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Site-directed gene mutation at mixed sequence targets by psoralen-conjugated pseudo-complementary peptide nucleic acids

机译:补骨脂素偶联的伪互补肽核酸在混合序列靶点上的定点基因突变

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Sequence-specific DNA-binding molecules such as triple helix-forming oligonucleotides (TFOs) provide a means for inducing site-specific mutagenesis and recombination at chromosomal sites in mammalian cells. However, the utility of TFOs is limited by the requirement for homopurine stretches in the target duplex DNA. Here, we report the use of pseudo-complementary peptide nucleic acids (pcPNAs) for intracellular gene targeting at mixed sequence sites. Due to steric hindrance, pcPNAs are unable to form pcPNA–pcPNA duplexes but can bind to complementary DNA sequences by Watson–Crick pairing via double duplex-invasion complex formation. We show that psoralen-conjugated pcPNAs can deliver site-specific photoadducts and mediate targeted gene modification within both episomal and chromosomal DNA in mammalian cells without detectable off-target effects. Most of the induced psoralen-pcPNA mutations were single-base substitutions and deletions at the predicted pcPNA-binding sites. The pcPNA-directed mutagenesis was found to be dependent on PNA concentration and UVA dose and required matched pairs of pcPNAs. Neither of the individual pcPNAs alone had any effect nor did complementary PNA pairs of the same sequence. These results identify pcPNAs as new tools for site-specific gene modification in mammalian cells without purine sequence restriction, thereby providing a general strategy for designing gene targeting molecules.
机译:序列特异性DNA结合分子,例如三螺旋形成寡核苷酸(TFO),提供了一种在哺乳动物细胞中诱导位点特异性诱变和重组的手段。但是,TFO的用途受到目标双链体DNA中高嘌呤延伸的限制。在这里,我们报告使用伪互补肽核酸(pcPNAs)的细胞内基因靶向混合序列位点。由于位阻,pcPNA无法形成pcPNA–pcPNA双链体,但可以通过双重双链体侵入复合物的形成,通过Watson-Crick配对与互补的DNA序列结合。我们显示补骨脂素偶联的pcPNA可以传递特定位置的光加合物,并在哺乳动物细胞的游离DNA和染色体DNA中介导靶向基因修饰,而没有可检测到的脱靶效应。大多数诱导的补骨脂素-pcPNA突变是在预测的pcPNA结合位点的单碱基取代和缺失。发现pcPNA定向诱变取决于PNA浓度和UVA剂量以及所需的成对pcPNA。单独的单个pcPNA都不具有任何作用,相同序列的互补PNA对也不起作用。这些结果确定了pcPNA是在没有嘌呤序列限制的情况下用于哺乳动物细胞中位点特异性基因修饰的新工具,从而提供了设计基因靶向分子的一般策略。

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