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CRISPR核糖核蛋白介导的猪成纤维细胞中多个基因的精确编辑。

CRISPR Ribonucleoprotein-Mediated Precise Editing of Multiple Genes in Porcine Fibroblasts.

作者信息

Guo Xiaochen, Liu Chang, Zhao Yunjing, Jiang Chaoqian, Jin Junxue, Liu Zhonghua, Mu Yanshuang

机构信息

Key Laboratory of Animal Cellular and Genetic Engineering of Heilongjiang Province, College of Life Science, Northeast Agricultural University, Harbin 150030, China.

College of Life Science, Northeast Agricultural University, Harbin 150030, China.

出版信息

Animals (Basel). 2024 Feb 18;14(4):650. doi: 10.3390/ani14040650.

Abstract

The multi-gene editing porcine cell model can analyze the genetic mechanisms of multiple genes, which is beneficial for accelerating genetic breeding. However, there has been a lack of an effective strategy to simultaneously perform precise multi-gene editing in porcine cells. In this study, we aimed to improve the efficiency of CRISPR RNP-mediated precise gene editing in porcine cells. CRISPR RNP, including Cas9 protein, sgRNA, and ssODN, was used to generate precise nucleotide substitutions by homology-directed repair (HDR) in porcine fetal fibroblasts (PFFs). These components were introduced into PFFs via electroporation, followed by PCR for each target site. To enhance HDR efficacy, small-molecule M3814 and phosphorothioate-modified ssODN were employed. All target DNA samples were sequenced and analyzed, and the efficiencies of different combinations of the CRISPR RNP system in target sites were compared. The results showed that when 2 μM M3814, a small molecule which inhibits NHEJ-mediated repair by blocking DNA-PKs activity, was used, there was no toxicity to PFFs. The CRISPR RNP-mediated HDR efficiency increased 3.62-fold. The combination of CRISPR RNP with 2 μM M3814 and PS-ssODNs achieved an HDR-mediated precision gene modification efficiency of approximately 42.81% in mutated cells, a 6.38-fold increase compared to the control group. Then, we used the optimized CRISPR RNP system to perform simultaneous editing of two and three loci at the and genes. The results showed that the CRISPR RNP system could simultaneously edit two and three loci. The efficiency of simultaneous editing of two loci was not significantly different from that of single-gene editing compared to the efficiency of single-locus editing. The efficiency of simultaneous precise editing of , exon 1, and exon 2 was 0.29%, 0.24%, and 1.05%, respectively. This study demonstrated that a 2 μM M3814 combination with PS-ssODNs improves the efficacy of CRISPR RNP-mediated precise gene editing and allows for precise editing of up to three genes simultaneously in porcine cells.

摘要

多基因编辑猪细胞模型可以分析多个基因的遗传机制,这有利于加速遗传育种。然而,一直缺乏一种在猪细胞中同时进行精确多基因编辑的有效策略。在本研究中,我们旨在提高CRISPR核糖核蛋白(RNP)介导的猪细胞精确基因编辑效率。利用包括Cas9蛋白、单向导RNA(sgRNA)和单链寡脱氧核苷酸(ssODN)的CRISPR RNP,通过同源定向修复(HDR)在猪胎儿成纤维细胞(PFFs)中产生精确的核苷酸替换。通过电穿孔将这些组分导入PFFs,随后对每个靶位点进行聚合酶链反应(PCR)。为提高HDR效率,使用了小分子M3814和硫代磷酸酯修饰的ssODN。对所有靶DNA样本进行测序和分析,并比较CRISPR RNP系统在靶位点的不同组合效率。结果显示,当使用2 μM M3814(一种通过阻断DNA依赖蛋白激酶(DNA-PKs)活性来抑制非同源末端连接(NHEJ)介导修复的小分子)时,对PFFs没有毒性。CRISPR RNP介导的HDR效率提高了3.62倍。CRISPR RNP与2 μM M3814和硫代磷酸酯修饰的ssODN(PS-ssODNs)的组合在突变细胞中实现了约42.81%的HDR介导的精确基因修饰效率,与对照组相比提高了6.38倍。然后,我们使用优化的CRISPR RNP系统在 和 基因上对两个和三个位点进行同时编辑。结果显示,CRISPR RNP系统可以同时编辑两个和三个位点。与单一位点编辑效率相比,两个位点同时编辑的效率与单基因编辑的效率没有显著差异。 、 外显子1和 外显子2同时精确编辑的效率分别为0.29%、0.24%和1.05%。本研究表明,2 μM M3814与PS-ssODNs的组合提高了CRISPR RNP介导的精确基因编辑效率,并允许在猪细胞中同时对多达三个基因进行精确编辑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d2d/10886166/f8153d8d16b9/animals-14-00650-g001.jpg

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