State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.
College of Life Science, University of Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2024 Aug 23;15(1):7277. doi: 10.1038/s41467-024-51695-x.
Type I CRISPR-Cas systems are widespread and have exhibited high versatility and efficiency in genome editing and gene regulation in prokaryotes. However, due to the multi-subunit composition and large size, their application in eukaryotes has not been thoroughly investigated. Here, we demonstrate that the type I-F2 Cascade, the most compact among type I systems, with a total gene size smaller than that of SpCas9, can be developed for transcriptional activation in human cells. The efficiency of the engineered I-F2 tool can match or surpass that of dCas9. Additionally, we create a base editor using the I-F2 Cascade, which induces a considerably wide editing window (~30 nt) with a bimodal distribution. It can expand targetable sites, which is useful for disrupting functional sequences and genetic screening. This research underscores the application of compact type I systems in eukaryotes, particularly in the development of a base editor with a wide editing window.
I 型 CRISPR-Cas 系统广泛存在,在原核生物的基因组编辑和基因调控方面表现出了很高的多功能性和效率。然而,由于其多亚基组成和较大的尺寸,它们在真核生物中的应用尚未得到彻底研究。在这里,我们证明了 I 型系统中最为紧凑的 I-F2 级联系统,其总基因大小小于 SpCas9,可以在人类细胞中进行转录激活。工程化的 I-F2 工具的效率可以与 dCas9 相匹配或超过 dCas9。此外,我们使用 I-F2 级联系统创建了一个碱基编辑器,它可以诱导一个具有双峰分布的相当宽的编辑窗口(~30nt)。它可以扩展靶向位点,这对于破坏功能序列和遗传筛选非常有用。这项研究强调了紧凑型 I 型系统在真核生物中的应用,特别是在开发具有宽编辑窗口的碱基编辑器方面。