Lentiviral Gene Transfer of Rpe65 Rescues Survival and Function of Cones in a Mouse Model of Leber Congenital Amaurosis
Open Access
- 10 October 2006
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLoS Medicine
- Vol. 3 (10), e347
- https://doi.org/10.1371/journal.pmed.0030347
Abstract
RPE65 is specifically expressed in the retinal pigment epithelium and is essential for the recycling of 11-cis-retinal, the chromophore of rod and cone opsins. In humans, mutations in RPE65 lead to Leber congenital amaurosis or early-onset retinal dystrophy, a severe form of retinitis pigmentosa. The proof of feasibility of gene therapy for RPE65 deficiency has already been established in a dog model of Leber congenital amaurosis, but rescue of the cone function, although crucial for human high-acuity vision, has never been strictly proven. In Rpe65 knockout mice, photoreceptors show a drastically reduced light sensitivity and are subject to degeneration, the cone photoreceptors being lost at early stages of the disease. In the present study, we address the question of whether application of a lentiviral vector expressing the Rpe65 mouse cDNA prevents cone degeneration and restores cone function in Rpe65 knockout mice. Subretinal injection of the vector in Rpe65-deficient mice led to sustained expression of Rpe65 in the retinal pigment epithelium. Electroretinogram recordings showed that Rpe65 gene transfer restored retinal function to a near-normal pattern. We performed histological analyses using cone-specific markers and demonstrated that Rpe65 gene transfer completely prevented cone degeneration until at least four months, an age at which almost all cones have degenerated in the untreated Rpe65-deficient mouse. We established an algorithm that allows prediction of the cone-rescue area as a function of transgene expression, which should be a useful tool for future clinical trials. Finally, in mice deficient for both RPE65 and rod transducin, Rpe65 gene transfer restored cone function when applied at an early stage of the disease. By demonstrating that lentivirus-mediated Rpe65 gene transfer protects and restores the function of cones in the Rpe65−/− mouse, this study reinforces the therapeutic value of gene therapy for RPE65 deficiencies, suggests a cone-preserving treatment for the retina, and evaluates a potentially effective viral vector for this purpose.Keywords
This publication has 40 references indexed in Scilit:
- RPE65Gene Delivery Restores Isomerohydrolase Activity and Prevents Early Cone Loss inRpe65−/−MiceInvestigative Opthalmology & Visual Science, 2006
- Long-Term Restoration of Rod and Cone Vision by Single Dose rAAV-Mediated Gene Transfer to the Retina in a Canine Model of Childhood BlindnessMolecular Therapy, 2005
- Cone Opsin Mislocalization inRpe65−/−Mice: A Defect That Can Be Corrected by 11-cisRetinalInvestigative Opthalmology & Visual Science, 2005
- The Retinal G Protein-coupled Receptor (RGR) Enhances Isomerohydrolase Activity Independent of LightJournal of Biological Chemistry, 2005
- Assessment of Structure and Function Over a 3-year Period after Gene Transfer in RPE65−/− dogsDocumenta Ophthalmologica, 2005
- Adeno-Associated Virus-Vectored Gene Therapy for Retinal DiseaseHuman Gene Therapy, 2005
- Spontaneous activity of opsin apoprotein is a cause of Leber congenital amaurosisNature Genetics, 2003
- Activity analysis of housekeeping promoters using self-inactivating lentiviral vector delivery into the mouse retinaGene Therapy, 2003
- Gene Transfer to the Nonhuman Primate Retina with Recombinant Feline Immunodeficiency Virus VectorsHuman Gene Therapy, 2002
- In vivo gene transfer to the mouse eye using an HIV-based lentiviral vector; efficient long-term transduction of corneal endothelium and retinal pigment epitheliumGene Therapy, 2001