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Simple one-week method to construct gene-targeting vectors: application to production of human knockout cell lines

机译:一种简单的一周构建基因靶向载体的方法:在生产人类基因敲除细胞系中的应用

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Targeted gene disruption is a powerful tool for studying gene function in cells and animals. In addition, this technology includes a potential to correct disease-causing mutations. However, constructing targeting vectors is a laborious step in the gene-targeting strategy, even apart from the low efficiency of homologous recombination in mammals. Here, we introduce a quick and simplified method to construct targeting vectors. This method is based on the commercially available MultiSite Gateway technology. The sole critical step is to design primers to PCR amplify genomic fragments for homologous DNA arms, after which neither ligation reaction nor extensive restriction mapping is necessary at all. The method therefore is readily applicable to embryonic stem (ES) cell studies as well as all organisms whose genome has been sequenced. Recently, we and others have shown that the human pre-B cell line Nalm-6 allows for high-efficiency gene targeting. The combination of the simplified vector construction system and the high-efficiency gene targeting in the Nalm-6 cell line has enabled rapid disruption of virtually any locus of the human genome within one month, and homozygous knockout clones lacking a human gene of interest can be created within 2-3 months. Thus, our system greatly facilitates reverse genetic studies of mammalian--particularly human--genes.
机译:靶向基因破坏是研究细胞和动物中基因功能的有力工具。此外,这项技术还具有纠正引起疾病的突变的潜力。然而,即使在哺乳动物中同源重组的效率低下,构建靶向载体也是基因靶向策略中的一项艰巨步骤。在这里,我们介绍了一种快速简化的方法来构建目标向量。此方法基于市售的MultiSite网关技术。唯一关键的步骤是设计用于PCR扩增同​​源DNA臂的基因组片段的引物,此后根本不需要连接反应或广泛的限制性酶切图谱。因此,该方法可轻松应用于胚胎干(ES)细胞研究以及已对其基因组测序的所有生物。最近,我们和其他人已经表明,人类前B细胞系Nalm-6可实现高效基因靶向。简化的载体构建系统和靶向Nalm-6细胞系的高效基因靶向相结合,可以在一个月内迅速破坏人类基因组的任何基因座,并且可以缺失缺乏人类目的基因的纯合敲除克隆。在2-3个月内创建。因此,我们的系统极大地促进了哺乳动物尤其是人类基因的反向遗传研究。

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