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靶向端粒酶逆转录酶的质粒介导 RNA 干扰对肺癌细胞的影响。

Effect of plasmid-mediated RNA interference targeting telomerase reverse transcriptase on lung cancer cells.

机构信息

Department of Surgery, Xiangya Hospital, Central South University, Changsha, PR China.

出版信息

Oncol Rep. 2011 Dec;26(6):1487-95. doi: 10.3892/or.2011.1455. Epub 2011 Sep 12.

Abstract

In the present study, a plasmid-mediated siRNA interference vector targeting the hTERT gene was constructed and stably transfected into H1299 lung cancer cells. Using real-time quantitative fluorescent PCR technology, western blotting and flow cytometry-based cell cycle profiling, the silencing effect of this vector and its inhibitory effect on proliferation in lung cancer cells were explored. Based upon the results of our previous study, a pair of siRNA sequences was selected, and a DNA template primer was designed and synthesized. After cloning of the template primer into the promoter of the pGenesil-1.1 expression vector, the constructed interference vector was validated using enzyme digestion and gene sequencing. The recombinant interference vector and empty vector were separately transfected into H1299 lung cancer cells with cationic liposomes, and stable monoclonally transfected cells were obtained after selection with G418. After stable transfection, hTERT mRNA and protein expression levels were detected using real-time RT-PCR technology and western blotting. Using the MTT method and a colony formation assay, the growth and proliferation of the stably transfected lung cancer cells were determined. Changes in the cell cycle profile of the stably transfected lung cancer cells were detected using flow cytometry. An interference vector targeting the hTERT gene (pGenesil.1-hTERT) was successfully constructed. Enzyme digestion and gene sequencing confirmed that the sequence insertion met the criteria of the design. After transfection of H1299 cells with pGenesil.1-hTERT or an empty vector, the stably transfected monoclonal cell lines H1299-pGenesil.1-hTERT and H1299-pGenesil.1 were obtained. Compared to the control cells transfected with the empty vector, the H1299-pGenesil.1-hTERT cells had significantly lower mRNA expression of hTERT (93.97±0.83% inhibition, with P<0.001). The protein expression of hTERT in H1299-pGenesil.1-hTERT cells was significantly lower compared to that in H1299-pGenesil.1 cells. The rate of proliferation of H1299-pGenesil.1-hTERT cells was lower compared to that of H1299-pGenesil.1 lung cancer cells. In H1299-pGenesil.1-hTERT cells, the number of cells in the G1 phase increased by 18.3% (P<0.05) compared to the control group; the number of cells in the S and G2 phases decreased by 10.4 and 7.9%, respectively (P<0.05). A recombinant plasmid that interfered with the expression of the hTERT target gene was successfully constructed. Upon transfection of the recombinant interference plasmid into H1299 lung cancer cells, hTERT mRNA and protein expression were down-regulated effectively, telomerase activity and cell proliferation were inhibited, and the cell cycle profile was altered.

摘要

在本研究中,构建了一种靶向 hTERT 基因的质粒介导的 siRNA 干扰载体,并将其稳定转染至 H1299 肺癌细胞中。通过实时定量荧光 PCR 技术、Western blot 和基于流式细胞术的细胞周期分析,探讨了该载体的沉默效果及其对肺癌细胞增殖的抑制作用。根据我们之前的研究结果,选择了一对 siRNA 序列,并设计和合成了 DNA 模板引物。将模板引物克隆到 pGenesil-1.1 表达载体的启动子中后,通过酶切和基因测序验证了构建的干扰载体。使用阳离子脂质体将重组干扰载体和空载体分别转染至 H1299 肺癌细胞中,并通过 G418 筛选获得稳定的单克隆转染细胞。转染后,通过实时 RT-PCR 技术和 Western blot 检测 hTERT mRNA 和蛋白表达水平。通过 MTT 法和集落形成实验测定稳定转染的肺癌细胞的生长和增殖情况。通过流式细胞术检测稳定转染的肺癌细胞的细胞周期谱变化。成功构建了靶向 hTERT 基因的干扰载体(pGenesil.1-hTERT)。酶切和基因测序证实序列插入符合设计标准。将 pGenesil.1-hTERT 或空载体转染 H1299 细胞后,获得了稳定转染的单克隆细胞系 H1299-pGenesil.1-hTERT 和 H1299-pGenesil.1。与转染空载体的对照细胞相比,H1299-pGenesil.1-hTERT 细胞中 hTERT 的 mRNA 表达显著降低(93.97±0.83%抑制,P<0.001)。H1299-pGenesil.1-hTERT 细胞中 hTERT 的蛋白表达水平明显低于 H1299-pGenesil.1 细胞。H1299-pGenesil.1-hTERT 细胞的增殖率低于 H1299-pGenesil.1 肺癌细胞。在 H1299-pGenesil.1-hTERT 细胞中,G1 期细胞数量增加了 18.3%(P<0.05);S 期和 G2 期细胞数量分别减少了 10.4%和 7.9%(P<0.05)。成功构建了干扰 hTERT 靶基因表达的重组质粒。将重组干扰质粒转染至 H1299 肺癌细胞后,有效下调了 hTERT mRNA 和蛋白表达,抑制了端粒酶活性和细胞增殖,并改变了细胞周期谱。

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