Publication | Open Access
Toward a Gene Therapy for Dominant Disease: Validation of an RNA Interference-Based Mutation-Independent Approach
82
Citations
31
References
2005
Year
EngineeringDominant DiseaseGeneticsGenomic MechanismReplacement GenesDisease Gene IdentificationIntragenic HeterogeneityAntisense TherapyMolecular DiagnosticsGenome SurgeryGene ExpressionCell BiologyGene TherapiesRna InterferenceGenetic EngineeringGene RegulationGene EditingSmall RnaSystems BiologyMedicineGenome Editing
The intragenic heterogeneity encountered in many dominant disease-causing genes represents a significant challenge with respect to development of economically viable therapeutics. For example, 25% of autosomal dominant retinitis pigmentosa is caused by over 100 different mutations within the gene encoding rhodopsin, each of which could require a unique gene therapy. We describe here an RNA interference (RNAi)-based mutation-independent approach, targeting as an example murine rhodopsin. Native transcripts are suppressed by a single RNAi molecular species, whereas transcripts from replacement genes engineered at degenerate third-codon wobble positions are resistant to suppression. We demonstrate suppression of murine rhodopsin transcript by up to 90% with full concomitant expression of replacement transcript and establish the validity of this approach in cell culture, retinal explants, and mouse liver in vivo.
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