核糖核酸
阿达尔
竞争性内源性RNA
生物
核酸二级结构
RNA结合蛋白
RNA编辑
肌苷
计算生物学
非编码RNA
遗传学
引导RNA
小RNA
细胞生物学
RNA沉默
长非编码RNA
RNA干扰
基因组编辑
清脆的
基因
腺苷
生物化学
作者
Dhruva Katrekar,James Yen,Yichen Xiang,Anushka Saha,Dario Meluzzi,Yiannis A. Savva,Prashant Mali
标识
DOI:10.1038/s41587-021-01171-4
摘要
Recruiting endogenous adenosine deaminases using exogenous guide RNAs to edit cellular RNAs is a promising therapeutic strategy, but editing efficiency and durability remain low using current guide RNA designs. In this study, we engineered circular ADAR-recruiting guide RNAs (cadRNAs) to enable more efficient programmable adenosine-to-inosine RNA editing without requiring co-delivery of any exogenous proteins. Using these cadRNAs, we observed robust and durable RNA editing across multiple sites and cell lines, in both untranslated and coding regions of RNAs, and high transcriptome-wide specificity. Additionally, we increased transcript-level specificity for the target adenosine by incorporating interspersed loops in the antisense domains, reducing bystander editing. In vivo delivery of cadRNAs via adeno-associated viruses enabled 53% RNA editing of the mPCSK9 transcript in C57BL/6J mice livers and 12% UAG-to-UGG RNA correction of the amber nonsense mutation in the IDUA-W392X mouse model of mucopolysaccharidosis type I-Hurler syndrome. cadRNAs enable efficient programmable RNA editing in vivo with diverse protein modulation and gene therapeutic applications. Circular guide RNAs boost the efficiency of RNA editing with endogenous ADARs.
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