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Comparative Genomic Integration Profiling of Sleeping Beauty Transposons Mobilized With High Efficacy From Integrase-defective Lentiviral Vectors in Primary Human Cells

机译:从整合酶缺陷型慢病毒载体在原代人类细胞中高效动员的睡眠美容转座子的比较基因组整合分析

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摘要

It has been previously shown that integrase-defective HIV-1-based gene vectors can serve, with moderate efficiency, as substrate for DNA transposition by a transiently expressed Sleeping Beauty (SB) transposase. Here, we describe the enhanced gene transfer properties of a HIV-1/SB hybrid vector that allows efficient DNA transposition, facilitated by the hyperactive SB100X transposase, from vector DNA intermediates in primary human cells. Potent transposase-dependent integration of genetic cargo carried by the hybrid HIV-1/SB vector (up to 160-fold above background) is reported in human cell lines as well as in primary human fibroblasts and keratinocytes. The efficiency of transgene integration in context of the newly developed hybrid vector is comparable with that of conventional lentiviral vectors (LVs). Integration profiles of integrating HIV-1-derived vectors and SB transposons mobilized from LVs are investigated by deep sequencing of a large number of integration sites. A significant bias of lentiviral integrations in genes is reported, confirming that biological properties of the viral integration machinery facilitate preferred insertion into actively transcribed genomic regions. In sharp contrast, lentiviral insertions catalyzed by the SB100X transposase are far more random with respect to genes. Based on these properties, HIV-1/SB vectors may become valuable tools for genetic engineering and therapeutic gene transfer.
机译:先前已经表明,基于整合酶缺陷的基于HIV-1的基因载体可以中等效率地用作瞬时表达的Sleeping Beauty(SB)转座酶进行DNA转座的底物。在这里,我们描述了HIV-1 / SB杂种载体的增强的基因转移特性,该载体允许从原代人细胞中的载体DNA中间物进行高效的DNA转座,并由过度活跃的SB100X转座酶促进。据报道,在人类细胞系以及原代人类成纤维细胞和角质形成细胞中,混合HIV-1 / SB载体所携带的遗传货物的转座酶依赖性整合作用(比背景高出160倍)。在新开发的杂交载体的背景下,转基因整合的效率与常规慢病毒载体(LV)相当。通过对大量整合位点进行深度测序,研究了整合HIV-1衍生载体和从LV迁移而来的SB转座子的整合概况。报告了基因中慢病毒整合的显着偏倚,证实了病毒整合机制的生物学特性有助于将其优选插入主动转录的基因组区域。与之形成鲜明对比的是,由SB100X转座酶催化的慢病毒插入相对于基因而言更加随机。基于这些特性,HIV-1 / SB载体可能成为基因工程和治疗性基因转移的有价值的工具。

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