清脆的
基因组编辑
Cas9
计算生物学
基因组工程
同源重组
DNA
基因组
生物
基因
同源(生物学)
同源定向修复
遗传学
计算机科学
DNA修复
DNA错配修复
作者
Wenjie Han,Zhigang Li,Yijun Guo,Kaining He,Wenqing Li,Caoling Xu,Lishuang Ge,Miao He,Xue Yin,Junxiang Zhou,Chengxu Li,Dongbao Yao,Jianqiang Bao,Haojun Liang
标识
DOI:10.1073/pnas.2221127120
摘要
CRISPR/Cas9 genome-editing tools have tremendously boosted our capability of manipulating the eukaryotic genomes in biomedical research and innovative biotechnologies. However, the current approaches that allow precise integration of gene-sized large DNA fragments generally suffer from low efficiency and high cost. Herein, we developed a versatile and efficient approach, termed LOCK (Long dsDNA with 3'-Overhangs mediated CRISPR Knock-in), by utilizing specially designed 3'-overhang double-stranded DNA (odsDNA) donors harboring 50-nt homology arm. The length of the 3'-overhangs of odsDNA is specified by the five consecutive phosphorothioate modifications. Compared with existing methods, LOCK allows highly efficient targeted insertion of kilobase-sized DNA fragments into the mammalian genomes with low cost and low off-target effects, yielding >fivefold higher knock-in frequencies than conventional homologous recombination-based approaches. This newly designed LOCK approach based on homology-directed repair is a powerful tool suitable for gene-sized fragment integration that is urgently needed for genetic engineering, gene therapies, and synthetic biology.
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