Frog Prince transposon-based RNAi vectors mediate efficient gene knockdown in human cells.

Christopher D Kaufman, Zsuzsanna Izsvák, Andrea Katzer, Zoltán Ivics
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Abstract

We have developed a stable RNA interference (RNAi) delivery system that is based on the Frog Prince transposable element. This plasmid-based vector system combines the gene silencing capabilities of H1 polymerase III promoter-driven short hairpin RNAs (shRNA) with the advantages of stable and efficient genomic integration of the shRNA cassette mediated by transposition. We show that the Frog Prince-based shRNA expressing system can efficiently knock down the expression of both exogenous as well as endogenous genes in human cells. Furthermore, we use the Frog Prince-based system to study the effect of knockdown of the DNA repair factor Ku70 on transposition of the Sleeping Beauty transposon. Transposon-mediated genomic integration ensures that the shRNA expression cassette and a selectable marker gene within the transposon remain intact and physically linked. We demonstrate that a major advantage of our vector system over plasmid-based shRNA delivery is both its enhanced frequency of intact genomic integration as well as higher target suppression in transgenic human cells. Due to its simplicity and effectiveness, transposon-based RNAi is an emerging tool to facilitate analysis of gene function through the establishment of stable loss-of-function cell lines.

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基于青蛙王子转座子的RNAi载体介导人类细胞中有效的基因敲除。
我们开发了一种基于青蛙王子转座元件的稳定RNA干扰(RNAi)递送系统。这种基于质粒的载体系统结合了H1聚合酶III启动子驱动的短发夹rna (shRNA)的基因沉默能力和转座介导的shRNA盒稳定高效的基因组整合优势。我们发现基于青蛙王子的shRNA表达系统可以有效地敲除人类细胞中外源和内源基因的表达。此外,我们利用基于青蛙王子的系统研究了敲低DNA修复因子Ku70对睡美人转座子转位的影响。转座子介导的基因组整合确保shRNA表达盒和转座子内的可选择标记基因保持完整和物理连接。我们证明,与基于质粒的shRNA传递相比,我们的载体系统的一个主要优势是它提高了完整基因组整合的频率,以及在转基因人类细胞中更高的靶标抑制。由于其简单和有效,基于转座子的RNAi是一种新兴的工具,可以通过建立稳定的功能丧失细胞系来促进基因功能的分析。
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