首页> 美国卫生研究院文献>PLoS Clinical Trials >Efficient Methods for Targeted Mutagenesis in Zebrafish Using Zinc-Finger Nucleases: Data from Targeting of Nine Genes Using CompoZr or CoDA ZFNs
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Efficient Methods for Targeted Mutagenesis in Zebrafish Using Zinc-Finger Nucleases: Data from Targeting of Nine Genes Using CompoZr or CoDA ZFNs

机译:使用锌指核酸酶在斑马鱼中定向诱变的有效方法:使用CompoZr或CoDA ZFNs靶向九个基因的数据

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摘要

Recently, it has been shown that targeted mutagenesis using zinc-finger nucleases (ZFNs) and transcription activator-like effector nucleases (TALENs) can be used to generate knockout zebrafish lines for analysis of their function and/or developing disease models. A number of different methods have been developed for the design and assembly of gene-specific ZFNs and TALENs, making them easily available to most zebrafish researchers. Regardless of the choice of targeting nuclease, the process of generating mutant fish is similar. It is a time-consuming and multi-step process that can benefit significantly from development of efficient high throughput methods. In this study, we used ZFNs assembled through either the CompoZr (Sigma-Aldrich) or the CoDA (context-dependent assembly) platforms to generate mutant zebrafish for nine genes. We report our improved high throughput methods for 1) evaluation of ZFNs activity by somatic lesion analysis using colony PCR, eliminating the need for plasmid DNA extractions from a large number of clones, and 2) a sensitive founder screening strategy using fluorescent PCR with PIG-tailed primers that eliminates the stutter bands and accurately identifies even single nucleotide insertions and deletions. Using these protocols, we have generated multiple mutant alleles for seven genes, five of which were targeted with CompoZr ZFNs and two with CoDA ZFNs. Our data also revealed that at least five-fold higher mRNA dose was required to achieve mutagenesis with CoDA ZFNs than with CompoZr ZFNs, and their somatic lesion frequency was lower (<5%) when compared to CopmoZr ZFNs (9–98%). This work provides high throughput protocols for efficient generation of zebrafish mutants using ZFNs and TALENs.
机译:近来,已经显示使用锌指核酸酶(ZFN)和转录激活因子样效应子核酸酶(TALEN)的靶向诱变可用于产生敲除斑马鱼品系,以分析其功能和/或发展疾病模型。已经开发出许多不同的方法来设计和组装基因特异性ZFN和TALEN,这使得大多数斑马鱼研究人员可以轻松获得它们。无论选择何种靶向核酸酶,产生突变鱼的过程都是相似的。这是一个耗时且多步骤的过程,可以从开发高效的高通量方法中受益匪浅。在这项研究中,我们使用通过CompoZr(Sigma-Aldrich)或CoDA(上下文相关组装)平台组装的ZFN生成了9个基因的突变斑马鱼。我们报告了改进的高通量方法,用于:1)使用菌落PCR通过体细胞病变分析评估ZFNs活性,消除了从大量克隆中提取质粒DNA的需要,以及2)使用带有PIG-消除引子条带的尾引物,甚至可以准确识别单个核苷酸的插入和缺失。使用这些协议,我们为七个基因生成了多个突变等位基因,其中五个针对CompoZr ZFN,而两个针对CoDA ZFN。我们的数据还显示,与CopmoZr ZFN(9-98%)相比,使用CoDA ZFN诱变所需的mRNA剂量至少要比CompoZr ZFNs高五倍,并且它们的体细胞病变频率更低(<5%)。这项工作为使用ZFN和TALEN高效生成斑马鱼突变体提供了高通量方案。

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