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A High-Capacity Adenoviral Hybrid Vector System Utilizing the Hyperactive Sleeping Beauty Transposase SB100X for Enhanced Integration

机译:利用多动睡眠美容转座酶SB100X的高容量腺病毒杂交载体系统增强整合

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摘要

For efficient delivery of required genetic elements we utilized high-capacity adenoviral vectors in the past allowing high transgene capacities of up to 36 kb. Previously we explored the hyperactive Sleeping Beauty (SB) transposase (HSB5) for somatic integration from the high-capacity adenoviral vectors genome. To further improve this hybrid vector system we hypothesized that the previously described hyperactive SB transposase SB100X will result in significantly improved efficacies after transduction of target cells. Plasmid based delivery of the SB100X system revealed significantly increased integration efficiencies compared with the previously published hyperactive SB transposase HSB5. After optimizing experimental setups for high-capacity adenoviral vectors-based delivery of the SB100X system we observed up to eightfold and 100-fold increased integration efficiencies compared with the previously published hyperactive SB transposase HSB5 and the inactive transposase mSB, respectively. Furthermore, transposon copy numbers per cell were doubled with SB100X compared with HSB5 when using the identical multiplicity of infection. We believe that this improved hybrid vector system represents a valuable tool for achieving stabilized transgene expression in cycling cells and for treatment of numerous genetic disorders. Especially for in vivo approaches this improved adenoviral hybrid vector system will be advantageous because it may potentially allow reduction of the applied viral dose.
机译:为了有效地传递所需的遗传元件,我们过去使用高容量的腺病毒载体,使转基因能力高达36 highkb。以前,我们探索了从高容量腺病毒载体基因组进行体细胞整合的高活性睡眠美容(SB)转座酶(HSB5)。为了进一步改善这种杂交载体系统,我们假设先前描述的过度活跃的SB转座酶SB100X将在转导靶细胞后显着提高疗效。与以前发布的高活性SB转座酶HSB5相比,SB100X系统基于质粒的递送显示出显着提高的整合效率。在针对基于大容量腺病毒载体的SB100X系统递送优化实验设置后,我们观察到的整合效率分别比先前发布的高活性SB转座酶HSB5和无活性转座酶mSB分别提高了8倍和100倍。此外,当使用相同的感染复数时,与HSB5相比,SB100X使每个细胞的转座子拷贝数增加了一倍。我们认为,这种改进的杂交载体系统代表了一种有价值的工具,可在循环细胞中实现稳定的转基因表达并治疗多种遗传疾病。特别是对于体内方法,这种改进的腺病毒杂交载体系统将是有利的,因为它可能潜在地减少所施加的病毒剂量。

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