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Engineered zinc finger nuclease-mediated homologous recombination of the human rhodopsin gene.

机译:人视紫红质基因的工程锌指核酸酶介导的同源重组。

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PURPOSE: Novel zinc finger nucleases (ZFNs) were designed to target the human rhodopsin gene and induce homologous recombination of a donor DNA fragment. METHODS: Three-finger zinc finger nucleases were designed based on previously published guidelines. To assay for ZFN specificity, the authors generated human embryonic retinoblast cell lines stably expressing a Pro23His rhodopsin, the most common mutation associated with autosomal dominant retinitis pigmentosa in North America. They report quantification of these rhodopsin-specific ZFNs to induce a targeted double-strand break in the human genome, demonstrate their ability to induce homologous recombination of a donor DNA fragment, and report the quantification of the frequency of ZFN-mediated homologous recombination. RESULTS: Compared with endogenous homologous recombination, the authors observed a 12-fold increase in homologous recombination and an absolute frequency of ZFN-directed homologous recombination as high as 17% in the human rhodopsin gene. CONCLUSIONS: ZFNs are chimeric proteins with significant potential for the treatment of inherited diseases. In this study, the authors report the design of novel ZFNs targeting the human rhodopsin gene. These ZFNs may be useful for the treatment of retinal diseases such as retinitis pigmentosa, one of the most common causes of inherited blindness in the developed world. Herein, they also report on several aspects of donor fragment design and in vitro conditions that facilitate ZFN-mediated homologous recombination.
机译:目的:设计新型锌指核酸酶(ZFN)以靶向人视紫红质基因并诱导供体DNA片段的同源重组。方法:根据以前发布的指南设计了三指锌指核酸酶。为了测定ZFN特异性,作者生成了稳定表达Pro23His视紫红质的人类胚胎成视网膜细胞细胞系,Pro23His视紫红质是北美常染色体显性视网膜色素变性相关的最常见突变。他们报告了对这些视紫红质特异性ZFN的定量,以诱导人类基因组中的定向双链断裂,证明了它们诱导供体DNA片段的同源重组的能力,并报告了ZFN介导的同源重组频率的量化。结果:与内源性同源重组相比,作者在人视紫红质基因中观察到同源重组增加了12倍,ZFN定向同源重组的绝对频率高达17%。结论:ZFNs是嵌合蛋白,在治疗遗传性疾病中具有巨大潜力。在这项研究中,作者报告了针对人视紫红质基因的新型ZFN的设计。这些ZFN可能用于治疗视网膜疾病,例如色素性视网膜炎,这是发达国家遗传性失明的最常见原因之一。在本文中,他们还报告了供体片段设计和促进ZFN介导的同源重组的体外条件的几个方面。

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