TALE nickase mediates high efficient targeted transgene integration at the human multi-copy ribosomal DNA locus

转录激活物样效应核酸酶 生物 基因座(遗传学) 锌指核酸酶 遗传学 基因靶向 转基因 基因组编辑 基因 DNA 分子生物学 清脆的
作者
Yong Wu,Tieli Gao,Xiaolin Wang,Youjin Hu,Xuyun Hu,Zhiqing Hu,Jialun Pang,Zhuo Li,Jinfeng Xue,Mai Feng,Lingqian Wu,Desheng Liang
出处
期刊:Biochemical and Biophysical Research Communications [Elsevier]
卷期号:446 (1): 261-266 被引量:45
标识
DOI:10.1016/j.bbrc.2014.02.099
摘要

Although targeted gene addition could be stimulated strikingly by a DNA double strand break (DSB) created by either zinc finger nucleases (ZFNs) or TALE nucleases (TALENs), the DSBs are really mutagenic and toxic to human cells. As a compromised solution, DNA single-strand break (SSB) or nick has been reported to mediate high efficient gene addition but with marked reduction of random mutagenesis. We previously demonstrated effective targeted gene addition at the human multicopy ribosomal DNA (rDNA) locus, a genomic safe harbor for the transgene with therapeutic potential. To improve the transgene integration efficiency by using TALENs while lowering the cytotoxicity of DSBs, we created both TALENs and TALE nickases (TALENickases) targeting this multicopy locus. A targeting vector which could integrate a GFP cassette at the rDNA locus was constructed and co-transfected with TALENs or TALENickases. Although the fraction of GFP positive cells using TALENs was greater than that using TALENickases during the first few days after transfection, it reduced to a level less than that using TALENickases after continuous culture. Our findings showed that the TALENickases were more effective than their TALEN counterparts at the multi-copy rDNA locus, though earlier studies using ZFNs and ZFNickases targeting the single-copy loci showed the reverse. Besides, TALENickases mediated the targeted integration of a 5.4 kb fragment at a frequency of up to 0.62% in HT1080 cells after drug selection, suggesting their potential application in targeted gene modification not being limited at the rDNA locus.
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