阿达尔
核糖核酸
RNA编辑
基础(拓扑)
细胞生物学
生物
计算生物学
遗传学
基因
数学分析
数学
作者
Susan M Byrne,Stephen Burleigh,Robert Fragoza,Yue Jiang,Yiannis A. Savva,Ricky Pabon,Evan E. Kania,Joseph Rainaldi,Andrew Portell,Prashant Mali,Adrian W. Briggs
标识
DOI:10.1038/s41467-025-60155-z
摘要
Custom RNA base editing exploiting the human Adenosine Deaminase Acting on RNA (ADAR) enzyme may enable therapeutic gene editing without DNA damage or use of foreign proteins. ADAR's adenosine-to-inosine (effectively A-to-G) deamination activity can be targeted to transcripts using an antisense guide RNA (gRNA), but efficacy is challenged by limits of in vivo delivery. Embedding gRNAs into a U7 small nuclear RNA (snRNA) framework greatly enhances RNA editing with endogenous ADAR, and a 750-plex single-cell mutagenesis screen further improved the framework. An optimized scaffold with a stronger synthetic U7 promoter enables 76% RNA editing in vitro from a single DNA construct per cell, and 75% editing in a Hurler syndrome mouse brain after one systemic AAV injection, surpassing circular gRNA approaches. The technology also improves published DMD exon-skipping designs 25-fold in differentiated myoblasts. Our engineered U7 framework represents a universal scaffold for ADAR-based RNA editing and other antisense RNA therapies.
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