| Literature DB >> 29787711 |
Xuan Yao1, Meiling Zhang2, Xing Wang3, Wenqin Ying4, Xinde Hu5, Pengfei Dai6, Feilong Meng6, Linyu Shi4, Yun Sun2, Ning Yao2, Wanxia Zhong2, Yun Li2, Keliang Wu7, Weiping Li8, Zi-Jiang Chen9, Hui Yang10.
Abstract
The targeting efficiency of knockin sequences via homologous recombination (HR) is generally low. Here we describe a method we call Tild-CRISPR (targeted integration with linearized dsDNA-CRISPR), a targeting strategy in which a PCR-amplified or precisely enzyme-cut transgene donor with 800-bp homology arms is injected with Cas9 mRNA and single guide RNA into mouse zygotes. Compared with existing targeting strategies, this method achieved much higher knockin efficiency in mouse embryos, as well as brain tissue. Importantly, the Tild-CRISPR method also yielded up to 12-fold higher knockin efficiency than HR-based methods in human embryos, making it suitable for studying gene functions in vivo and developing potential gene therapies.Entities:
Keywords: CRISPR/Cas9; Tild-CRISPR; gene editing; genetically modified mice; human embryo; knockin
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Year: 2018 PMID: 29787711 DOI: 10.1016/j.devcel.2018.04.021
Source DB: PubMed Journal: Dev Cell ISSN: 1534-5807 Impact factor: 12.270