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电穿孔前离心处理对猪胚胎基因编辑的影响。

Effects of centrifugation treatment before electroporation on gene editing in pig embryos.

机构信息

Bio-Innovation Research Center, Tokushima University, Tokushima, 7793233, Japan.

Faculty of Bioscience and Bioindustry, Tokushima University, Tokushima, 7793233, Japan.

出版信息

In Vitro Cell Dev Biol Anim. 2024 Aug;60(7):732-739. doi: 10.1007/s11626-024-00926-y. Epub 2024 Jun 4.

Abstract

Genetic mosaicism, characterized by multiple genotypes within an individual, is considered an obstacle to CRISPR/Cas9 genome editing in animal models. Despite the various strategies for minimizing mosaic mutations, no definitive methods exist to eliminate them. This study aimed to enhance gene editing efficiency in porcine zygotes using CRISPR/Cas9, which targets specific genes through centrifugation and zona pellucida removal before electroporation. Centrifugation at 2000 × g did not adversely affect blastocyst formation rates in zygotes electroporated with gRNA targeting the GGTA1 gene; instead, it led to increased total and monoallelic mutation rates compared with control zygotes without centrifugation. However, the groups had no significant differences in biallelic mutation rates. In zygotes electroporated with gRNA targeting the CMAH gene, centrifugation treatments exceeding 1000 × g significantly increased both biallelic mutation rates and mutation efficiency. The combination of centrifugation and zona pellucida removal did not have a detrimental effect on blastocyst formation rates. It led to a higher rate of double biallelic mutations in embryos targeting both GGTA1 and CMAH compared to embryos without centrifugation treatment. In summary, our results demonstrate that pre-electroporation treatments, including centrifugation and zona pellucida removal, positively influenced the reduction of mosaic mutations, with the effectiveness of centrifugation depending on the specific gRNA used.

摘要

遗传镶嵌现象,其特征是个体中存在多种基因型,被认为是 CRISPR/Cas9 基因组编辑在动物模型中面临的障碍。尽管有各种旨在最小化镶嵌突变的策略,但目前尚无明确的方法可以消除它们。本研究旨在通过 CRISPR/Cas9 提高猪受精卵的基因编辑效率,该方法通过离心和透明带去除在电穿孔前靶向特定基因。在电穿孔靶向 GGTA1 基因的 gRNA 的受精卵中,以 2000×g 离心不会对囊胚形成率产生不利影响;相反,与未离心的对照受精卵相比,它导致总突变率和单等位基因突变率增加。然而,两组在双等位基因突变率方面没有显著差异。在电穿孔靶向 CMAH 基因的 gRNA 的受精卵中,离心处理超过 1000×g 会显著增加双等位基因突变率和突变效率。与未进行离心处理的胚胎相比,离心和透明带去除的组合对囊胚形成率没有不利影响。它导致靶向 GGTA1 和 CMAH 的胚胎中的双等位基因双突变率更高。总之,我们的结果表明,包括离心和透明带去除在内的电穿孔前处理可积极影响减少镶嵌突变,离心的有效性取决于所用的特定 gRNA。

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