TY - JOUR
T1 - Engineering a photoactivatable A-to-I RNA base editor for gene therapy in vivo
AU - Li, Huiying
AU - Qiu, Yuhao
AU - Song, Bowen
AU - Quan, Xinyi
AU - Zhang, Dan
AU - Li, Xinru
AU - Yang, Jingyun
AU - Liu, Xiaohong
AU - Zeng, Zhiyang
AU - Jing, Ji
AU - Yin, Shuming
AU - Dai, Qi
AU - Wang, Liren
AU - Han, Honghui
AU - Ye, Haifeng
AU - Sun, Zhenliang
AU - Cheng, Yiyun
AU - Zhang, Xueli
AU - Du, Bing
AU - Liu, Mingyao
AU - Li, Dali
N1 - Publisher Copyright:
© The Author(s), under exclusive licence to Springer Nature America, Inc. 2025.
PY - 2025
Y1 - 2025
N2 - Tunable and reversible regulation of exogenous and endogenous gene expression would be useful for improving the safety and efficacy of gene therapy. Current chemically inducible systems are limited by the rapid diffusion and extended metabolism of small molecules, and associated side effects. Here we develop a photoactivatable RNA adenosine base editor (PA-rABE) by harnessing a compact Cas13 variant and a split ADAR2 deaminase fused with the Magnets system, which is activated through blue-light-induced dimerization. PA-rABE achieves highly efficient editing on endogenous RNA with minimal bystander editing and off-target effects. By editing a phosphorylation site of the endogenous CTNNB1 gene, PA-rABE stabilizes the β-catenin protein and activates Wnt signaling in vivo. Using adeno-associated virus vectors to deliver PA-rABE along with an hF9 variant containing a premature termination codon, we show amelioration of clotting defects in hemophilia B mice upon illumination. In summary, PA-rABE offers a controlled RNA base-editing technology for diverse biomedical applications, enabling reversible and spatiotemporally specific modulation.
AB - Tunable and reversible regulation of exogenous and endogenous gene expression would be useful for improving the safety and efficacy of gene therapy. Current chemically inducible systems are limited by the rapid diffusion and extended metabolism of small molecules, and associated side effects. Here we develop a photoactivatable RNA adenosine base editor (PA-rABE) by harnessing a compact Cas13 variant and a split ADAR2 deaminase fused with the Magnets system, which is activated through blue-light-induced dimerization. PA-rABE achieves highly efficient editing on endogenous RNA with minimal bystander editing and off-target effects. By editing a phosphorylation site of the endogenous CTNNB1 gene, PA-rABE stabilizes the β-catenin protein and activates Wnt signaling in vivo. Using adeno-associated virus vectors to deliver PA-rABE along with an hF9 variant containing a premature termination codon, we show amelioration of clotting defects in hemophilia B mice upon illumination. In summary, PA-rABE offers a controlled RNA base-editing technology for diverse biomedical applications, enabling reversible and spatiotemporally specific modulation.
UR - https://www.scopus.com/pages/publications/105002058984
U2 - 10.1038/s41587-025-02610-2
DO - 10.1038/s41587-025-02610-2
M3 - 文章
AN - SCOPUS:105002058984
SN - 1087-0156
JO - Nature Biotechnology
JF - Nature Biotechnology
ER -