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Transcription affects formation and processing of intermediates in oligonucleotide-mediated gene alteration

机译:转录影响寡核苷酸介导的基因改变中中间体的形成和加工

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The role of transcription in oligonucleotide (ODN)-directed gene modification has been investigated in mammalian cells. The importance of transcription is demonstrated using mammalian cell lines with varying degrees of transcription of the mutant LacZ reporter gene, residing in both episome and chromosome. Gene correction occurs more efficiently when the target gene is actively transcribed and antisense ODN is more active than sense ODN. Using an approach that combines biochemical studies with a cell-based assay to measure the functional activity of intermediates it is shown that a joint molecule, consisting of supercoiled DNA and homologous ODN targeted to correct the mutated base, is a functional intermediate in the gene repair process. Furthermore, this approach showed that a resected joint molecule is a downstream intermediate of the D-loop. These results indicate that the primary reason for efficient gene repair exhibited by the antisense ODN is its increased accessibility to the non-transcribed strand, and as a consequence an increased formation of intermediate during active transcription. Moreover, the processing of inter-mediates was also affected by transcription, suggesting that ODN-directed gene repair may be linked to transcription-coupled repair. Thus, transcription plays an important role in ODN-directed gene repair by affecting the formation and processing of key intermediates.
机译:已经在哺乳动物细胞中研究了转录在寡核苷酸(ODN)指导的基因修饰中的作用。使用哺乳动物细胞系证明了转录的重要性,该哺乳动物细胞系存在于附加体和染色体中,其LacZ报告基因突变体基因的转录程度不同。当目标基因被主动转录并且反义ODN比有义ODN更活跃时,基因校正会更有效地发生。使用将生化研究与基于细胞的分析相结合的方法来测量中间体的功能活性,结果表明,由超螺旋DNA和靶向纠正突变碱基的同源ODN组成的联合分子是基因修复中的功能中间体。处理。此外,这种方法表明,切除的关节分子是D环的下游中间体。这些结果表明,反义ODN显示出有效的基因修复的主要原因是其增加了对非转录链的可及性,并因此增加了活性转录过程中中间体的形成。此外,中间体的加工也受到转录的影响,这表明ODN导向的基因修复可能与转录偶联修复有关。因此,转录通过影响关键中间体的形成和加工,在ODN定向基因修复中起着重要作用。

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