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Zinc finger protein-dependent and -independent contributions to the in vivo off-target activity of zinc finger nucleases

机译:锌指蛋白依赖性和非依赖性对锌指核酸酶体内脱靶活性的贡献

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摘要

Zinc finger nucleases (ZFNs) facilitate tailor-made genomic modifications in vivo through the creation of targeted double-stranded breaks. They have been employed to modify the genomes of plants and animals, and cell-based therapies utilizing ZFNs are undergoing clinical trials. However, many ZFNs display dose-dependent toxicity presumably due to the generation of undesired double-stranded breaks at off-target sites. To evaluate the parameters influencing the functional specificity of ZFNs, we compared the in vivo activity of ZFN variants targeting the zebrafish kdrl locus, which display both high on-target activity and dose-dependent toxicity. We evaluated their functional specificity by assessing lesion frequency at 141 potential off-target sites using Illumina sequencing. Only a minority of these off-target sites accumulated lesions, where the thermodynamics of zinc finger–DNA recognition appear to be a defining feature of active sites. Surprisingly, we observed that both the specificity of the incorporated zinc fingers and the choice of the engineered nuclease domain could independently influence the fidelity of these ZFNs. The results of this study have implications for the assessment of likely off-target sites within a genome and point to both zinc finger-dependent and -independent characteristics that can be tailored to create ZFNs with greater precision.
机译:锌指核酸酶(ZFN)通过创建靶向的双链断裂,促进了体内特制的基因组修饰。它们已被用于修饰动植物的基因组,利用ZFN的基于细胞的疗法正在临床试验中。但是,许多ZFN表现出剂量依赖性毒性,可能是由于在脱靶位点产生了不希望的双链断裂。为了评估影响ZFN功能特异性的参数,我们比较了针对斑马鱼kdrl位点的ZFN变体的体内活性,该斑马鱼kdrl位点表现出高的靶活性和剂量依赖性毒性。我们通过使用Illumina测序评估141个潜在脱靶位点的病变频率来评估其功能特异性。这些脱靶位中只有极少数会积聚病灶,锌指DNA识别的热力学似乎是活性位点的特征。令人惊讶地,我们观察到掺入的锌指的特异性和工程化核酸酶结构域的选择都可以独立地影响这些ZFN的保真度。这项研究的结果对评估基因组中可能的脱靶位点具有影响,并指出锌指依赖性和非依赖性特征可以定制以更精确地创建ZFN。

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