阿达尔
RNA编辑
内生
核糖核酸
寡核苷酸
生物
酶
基因亚型
生物化学
分子生物学
基因
作者
Prashant Monian,Chikdu Shivalila,Genliang Lu,Mamoru Shimizu,David Boulay,Karley Bussow,Michael Byrne,Adam Bezigian,Arindom Chatterjee,David Chew,Jigar Desai,Frank Favaloro,Jack Godfrey,Andrew Hoss,Naoki Iwamoto,Tomomi Kawamoto,Jayakanthan Kumarasamy,Anthony Lamattina,Amber Lindsey,Fangjun Liu
标识
DOI:10.1038/s41587-022-01225-1
摘要
Technologies that recruit and direct the activity of endogenous RNA-editing enzymes to specific cellular RNAs have therapeutic potential, but translating them from cell culture into animal models has been challenging. Here we describe short, chemically modified oligonucleotides called AIMers that direct efficient and specific A-to-I editing of endogenous transcripts by endogenous adenosine deaminases acting on RNA (ADAR) enzymes, including the ubiquitously and constitutively expressed ADAR1 p110 isoform. We show that fully chemically modified AIMers with chimeric backbones containing stereopure phosphorothioate and nitrogen-containing linkages based on phosphoryl guanidine enhanced potency and editing efficiency 100-fold compared with those with uniformly phosphorothioate-modified backbones in vitro. In vivo, AIMers targeted to hepatocytes with N-acetylgalactosamine achieve up to 50% editing with no bystander editing of the endogenous ACTB transcript in non-human primate liver, with editing persisting for at least one month. These results support further investigation of the therapeutic potential of stereopure AIMers.
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