The Y141C knockin mutation in RDS leads to complex phenotypes in the mouse.
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[1] Shannon M. Conley,et al. Insights into the mechanisms of macular degeneration associated with the R172W mutation in RDS. , 2014, Human molecular genetics.
[2] P. Schnier,et al. Structural and Functional Analysis of the Native Peripherin-ROM1 Complex Isolated from Photoreceptor Cells* , 2013, The Journal of Biological Chemistry.
[3] A. Goldberg,et al. Membrane curvature generation by a C-terminal amphipathic helix in peripherin-2/rds, a tetraspanin required for photoreceptor sensory cilium morphogenesis , 2013, Journal of Cell Science.
[4] Shannon M. Conley,et al. S/MAR-containing DNA nanoparticles promote persistent RPE gene expression and improvement in RPE65-associated LCA. , 2013, Human molecular genetics.
[5] S. Baker,et al. A Single Valine Residue Plays an Essential Role in Peripherin/rds Targeting to Photoreceptor Outer Segments , 2013, PloS one.
[6] D. Schorderet,et al. PATTERN DYSTROPHY WITH HIGH INTRAFAMILIAL VARIABILITY ASSOCIATED WITH Y141C MUTATION IN THE PERIPHERIN/RDS GENE AND SUCCESSFUL TREATMENT OF SUBFOVEAL CNV RELATED TO MULTIFOCAL PATTERN TYPE WITH ANTI-VEGF (RANIBIZUMAB) INTRAVITREAL INJECTIONS , 2012, Retina.
[7] Shannon M. Conley,et al. Increased cone sensitivity to ABCA4 deficiency provides insight into macular vision loss in Stargardt's dystrophy. , 2012, Biochimica et biophysica acta.
[8] Shannon M. Conley,et al. Structural and functional relationships between photoreceptor tetraspanins and other superfamily members , 2012, Cellular and Molecular Life Sciences.
[9] Shannon M. Conley,et al. Defects in the Outer Limiting Membrane Are Associated with Rosette Development in the Nrl−/− Retina , 2012, PloS one.
[10] Amrita,et al. Increased expression of multifunctional serine protease, HTRA1, in retinal pigment epithelium induces polypoidal choroidal vasculopathy in mice , 2011, Proceedings of the National Academy of Sciences.
[11] Shannon M. Conley,et al. Differences in RDS trafficking, assembly and function in cones versus rods: insights from studies of C150S-RDS. , 2010, Human molecular genetics.
[12] Shannon M. Conley,et al. Biochemical analysis of phenotypic diversity associated with mutations in codon 244 of the retinal degeneration slow gene. , 2010, Biochemistry.
[13] Shannon M. Conley,et al. A Partial Structural and Functional Rescue of a Retinitis Pigmentosa Model with Compacted DNA Nanoparticles , 2009, PloS one.
[14] Shannon M. Conley,et al. Differential requirements for retinal degeneration slow intermolecular disulfide-linked oligomerization in rods versus cones. , 2009, Human molecular genetics.
[15] B. J. Klevering,et al. The spectrum of retinal dystrophies caused by mutations in the peripherin/RDS gene , 2008, Progress in Retinal and Eye Research.
[16] M. Naash,et al. Outer segment oligomerization of Rds: evidence from mouse models and subcellular fractionation. , 2008, Biochemistry.
[17] M. Naash,et al. Differential distribution of proteins and lipids in detergent‐resistant and detergent‐soluble domains in rod outer segment plasma membranes and disks , 2007, Journal of neurochemistry.
[18] M. Naash,et al. Retention of function without normal disc morphogenesis occurs in cone but not rod photoreceptors , 2006, The Journal of cell biology.
[19] J. Ott,et al. Genetic and phenotypic heterogeneity in pattern dystrophy , 2005, British Journal of Ophthalmology.
[20] Olaf Strauss,et al. The retinal pigment epithelium in visual function. , 2005, Physiological reviews.
[21] M. Naash,et al. The Cys214-->Ser mutation in peripherin/rds causes a loss-of-function phenotype in transgenic mice. , 2005, The Biochemical journal.
