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Manipulating piggyBac Transposon Chromosomal Integration Site Selection in Human Cells

机译:在人类细胞中操纵piggyBac转座子染色体整合位点的选择

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摘要

The ability to direct gene delivery to a user-defined chromosomal location would greatly improve gene transfer applications. The piggyBac transposon system is a nonviral gene transfer system proven effective in a variety of cells and tissues, including human cells. We fused a highly site-specific synthetic zinc-finger DNA-binding domain (ZFP) to the N-terminus of the piggyBac transposase and evaluated site-directed genomic integration in human cells. Chimeric ZFP-piggyBac transposase exhibited robust gene transfer activity, targeted binding to a cognate endogenous chromosomal ZFP site in the human genome, and site-directed transposon integration into an episomal plasmid target containing a single ZFP site in human cells. We evaluated the ability of ZFP-piggyBac to direct gene integration into an engineered chromosomal ZFP target site in the human genome and consistently observed a higher degree of ZFP-piggyBac site-directed genomic integration when compared to native piggyBac. Chromatin immunoprecipitation (ChIP) experiments revealed binding of native piggyBac to our engineered TTAA-containing chromosomal target which supported integration, but not a TTAA-deficient chromosomal target which lacked integration. Our results offer insight into the requirements for using a chimeric zinc finger-piggyBac transposase to direct integration into a user-defined chromosomal location.
机译:将基因传递到用户定义的染色体位置的能力将大大改善基因转移应用。 piggyBac转座子系统是一种非病毒基因转移系统,已证明在包括人细胞在内的多种细胞和组织中有效。我们将高度位点特异性的合成锌指DNA结合结构域(ZFP)融合到piggyBac转座酶的N端,并评估了人类细胞中的定点基因组整合。嵌合ZFP-piggyBac转座酶表现出强大的基因转移活性,与人基因组中同源内源染色体ZFP位点的靶向结合,以及定点转座子整合到人细胞中包含单个ZFP位点的游离质粒靶中。我们评估了ZFP-piggyBac直接将基因整合到人类基因组中工程染色体ZFP目标位点的能力,并且与天然piggyBac相比,始终观察到更高程度的ZFP-piggyBac定点基因组整合。染色质免疫沉淀(ChIP)实验显示,天然piggyBac与支持整合的我们设计的含TTAA的染色体靶标结合,但与缺乏整合的TTAA缺陷型染色体靶标结合。我们的结果提供了使用嵌合锌指-piggyBac转座酶直接整合到用户定义的染色体位置的要求的见解。

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