sequence with mismatched bases). Using crystal violet staining, we also found that the cell number per colony was dramatically reduced. The RNA silencing of NLK blocks the G0/G1 phase to S phase progression during the cell cycle.>Conclusions: These results suggest that NLK silencing by lentivirus-mediated RNA interference would be a potential therapeutic method to control oral squamous carcinoma growth.
机译:>背景: Nemo样激酶(NLK)是一种丝氨酸/苏氨酸蛋白激酶,参与调节细胞命运的多种信号通路。 NLK的变异已被证明与癌症风险有关。但是,NLK在口腔鳞状细胞癌细胞系CAL-27中的功能尚不清楚。>方法:在这项研究中,我们通过慢病毒介导的RNA沉默评估了NLK在CAL-27细胞中的功能。通过RT-PCR,Western-blot,MTT法,集落形成分析和流式细胞术分析研究了靶向基因表达,细胞增殖和细胞周期。>结果::NLK沉默后,克隆数显着降低(54±5个菌落/孔,阴性对照组为262±18个菌落/孔,阴性对照组为226±4个菌落/孔(碱基与不匹配碱基的NLK序列无关)。我们还发现每个菌落的细胞数大大减少,NLK的RNA沉默在细胞周期中阻止了G0 / G1期向S期的发展。>结论:这些结果表明慢病毒使NLK沉默。介导的RNA干扰将是控制口腔鳞状细胞癌生长的潜在治疗方法。

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