首页> 外文期刊>Journal of Translational Medicine >Efficient generation of P53 biallelic knockout Diannan miniature pigs via TALENs and somatic cell nuclear transfer
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Efficient generation of P53 biallelic knockout Diannan miniature pigs via TALENs and somatic cell nuclear transfer

机译:通过TALENs和体细胞核移植有效产生P53双等位基因敲除滇南小型猪

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Pigs have many features that make them attractive as biomedical models for various diseases, including cancer. P53 is an important tumor suppressor gene that exerts a central role in protecting cells from oncogenic transformation and is mutated in a large number of human cancers. P53 mutations occur in almost every type of tumor and in over 50% of all tumors. In a recent publication, pigs with a mutated P53 gene were generated that resulted in lymphoma and renal and osteogenic tumors. However, approximately 80% of human tumors have dysfunctional P53. A P53-deficient pig model is still required to elucidate. Transcription activator-like effector nucleases (TALENs) were designed to target porcine P53 exon 4. The targeting activity was evaluated using a luciferase SSA recombination assay. P53 biallelic knockout (KO) cell lines were established from single-cell colonies of fetal fibroblasts derived from Diannan miniature pigs followed by electroporation with TALENs plasmids. One cell line was selected as the donor cell line for somatic cell nuclear transfer (SCNT) for the generation of P53 KO pigs. P53 KO stillborn fetuses and living piglets were obtained. Gene typing of the collected cloned individuals was performed by T7EI assay and sequencing. Fibroblast cells from Diannan miniature piglets with a P53 biallelic knockout or wild type were analyzed for the P53 response to doxorubicin treatment by confocal microscopy and western blotting. The luciferase SSA recombination assay revealed that the targeting activities of the designed TALENs were 55.35-fold higher than those of the control. Eight cell lines (8/19) were mutated for P53, and five of them were biallelic knockouts. One of the biallelic knockout cell lines was selected as nuclear donor cells for SCNT. The cloned embryos were transferred into five recipient gilts, three of them becoming pregnant. Five live fetuses were obtained from one surrogate by caesarean section after 38 days of gestation for genotyping. Finally, six live piglets and one stillborn piglet were collected from two recipients by caesarean section. Sequencing analyses of the target site confirmed the P53 biallelic knockout in all fetuses and piglets, consistent with the genotype of the donor cells. The qPCR analysis showed that the expression of the P53 mRNA had significant reduction in various tissues of the knockout piglets. Furthermore, confocal microscopy and western blotting analyses demonstrated that the fibroblast cells of Diannan miniature piglets with a P53 biallelic knockout were defective in mediating DNA damage when incubated with doxorubicin. TALENs combined with SCNT was successfully used to generate P53 KO Diannan miniature pigs. Although these genetically engineered Diannan miniature pigs had no tumorigenic signs, the P53 gene was dysfunctional. We believe that these pigs will provide powerful new resources for preclinical oncology and basic cancer research.
机译:猪具有许多特征,使其成为各种疾病(包括癌症)的生物医学模型的吸引力。 P53是重要的抑癌基因,在保护细胞免于致癌性转化中发挥重要作用,并且在许多人类癌症中发生突变。 P53突变几乎发生在每种类型的肿瘤中,并且发生在所有肿瘤的50%以上。在最近的出版物中,产生了具有突变的P53基因的猪,这些猪导致淋巴瘤以及肾和成骨肿瘤。但是,大约80%的人类肿瘤患有功能失调的P53。仍需要阐明P53缺陷的猪模型。设计转录激活物样效应子核酸酶(TALENs)靶向猪P53外显子4。使用荧光素酶SSA重组分析评估靶向活性。从源自滇南小型猪的胎儿成纤维细胞的单细胞集落建立P53双等位基因敲除(KO)细胞系,然后用TALENs质粒进行电穿孔。选择一种细胞系作为体细胞核移植(SCNT)的供体细胞系,用于生成P53 KO猪。获得P53 KO死胎和活仔猪。通过T7EI测定和测序对收集的克隆个体进行基因分型。通过共聚焦显微镜和Western印迹分析了来自滇南小型仔猪的成纤维细胞,该仔猪具有P53双等位基因敲除或野生型,其对阿霉素处理的P53响应也得到了分析。荧光素酶SSA重组测定显示,设计的TALENs的靶向活性比对照高55.35倍。对P53突变了8个细胞系(8/19),其中5个是双等位基因敲除。选择双等位基因敲除细胞系之一作为SCNT的核供体细胞。克隆的胚胎被转移到五个受体后备母猪中,其中三个已怀孕。妊娠38天后,通过剖腹产从一名替代者中获得5只活胎儿进行基因分型。最后,通过剖腹产从两个接受者中收集了六个活猪和一个​​死胎。对靶位点的测序分析证实了所有胎儿和仔猪中的P53双等位基因敲除,与供体细胞的基因型一致。 qPCR分析表明,P53 mRNA的表达在剔除仔猪的各种组织中均有明显降低。此外,共聚焦显微镜和蛋白质印迹分析表明,当与阿霉素一起孵育时,具有P53双等位基因敲除的滇南小型仔猪的成纤维细胞在介导DNA损伤方面存在缺陷。 TALENs与SCNT的结合成功地用于生产P53 KO电南微型猪。尽管这些转基因的滇南小型猪没有致癌迹象,但P53基因却功能失调。我们相信,这些猪将为临床前肿瘤学和基础癌症研究提供强大的新资源。

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