Targeted gene knockout in mammalian cells by using engineered zinc-finger nucleases

被引:259
作者
Santiago, Yolanda [1 ]
Chan, Edmond [1 ]
Liu, Pei-Qi [1 ]
Orlando, Salvatore [1 ]
Zhang, Lin [2 ]
Urnov, Fyoclor D. [1 ]
Holmes, Michael C. [1 ]
Guschin, Dmitry [1 ]
Waite, Adam [1 ]
Miller, Jeffrey C. [1 ]
Rebar, Edward J. [1 ]
Gregory, Philip D. [1 ]
Klug, Aaron [3 ]
Collingwood, Trevor N. [1 ]
机构
[1] Sangamo BioSci Inc, Richmond, CA 94804 USA
[2] Pfizer Inc, Bioproc Res & Dev, Cell Line Dev, Chesterfield, MO 63017 USA
[3] MRC, Mol Biol Lab, Cambridge CB2 2QH, England
基金
英国医学研究理事会;
关键词
genetic engineering; zinc-finger proteins;
D O I
10.1073/pnas.0800940105
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Gene knockout is the most powerful tool for determining gene function or permanently modifying the phenotypic characteristics of a cell. Existing methods for gene disruption are limited by their efficiency, time to completion, and/or the potential for confounding off-target effects. Here, we demonstrate a rapid single-step approach to targeted gene knockout in mammalian cells, using engineered zinc-finger nucleases (ZFNs). ZFNs can be designed to target a chosen locus with high specificity. Upon transient expression of these nucleases the target gene is first cleaved by the ZFNs and then repaired by a natural-but imperfect-DNA repair process, nonhomologous end joining. This often results in the generation of mutant (null) alleles. As proof of concept for this approach we designed ZFNs to target the dihydrofolate reductase (DHFR) gene in a Chinese hamster ovary (CHO) cell line. We observed biallelic gene disruption at frequencies >1%, thus obviating the need for selection markers. Three new genetically distinct DHFR-/- cell lines were generated. Each new line exhibited growth and functional properties consistent with the specific knockout of the DHFR gene. Importantly, target gene disruption is complete within 2-3 days of transient ZFN delivery, thus enabling the isolation of the resultant DHFR-/- cell lines within 1 month. These data demonstrate further the utility of ZFNs for rapid mammalian cell line engineering and establish a new method for gene knockout with application to reverse genetics, functional genomics, drug discovery, and therapeutic recombinant protein production.
引用
收藏
页码:5809 / 5814
页数:6
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