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首页> 外文期刊>Nucleic Acids Research >Impact of non-homologous end-joining deficiency on random and targeted DNA integration: implications for gene targeting
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Impact of non-homologous end-joining deficiency on random and targeted DNA integration: implications for gene targeting

机译:非同源末端连接缺陷对随机和靶向DNA整合的影响:对基因靶向的影响

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摘要

In higher animal cells, the principal limitation of gene-targeting technology is the extremely low efficiency of targeted integration, which occurs three to four orders of magnitude less frequently than random integration. Assuming that random integration mechanistically involves non-homologous end-joining (NHEJ), inactivation of this pathway should reduce random integration and may enhance gene targeting. To test this possibility, we examined the frequencies of random and targeted integration in NHEJ-deficient chicken DT40 and human Nalm-6 cell lines. As expected, loss of NHEJ resulted in drastically reduced random integration in DT40 cells. Unexpectedly, however, this was not the case for Nalm-6 cells, indicating that NHEJ is not the sole mechanism of random integration. Nevertheless, we present evidence that NHEJ inactivation can lead to enhanced gene targeting through a reduction of random integration and/or an increase in targeted integration by homologous recombination. Most intriguingly, our results show that, in the absence of functional NHEJ, random integration of targeting vectors occurs more frequently than non-targeting vectors (harboring no or little homology to the host genome), implying that suppression of NHEJ-independent random integration events is needed to greatly enhance gene targeting in animal cells.
机译:在高等动物细胞中,基因靶向技术的主要局限性在于靶向整合的效率极低,与随机整合相比,这种整合的发生频率降低了三到四个数量级。假设随机整合机制涉及非同源末端连接(NHEJ),则该途径的失活应减少随机整合并可能增强基因靶向。为了测试这种可能性,我们检查了NHEJ缺陷鸡DT40和人Nalm-6细胞系中随机和靶向整合的频率。不出所料,NHEJ的丧失导致DT40细胞中的随机整合大大减少。但是,出乎意料的是,Nalm-6细胞并非如此,这表明NHEJ不是随机整合的唯一机制。然而,我们目前的证据表明,NHEJ失活可以通过减少随机整合和/或通过同源重组增加靶向整合来增强基因靶向。最有趣的是,我们的结果表明,在没有功能性NHEJ的情况下,靶向载体的随机整合比非靶向载体的发生更为频繁(与宿主基因组没有同源性或几乎没有同源性),这意味着抑制了与NHEJ无关的随机整合事件需要大大增强动物细胞中的基因靶向。

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