Long read sequencing reveals transgene concatemerization and vector sequences integration following AAV-driven electroporation of CRISPR RNP complexes in mouse zygotes.

IF 4.9 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Frontiers in genome editing Pub Date : 2025-06-04 eCollection Date: 2025-01-01 DOI:10.3389/fgeed.2025.1582097
Muhammad W Luqman, Piroon Jenjaroenpun, Jessica Spathos, Nikhil Shingte, Mitchell Cummins, Pattaraporn Nimsamer, Lars M Ittner, Thidathip Wongsurawat, Fabien Delerue
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引用次数: 0

Abstract

Over the last decade CRISPR gene editing has been successfully used to streamline the generation of animal models for biomedical research purposes. However, one limitation to its use is the potential occurrence of on-target mutations that may be detrimental or otherwise unintended. These bystander mutations are often undetected using conventional genotyping methods. The use of Adeno-Associated Viruses (AAVs) to bring donor templates in zygotes is currently being deployed by transgenic cores around the world to generate knock-ins with large transgenes (i.e., 1-4 kb payloads). Thanks to a high level of efficiency and the relative ease to establish this technique, it recently became a method of choice for transgenic laboratories. However, a thorough analysis of the editing outcomes following this method is yet to be developed. To this end, we generated three different types of integration using AAVs in two different murine genes (i.e., Ace2 and Foxg1) and employed Oxford Nanopore Technologies long read sequencing to analyze the outcomes. Using a workflow that includes Cas9 enrichment and adaptive sampling, we showed that unintended on-target mutations, including duplication events and integration of viral sequences (sometimes reported using other workflows) can occur when using AAVs. This work highlights the importance of in-depth validation of the mutant lines generated and informs the uptake of this new method.

长读测序揭示了aav驱动的小鼠受精卵中CRISPR RNP复合物电穿孔后的转基因串联和载体序列整合。
在过去的十年里,CRISPR基因编辑已经成功地用于简化生物医学研究目的的动物模型的生成。然而,其使用的一个限制是可能发生靶上突变,这可能是有害的或其他意想不到的。使用传统的基因分型方法通常无法检测到这些旁观者突变。使用腺相关病毒(aav)将供体模板带入受精卵,目前正在世界各地的转基因核心中进行应用,以产生具有大转基因(即1-4 kb有效载荷)的敲入蛋白。由于这种技术的高效率和相对容易建立,它最近成为转基因实验室的一种选择方法。但是,还没有对这种方法的编辑结果进行彻底的分析。为此,我们利用aav在两个不同的小鼠基因(即Ace2和Foxg1)中生成了三种不同类型的整合,并使用Oxford Nanopore Technologies的长读测序技术对结果进行分析。使用包括Cas9富集和自适应采样在内的工作流程,我们发现在使用aav时可能发生意外的靶上突变,包括复制事件和病毒序列的整合(有时使用其他工作流程报告)。这项工作强调了对产生的突变系进行深入验证的重要性,并通知了这种新方法的采用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
7.00
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审稿时长
13 weeks
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