首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Retargeting sleeping beauty transposon insertions by engineered zinc finger DNA-binding domains
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Retargeting sleeping beauty transposon insertions by engineered zinc finger DNA-binding domains

机译:通过工程化锌指DNA结合结构域重新定位睡眠美容转座子插入

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摘要

The Sleeping Beauty (SB) transposon is a nonviral, integrating vector system with proven efficacy in preclinical animal models, and thus holds promise for future clinical applications. However, SB has a close-to-random insertion profile that could lead to genotoxic effects, thereby presenting a potential safety issue. We evaluated zinc finger (ZF) DNA-binding domains (DBDs) for their abilities to introduce a bias into SB's insertion profile. E2C, that binds a unique site in the erbB-2 gene, mediated locus-specific transposon insertions at low frequencies. A novel ZF targeting LINE1 repeats, ZF-B, showed specific binding to an 18-bp site represented by ~12,000 copies in the human genome. We mapped SB insertions using linear-amplification (LAM)-PCR and Illumina sequencing. Targeted insertions with ZF-B peaked at approximately fourfold enrichment of transposition around ZF-B binding sites yielding ~45% overall frequency of insertion into LINE1. A decrease in the ZF-B dataset with respect to transposon insertions in genes was found, suggesting that LINE1 repeats act as a sponge that soak up a fraction of SB insertions and thereby redirect them away from genes. Improvements in ZF technology and a careful choice of targeted genomic regions may improve the safety profile of SB for future clinical applications.
机译:睡美人(SB)转座子是一种非病毒的整合载体系统,在临床前动物模型中具有公认的功效,因此有望在未来的临床应用中发挥作用。但是,SB具有接近随机的插入模式,可能导致遗传毒性作用,从而带来潜在的安全问题。我们评估了锌指(ZF)DNA结合域(DBD)的能力,以将偏见引入SB的插入模式。 E2C结合erbB-2基因中的独特位点,以低频介导的基因座特异性转座子插入。靶向LINE1重复序列的新型ZF ZF-B与人基因组中约12,000个拷贝所代表的18 bp位点具有特异性结合。我们使用线性扩增(LAM)-PCR和Illumina测序方法绘制了SB插入图。 ZF-B的靶向插入在ZF-B结合位点周围的转座富集大约四倍处达到峰值,从而使LINE1插入的总频率达到约45%。发现ZF-B数据集相对于基因中的转座子插入有所减少,这表明LINE1重复序列像海绵一样吸收了一部分SB插入,从而使它们重新定向远离基因。 ZF技术的改进和对目标基因组区域的精心选择可能会改善SB在未来临床应用中的安全性。

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