清脆的
Cas9
同源定向修复
基因组编辑
核酸酶
生物
质粒
基因组工程
非同源性末端接合
DNA
基因靶向
同源重组
分子生物学
体细胞
细胞生物学
计算生物学
基因
遗传学
DNA修复
DNA错配修复
作者
Guoling Li,Xianwei Zhang,Cuili Zhong,Jianxin Mo,Rong Quan,Jie Yang,Dewu Liu,Zicong Li,Huaqiang Yang,Zhenfang Wu
标识
DOI:10.1038/s41598-017-09306-x
摘要
CRISPR/Cas9 is an efficient customizable nuclease to generate double-strand breaks (DSBs) in the genome. This process results in knockout of the targeted gene or knock-in of a specific DNA fragment at the targeted locus in the genome of various species. However, efficiency of knock-in mediated by homology-directed repair (HDR) pathway is substantially lower compared with the efficiency of knockout mediated by the nonhomologous end-joining (NHEJ) pathway. Suppressing NHEJ pathway or enhancing HDR pathway has been proven to enhance the nuclease-mediated knock-in efficiency in cultured cells and model organisms. We here investigated the effect of small molecules, Scr7, L755507 and resveratrol, on promoting HDR efficiency in porcine fetal fibroblasts. Results from eGFP reporter assay showed that these small molecules could increase the HDR efficiency by 2-3-fold in porcine fetal fibroblasts. When transfecting with the homologous template DNA and CRISPR/Cas9 plasmid and treating with small molecules, the rate of knock-in porcine fetal fibroblast cell lines with large DNA fragment integration could reach more than 50% of the screened cell colonies, compared with 26.1% knock-in cell lines in the DMSO-treated group. The application of small molecules offers a beneficial approach to improve the frequency of precise genetic modifications in primary somatic cells.
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