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◆ Cell reports. Medicine2026-09-11

Targeted insertion of an optimized donor DNA is effective in a humanized mouse model of dominant retinitis pigmentosa.

Federica Esposito, Arjun Padmanabhan, Manuel Rhiel, Mariangela Lupo, Elena Marrocco, Stefano Auricchio, Xabier Bujanda Cundin, Simona Pellecchia, Tatjana I Cornu, Geoffroy Andrieux, Manel Llado-Santaeularia, Enrico Maria Surace, Ivana Trapani, Pasqualina Colella, Gennaro Gambardella, Toni Cathomen, Alberto Auricchio

原始摘要(英文原文)· Original abstract
Retinitis pigmentosa (RP) affects 1 in 3,000 individuals worldwide, with 30%-40% of cases inherited as autosomal dominant (AD). Mutations in RHO (RP4) are the most common cause of ADRP. Because most RHO mutations exert gain-of-function or dominant-negative effects, conventional gene supplementation is insufficient, requiring mutant allele inactivation. Allele-specific editing is impractical, as each mutation requires a unique therapeutic strategy. We present a mutation-agnostic, RHO-specific approach using adeno-associated viral vector-mediated homology-independent targeted integration (AAV-HITI). Optimized donor DNA design enables targeted integration and efficient transgene expression from the endogenous RHO locus. In a humanized RP4 mouse model harboring the RHO P23H mutant allele alongside an endogenous wild-type mouse Rho allele, AAV-HITI significantly improves retinal structure, function, and visual acuity up to 1 year post-treatment. Comprehensive molecular analyses characterize on-target editing in mouse retina and off-target editing in a human cell line. These findings establish an effective, human-centric AAV-HITI platform for RP4 and support its evaluation in this and other dominant genetic conditions.
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Targeted insertion of an optimized donor DNA is effective in a humanized mouse model of dominant retinitis pigmentosa. — 科研速览 Science Skim