The effects of length and sequence of gRNA on Cas13b and Cas13d activity in vitro and in vivo

Author:

Liu Yuhui1ORCID,Jing Ping1,Zhou Yi1,Zhang Jingyu1,Shi Jiahao1,Zhang Mengjie1,Yang Hua1,Fei Jian12

Affiliation:

1. School of Life Science and Technology Tongji University Shanghai China

2. Shanghai Engineering Research Center for Model Organisms SMOC Shanghai China

Abstract

AbstractCas13 are the only CRISPR/Cas systems found so far, which target RNA strand while preserving chromosomal integrity. Cas13b or Cas13d cleaves RNA by the crRNA guidance. However, the effect of the characteristics of the spacer sequences, such as the length and sequence preference, on the activity of Cas13b and Cas13d remains unclear. Our study shows that neither Cas13b nor Cas13d has a particular preference for the sequence composition of gRNA, including the sequence of crRNA and its flanking sites on target RNA. However, the crRNA, complementary to the middle part of the target RNA, seems to show higher cleavage efficiency for both Cas13b and Cas13d. As for the length of crRNAs, the most appropriate crRNA length for Cas13b is 22–25 nt and crRNA as short as 15 nt is still functional. Whereas, Cas13d requires longer crRNA, and 22–30 nt crRNA can achieve good effect. Both Cas13b and Cas13d show the ability to process precursor crRNAs. Our study suggests that Cas13b may have a stronger precursor processing ability than Cas13d.There are few in vivo studies on the application of Cas13b or Cas13d in mammals. With the methods of transgenic mice and hydrodynamic injection via tail vein, our study showed that both of them had high knock‐down efficiency against target RNA in vivo. These results indicate that Cas13b and Cas13d have great potential for in vivo RNA operation and disease treatment without damaging genomic DNA.

Publisher

Wiley

Subject

Molecular Medicine,Applied Microbiology and Biotechnology,General Medicine

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. CRISPR-based resistance to grapevine virus A;Frontiers in Plant Science;2023-12-04

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