Split-tracrRNA as an efficient tracrRNA system with an improved potential of scalability
- Authors
- Park, Jihyun; Kang, Seong Jae; Go, Seulgi; Lee, Jeongmin; An, Jinsu; Chung, Hak Suk; Jeong, Cherlhyun; Ahn, Dae-Ro
- Issue Date
- 2023-05
- Publisher
- Royal Society of Chemistry
- Citation
- Biomaterials Science, v.11, no.9, pp.3241 - 3251
- Abstract
- Due to the relatively long sequence, tracrRNAs are chemically less synthesizable than crRNAs, leading to limited scalability of RNA guides for CRISPR-Cas9 systems. To develop shortened versions of RNA guides with improved cost-effectiveness, we have developed a split-tracrRNA system by nicking the 67-mer tracrRNA (tracrRNA(67)). Cellular gene editing assays and in vitro DNA cleavage assays revealed that the position of the nick is critical for maintaining the activity of tracrRNA(67). TracrRNA(41 + 23), produced by nicking in stem loop 2, showed gene editing efficiency and specificity comparable to those of tracrRNA(67). Removal of the loop of stem loop 2 was further possible without compromising the efficiency and specificity when the stem duplex was stabilized via a high GC content. Binding assays and single-molecule experiments suggested that efficient split-tracrRNAs could be engineered as long as their binding affinity to Cas9 and their reaction kinetics are similar to those of tracrRNA(67).
- Keywords
- CHEMICAL-SYNTHESIS; GUIDE RNA; GENOMIC DNA; CRISPR; TARGET; CAS9; SEQUENCE; NUCLEOTIDE; SPECIFICITY; MOLECULE
- ISSN
- 2047-4830
- URI
- https://pubs.kist.re.kr/handle/201004/113776
- DOI
- 10.1039/d2bm01901a
- Appears in Collections:
- KIST Article > 2023
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