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首页> 外文期刊>Journal of neuro-oncology. >A novel antisense oligonucleotide anchored on the intronic splicing enhancer of hTERT pre-mRNA inhibits telomerase activity and induces apoptosis in glioma cells
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A novel antisense oligonucleotide anchored on the intronic splicing enhancer of hTERT pre-mRNA inhibits telomerase activity and induces apoptosis in glioma cells

机译:锚定的新型反义寡核苷酸在HTERT前足mRNA的内肠剪接增强剂上抑制端粒酶活性,并在胶质瘤细胞中诱导细胞凋亡

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Introduction Alternative splicing of hTERT pre-mRNA is an important step in the regulation of telomerase activity, but the regulation mechanisms and functions remain unclear. Methods RT-PCR analysis was used to detect hTERT splicing in glioma cell lines and brain tissues. TRAP assay was used to detect the telomerase activity. Then, we designed and synthesized 2'-O-methyl-RNA phosphorothioate AONs and trans-fected them into glioma cells to detect the changes in telomerase activity. MTT assay, plate colony formation assay, western blotting and Annexin V/PI assay were used to detect cell proliferation and apoptosis. At last, bioinformatics analyses were used to predict the expression and function of splicing protein SRSF2 in gliomas. Results hTERT splicing occurs both in glioma cell lines and glioma patients' tissues. The telomerase activity was related to the expression level of the full-length hTERT, rather than the total hTERT transcript level. AON-Ex726 was complementary to the sequence of the intronic splicing enhancer (ISE) in intron six, and significantly altered the splicing pattern of hTERT pre-mRNA, reducing the expression level of the full-length hTERT mRNA and increasing the expression level of the -p hTERT mRNA. After transfection with AON-Ex726, the level of apoptosis was increased, while telomerase activity and cell proliferation were significantly decreased. By bioinformatic predictions, we found the AON-Ex726 anchoring sequence in ISE overlaps the binding site of SRSF2 protein, which is up-regulated during the development of gliomas. Conclusions Our findings provided new targets and important clues for the gene therapy of gliomas by regulating the alternative splicing pattern of hTERT pre-mRNA.
机译:引言HTERT前mRNA的替代剪接是调控端粒酶活性的重要步骤,但调节机制和功能仍然不清楚。方法使用RT-PCR分析检测胶质瘤细胞系和脑组织中的HTERT拼接。捕获测定用于检测端粒酶活性。然后,我们设计和合成了2'-O-甲基-RNA硫代磷腈AONs并将其转移到胶质瘤细胞中以检测端粒酶活性的变化。 MTT测定,板污染物形成测定,蛋白质印迹和膜蛋白V / PI测定用于检测细胞增殖和凋亡。最后,使用生物信息学分析来预测剪接蛋白SRSF2在胶质瘤中的表达和功能。结果HTERT剪接在胶质瘤细胞系和胶质瘤患者组织中发生。端粒酶活性与全长HTERT的表达水平有关,而不是总HTERT转录物水平有关。 AON-ex726与内含子六的内含子剪接增强剂(ISE)的序列互补,并且显着改变了HTERT前mRNA的剪接模式,降低了全长HTERT mRNA的表达水平并增加了表达水平-P hTERT mRNA。用AON-ex726转染后,增加细胞凋亡水平,而端粒活性和细胞增殖显着降低。通过生物信息化预测,我们发现ISE中的AON-EX726锚定序列与SRSF2蛋白的结合位点重叠,这在胶质瘤的发育过程中是上调的。结论我们的发现通过调节HTERT前mRNA的替代剪接模式提供了新的目标和重要线索,用于胶质瘤的基因治疗。

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