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Updated: Jun 10, 2025

Preparation of rAAV9 to Overexpress or Knockdown Genes in Mouse Hearts
Published on: December 17, 2016
Delivering large genes using adeno-associated virus and the CRE-lox DNA recombination system
Poppy Datta1,2, Kun-Do Rhee1,2, Rylee J Staudt1,2
1Department of Ophthalmology and Visual Sciences, The University of Iowa Carver College of Medicine, 375 Newton Road, Iowa City, IA 52242, United States.
None:
Adeno-associated virus (AAV) is a safe and efficient gene delivery vehicle for gene therapies. However, its relatively small packaging capacity limits its use as a gene transfer vector. Here, we describe a strategy to deliver large genes that exceed the AAV's packaging capacity using up to four AAV vectors and the CRE-lox DNA recombination system. We devised novel lox sites by combining non-compatible and reaction equilibrium-modifying lox site variants. These lox sites facilitate sequence-specific and near-unidirectional recombination of AAV vector genomes, enabling efficient reconstitution of up to 16 kb of therapeutic genes in a pre-determined configuration. Using this strategy, we have developed AAV gene therapy vectors to deliver IFT140, PCDH15, CEP290, and CDH23 and demonstrate efficient production of full-length proteins in cultured mammalian cells and mouse retinas. Notably, AAV-IFT140 gene therapy vectors ameliorated retinal degeneration and preserved visual functions in an IFT140-associated retinitis pigmentosa mouse model. The CRE-lox approach described here provides a simple, flexible, and effective platform for generating AAV gene therapy vectors beyond AAV's packaging capacity.
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