The Convenience of Single Homology Arm Donor DNA and CRISPR/Cas9-Nickase for Targeted Insertion of Long DNA Fragment

Mohsen Basiri, M. Behmanesh, Yaser Tahamtani, Keynoosh Khalooghi, A. Moradmand, H. Baharvand
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引用次数: 9

Abstract

Objective CRISPR/Cas9 technology provides a powerful tool for targeted modification of genomes. In this system, a donor DNA harboring two flanking homology arms is mostly used for targeted insertion of long exogenous DNA. Here, we introduced an alternative design for the donor DNA by incorporation of a single short homology arm into a circular plasmid. Materials and Methods In this experimental study, single homology arm donor was applied along with a single guide RNA (sgRNA) specific to the homology region, and either Cas9 or its mutant nickase variant (Cas9n). Using Pdx1 gene as the target locus the functionality of this system was evaluated in MIN6 cell line and murine embryonic stem cells (ESCs). Results Both wild type Cas9 and Cas9n could conduct the knock-in process with this system. We successfully applied this strategy with Cas9n for generation of Pdx1GFP knock-in mouse ESC lines. Altogether, our results demonstrated that a combination of a single homology arm donor, a single guide RNA and Cas9n is capable of precisely incorporating DNA fragments of multiple kilo base pairs into the targeted genomic locus. Conclusion While taking advantage of low off-target mutagenesis of the Cas9n, our new design strategy may facilitate the targeting process. Consequently, this strategy can be applied in knock-in or insertional inactivation studies.
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单同源臂供体DNA与CRISPR/Cas9-Nickase靶向插入长DNA片段的便利性
目的CRISPR/Cas9技术为基因组靶向修饰提供了强有力的工具。在该系统中,包含两个侧翼同源臂的供体DNA主要用于长外源DNA的靶向插入。在这里,我们引入了另一种供体DNA的设计,通过将单个短同源臂结合到圆形质粒中。材料和方法在本实验研究中,将单个同源臂供体与同源区特异性的单个引导RNA (sgRNA)以及Cas9或其突变的nickase变体(Cas9n)一起应用。以Pdx1基因为靶位点,在MIN6细胞系和小鼠胚胎干细胞(ESCs)中评估了该系统的功能。结果野生型Cas9和Cas9n均可在该系统中进行敲入。我们成功地将这一策略与Cas9n一起应用于Pdx1GFP敲入小鼠ESC系的生成。总之,我们的研究结果表明,单个同源臂供体、单个引导RNA和Cas9n的组合能够将多个碱基对的DNA片段精确地整合到目标基因组位点中。结论利用Cas9n基因低脱靶突变的优势,我们的新设计策略可以促进靶向过程。因此,该策略可应用于敲入或插入失活研究。
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