Hartong DT, Berson EL, Dryja TP. Retinitis pigmentosa. Lancet. 2006 Nov 18;368(9549):1795-809.
Meng D, Ragi SD, Tsang SH. Therapy in Rhodopsin-Mediated Autosomal Dominant Retinitis Pigmentosa. Mol Ther. 2020 Oct 7;28(10):2139-2149.
Sakami S, Maeda T, Bereta G, Okano K, Golczak M, Sumaroka A, Roman AJ, Cideciyan AV, Jacobson SG, Palczewski K. Probing mechanisms of photoreceptor degeneration in a new mouse model of the common form of autosomal dominant retinitis pigmentosa due to P23H opsin mutations. J Biol Chem. 2011 Mar 25;286(12):10551-67.
Dryja T P, Mcgee T L, Reichel E, et al. A point mutation of the rhodopsin gene in one form of retinitispigmentosa[J]. Nature, 1990, 343(6256):364-366.
Zhang X, Fu W, Pang C P, et al. Screening for point mutations in rhodopsin gene among one hundred Chinese patients with retinitis pigmentosa[J]. Chinese Journal of Medical Genetics, 2002, 19(6):463-466.
Gamundi M J, Hernan I, Muntanyola M, et al. Transcriptional expression of cis-acting and trans-acting splicing mutations cause autosomal dominant retinitis pigmentosa[J]. Human Mutation, 2008.
Biasutto P, Adamson P S, Dulla K, et al. Allele specific knock-down of human P23H rhodopsin mRNA and prevention of retinal degeneration in humanized P23H rhodopsin knock-in mouse, following treatment with an intravitreal GAPmer antisense oligonucleotide (QR-1123)[J]. Investigative ophthalmology & visual science, 2019(9):60.
Patrizi C, Llado M, Benati D, et al. Allele-specific editing ameliorates dominant retinitis pigmentosa in a transgenic mouse model[J]. The American Journal of Human Genetics, 2021, 108(2).
Li P, Kleinstiver B P, Leon M Y, et al. Allele-Specific CRISPR-Cas9 Genome Editing of the Single-Base P23H Mutation for Rhodopsin-Associated Dominant Retinitis Pigmentosa[J]. Crispr Journal, 2018, 1(1):55-64.
Xla B, Rja B, Xiang M, et al. Retinal degeneration in humanized mice expressing mutant rhodopsin under the control of the endogenous murine promoter. 2021.
Wen-Hsuan Wu, Yi-Ting Tsai, -Wen Huang et al. CRISPR genome surgery in a novel humanized model for autosomal dominant retinitis pigmentosa. 2022.