锌指核酸酶
基因敲除
同源重组
生物
基因
锌指
遗传学
基因组工程
基因组编辑
基因座(遗传学)
空等位基因
计算生物学
基因靶向
转录激活物样效应核酸酶
表型
基因组
转录因子
作者
Peiqi Liu,Edmond M. Chan,Gregory J. Cost,Lin Zhang,Jianbin Wang,Jeffrey C. Miller,Dmitry Guschin,Andreas Reik,Michael C. Holmes,John E. Mott,Trevor N. Collingwood,Philip D. Gregory
摘要
Mammalian cells with multi-gene knockouts could be of considerable utility in research, drug discovery, and cell-based therapeutics. However, existing methods for targeted gene deletion require sequential rounds of homologous recombination and drug selection to isolate rare desired events--a process sufficiently laborious to limit application to individual loci. Here we present a solution to this problem. Firstly, we report the development of zinc-finger nucleases (ZFNs) targeted to cleave three independent genes with known null phenotypes. Mammalian cells exposed to each ZFN pair in turn resulted in the generation of cell lines harboring single, double, and triple gene knockouts, that is, the successful disruption of two, four, and six alleles. All three biallelic knockout events were obtained at frequencies of >1% without the use of selection, displayed the expected knockout phenotype(s), and harbored DNA mutations centered at the ZFN binding sites. These data demonstrate the utility of ZFNs in multi-locus genome engineering.
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