Duan Nannan, Tang Shuqing, Zeng Baitao, Hu Zhiqing, Hu Qian, Wu Lingqian, Zhou Miaojin, Liang Desheng
Center for Medical Genetics, School of Life Sciences, Central South University, Changsha 410078, China.
Life (Basel). 2021 Nov 18;11(11):1262. doi: 10.3390/life11111262.
(1) Background: Gene editing technology, as represented by CRISPR is a powerful tool used in biomedical science. However, the editing efficiency of such technologies, especially in induced pluripotent stem cells (iPSCs) and other types of stem cells, is low which hinders its application in regenerative medicine; (2) Methods: A gene-editing system, COE, was designed and constructed based on CRISPR/Cas12a and Orip/EBNA1, and its editing efficiency was evaluated in human embryonic kidney 293T (HEK-293T) cells with flow cytometry and restriction fragment length polymorphism (RFLP) analysis. The COE was nucleofected into iPSCs, then, the editing efficiency was verified by a polymerase chain reaction and Sanger sequencing; (3) Results: With the extension of time, COE enables the generation of up to 90% insertion or deletion rates in HEK-293T cells. Furthermore, the deletion of a 2.5 kb fragment containing Exon 51 of the dystrophin gene () in iPSCs was achieved with high efficiency; out of 14 clones analyzed, 3 were positive. Additionally, the Exon 51-deleted iPSCs derived from cardiomyocytes had similar expression profiles to those of Duchenne muscular dystrophy (DMD) patient-specific iPSCs. Moreover, there was no residue of each component of the plasmid in the editing cells; (4) Conclusions: In this study, a novel, efficient, and safe gene-editing system, COE, was developed, providing a powerful tool for gene editing.
(1) 背景:以CRISPR为代表的基因编辑技术是生物医学科学中使用的一种强大工具。然而,此类技术的编辑效率较低,尤其是在诱导多能干细胞(iPSC)和其他类型的干细胞中,这阻碍了其在再生医学中的应用;(2) 方法:基于CRISPR/Cas12a和Orip/EBNA1设计并构建了一种基因编辑系统COE,并通过流式细胞术和限制性片段长度多态性(RFLP)分析在人胚肾293T(HEK - 293T)细胞中评估其编辑效率。将COE核转染到iPSC中,然后通过聚合酶链反应和桑格测序验证编辑效率;(3) 结果:随着时间的延长,COE在HEK - 293T细胞中能够产生高达90%的插入或缺失率。此外,在iPSC中高效实现了对包含抗肌萎缩蛋白基因外显子51的2.5 kb片段的缺失;在分析的14个克隆中,有3个呈阳性。此外,源自心肌细胞的外显子51缺失的iPSC与杜氏肌营养不良(DMD)患者特异性iPSC具有相似的表达谱。而且,编辑细胞中没有质粒各成分的残留;(4) 结论:在本研究中,开发了一种新型、高效且安全的基因编辑系统COE,为基因编辑提供了一种强大的工具。