The Third Affiliated Hospital of Southern Medical University, Guangzhou, 510630, China.
Guangzhou Key Laboratory of Neuropathic Pain Mechanism at Spinal Cord Level, Guangzhou, 510630, China.
Cell Mol Biol Lett. 2023 May 17;28(1):41. doi: 10.1186/s11658-023-00454-9.
The plasmid vector platform is the most commonly used vector for the expression of the versatile CRISPR-Cas technique and the promoter is a crucial element for the expression vector, thus profiling the impact of the promoters on CRISPR editors provides the basic information for the gene-editing toolkits and can be a guideline for its design. Herein, we made a parallel comparison among four commonly used promoters (CAG, ~ 1700 bp; EF1a core, ~ 210 bp; CMV, ~ 500 bp; and PGK, ~ 500 bp) in CRISPR-Cas12a system in mammalian cells to explore the impact of promoters on this powerful tool. We found that without badly damaging targeting specificity, the CAG promoter-driving Cas12a editor exhibited the most active (efficiency takes as 100%, specificity index = ~ 75%) in genomic cleavage, multiplex editing, transcriptional activation, and base editing, followed by promoter CMV (efficiency = 70 ~ 90% (vs CAG), specificity index = ~ 78%), and then EF1a core and PGK (both efficiency = 40-60%, vs CAG) but with higher specificity (specificity index = ~ 84% and ~ 82%, respectively). Therefore, CAG is recommended in the CRISPR-Cas12a system for the applications that need a robust editing activity but without size limitation, CMV mostly can be an alternative for CAG when requiring a smaller space, EF1a is similar to PGK with relatively high specificity, but has a smaller size, thus is more suitable for in vivo therapeutic applications. The data outlined the properties of the widely used promoters in the CRISPR-Cas12a system, which can be a guide for its applications and can be a useful resource for the gene-editing field.
质粒载体平台是最常用于表达多功能 CRISPR-Cas 技术的载体,而启动子是表达载体的关键元件,因此,分析启动子对 CRISPR 编辑器的影响可为基因编辑工具包提供基本信息,并可为其设计提供指导。在此,我们在哺乳动物细胞中的 CRISPR-Cas12a 系统中对四种常用启动子(CAG,1700 bp;EF1a 核心,210 bp;CMV,500 bp;PGK,500 bp)进行了平行比较,以探讨启动子对这种强大工具的影响。我们发现,在不严重损害靶向特异性的情况下,CAG 启动子驱动的 Cas12a 编辑器在基因组切割、多重编辑、转录激活和碱基编辑方面表现出最高的活性(效率为 100%,特异性指数75%),其次是启动子 CMV(效率为 70%90%(与 CAG 相比),特异性指数78%),然后是 EF1a 核心和 PGK(效率均为 40-60%(与 CAG 相比),但特异性更高(特异性指数分别为84%和~82%)。因此,在需要强大编辑活性但没有尺寸限制的情况下,建议在 CRISPR-Cas12a 系统中使用 CAG,在需要较小空间时,CMV 通常可以替代 CAG,EF1a 与 PGK 相似,特异性较高,但尺寸较小,因此更适合体内治疗应用。这些数据概述了 CRISPR-Cas12a 系统中广泛使用的启动子的特性,可为其应用提供指导,并为基因编辑领域提供有用的资源。