Huo Xueyun, Du Yating, Lu Jing, Guo Meng, Li Zhenkun, Zhang Shuangyue, Li Xiaohong, Chen Zhenwen, Du Xiaoyan
School of Basic Medical Science, Capital Medical University, Beijing 100069, China.
School of Basic Medical Science, Capital Medical University, Beijing 100069, China; Department of Laboratory Animal, Capital Medical University, Beijing 100069, China.
Mutat Res. 2017 Mar;797-799:1-6. doi: 10.1016/j.mrfmmm.2017.02.003. Epub 2017 Feb 28.
Clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR- associated (Cas) protein 9 system is a novel and powerful tool which is widely used for genome editing. CRISPR/Cas9 is RNA-guided and can lead to desired genomic modifications. However, whether the CRISPR/Cas9-mediated genome editing causes genomic alterations and genomic instability, such as microsatellite instability (MSI), is still unknown. Here we detected MSI in 21 CRISPR/Cas9 mouse strains using a panel of 42 microsatellite loci which were selected from our previous studies. Surprisingly, MSI occurrence was common in CRISPR/Cas9 modified genome, and most of the strains (19/21, 90.5%) examined showed MSI. Of 42 loci examined, 8 loci (8/42, 19.05%) exhibited MSI in the Cas9 editing mice. The Ttll9 (4/42, 9.5%) were the most unstable strains, and D10Mit3 and D10Mit198 (9/21, 42.9%) were considered to be the most "hot" loci in the Cas9 strains we tested. Through analyzing the mutation of microsatellite loci, we provide new insights into the genomic alterations of CRISPR/Cas9 models and it will help us for a better understanding of this powerful technology.
成簇规律间隔短回文重复序列(CRISPR)/CRISPR相关蛋白9(Cas)系统是一种新型且强大的工具,被广泛用于基因组编辑。CRISPR/Cas9由RNA引导,可导致所需的基因组修饰。然而,CRISPR/Cas9介导的基因组编辑是否会引起基因组改变和基因组不稳定性,如微卫星不稳定性(MSI),仍不清楚。在此,我们使用从我们之前的研究中挑选出的一组42个微卫星位点,检测了21种CRISPR/Cas9小鼠品系中的MSI。令人惊讶的是,MSI在CRISPR/Cas9修饰的基因组中很常见,所检测的大多数品系(19/21,90.5%)都显示出MSI。在所检测的42个位点中,有8个位点(8/42,19.05%)在Cas9编辑的小鼠中表现出MSI。Ttll9(4/42,9.5%)是最不稳定的品系,而D10Mit3和D10Mit198(9/21,42.9%)被认为是我们所测试的Cas9品系中最“热点”的位点。通过分析微卫星位点的突变,我们为CRISPR/Cas9模型的基因组改变提供了新的见解,这将有助于我们更好地理解这项强大的技术。