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Germline Transgenic Pigs by Sleeping Beauty Transposition in Porcine Zygotes and Targeted Integration in the Pig Genome

机译:睡美人转基因猪合子中的转基因种猪和猪基因组中的靶向整合。

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摘要

Genetic engineering can expand the utility of pigs for modeling human diseases, and for developing advanced therapeutic approaches. However, the inefficient production of transgenic pigs represents a technological bottleneck. Here, we assessed the hyperactive Sleeping Beauty (SB100X) transposon system for enzyme-catalyzed transgene integration into the embryonic porcine genome. The components of the transposon vector system were microinjected as circular plasmids into the cytoplasm of porcine zygotes, resulting in high frequencies of transgenic fetuses and piglets. The transgenic animals showed normal development and persistent reporter gene expression for >12 months. Molecular hallmarks of transposition were confirmed by analysis of 25 genomic insertion sites. We demonstrate germ-line transmission, segregation of individual transposons, and continued, copy number-dependent transgene expression in F1-offspring. In addition, we demonstrate target-selected gene insertion into transposon-tagged genomic loci by Cre-loxP-based cassette exchange in somatic cells followed by nuclear transfer. Transposase-catalyzed transgenesis in a large mammalian species expands the arsenal of transgenic technologies for use in domestic animals and will facilitate the development of large animal models for human diseases.
机译:基因工程可以扩大猪在模拟人类疾病和开发先进治疗方法方面的用途。但是,转基因猪的低效生产代表了技术瓶颈。在这里,我们评估了酶促转基因整合到胚胎猪基因组中的多动睡眠美人(SB100X)转座子系统。将转座子载体系统的成分作为环状质粒微注射到猪合子的细胞质中,导致转基因胎儿和仔猪的频率很高。转基因动物显示正常发育并持续报道基因表达超过12个月。通过分析25个基因组插入位点确认了转座的分子标志。我们证明了种系传递,单个转座子的分离,以及在F1后代中持续的,拷贝数依赖性转基因表达。另外,我们证明了通过在体细胞中基于Cre-loxP的盒式交换,然后通过核转移,将目标选择的基因插入转座子标记的基因组位点。大型哺乳动物物种中的转座酶催化转基因扩大了用于家畜的转基因技术的范围,并将促进人类疾病大型动物模型的开发。

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