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首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Efficient generation of GHR knockout Bama minipig fibroblast cells using CRISPR/Cas9-mediated gene editing
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Efficient generation of GHR knockout Bama minipig fibroblast cells using CRISPR/Cas9-mediated gene editing

机译:使用CRISPR / CAS9介导的基因编辑有效地产生GHR敲除BAMA MINIPIG成纤维细胞

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摘要

Dwarfism, also known as growth hormone deficiency (GHD), is a disease caused by genetic mutations that result in either a lack of growth hormone or insufficient secretion of growth hormone, resulting in a person's inability to grow normally. In the past, many studies focusing on GHD have made use of models of other diseases such as metabolic or infectious diseases. A viable GHD specific model system has not been used previously, thus limiting the interpretation of GHD results. The Bama minipig is unique to Guangxi province and has strong adaptability and disease resistance, and an incredibly short stature, which is especially important for the study of GHD. In addition, studies of GHR knockout Bama minipigs and GHR knockout Bama minipig fibroblast cells generated using CRISPR/Cas9 have not been previously reported. Therefore, the Bama minipig was selected as an animal model and as a tool for the study of GHD in this work. In this study, a Cas9 plasmid with sgRNA targeting the first exon of the GHR gene was transfected into Bama minipig kidney fibroblast cells to generate 22 GHR knockout Bama minipig kidney fibroblast cell lines (12 male monoclonal cells and 10 female monoclonal cells). After culture and identification, 11 of the 12 male clone cell lines showed double allele mutations, and the rate of positive alteration of GHR was 91.67%. Diallelic mutation of the target sequence occurred in 10 female clonal cell lines, with an effective positive mutation rate of 100%. Our experimental results not only showed that CRISPR/Cas9 could efficiently be used for gene editing in Bama minipig cells but also identified a highly efficient target site for the generation of a GHR knockout in other porcine models. Thus, the generation of GHR knockout male and female Bama fibroblast cells could lay a foundation for the birth of a future dwarfism model pig. We anticipate that the "mini" Bama minipig will be of improved use for biomedical and agricultural scientific research and for furthering our understanding of the genetic underpinnings of GHD.
机译:侏儒症,也被称为生长激素缺乏(GHD),是由遗传突变引起的疾病,导致缺乏生长激素或生长激素的分泌不足,导致人无法正常生长。在过去,许多重点研究GHD的研究已经利用了其他疾病的模型,例如代谢或传染病。先前未使用可行的GHD特定模型系统,从而限制了GHD结果的解释。 Bama Minipig对广西省独有,具有较强的适应性和抗病性,令人难以置信的矮小状态,对GHD的研究尤为重要。此外,还没有先前报道使用CRISPR / CAS9产生的GHR敲除BAMA MINIPIGS和GHR敲除BAMA MINIPIG成纤维细胞的成分细胞。因此,BAMA MINIPIG被选为动物模型,作为在这项工作中研究GHD的工具。在本研究中,将具有SGRNA的Cas9质粒靶向GHR基因的第一个外显子转染到巴马MINIPIG肾成纤维细胞中,以产生22GHR敲除BAMA MINIPIG肾成纤维细胞系(12个雄性单克隆细胞和10个雌性单克隆细胞)。在培养和鉴定之后,12个雄性克隆细胞系中的11个表现出双等位基因突变,并且GHR的阳性变化率为91.67%。靶序列的均蛋白突变发生在10个雌性克隆细胞系中,其有效阳性突变率为100%。我们的实验结果不仅表明CRISPR / CAS9可以有效地用于BAMA MINIPIG细胞中的基因编辑,而且还确定了在其他猪模型中产生GHR敲除的高效靶位点。因此,GHR敲除男性和女性BAMA成纤维细胞的产生可能为未来矮主义猪的诞生奠定基础。我们预计“迷你”巴马MINIPIG将改善生物医学和农业科学研究的用途,并进一步了解我们对GHD的遗传支持的理解。

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