[22] M. Naash,et al. Role of the second intradiscal loop of peripherin/rds in homo and hetero associations. , 2005, Biochemistry.
[23] M. Naash,et al. The R172W mutation in peripherin/rds causes a cone-rod dystrophy in transgenic mice. , 2004, Human molecular genetics.
[24] O. L. Moritz,et al. The C terminus of peripherin/rds participates in rod outer segment targeting and alignment of disk incisures. , 2004, Molecular biology of the cell.
[25] D. Zack,et al. A novel RDS/peripherin gene mutation associated with diverse macular phenotypes , 2004, Ophthalmic genetics.
[26] R. Lewis,et al. Late-onset autosomal dominant macular dystrophy with choroidal neovascularization and nonexudative maculopathy associated with mutation in the RDS gene. , 2003, Investigative ophthalmology & visual science.
[27] D. Zack,et al. Butterfly-shaped pattern dystrophy: a genetic, clinical, and histopathological report. , 2002, Archives of ophthalmology.
[28] J. Findlay,et al. Peripherin/rds Influences Membrane Vesicle Morphology , 2000, The Journal of Biological Chemistry.
[29] Janet Rossant,et al. Rom-1 is required for rod photoreceptor viability and the regulation of disk morphogenesis , 2000, Nature Genetics.
[30] D. Birch,et al. Insights into the Function of Rim Protein in Photoreceptors and Etiology of Stargardt's Disease from the Phenotype in abcr Knockout Mice , 1999, Cell.
[31] D. Bok,et al. Transgenic Analysis of Rds/Peripherin N‐Glycosylation , 1999, Journal of neurochemistry.
[32] A. Munnich,et al. Two Novel Missense Mutations in the Peripherin/RDS Gene in two Unrelated French Patients with Autosomal Dominant Retinitis Pigmentosa , 1998, European journal of ophthalmology.
[33] Christopher J. R. Loewen,et al. Cysteine residues of photoreceptor peripherin/rds: role in subunit assembly and autosomal dominant retinitis pigmentosa. , 1998, Biochemistry.
[34] M. Naash,et al. The Effect of Peripherin/rds Haploinsufficiency on Rod and Cone Photoreceptors , 1997, The Journal of Neuroscience.
[35] M. Naash,et al. Structural and developmental analysis of the mouse peripherin/rds gene , 1997, Somatic cell and molecular genetics.
[36] V. Sheffield,et al. Full characterization of the maculopathy associated with an Arg-172-Trp mutation in the RDS/peripherin gene. , 1996, Ophthalmic genetics.
[37] R. Molday,et al. Subunit composition of the peripherin/rds-rom-1 disk rim complex from rod photoreceptors: hydrodynamic evidence for a tetrameric quaternary structure. , 1996, Biochemistry.
[38] R. Molday,et al. Heterologous expression of photoreceptor peripherin/rds and Rom-1 in COS-1 cells: assembly, interactions, and localization of multisubunit complexes. , 1995, Biochemistry.
[39] N. Shimizu,et al. A novel Cys-214-Ser mutation in the peripherin/RDS gene in a Japanese family with autosomal dominant retinitis pigmentosa , 1993, Human Genetics.
[40] R. Molday,et al. Cloning of the CDNA for a novel photoreceptor membrane protein (rom-1) identifies a disk rim protein family implicated in human retinopathies , 1992, Neuron.
[41] C. P. Adams,et al. Incisor inclination in Class 2 division 2 malocclusions. , 1986, European journal of orthodontics.
[42] Shannon M. Conley,et al. Insights into the mechanisms of macular degeneration associated with the R 172 W mutation in RDS , 2014 .
[43] A. Goldberg. Role of peripherin/rds in vertebrate photoreceptor architecture and inherited retinal degenerations. , 2006, International review of cytology.
[44] Zhenglin Yang,et al. Choroidal neovascularization in patients with adult-onset foveomacular dystrophy caused by mutations in the RDS/peripherin gene. , 2006, Advances in experimental medicine and biology.
[45] C. Ayuso,et al. Two novel mutations (Y141H; C214Y) and previously published mutation (R142W) in the RDS‐peripherin gene in autosomal dominant macular dystrophies in Spanish families , 2001, Human mutation.