GFP-on mouse model for interrogation of in vivo gene editing
Abstract
Abstract Gene editing technologies have revolutionized therapies for numerous genetic diseases. However, in vivo gene editing hinges on identifying efficient delivery vehicles for editing in targeted cell types, a significant hurdle in fully realizing its therapeutic potential. A model system to rapidly evaluate systemic gene editing would advance the field. Here, we develop the GFP-on reporter mouse, which harbors a nonsense mutation in a genomic EGFP sequence correctable by adenine base editor (ABE) among other genome editors. The GFP-on system was validated using single and dual adeno-associated virus (AAV9) encoding ABE8e and sgRNA. Intravenous administration of AAV9-ABE8e-sgRNA into adult GFP-on mice results in EGFP expression consistent with the tropism of AAV9. Intrahepatic delivery of AAV9-ABE8e-sgRNA into GFP-on fetal mice restores EGFP expression in AAV9-targeted organs lasting at least six months post-treatment. The GFP-on model provides an ideal platform for high-throughput evaluation of emerging gene editing tools and delivery modalities.
Article Details
Authors (22)
Carla Dib
Jack A. Queenan
Leah Swartzrock
Hana Willner
Morgane Denis
Nouraiz Ahmed
Fareha Moulana Zada
Beltran Borges
Carsten T. Charlesworth
Tony Lum
Bradley P. Yates
Caleb Y. Kwon
Augustino V. Scorzo
Scott C. Davis
Jessie R. Davis
Merkin Institute of Transformative Technologies in Healthcare
Ran He
Leibniz Institute for Solid State and Materials Research IFW Dresden
Jun Xie
State Key Laboratory of Bioactive Substance and Function of Natural Medicines, NHC Key Laboratory of Natural Products, CAMS Key Laboratory of Enzyme and Biocatalysis of Natural Drugs
Guangping Gao
Tippi C. MacKenzie
David R. Liu
Gregory A. Newby
Agnieszka D. Czechowicz