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A rapid assay to quantify the cleavage efficiency of custom-designed nucleases in planta

机译:快速定量分析定制设计的核酸酶在植物中的切割效率的方法

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Custom-designed nucleases are a promising technology for genome editing through the catalysis of double-strand DNA breaks within target loci and subsequent repair by the host cell, which can result in targeted mutagenesis or gene replacement. Implementing this new technology requires a rapid means to determine the cleavage efficiency of these custom-designed proteins in planta. Here we present such an assay that is based on cleavage-dependent luciferase gene correction as part of a transient dual-luciferase? reporter (Promega) expression system. This assay consists of co-infiltrating Nicotiana benthamiana leaves with two Agrobacterium tumefaciens strains: one contains the target sequence embedded within a luciferase reporter gene and the second strain contains the custom-designed nuclease gene(s). We compared repair following site-specific nuclease digestion through non-homologous DNA end-joining, as opposed to single strand DNA annealing, as a means to restore an out-of-frame luciferase gene cleavage-reporter construct. We show, using luminometer measurements and bioluminescence imaging, that the assay for non-homologous end-joining is sensitive, quantitative, reproducible and rapid in estimating custom-designed nucleases' cleavage efficiency. We detected cleavage by two out of three transcription activator-like effector nucleases that we custom-designed for targets in the Arabidopsis CRUCIFERIN3 gene, and we compared with the well-established 'QQR' zinc-finger nuclease. The assay we report requires only standard equipment and basic plant molecular biology techniques, and it can be carried out within a few days. Different types of custom-designed nucleases can be preliminarily tested in our assay system before their downstream application in plant genome editing.
机译:定制设计的核酸酶是一种有前途的技术,可通过催化靶位点内的双链DNA断裂并随后被宿主细胞修复来进行基因组编辑,这可能导致靶向诱变或基因置换。实施这项新技术需要一种快速的方法来确定这些定制设计的蛋白质在植物中的切割效率。在这里,我们提出了一种基于裂解依赖的荧光素酶基因校正作为暂时性双重荧光素酶的一部分的检测方法。记者(Promega)表达系统。该测定包括与两个根癌土壤杆菌菌株共同浸润的本氏烟草叶片:一个包含嵌入荧光素酶报道基因的靶序列,第二个菌株包含定制设计的核酸酶基因。我们比较了通过非同源DNA末端连接的位点特异性核酸酶消化后的修复,而不是单链DNA退火,以此作为恢复框架外荧光素酶基因切割-报告基因构建的手段。我们使用光度计测量和生物发光成像显示,在估计定制设计的核酸酶切割效率时,非同源末端连接的分析灵敏,定量,可重现和快速。我们检测到了针对拟南芥CRUCIFERIN3基因中的靶标定制设计的三种转录激活因子样效应核酸酶中的两种,并与成熟的“ QQR”锌指核酸酶进行了比较。我们报告的测定仅需标准设备和基本的植物分子生物学技术,即可在几天内完成。可以在我们的测定系统中初步测试不同类型的定制设计的核酸酶,然后将其下游应用到植物基因组编辑中。

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