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Efficient stable gene transfer into human cells by the Sleeping Beauty transposon vectors

机译:Sleeping Beauty转座子载体可有效稳定地将基因转移到人体细胞中

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摘要

Transposable elements can be considered as natural, non-viral gene delivery vehicles capable of efficient genomic insertion. The plasmid-based transposon system of Sleeping Beauty (SB) combines the advantages of viruses and naked DNA molecules. In contrast to plasmid vectors, transposons integrate through a precise, recombinase-mediated mechanism into chromosomes, providing long-term expression of the gene of interest in cells. The advantages of transposons in comparison to viral systems include their simplicity and improved safety/toxicity profiles. In addition, the hyperactive SB100X is the first plasmid-based delivery system that overcomes the efficacy of non-viral delivery. The transposon delivery system consists of the transposase and the integration cassette, recognized by the transposase. The plasmid-based transposon delivery system can be combined with any non-viral delivery method. Here we provide two detailed protocols to apply SB-mediated, non-viral gene transfer in cultured cells. In our first example, we use a lipid-based delivery method in combination with the transposon-based integration system in an easy-to-transfect (HeLa) cell line. Second, we show how to achieve 40-50% stable expression of a transgene in clinically relevant, hard-to-transfect cells (hematopoetic stem cells, HSCs) by nucleofection. The given protocols are adaptable to any vertebrate cells in culture.
机译:转座因子可以被认为是能够有效地插入基因组的天然,非病毒基因传递载体。 Sleeping Beauty(SB)的基于质粒的转座子系统结合了病毒和裸露的DNA分子的优势。与质粒载体相反,转座子通过精确的重组酶介导的机制整合到染色体中,从而在细胞中长期表达目的基因。与病毒系统相比,转座子的优势包括其简单性和改善的安全性/毒性特征。此外,高活性SB100X是第一个克服非病毒递送功效的基于质粒的递送系统。转座子递送系统由转座酶和被转座酶识别的整合盒组成。基于质粒的转座子递送系统可以与任何非病毒递送方法结合。在这里,我们提供了两个详细的协议,以在培养的细胞中应用SB介导的非病毒基因转移。在我们的第一个示例中,我们在易于转染(HeLa)细胞系中结合了基于脂质的递送方法和基于转座子的整合系统。其次,我们展示了如何通过核转染在临床相关,难以转染的细胞(造血干细胞,HSC)中实现转基因40-50%的稳定表达。给定的方案适用于培养中的任何脊椎动物细胞。

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