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Use of mariner transposases for one-step delivery and integration of DNA in prokaryotes and eukaryotes by transfection

机译:使用水工转座酶进行一次性转染在原核生物和真核生物中的一步交付和整合DNA

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摘要

Delivery of DNA to cells and its subsequent integration into the host genome is a fundamental task in molecular biology, biotechnology and gene therapy. Here we describe an IP-free one-stepmethod that enables stable genome integration into either prokaryotic or eukaryotic cells. A synthetic mariner transposon is generated by flanking a DNA sequence with short inverted repeats. When purified recombinant Mos1 or Mboumar-9 transposase is co-transfected with transposon-containing plasmid DNA, it penetrates prokaryotic or eukaryotic cells and integrates the target DNA into the genome. In vivo integrations by purified transposase can be achieved by electroporation, chemical transfection or Lipofection of the transposase: DNA mixture, in contrast to other published transposon-based protocols which require electroporation or microinjection. As in other transposome systems, no helper plasmids are required since transposases are not expressed inside the host cells, thus leading to generation of stable cell lines. Since it does not require electroporation or microinjection, this tool has the potential to be applied for automated high-throughput creation of libraries of random integrants for purposes including gene knock-out libraries, screening for optimal integration positions or safe genome locations in different organisms, selection of the highest production of valuable compounds for biotechnology, and sequencing.
机译:DNA递送到细胞和其后续整合到宿主基因组的分子生物学,生物技术和基因治疗的根本任务。在这里,我们描述了一个免费的IP-一stepmethod,使稳定的基因组整合到原核或真核细胞。一种合成水手转座子由侧翼具有短的反向重复的DNA序列产生。当纯化的重组MOS1或Mboumar-9转座是共转染用含有转座子的质粒DNA,它穿透原核或真核细胞中并整合靶DNA进入基因组。在体内通过纯化转座整合可通过电穿孔,化学转染或脂质体转染的转座来实现:DNA混合物中,在与需要电穿孔或显微注射其他公开的基于转座子的协议。正如在其他转座系统,无需辅助质粒转座,因为没有在宿主细胞内表达,从而导致产生稳定的细胞系。因为它不需要电或显微注射,该工具已被应用的潜在自动化高通量创作的目的,包括基因敲除库随机整合的库,筛选优化整合位置或在不同的生物安全基因组的位置,选择最高生产生物技术,以及测序有价值的化合物。

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