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首页> 外文期刊>Nucleic Acids Research >Transcription activator like effector (TALE)-directed piggyBac transposition in human cells.
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Transcription activator like effector (TALE)-directed piggyBac transposition in human cells.

机译:转录激活因子样效应物(TALE)指导的人类细胞中的gigaBac转座。

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Insertional therapies have shown great potential for combating genetic disease and safer methods would undoubtedly broaden the variety of possible illness that can be treated. A major challenge that remains is reducing the risk of insertional mutagenesis due to random insertion by both viral and non-viral vectors. Targetable nucleases are capable of inducing double-stranded breaks to enhance homologous recombination for the introduction of transgenes at specific sequences. However, off-target DNA cleavages at unknown sites can lead to mutations that are difficult to detect. Alternatively, the piggyBac transposase is able perform all of the steps required for integration; therefore, cells confirmed to contain a single copy of a targeted transposon, for which its location is known, are likely to be devoid of aberrant genomic modifications. We aimed to retarget transposon insertions by comparing a series of novel hyperactive piggyBac constructs tethered to a custom transcription activator like effector DNA-binding domain designed to bind the first intron of the human CCR5 gene. Multiple targeting strategies were evaluated using combinations of both plasmid-DNA and transposase-protein relocalization to the target sequence. We demonstrated user-defined directed transposition to the CCR5 genomic safe harbor and isolated single-copy clones harboring targeted integrations.Registry Number/Name of Substance 0 (CCR5 protein, human). 0 (DNA Transposable Elements). 0 (DNA-Binding Proteins). 0 (Receptors, CCR5). 0 (Recombinant Fusion Proteins). EC 2-7-7 (Transposases).
机译:插入疗法已显示出抗击遗传病的巨大潜力,更安全的方法无疑会扩大可以治疗的多种疾病。仍然存在的主要挑战是降低由于病毒和非病毒载体随机插入而引起的诱变风险。可靶向的核酸酶能够诱导双链断裂以增强同源重组,以在特定序列上引入转基因。但是,在未知位点的脱靶DNA裂解会导致难以检测的突变。另外,piggyBac转座酶能够执行整合所需的所有步骤。因此,被证实含有单个转座子拷贝的细胞(其位置已知)很可能没​​有异常的基因组修饰。我们的目标是通过比较一系列新型超活跃的piggyBac构建体来重定位转座子插入,这些构建体被束缚在一个定制的转录激活因子(如效应DNA结合域)上,后者旨在结合人CCR5基因的第一个内含子。使用质粒DNA和转座酶蛋白重新定位到目标序列的组合来评估多种靶向策略。我们展示了用户定义的定向转座到CCR5基因组安全港和带有目标整合的分离的单拷贝克隆。注册号/物质0的名称(CCR5蛋白,人)。 0(DNA转座因子)。 0(DNA结合蛋白)。 0(受体,CCR5)。 0(重组融合蛋白)。 EC 2-7-7(转座酶)。

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