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A comparison of synthetic oligodeoxynucleotides DNA fragments and AAV-1 for targeted episomal and chromosomal gene repair

机译:合成寡聚脱氧核苷酸DNA片段和AAV-1用于靶向的游离和染色体基因修复的比较

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摘要

BackgroundCurrent strategies for gene therapy of inherited diseases consist in adding functional copies of the gene that is defective. An attractive alternative to these approaches would be to correct the endogenous mutated gene in the affected individual. This study presents a quantitative comparison of the repair efficiency using different forms of donor nucleic acids, including synthetic DNA oligonucleotides, double stranded DNA fragments with sizes ranging from 200 to 2200 bp and sequences carried by a recombinant adeno-associated virus (rAAV-1). Evaluation of each gene repair strategy was carried out using two different reporter systems, a mutated eGFP gene or a dual construct with a functional eGFP and an inactive luciferase gene, in several different cell systems. Gene targeting events were scored either following transient co-transfection of reporter plasmids and donor DNAs, or in a system where a reporter construct was stably integrated into the chromosome.
机译:背景技术用于遗传疾病的基因治疗的当前策略包括添加有缺陷的基因的功能性拷贝。这些方法的一个有吸引力的替代方法是纠正受影响个体中的内源突变基因。这项研究提出了使用不同形式的供体核酸修复效率的定量比较,包括合成的DNA寡核苷酸,大小从200到2200 bp的双链DNA片段以及重组腺相关病毒(rAAV-1)携带的序列。在两个不同的细胞系统中,使用两种不同的报告系统,即突变的eGFP基因或具有功能性eGFP和无活性荧光素酶基因的双重构建体,对每种基因修复策略进行了评估。在报告质粒和供体DNA瞬时共转染后,或在报告构建体稳定整合到染色体中的系统中,对基因靶向事件进行评分。

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