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Comparison of T7E1 and Surveyor Mismatch Cleavage Assays to Detect Mutations Triggered by Engineered Nucleases

机译:T7E1和验船师错配切割检测检测工程核酸酶触发突变的比较。

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摘要

Genome editing using engineered nucleases is used for targeted mutagenesis. But because genome editing does not target all loci with similar efficiencies, the mutation hit-rate at a given locus needs to be evaluated. The analysis of mutants obtained using engineered nucleases requires specific methods for mutation detection, and the enzyme mismatch cleavage method is used commonly for this purpose. This method uses enzymes that cleave heteroduplex DNA at mismatches and extrahelical loops formed by single or multiple nucleotides. Bacteriophage resolvases and single-stranded nucleases are used commonly in the assay but have not been compared side-by-side on mutations obtained by engineered nucleases. We present the first comparison of the sensitivity of T7E1 and Surveyor EMC assays on deletions and point mutations obtained by zinc finger nuclease targeting in frog embryos. We report the mutation detection limits and efficiencies of T7E1 and Surveyor. In addition, we find that T7E1 outperforms the Surveyor nuclease in terms of sensitivity with deletion substrates, whereas Surveyor is better for detecting single nucleotide changes. We conclude that T7E1 is the preferred enzyme to scan mutations triggered by engineered nucleases.
机译:使用工程核酸酶进行基因组编辑可用于靶向诱变。但是,由于基因组编辑并没有针对效率相似的所有基因座,因此需要评估给定基因座处的突变命中率。使用工程核酸酶获得的突变体的分析需要特定的突变检测方法,而酶错配裂解法通常用于此目的。该方法使用的酶可在错配和单个或多个核苷酸形成的螺旋外环处切割异源双链DNA。噬菌体分离酶和单链核酸酶通常用于该测定中,但尚未通过工程核酸酶获得的突变进行并排比较。我们提出了T7E1和Surveyor EMC检测对青蛙胚胎中锌指核酸酶靶向获得的缺失和点突变的敏感性的首次比较。我们报告了突变检测极限和T7E1和Surveyor的效率。此外,我们发现在缺失底物的敏感性方面,T7E1优于Surveyor核酸酶,而Surveyor更适合检测单核苷酸变化。我们得出的结论是,T7E1是扫描由工程核酸酶触发的突变的首选酶。

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