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Generation of GGTA1 biallelic knockout pigs via zinc-finger nucleases and somatic cell nuclear transfer

机译:通过锌指核酸酶和体细胞核转移产生GGTA1双等位基因敲除猪

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Genetically modified pigs are valuable models of human disease and donors of xenotransplanted organs. Conventional gene targeting in pig somatic cells is extremely inefficient. Zinc-finger nuclease (ZFN) technology has been shown to be a powerful tool for efficiently inducing mutations in the genome. However, ZFN-mediated targeting in pigs has rarely been achieved. Here, we used ZFNs to knock out the porcine α-1, 3-galactosyl-transferase (GGTA1) gene, which generates Gal epitopes that trigger hyperacute immune rejection in pig-to-human transplantation. Primary pig fibroblasts were transfected with ZFNs targeting the coding region of GGTA1. Eighteen mono-allelic and four biallelic knockout cell clones were obtained after drug selection with efficiencies of 23.4% and 5.2%, respectively. The biallelic cells were used to produce cloned pigs via somatic cell nuclear transfer (SCNT). Three GGTA1 null piglets were born, and one knockout primary fibroblast cell line was established from a cloned fetus. Gal epitopes on GGTA1 null pig cells were completely eliminated from the cell membrane. Functionally, GGTA1 knockout cells were protected from complement-mediated immune attacks when incubated with human serum. This study demonstrated that ZFN is an efficient tool in creating gene-modified pigs. GGTA1 null pigs and GGTA1 null fetal fibroblasts would benefit research and pig-to-human transplantation.
机译:转基因猪是人类疾病和异种移植器官供体的宝贵模型。猪体细胞中常规的基因靶向效率极低。锌指核酸酶(ZFN)技术已被证明是有效诱导基因组突变的强大工具。但是,很少能实现ZFN介导的猪靶向。在这里,我们使用ZFN敲除猪的α-1、3-半乳糖基转移酶(GGTA1)基因,该基因产生在猪对人移植中触发超急性免疫排斥的Gal表位。用靶向GGTA1编码区的ZFNs转染初级猪成纤维细胞。选择药物后,获得了18个单等位基因和4个双等位基因敲除细胞克隆,效率分别为23.4%和5.2%。双等位基因细胞用于通过体细胞核移植(SCNT)生产克隆的猪。出生了三只GGTA1无效仔猪,并从克隆的胎儿中建立了一个基因敲除的原代成纤维细胞系。从细胞膜上完全消除了GGTA1空猪细胞上的Gal表位。在功能上,与人血清一起孵育时,可保护GGTA1敲除细胞免受补体介导的免疫攻击。这项研究表明ZFN是创造基因修饰猪的有效工具。 GGTA1无效的猪和GGTA1无效的胎儿成纤维细胞将有利于研究和猪到人的移植。

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