A framework for individualized splice-switching oligonucleotide therapy

剪接 外显子跳跃 剪接位点突变 外显子 RNA剪接 医学 遗传学 选择性拼接 计算生物学 生物信息学 耐受性 共济失调毛细血管扩张 生物 不利影响 基因 内科学 DNA 核糖核酸 DNA损伤
作者
Jin‐Kuk Kim,Sijae Woo,Claudio M. de Gusmão,Boxun Zhao,Diana H. Chin,Renata L. DiDonato,Minh Anh Nguyen,Tojo Nakayama,Chunguang Hu,Aubrie Soucy,Ashley Kuniholm,Jennifer Karlin Thornton,Olivia Riccardi,Daniel Friedman,Christelle Moufawad El Achkar,Zane S. Dash,Laura Cornelissen,Carolina Donado,Kamli N. W. Faour,Lynn Wein Bush,Victoria Suslovitch,Claudia Lentucci,Peter J. Park,Eunjung Alice Lee,Al Patterson,Anthony Philippakis,Brad Margus,Charles B. Berde,Timothy W. Yu
出处
期刊:Nature [Nature Portfolio]
卷期号:619 (7971): 828-836 被引量:17
标识
DOI:10.1038/s41586-023-06277-0
摘要

Abstract Splice-switching antisense oligonucleotides (ASOs) could be used to treat a subset of individuals with genetic diseases 1 , but the systematic identification of such individuals remains a challenge. Here we performed whole-genome sequencing analyses to characterize genetic variation in 235 individuals (from 209 families) with ataxia-telangiectasia, a severely debilitating and life-threatening recessive genetic disorder 2,3 , yielding a complete molecular diagnosis in almost all individuals. We developed a predictive taxonomy to assess the amenability of each individual to splice-switching ASO intervention; 9% and 6% of the individuals had variants that were ‘probably’ or ‘possibly’ amenable to ASO splice modulation, respectively. Most amenable variants were in deep intronic regions that are inaccessible to exon-targeted sequencing. We developed ASOs that successfully rescued mis-splicing and ATM cellular signalling in patient fibroblasts for two recurrent variants. In a pilot clinical study, one of these ASOs was used to treat a child who had been diagnosed with ataxia-telangiectasia soon after birth, and showed good tolerability without serious adverse events for three years. Our study provides a framework for the prospective identification of individuals with genetic diseases who might benefit from a therapeutic approach involving splice-switching ASOs.
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