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Lipid nanoparticle mediated base editing of the Q344X rhodopsin mutation associated with retinitis pigmentosa

delete2025-12-01
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PRE
AI
V
Victoria A. C. Palmgren
M
Miffy H. Y. Cheng
Y
Yao Zhang
T
Tiffany Carlaw
T
Tessa Morin
J
Jerry Leung
C
Colin J.D. Ross
P
Pieter R. Cullis
R
Robert S. Molday *
DOI:10.1038/s41434-025-00584-zdelete
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Abstract

Abstract

En 中文
Retinitis pigmentosa (RP) associated with mutations in the rhodopsin gene (RHO) is a significant cause of blindness. Here we report on the application of adenine base editing of the c.1030C>T (p.Q344X) RHO mutation linked to RP. Using a fluorescence reporter cell system, we optimized editing by exploring base editors, sgRNA, and delivery methods. Flow cytometry, western blotting, and immunofluorescence microscopy confirmed the restoration of full-length rhodopsin after editing. DNA sequencing verified editing at the target nucleotide and the absence of bystander edits within the editing window. Polyethylenimine cationic polymer transfection of cells with a plasmid containing the NG-ABE8e adenine base editor and A6 guide RNA that placed the targeted adenine in position 6 of the editing window resulted in 31.0% gDNA sequence correction and 26.3% rhodopsin protein correction as determined by flow cytometry. Purified NG-ABE8e protein complexed with A6-sgRNA showed 32.2% gDNA editing and 44.5% rhodopsin correction. Plasmid NG-ABE8e and A6-sgRNA co-encapsulated into lipid nanoparticles (LNPs) and transfected into the reporter cell system resulted in the highest editing (42.6% gDNA editing and 65.9% rhodopsin correction). These results demonstrate the successful correction of the c.1030C>T RHO mutation and provide the foundation for base editing as a treatment for RP.
Keywords:
TRANSFECTION EFFICIENCY
CATIONIC LIPIDS
DNA
VARIANTS
VECTOR

Journal

Gene Therapy cover
Gene Therapy
IF:
4.5
Papers:
219
Citations:
6.7K

Organization

U
University of British Columbia
Scholars:
6.9W
Papers: 6.1W
Citations: 8.6W