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Efficient Immunoglobulin Gene Disruption and Targeted Replacement in Rabbit Using Zinc Finger Nucleases

机译:使用锌指核酸酶的兔高效免疫球蛋白基因破坏和靶向置换

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摘要

Rabbits are widely used in biomedical research, yet techniques for their precise genetic modification are lacking. We demonstrate that zinc finger nucleases (ZFNs) introduced into fertilized oocytes can inactivate a chosen gene by mutagenesis and also mediate precise homologous recombination with a DNA gene-targeting vector to achieve the first gene knockout and targeted sequence replacement in rabbits. Two ZFN pairs were designed that target the rabbit immunoglobulin M (IgM) locus within exons 1 and 2. ZFN mRNAs were microinjected into pronuclear stage fertilized oocytes. Founder animals carrying distinct mutated IgM alleles were identified and bred to produce offspring. Functional knockout of the immunoglobulin heavy chain locus was confirmed by serum IgM and IgG deficiency and lack of IgM+ and IgG+ B lymphocytes. We then tested whether ZFN expression would enable efficient targeted sequence replacement in rabbit oocytes. ZFN mRNA was co-injected with a linear DNA vector designed to replace exon 1 of the IgM locus with ∼1.9 kb of novel sequence. Double strand break induced targeted replacement occurred in up to 17% of embryos and in 18% of fetuses analyzed. Two major goals have been achieved. First, inactivation of the endogenous IgM locus, which is an essential step for the production of therapeutic human polyclonal antibodies in the rabbit. Second, establishing efficient targeted gene manipulation and homologous recombination in a refractory animal species. ZFN mediated genetic engineering in the rabbit and other mammals opens new avenues of experimentation in immunology and many other research fields.
机译:兔子在生物医学研究中得到了广泛的应用,但缺乏对其进行精确基因修饰的技术。我们证明,引入受精卵母细胞的锌指核酸酶(ZFNs)可以通过诱变使选定的基因失活,并且还可以与DNA基因靶向载体介导精确的同源重组,从而在兔子中实现第一个基因敲除和靶向序列置换。设计了两个ZFN对,分别靶向第1外显子和第2外显子中的兔免疫球蛋白M(IgM)基因座。将ZFN mRNA微注射到原核受精卵母细胞中。鉴定出携带不同突变的IgM等位基因的创始人动物,并繁育后代。血清IgM和IgG缺乏以及IgM +和IgG + B淋巴细胞的缺乏证实了免疫球蛋白重链基因座的功能敲除。然后,我们测试了ZFN表达是否能够在兔卵母细胞中实现有效的靶向序列替换。 ZFN mRNA与线性DNA载体共注射,该载体设计为用约1.9 kb的新序列替换IgM基因座的外显子1。双链断裂诱导的靶向置换发生在多达17%的胚胎和18%的胎儿中。已经实现了两个主要目标。首先,内源性IgM基因座失活,这是在兔中产生治疗性人多克隆抗体的重要步骤。第二,在难治性动物物种中建立有效的靶向基因操作和同源重组。 ZFN介导的兔子和其他哺乳动物的基因工程为免疫学和许多其他研究领域的实验开辟了新途径。

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