An iCRISPR Platform for Rapid, Multiplexable, and Inducible Genome Editing in Human Pluripotent Stem Cells

被引:341
作者
Gonzalez, Federico [1 ]
Zhu, Zengrong [1 ]
Shi, Zhong-Dong [1 ]
Lelli, Katherine [1 ]
Verma, Nipun [1 ,2 ]
Li, Qing V. [1 ,3 ]
Huangfu, Danwei [1 ]
机构
[1] Sloan Kettering Inst, Dev Biol Program, New York, NY 10065 USA
[2] Rockefeller Univ, Weill Grad Sch Med Sci Cornell Univ, Sloan Kettering Inst, Tri Inst MD PhD Program, New York, NY 10065 USA
[3] Mem Sloan Kettering Canc Ctr, Louis V Gerstner Jr Grad Sch Biomed Sci, New York, NY 10065 USA
关键词
ZINC-FINGER NUCLEASES; MAMMALIAN GENOME; ALZHEIMERS-DISEASE; CAS9; NUCLEASE; CRISPR; DNA; SPECIFICITY; GENES; MUTATIONS; SYSTEM;
D O I
10.1016/j.stem.2014.05.018
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Human pluripotent stem cells (hPSCs) offer a unique platform for elucidating the genes and molecular pathways that underlie complex traits and diseases. To realize this promise, methods for rapid and controllable genetic manipulations are urgently needed. By combining two newly developed gene-editing tools, the TALEN and CRISPR/Cas systems, we have developed a genome-engineering platform in hPSCs, which we named iCRISPR. iCRISPR enabled rapid and highly efficient generation of biallelic knockout hPSCs for loss-of-function studies, as well as homozygous knockin hPSCs with specific nucleotide alterations for precise modeling of disease conditions. We further demonstrate efficient one-step generation of double-and triple-gene knockout hPSC lines, as well as stage-specific inducible gene knockout during hPSC differentiation. Thus the iCRISPR platform is uniquely suited for dissection of complex genetic interactions and pleiotropic gene functions in human disease studies and has the potential to support high-throughput genetic analysis in hPSCs.
引用
收藏
页码:215 / 226
页数:12
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