阿达尔
核糖核酸
基因组编辑
旁观者效应
引导RNA
计算生物学
生物
竞争性内源性RNA
体外
细胞生物学
突变体
环状RNA
Cas9
点突变
RNA编辑
遗传学
长非编码RNA
清脆的
基因
免疫学
作者
Zongyi Yi,Liang Qu,Huixian Tang,Zhiheng Liu,Ying Liu,Feng Tian,Chunhui Wang,Xiaoxue Zhang,Zi‐Qi Feng,Ying Yu,Pengfei Yuan,Zexuan Yi,Yanxia Zhao,Wensheng Wei
标识
DOI:10.1038/s41587-021-01180-3
摘要
Current methods for programmed RNA editing using endogenous ADAR enzymes and engineered ADAR-recruiting RNAs (arRNAs) suffer from low efficiency and bystander off-target editing. Here, we describe LEAPER 2.0, an updated version of LEAPER that uses covalently closed circular arRNAs, termed circ-arRNAs. We demonstrate on average ~3.1-fold higher editing efficiency than their linear counterparts when expressed in cells or delivered as in vitro-transcribed circular RNA oligonucleotides. To lower off-target editing we deleted pairings of uridines with off-target adenosines, which almost completely eliminated bystander off-target adenosine editing. Engineered circ-arRNAs enhanced the efficiency and fidelity of editing endogenous CTNNB1 and mutant TP53 transcripts in cell culture. Delivery of circ-arRNAs using adeno-associated virus in a mouse model of Hurler syndrome corrected the pathogenic point mutation and restored α-L-iduronidase catalytic activity, lowering glycosaminoglycan accumulation in the liver. LEAPER 2.0 provides a new design of arRNA that enables more precise, efficient RNA editing with broad applicability for therapy and basic research.
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