State Key Laboratory of Medical Genetics, Central South University, Changsha, Hunan, China.
State Key Laboratory of Medical Genetics, Central South University, Changsha, Hunan, China.
Biochem Biophys Res Commun. 2014 Mar 28;446(1):261-6. doi: 10.1016/j.bbrc.2014.02.099. Epub 2014 Feb 28.
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.
虽然锌指核酸酶(ZFNs)或转录激活因子样效应物核酸酶(TALENs)所造成的 DNA 双链断裂(DSB)可显著刺激靶向基因添加,但 DSB 确实对人类细胞具有诱变和毒性。作为一种妥协的解决方案,已经报道 DNA 单链断裂(SSB)或切口可介导高效的基因添加,但随机诱变明显减少。我们之前已经证明了在人类多拷贝核糖体 DNA(rDNA)基因座处有效的靶向基因添加,该基因座是具有治疗潜力的转基因的基因组安全港。为了提高使用 TALENs 进行转基因整合的效率,同时降低 DSB 的细胞毒性,我们创建了靶向该多拷贝基因座的 TALENs 和 TALE 切口酶(TALENickases)。构建了一个可将 GFP 盒整合到 rDNA 基因座的靶向载体,并与 TALENs 或 TALENickases 共转染。虽然在转染后的头几天,使用 TALENs 的 GFP 阳性细胞的比例大于使用 TALENickases 的比例,但在连续培养后,该比例降低到低于使用 TALENickases 的水平。我们的研究结果表明,TALENickases 在多拷贝 rDNA 基因座上比其 TALEN 对应物更有效,尽管早期使用靶向单拷贝基因座的 ZFNs 和 ZFNickases 的研究结果相反。此外,TALENickases 在 HT1080 细胞中经药物选择后以高达 0.62%的频率介导了 5.4 kb 片段的靶向整合,表明其在靶向基因修饰中的潜在应用不仅限于 rDNA 基因座。