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利用RNA引导的碱基编辑在滇南小耳猪中高效产生p53双等位基因突变

Efficient Generation of P53 Biallelic Mutations in Diannan Miniature Pigs Using RNA-Guided Base Editing.

作者信息

Li Honghui, Cheng Wenmin, Chen Bowei, Pu Shaoxia, Fan Ninglin, Zhang Xiaolin, Jiao Deling, Shi Dejia, Guo Jianxiong, Li Zhuo, Qing Yubo, Jia Baoyu, Zhao Hong-Ye, Wei Hong-Jiang

机构信息

Yunnan Key Laboratory of Porcine Gene Editing and Xenotransplantation, Kunming 650201, China.

Faculty of Animal Science and Technology, Yunnan Agricultural University, Kunming 650201, China.

出版信息

Life (Basel). 2021 Dec 17;11(12):1417. doi: 10.3390/life11121417.

Abstract

The base editing 3 (BE3) system, a single-base gene editing technology developed using CRISPR/Cas9n, has a broad range of applications for human disease model construction and gene therapy, as it is highly efficient, accurate, and non-destructive. P53 mutations are present in more than 50% of human malignancies. Due to the similarities between humans and pigs at the molecular level, pig models carrying P53 mutations can be used to research the mechanism of tumorigenesis and improve tumor diagnosis and treatment. According to pathogenic mutations of the human P53 gene at W146* and Q100*, sgRNAs were designed to target exon 4 and exon 5 of the porcine P53 gene. The target editing efficiencies of the two sgRNAs were 61.9% and 50.0%, respectively. The editing efficiency of the BE3 system was highest (about 60%) when C (or G) was at the 5th base. Puromycin screening revealed that 75.0% (21/28) and 68.7% (22/32) of cell colonies contained a P53 mutation at sgRNA-Exon5 and sgRNA-Exon4, respectively. The reconstructed embryos from sgRNA-Exon5-5# were transferred into six recipient gilts, all of which aborted. The reconstructed embryos from sgRNA-Exon4-7# were transferred into 6 recipient gilts, 3 of which became pregnant, resulting in 14 live and 3 dead piglets. Sequencing analyses of the target site confirmed 1 P53 monoallelic mutation and 16 biallelic mutations. The qPCR analysis showed that the P53 mRNA expression level was significantly decreased in different tissues of the P53 mutant piglets ( < 0.05). Additionally, confocal microscopy and western blot analysis revealed an absence of P53 expression in the P53 mutant fibroblasts, livers, and lung tissues. In conclusion, a porcine cancer model with a P53 point mutation can be obtained via the BE3 system and somatic cell nuclear transfer (SCNT).

摘要

碱基编辑3(BE3)系统是一种利用CRISPR/Cas9n开发的单碱基基因编辑技术,因其高效、准确且无创,在人类疾病模型构建和基因治疗中具有广泛应用。超过50%的人类恶性肿瘤中存在p53突变。由于人类和猪在分子水平上具有相似性,携带p53突变的猪模型可用于研究肿瘤发生机制并改善肿瘤诊断和治疗。根据人类p53基因W146和Q100处的致病突变,设计sgRNA靶向猪p53基因的第4外显子和第5外显子。两种sgRNA的靶向编辑效率分别为61.9%和50.0%。当第5个碱基为C(或G)时,BE3系统的编辑效率最高(约60%)。嘌呤霉素筛选显示,sgRNA-Exon5和sgRNA-Exon4分别有75.0%(21/28)和68.7%(22/32)的细胞集落含有p53突变。来自sgRNA-Exon5-5#的重构胚胎被移植到6头受体后备母猪中,所有母猪均流产。来自sgRNA-Exon4-7#的重构胚胎被移植到6头受体后备母猪中,其中3头怀孕,产下14头活仔猪和3头死仔猪。靶位点的测序分析证实了1个p53单等位基因突变和16个双等位基因突变。qPCR分析表明,p53突变仔猪不同组织中的p53 mRNA表达水平显著降低(<0.05)。此外,共聚焦显微镜和蛋白质免疫印迹分析显示,p53突变的成纤维细胞、肝脏和肺组织中不存在p53表达。总之,通过BE3系统和体细胞核移植(SCNT)可获得具有p53点突变的猪癌症模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9307/8706133/a8efd0367268/life-11-01417-g001.jpg

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