首页> 外文期刊>Nucleic Acids Research >Demethylation and expression of methylated plasmid DNA stably transfected into HeLa cells.
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Demethylation and expression of methylated plasmid DNA stably transfected into HeLa cells.

机译:脱甲基和稳定转染入HeLa细胞的甲基化质粒DNA的表达。

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In vitro methylation at CG dinucleotides (CpGs) in a transfecting plasmid usually greatly inhibits gene expression in mammalian cells. However, we found that in vitro methylation of all CpGs in episomal or non-episomal plasmids containing the SV40 early promoter/enhancer (SV40 Pr/E) driving expression of an antibiotic-resistance gene decreased the formation of antibiotic-resistant colonies by only approximately 30-45% upon stable transfection of HeLa cells. In contrast, when expression of the antibiotic-resistance gene was driven by the Rous sarcoma virus long terminal repeat or the herpes simplex virus thymidine kinase promoter, this methylation decreased the yield of antibiotic-resistant HeLa transfectant colonies approximately 100-fold. The low sensitivity of the SV40 Pr/E to silencing by in vitro methylation was probably due to demethylation upon stable transfection. This demethylation may be targeted to the promoter and extend into the gene. By genomic sequencing, we showed that four out of six of the transfected SV40 Pr/E's adjacent Sp1 sites were hotspots for demethylation in the HeLa transfectants. High frequency demethylation at Sp1 sites was unexpected for a non-embryonal cell line and suggests that DNA demethylation targeted to certain aberrantly methylated regions may function as a repair system for epigenetic mistakes.
机译:转染质粒中CG二核苷酸(CpGs)的体外甲基化通常会大大抑制哺乳动物细胞中的基因表达。但是,我们发现包含驱动抗生素抗性基因表达的SV40早期启动子/增强子(SV40 Pr / E)的附加型或非附加型质粒中所有CpG的体外甲基化作用仅使抗生素抗性菌落的形成减少了大约稳定转染HeLa细胞后的30-45%。相反,当由劳斯肉瘤病毒长末端重复序列或单纯疱疹病毒胸苷激酶启动子驱动抗生素抗性基因的表达时,这种甲基化作用使抗药性HeLa转染菌落的产量降低了约100倍。 SV40 Pr / E对体外甲基化沉默的敏感性较低,可能是由于稳定转染后的脱甲基作用所致。该去甲基化可以靶向启动子并延伸到基因中。通过基因组测序,我们发现在转染的SV40 Pr / E的相邻Sp1位点中,六分之四是HeLa转染子中去甲基化的热点。对于非胚胎细胞系,Sp1位点的高频率去甲基化是出乎意料的,这表明靶向某些异常甲基化区域的DNA脱甲基化可能充当表观遗传错误的修复系统。

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