RNA base editors should ideally be free of immunogenicity, compact, efficient, and specific, which has not been achieved for CÂ >Â U editing. Here we first describe a compact CÂ >Â U editor entirely of human origin, created by fusing the human CÂ >Â U editing enzyme RESCUE-S to Cas inspired RNA targeting system (CIRTS), a tiny, human-originated programmable RNA-binding domain. This editor, CIRTS-RESCUEv1 (V1), was inefficient. Remarkably, a short histidine-rich domain (HRD), which is derived from the internal disordered region (IDR) in the human CYCT1, a protein capable of liquid-liquid phase separation (LLPS), enhanced V1 editing at on-targets as well as off-targets, the latter effect being minor. The V1-HRD fusion protein formed puncta characteristic of LLPS, and various other IDRs (but not an LLPS-impaired mutant) could replace HRD to effectively induce puncta and potentiate V1, suggesting that the diverse domains acted via a common, LLPS-based mechanism. Importantly, the HRD fusion strategy was applicable to various other types of CÂ >Â U RNA editors. Our study expands the RNA editing toolbox and showcases a general method for stimulating CÂ >Â U RNA base editors.
Expanding RNA editing toolkit using an IDR-based strategy.
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作者:Di Minghui, Lv Junjun, Jing Zhengyu, Yang Yijie, Yan Kunlun, Wu Jianguo, Ge Jianyang, Rauch Simone, Dickinson Bryan C, Chi Tian
| 期刊: | Molecular Therapy-Nucleic Acids | 影响因子: | 6.100 |
| 时间: | 2024 | 起止号: | 2024 Apr 16; 35(2):102190 |
| doi: | 10.1016/j.omtn.2024.102190 | ||
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