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Efficient Targeted Mutagenesis in Medaka Using Custom-Designed Transcription Activator-Like Effector Nucleases

机译:使用定制的转录激活因子样效应子核酸酶在Medaka中进行高效的定向诱变

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摘要

Transcription activator-like effector nucleases (TALENs) have become powerful tools for targeted genome editing. Here we demonstrate efficient targeted mutagenesis in medaka (Oryzias latipes), which serves as an excellent vertebrate model for genetics and genomics. We designed and constructed a pair of TALENs targeting the medaka DJ-1 gene, a homolog of human DJ-1 (PARK7). These TALENs induced a number of insertions and deletions in the injected embryos with extremely high efficiency. This induction of mutations occurred in a dose-dependent manner. All screened G0 fish injected with the TALENs transmitted the TALEN-induced mutations to the next generation with high efficiency (44–100%). We also confirmed that these TALENs induced site-specific mutations because none of the mutations were found at potential off-target sites. In addition, the DJ-1 protein was lost in DJ-1Δ7/Δ7 fish that carried a TALEN-induced frameshift mutation in both alleles. We also investigated the effect of the N- and C-terminal regions of the transcription activator-like (TAL) effector domain on the gene-disrupting activity of DJ1-TALENs and found that 287 amino acids at the N terminus and 63 amino acids at the C terminus of the TAL domain exhibited the highest disrupting activity in the injected embryos. Our results suggest that TALENs enable us to rapidly and efficiently establish knockout medaka strains. This is the first report of targeted mutagenesis in medaka using TALENs. The TALEN technology will expand the potential of medaka as a model system for genetics and genomics.
机译:转录激活子样效应核酸酶(TALENs)已成为用于靶向基因组编辑的强大工具。在这里,我们证明了在高中(Oryzias latipes)中有效的定向诱变,它是遗传学和基因组学的出色脊椎动物模型。我们设计并构建了一对针对medaka DJ-1基因(人DJ-1(PARK7)的同系物)的TALEN。这些TALENs以极高的效率诱导了所注射胚胎中的许多插入和缺失。突变的诱导以剂量依赖性方式发生。所有筛选出的注射了TALENs的G0鱼,都将TALEN诱导的突变有效地传递给了下一代(44–100%)。我们还证实了这些TALENs诱导了位点特异性突变,因为在潜在的脱靶位点均未发现任何突变。此外,DJ-1 Δ7/Δ7鱼的DJ-1蛋白丢失,这两个等位基因均带有TALEN诱导的移码突变。我们还研究了转录激活因子(TAL)效应子域的N和C末端区域对DJ1-TALENs的基因破坏活性的影响,发现在N末端有287个氨基酸,在D末端有63个氨基酸。在注射的胚胎中,TAL结构域的C末端表现出最高的破坏活性。我们的结果表明,TALENs使我们能够快速有效地建立基因敲除的medaka菌株。这是使用TALENs在medaka进行定向诱变的首次报道。 TALEN技术将扩大medaka作为遗传学和基因组学模型系统的潜力。

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