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Targeted mutagenesis of DNA using triple helix-forming oligonucleotides linked to psoralen.

机译:使用与补骨脂素连接的三螺旋形成寡核苷酸靶向诱变DNA。

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摘要

Oligonucleotides can bind as third strands of DNA in a sequence-specific manner in the major groove in homopurine/homopyrimidine stretches in duplex DNA. Here we use a 10-base triplex-forming oligonucleotide linked to a psoralen derivative at its 5' end to achieve site-specific, targeted mutagenesis in an intact, double-stranded lambda phage genome. Site-specific triplex formation delivers the psoralen to the targeted site in the lambda DNA, and photoactivation of the psoralen produces adducts and thereby mutations at that site. Mutations in the targeted gene were at least 100-fold more frequent than those in a nontargeted gene, and sequence analysis of mutations in the targeted gene showed that 96% were in the targeted region and 56% were found to be the same T.A to A.T transversion precisely at the targeted base pair. The ability to reproducibly and predictably target mutations to sites in intact duplex DNA by using modified oligonucleotides may prove useful as a technique for gene therapy, as an approach to antiviral therapeutics, and as a tool for genetic engineering.
机译:寡核苷酸可作为DNA的第三条链以双特异性DNA的高嘌呤/高嘧啶段中的主要凹槽的序列特异性方式结合。在这里,我们使用一个10碱基的三链体形成寡核苷酸,在其5'末端连接到补骨脂素衍生物上,以在完整的双链λ噬菌体基因组中实现位点特异性,定向诱变。位点特异性三链体的形成将补骨脂素传递到λDNA中的目标位点,补骨脂素的光活化产生加合物,从而在该位点发生突变。靶基因突变的频率至少是非靶基因突变的100倍,并且靶基因突变的序列分析表明,有96%位于靶区域,而有56%被发现与AT相同精确地在目标碱基对上进行颠换通过使用修饰的寡核苷酸将突变可再现且可预测地靶向完整双链体DNA中的位点的能力可能被证明可用作基因治疗技术,抗病毒治疗方法以及基因工程工具。

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