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Zinc-finger Nuclease-induced Gene Repair With Oligodeoxynucleotides: Wanted and Unwanted Target Locus Modifications

机译:锌指核酸酶诱导的寡核苷酸氧化基因修复:想要和不需要的目标基因座修饰。

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摘要

Correcting a mutated gene directly at its endogenous locus represents an alternative to gene therapy protocols based on viral vectors with their risk of insertional mutagenesis. When solely a single-stranded oligodeoxynucleotide (ssODN) is used as a repair matrix, the efficiency of the targeted gene correction is low. However, as shown with the homing endonuclease I-SceI, ssODN-mediated gene correction can be enhanced by concomitantly inducing a DNA double-strand break (DSB) close to the mutation. Because I-SceI is hardly adjustable to cut at any desired position in the human genome, here, customizable zinc-finger nucleases (ZFNs) were used to stimulate ssODN-mediated repair of a mutated single-copy reporter locus stably integrated into human embryonic kidney-293 cells. The ZFNs induced faithful gene repair at a frequency of 0.16%. Six times more often, ZFN-induced DSBs were found to be modified by unfaithful addition of ssODN between the termini and about 60 times more often by nonhomologous end joining-related deletions and insertions. Additionally, ZFN off-target activity based on binding mismatch sites at the locus of interest was detected in in vitro cleavage assays and also in chromosomal DNA isolated from treated cells. Therefore, the specificity of ZFN-induced ssODN-mediated gene repair needs to be improved, especially regarding clinical applications.
机译:直接在其内源基因座处纠正突变的基因代表了基于病毒载体的基因治疗方案的另一种选择,因为它们具有插入诱变的风险。当仅将单链寡脱氧核苷酸(ssODN)用作修复基质时,靶向基因校正的效率较低。但是,如归巢核酸内切酶I-SceI所示,可以通过同时诱导接近突变的DNA双链断裂(DSB)来增强ssODN介导的基因校正。由于I-SceI几乎无法调节以切割人类基因组中的任何所需位置,因此,在此使用可定制的锌指核酸酶(ZFN)来刺激ssODN介导的稳定整合到人类胚胎肾脏中的突变单拷贝报告基因座的修复。 -293细胞。 ZFN以0.16%的频率诱导忠实的基因修复。发现ZFN诱导的DSB频率高六倍,是由于在末端之间不忠实地添加ssODN而引起的,而被非同源末端连接相关的缺失和插入频率高出约60倍。另外,在体外切割测定法以及从处理过的细胞中分离的染色体DNA中检测到基于目标基因座上的结合错配位点的ZFN脱靶活性。因此,ZFN诱导的ssODN介导的基因修复的特异性有待提高,尤其是在临床应用方面。

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