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PMID: 41678334 已发表 · ppublish 英语

A CRISPR-based mitochondrial gene therapy tool derived by engineering guide RNAs.

Cell reports ·第 45 卷 ·第 2 期 ·2026-02-24

Wang Y, Su X, Chen Y, Chen Y, Shi C, Liu F, Ye Y, Sun P, Tan M, Yu M, Wang Y, Xie S, Liu J, Yan Q, Sun Q, Neculai D, Liu W, Shao J, Liu Y, Lin W, Lin A

摘要

Mitochondrial genetic diseases arise from mitochondrial DNA (mtDNA) defects, which gene therapy tools may rectify. However, delivering single-guide RNAs (sgRNAs) into mitochondria remains a challenge limiting CRISPR-mediated mtDNA therapy. Here, through network analysis of mitochondrion-localized long noncoding RNAs (lncRNAs) and RNA-binding proteins (RBPs), we found that lncRNA RP11-46H11.3 translocates into mitochondria via binding mitochondria-associated RBPs using its key RNA recognition motifs (RRMs); its derived 30 nt ST2-RNA mitochondrial targeting sequence (RMTS) showed the highest mitochondrial localization efficiency. We engineered the RMTS-CRISPR tool by fusing ST2-RMTS to sgRNA, verifying its ability to target and cleave mtDNA. Strikingly, our results demonstrated that RMTS-CRISPR could achieve heteroplasmic mtDNA shifting efficiencies of up to 26.37% in m.3243A>G mutant cell models and 26.79% in vivo, offering a technological approach for the correction of heterogeneous mtDNA mutations. Taken together, our findings reveal a CRISPR-based mitochondrial gene intervention strategy that may have applications in mitochondrial disorders.

关键词
CP: genomics CRISPR-Cas system RNA recognition motif mitochondrial DNA mitochondrial disorder organelle-associated RNA
文献信息
期刊
Cell reports
期刊简称
Cell Rep
ISSN
2211-1247
发表日期
2026-02-24
语言
英语
国家/地区
United States
NLM ID
101573691
分析服务
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