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首页> 外文期刊>Reproductive Biology and Endocrinology >Efficient generation of GGTA1-null Diannan miniature pigs using TALENs combined with somatic cell nuclear transfer
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Efficient generation of GGTA1-null Diannan miniature pigs using TALENs combined with somatic cell nuclear transfer

机译:利用TALENs与体细胞核移植相结合,高效生成GGTA1无效的滇南小型猪

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Background α1,3-Galactosyltransferase (GGTA1) is essential for the biosynthesis of glycoproteins and therefore a simple and effective target for disrupting the expression of galactose α-1,3-galactose epitopes, which mediate hyperacute rejection (HAR) in xenotransplantation. Miniature pigs are considered to have the greatest potential as xenotransplantation donors. A GGTA1-knockout (GTKO) miniature pig might mitigate or prevent HAR in xenotransplantation. Methods Transcription activator-like effector nucleases (TALENs) were designed to target exon 6 of porcine GGTA1 gene. The targeting activity was evaluated using a luciferase SSA recombination assay. Biallelic GTKO cell lines were established from single-cell colonies of fetal fibroblasts derived from Diannan miniature pigs following transfection by electroporation with TALEN plasmids. One cell line was selected as donor cell line for somatic cell nuclear transfer (SCNT) for the generation of GTKO pigs. GTKO aborted fetuses, stillborn fetuses and live piglets were obtained. Genotyping of the collected cloned individuals was performed. The Gal expression in the fibroblasts and one piglet was analyzed by fluorescence activated cell sorting (FACS), confocal microscopy, immunohistochemical (IHC) staining and western blotting. Results The luciferase SSA recombination assay revealed that the targeting activities of the designed TALENs were 17.1-fold higher than those of the control. Three cell lines (3/126) showed GGTA1 biallelic knockout after modification by the TALENs. The GGTA1 biallelic modified C99# cell line enabled high-quality SCNT, as evidenced by the 22.3?% (458/2068) blastocyst developmental rate of the reconstructed embryos. The reconstructed GTKO embryos were subsequently transferred into 18 recipient gilts, of which 12 became pregnant, and six miscarried. Eight aborted fetuses were collected from the gilts that miscarried. One live fetus was obtained from one surrogate by caesarean after 33 d of gestation for genotyping. In total, 12 live and two stillborn piglets were collected from six surrogates by either caesarean or natural birth. Sequencing analyses of the target site confirmed the homozygous GGTA1-null mutation in all fetuses and piglets, consistent with the genotype of the donor cells. Furthermore, FACS, confocal?microscopy, IHC and western blotting analyses demonstrated that Gal epitopes were completely absent from the fibroblasts, kidneys and pancreas of one GTKO piglet. Conclusions TALENs combined with SCNT were successfully used to generate GTKO Diannan miniature piglets.
机译:背景技术α1,3-半乳糖基转移酶(GGTA1)对于糖蛋白的生物合成至关重要,因此是破坏半乳糖α-1,3-半乳糖表位表达的简单有效的靶点,该表位介导异种移植中的超急性排斥(HAR)。微型猪被认为具有最大的异种移植潜力。 GGTA1基因敲除(GTKO)小型猪可能减轻或预防异种移植中的HAR。方法设计转录激活因子样效应子核酸酶(TALENs),靶向猪GGTA1基因的6号外显子。使用荧光素酶SSA重组测定法评估靶向活性。双等位基因GTKO细胞系是通过电穿孔TALEN质粒后,从滇南小型猪的胎儿成纤维细胞的单细胞集落建立的。选择一种细胞系作为体细胞核移植(SCNT)的供体细胞系,以产生GTKO猪。获得了GTKO流产的胎儿,死胎和活仔猪。对收集的克隆个体进行基因分型。通过荧光激活细胞分选(FACS),共聚焦显微镜,免疫组化(IHC)染色和Western印迹分析成纤维细胞和一只仔猪中的Gal表达。结果荧光素酶SSA重组分析显示,设计的TALENs的靶向活性比对照高17.1倍。在TALENs修饰后,三个细胞系(3/126)显示出GGTA1双等位基因敲除。 GGTA1双等位基因修饰的C99#细胞系可实现高质量的SCNT,重建胚胎的胚泡发育率为22.3%(458/2068)。随后将重建的GTKO胚胎转移到18个受体后备母猪中,其中12个已怀孕,而6个则流产。从流产的小母猪中收集了八只流产的胎儿。妊娠33 d后,通过剖腹产从一名替代者中获得一名活胎儿。通过剖腹产或自然分娩,总共从6个代孕动物中收集了12头活猪和2头死胎。对靶位点的测序分析证实了所有胎儿和仔猪的纯合GGTA1无效突变,与供体细胞的基因型一致。此外,FACS,共聚焦显微镜,IHC和蛋白质印迹分析表明,一只GTKO仔猪的成纤维细胞,肾脏和胰腺完全没有Gal抗原决定簇。结论TALENs与SCNT的结合已成功用于GTKO滇南小型仔猪的生产。

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