Birkedal Henrik, Nielsen Peter E
Department of Cellular and Molecular Medicine; Faculty of Health Sciences; The Panum Institute; Copenhagen, Denmark.
Artif DNA PNA XNA. 2011 Jan;2(1):23-32. doi: 10.4161/adna.2.1.15553.
Gene correction activation effects of a small series of triplex forming peptide nucleic acid (PNA) covalently conjugated to the DNA interacting ligands psoralen, chlorambucil and camptothecin targeted proximal to a stop codon mutation in an EGFP reporter gene were studied. A 15-mer homopyrimidine PNA conjugated to the topoisomerase I inhibitor camptothecin was found to increase the frequency of repair domain mediated gene correctional events of the EGFP reporter in an in vitro HeLa cell nuclear extract assay, whereas PNA psoralen or chlorambucil conjugates both of which form covalent and also interstrand crosslinked adducts with dsDNA dramatically decreased the frequency of targeted repair/correction. The PNA conjugates were also studied in mammalian cell lines upon transfection of PNA bound EGFP reporter vector and scoring repair of the EGFP gene by FACS analysis of functional EGFP expression. Consistent with the extract experiments, treatment with adduct forming PNA conjugates (psoralen and chlorambucil) resulted in a decrease in background correction frequencies in transiently transfected cells, whereas unmodified PNA or the PNA-camptothecin conjugate had little or no effect. These results suggest that simple triplex forming PNAs have little effect on proximal gene correctional events whereas PNA conjugates capable of forming DNA adducts and interstrand crosslinks are strong inhibitors. Most interestingly the PNA conjugated to the topoisomerase inhibitor, camptothecin enhanced repair in nuclear extract. Thus the effects and use of camptothecin conjugates in gene targeted repair merit further studies.
研究了一小系列与DNA相互作用配体补骨脂素、苯丁酸氮芥和喜树碱共价缀合的三链体形成肽核酸(PNA)对EGFP报告基因中靠近终止密码子突变的基因校正激活作用。在体外HeLa细胞核提取物试验中,发现与拓扑异构酶I抑制剂喜树碱缀合的15聚体同嘧啶PNA可增加EGFP报告基因的修复结构域介导的基因校正事件的频率,而补骨脂素或苯丁酸氮芥PNA缀合物(二者均与dsDNA形成共价和链间交联加合物)则显著降低了靶向修复/校正的频率。在转染了PNA结合的EGFP报告载体的哺乳动物细胞系中也研究了PNA缀合物,并通过对功能性EGFP表达的FACS分析来评估EGFP基因的修复情况。与提取物实验一致,用形成加合物的PNA缀合物(补骨脂素和苯丁酸氮芥)处理导致瞬时转染细胞中的背景校正频率降低,而未修饰的PNA或PNA-喜树碱缀合物几乎没有影响或没有影响。这些结果表明,简单的三链体形成PNA对近端基因校正事件影响很小,而能够形成DNA加合物和链间交联的PNA缀合物是强抑制剂。最有趣的是,与拓扑异构酶抑制剂喜树碱缀合的PNA增强了核提取物中的修复。因此,喜树碱缀合物在基因靶向修复中的作用和应用值得进一步研究。