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Inhibition of human telomerase in MKN-45 cell line by antisense hTR expression vector induces cell apoptosis and growth arrest

机译:反义hTR表达载体抑制MKN-45细胞中人端粒酶诱导细胞凋亡和生长停滞

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摘要

AIM: To investigate the effects of antisense human telomerase RNA (hTR) on the biologic behavior of human gastric cancer cell line: MKN-45 by gene transfection and its potential role in the gene therapy of gastric cancer.METHODS: The hTR cDNA fragment was cloned from MKN-45 through RT-PCR and subcloned into eukaryotic expression vector (pEF6/V5-His-TOPO) in cis-direction or trans-direction by DNA recombinant methods. The constructed sense, antisense and empty vectors were transfected into MKN-45 cell lines separately by lipofectin-mediated DNA transfection technology. After drug selection, the expression of antisense hTR gene in stable transfectants and normal MKN-45 cells was detected by RT-PCR, the telomerase activity by TRAP, the apoptotic features by PI and Hoechst 33258 staining, the cell cycle distribution by flow cytometry and the population doubling time by cell counting. Comparison among the stable transfectants and normal MKN-45 cells was made.RESULTS: The sense, antisense hTR eukaryotic expression vectors and empty vector were successfully constructed and proved to be the same as original design by restriction endonuclease analysis and sequencing. Then, they were successfully transfected into MKN-45 cell lines separately with lipofectin. The expression of antisense hTR gene was only detected in MKN-45 cells stably transfected with antisense hTR vector (named as MKN-45-ahTR) but not in the control cells. In MKN-45-ahTR, the telomerase activity was inhibited by 75%, the apoptotic rate was increased to 25.3%, the percentage of cells in the G0/G1 phase was increased to 65%, the proliferation index was decreased to 35% and the population doubling time was prolonged to 35.3 h. However, the telomerase activity, the apoptotic rate, the distribution of cell cycle, the proliferation index and the population doubling time were not different among the control cells.CONCLUSION: Antisense hTR can significantly inhibit telomerase activity and proliferation of MKN-45 cells and induce cell apoptosis. Antisense gene therapy based on telomerase inhibition can be a potential therapeutic approach to the treatment of gastric cancer.
机译:目的:通过基因转染研究反义人类端粒酶RNA(hTR)对人胃癌细胞系MKN-45的生物学行为的影响及其在胃癌基因治疗中的潜在作用。通过RT-PCR从MKN-45克隆并通过DNA重组方法亚克隆到顺式或反式的真核表达载体(pEF6 / V5-His-TOPO)中。通过脂质转染介导的DNA转染技术将构建的有义,反义和空载体分别转染到MKN-45细胞系中。选择药物后,通过RT-PCR检测稳定转染子和正常MKN-45细胞中反义hTR基因的表达,通过TRAP检测端粒酶活性,通过PI和Hoechst 33258染色检测凋亡特征,通过流式细胞术检测细胞周期分布。通过细胞计数使种群倍增时间。结果:成功构建了有义,反义hTR真核表达载体和空载体,经限制性内切酶分析和测序证实与原设计相同。然后,将它们分别用lipofectin成功转染到MKN-45细胞系中。反义hTR基因的表达仅在用反义hTR载体稳定转染的MKN-45细胞(命名为MKN-45-ahTR)中检测到,而在对照细胞中未检测到。在MKN-45-ahTR中,端粒酶活性被抑制75%,凋亡率增加到25.3%,G0 / G1期的细胞百分比增加到65%,增殖指数减少到35%,并且人口倍增时间延长至35.3小时。然而,在对照细胞中端粒酶活性,凋亡率,细胞周期分布,增殖指数和群体倍增时间没有差异。结论:反义hTR可以显着抑制端粒酶活性和MKN-45细胞增殖并诱导细胞凋亡。基于端粒酶抑制的反义基因治疗可能是治疗胃癌的潜在治疗方法。

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