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Analysis of illegitimate genomic integration mediated by zinc-finger nucleases: implications for specificity of targeted gene correction

机译:锌指核酸酶介导的非法基因组整合分析:对靶基因校正特异性的影响

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Formation of site specific genomic double strand breaks (DSBs), induced by the expression of a pair of engineered zinc-finger nucleases (ZFNs), dramatically increases the rates of homologous recombination (HR) between a specific genomic target and a donor plasmid. However, for the safe use of ZFN induced HR in practical applications, possible adverse effects of the technology such as cytotoxicity and genotoxicity need to be well understood. In this work, off-target activity of a pair of ZFNs has been examined by measuring the ratio between HR and illegitimate genomic integration in cells that are growing exponentially, and in cells that have been arrested in the G2/M phase. A reporter cell line that contained consensus ZFN binding sites in an enhanced green fluorescent protein (EGFP) reporter gene was used to measure ratios between HR and non-homologous integration of a plasmid template. Both in human cells (HEK 293) containing the consensus ZFN binding sites and in cells lacking the ZFN binding sites, a 3.5 fold increase in the level of illegitimate integration was observed upon ZFN expression. Since the reporter gene containing the consensus ZFN target sites was found to be intact in cells where illegitimate integration had occurred, increased rates of illegitimate integration most likely resulted from the formation of off-target genomic DSBs. Additionally, in a fraction of the ZFN treated cells the co-occurrence of both specific HR and illegitimate integration was observed. As a mean to minimize unspecific effects, cell cycle manipulation of the target cells by induction of a transient G2/M cell cycle arrest was shown to stimulate the activity of HR while having little effect on the levels of illegitimate integration, thus resulting in a nearly eight fold increase in the ratio between the two processes. The demonstration that ZFN expression, in addition to stimulating specific gene targeting by HR, leads to increased rates of illegitimate integration emphasizes the importance of careful characterization of ZFN treated cells. In order to reduce off-target events, reversible cell cycle arrest of the target cells in the G2/M phase is an efficient way for increasing the ratio between specific HR and illegitimate integration.
机译:由一对工程锌指核酸酶(ZFN)的表达诱导的位点特异性基因组双链断裂(DSB)的形成,大大提高了特定基因组靶标与供体质粒之间的同源重组(HR)速率。但是,为了在实际应用中安全使用ZFN诱导的HR,需要充分了解该技术可能产生的不利影响,例如细胞毒性和遗传毒性。在这项工作中,已通过测量呈指数增长的细胞以及已被阻滞在G2 / M期的细胞中HR与非法基因组整合之间的比率,来检测一对ZFN的脱靶活性。使用在增强的绿色荧光蛋白(EGFP)报告基因中包含共有ZFN结合位点的报告细胞系来测量HR与质粒模板的非同源整合之间的比率。在含有共有ZFN结合位点的人细胞(HEK 293)和缺乏ZFN结合位点的细胞中,在ZFN表达后,观察到非法整合水平增加了3.5倍。由于发现含有共有ZFN靶位点的报告基因在发生非法整合的细胞中是完整的,因此非法整合率的提高很可能是由脱靶基因组DSB的形成引起的。另外,在部分ZFN处理的细胞中,观察到特异性HR和非法整合的共存。作为使非特异性作用最小化的手段,通过诱导短暂的G2 / M细胞周期阻滞,靶细胞的细胞周期操纵被证明可以刺激HR的活性,而对非法整合水平的影响很小,因此几乎导致两个过程之间的比率增加了八倍。除通过HR刺激特定基因靶向外,ZFN表达还导致非法整合率增加的论点强调了认真表征ZFN处理细胞的重要性。为了减少脱靶事件,靶细胞在G2 / M期的可逆细胞周期停滞是增加特异性HR与非法整合之间比率的有效方法。

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