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Targeting DNA with triplex-forming oligonucleotides to modify gene sequence

机译:用形成三链体的寡核苷酸靶向DNA以修饰基因序列

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Molecules that interact with DNA in a sequence-specific manner are attractive tools for manipulating gene sequence and expression. For example, triplex-forming oligonucleotides (TFOs), which bind to oligopyrimidine-oligopurine sequences via Hoogsteen hydrogen bonds, have been used to inhibit gene expression at the DNA level as well as to induce targeted mutagenesis in model systems. Recent advances in using oligonucleotides and analogs to target DNA in a sequence-specific manner will be discussed. In particular, chemical modification of TFOs has been used to improve binding to chromosomal target sequences in living cells. Various oligonucleotide analogs have also been found to expand the range of sequences amenable to manipulation, including so-called "Zorro" locked nucleic acids (LNAs) and pseudo-complementary peptide nucleic acids (pcPNAs). Finally, we will examine the potential of TFOs for directing targeted gene sequence modification and propose that synthetic nucleases, based on conjugation of sequence-specific DNA ligands to DNA damaging molecules, are a promising alternative to protein-based endonucleases for targeted gene sequence modification.
机译:以序列特异性方式与DNA相互作用的分子是操纵基因序列和表达的有吸引力的工具。例如,通过Hoogsteen氢键与寡嘧啶-寡嘌呤序列结合的三链体形成寡核苷酸(TFO)已被用于抑制DNA水平的基因表达以及在模型系统中诱导定向诱变。将讨论使用寡核苷酸和类似物以序列特异性方式靶向DNA的最新进展。特别地,已经使用了对TFO的化学修饰来改善与活细胞中的染色体靶序列的结合。还发现了各种寡核苷酸类似物,其扩大了适于操纵的序列的范围,包括所谓的“ Zorro”锁定核酸(LNA)和伪互补肽核酸(pcPNA)。最后,我们将研究TFO指导目标基因序列修饰的潜力,并提出基于序列特异性DNA配体与DNA损伤分子结合的合成核酸酶是基于蛋白质的核酸内切酶的目标基因序列修饰的有前途的替代方法。

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