Search results for "Retinitis Pigmentosa"

showing 10 items of 78 documents

Gly114Asp mutation of rhodopsin in autosomal dominant retinitis pigmentosa

1995

Two autosomal dominant retinitis pigmentosa families of different origin were screened for rhodopsin mutations using the method of single strand conformation polymorphism and direct sequencing. We found a CGG-CAG substitution in codon 114 of rhodopsin in both families. This change predicted the replacement of a glycine by an aspartic acid and suggested that this change is the cause of the disease in these families.

AdultMaleRhodopsincongenital hereditary and neonatal diseases and abnormalitiesAdolescentgenetic structuresMolecular Sequence DataGlycinemedicine.disease_causeAutosomal dominant retinitis pigmentosaRetinitis pigmentosaAspartic acidmedicineHumansPoint MutationAmino Acid SequenceCodonMolecular BiologyGenes DominantGeneticsAspartic AcidMutationPolymorphism GeneticBase SequencebiologyDirect sequencingSingle-strand conformation polymorphismCell BiologyMiddle Agedmedicine.diseasePedigreeRhodopsinGlycinebiology.proteinFemalesense organsRetinitis PigmentosaMolecular and Cellular Probes
researchProduct

Mutational screening of the USH2A gene in Spanish USH patients reveals 23 novel pathogenic mutations

2011

Abstract Background Usher Syndrome type II (USH2) is an autosomal recessive disorder, characterized by moderate to severe hearing impairment and retinitis pigmentosa (RP). Among the three genes implicated, mutations in the USH2A gene account for 74-90% of the USH2 cases. Methods To identify the genetic cause of the disease and determine the frequency of USH2A mutations in a cohort of 88 unrelated USH Spanish patients, we carried out a mutation screening of the 72 coding exons of this gene by direct sequencing. Moreover, we performed functional minigene studies for those changes that were predicted to affect splicing. Results As a result, a total of 144 DNA sequence variants were identified.…

AdultMaleSequence VariantsAdolescentGenotypegenetic structuresUsher syndromeDNA Mutational AnalysisMutation Missenselcsh:MedicineBiologymedicine.disease_causeExonYoung AdultUSH2ARetinitis pigmentosaGenotypemedicineotorhinolaryngologic diseasesHumansGenetics(clinical)Pharmacology (medical)<it>USH2A</it>GeneAllele frequencyGenetics (clinical)GeneticsMedicine(all)MutationExtracellular Matrix ProteinsResearchlcsh:RGeneral MedicineExonsMiddle Agedmedicine.diseaseeye diseasesPhenotypeSpainMutationFemalesense organsUsher SyndromeUsher SyndromesMutationsMinigeneOrphanet Journal of Rare Diseases
researchProduct

Aqueous Humor Levels of Vascular Endothelial Growth Factor in Retinitis Pigmentosa

2008

PURPOSE To determine the level of vascular endothelial growth factor A (VEGF-A) in aqueous humors of patients with retinitis pigmentosa (RP). METHODS A prospective, comparative control study. Aqueous humor was collected from 16 eyes of 16 patients with RP. The level of VEGF-A was determined with a commercially available enzyme-linked immunosorbent assay kit. The control group comprised 16 aqueous samples from 16 patients about to undergo cataract surgery and without any other ocular or systemic diseases. RESULTS The concentration of VEGF-A in aqueous humor was markedly lower in patients with RP than in control subjects (Mann-Whitney U test, P < 0.001). The level of VEGF-A was 94.9 +/- 99.8 …

AdultMaleVascular Endothelial Growth Factor Amedicine.medical_specialtygenetic structuresmedicine.medical_treatmentEye diseaseEnzyme-Linked Immunosorbent AssayAqueous humorAqueous Humorchemistry.chemical_compoundOphthalmologyRetinitis pigmentosaHumansMedicineProspective StudiesAgedbusiness.industryMiddle AgedCataract surgerymedicine.diseaseControl subjectseye diseasesVascular endothelial growth factorVascular endothelial growth factor AchemistryFemalesense organsbusinessRetinitis PigmentosaRetinopathyInvestigative Opthalmology &amp; Visual Science
researchProduct

Methodological Aspects of the Application of the Naka-Rushton Equation to Clinical Electroretinogram

1993

The nonlinear relation between stimulus intensity and response amplitude of the electroretinogram (ERG) scotopic b wave can be described by a curve based on the Naka-Rushton (NR) equation. Up to now, the NR equation has been used to assess the features of the normal and pathological ERG, but the best approach for a correct evaluation of the parameters is still debatable. The parameters are thought to be related to the different conditions of retinal activities. The method is well known in experimental laboratories but is quite unusual at the clinical level. In the present paper the derivative analysis of the NR function is proposed as an easier approach to understand the variations of the N…

AdultMaleX ChromosomeAdolescentLightElectrodiagnosisGenetic LinkageVisual AcuityDark AdaptationCataractRetinaCellular and Molecular NeuroscienceExperimental LaboratoriesOpticsRetinal DiseasesElectroretinographymedicineHumansResponse AmplitudeApplied mathematicsScotopic visionChildAgedMathematicsmedicine.diagnostic_testbusiness.industryDerivative analysisGeneral MedicineMiddle AgedSensory SystemsOphthalmologyFemalebusinessRetinitis PigmentosaElectroretinographyOphthalmic Research
researchProduct

Prenatal diagnosis of a rhodopsin mutation using chemical cleavage of the mismatch

2002

Objective: Mutations of the rhodopsin gene are responsible for autosomal dominant or recessive retinitis pigmentosa (RP). The present study reports the first prenatal diagnosis performed on chorionic villi biopsy of a pregnant woman affected by a severe form of autosomal dominant transmitted RP, due to the Arg135Trp substitution. Methods: The rhodopsin gene was analysed by automated direct sequencing and, for the first time, by fluorescence-assisted mismatch analysis (FAMA). The latter is an inexpensive, rapid and particularly sensitive method, based on the chemical cleavage of the mismatch in heteroduplex DNA molecules marked with strand-specific fluorophores. Results: FAMA is a feasible p…

AdultRhodopsinrhodopsin geneBase Pair MismatchSettore MED/30 - Malattie Apparato VisivoDNA Mutational Analysisfama; retinitis pigmentosa; rhodopsin geneDNAHeteroduplex AnalysisPolymerase Chain ReactionSettore BIO/18 - GeneticaChorionic Villi SamplingPregnancyretinitis pigmentosaMutationHumansFemalefama
researchProduct

The Role of Cadherins in Ca2+-Mediated Cell Adhesion and Inherited Photoreceptor Degeneration

2002

Cadherins are Ca2+-binding, transmembrane proteins involved in cell adhesion. Recently, three cadherin molecules, cadherin-23, protocadherin-15, and cadherin-3, were found to be defective in various human diseases, many of them with photoreceptor degeneration and/or sensorineural hearing loss as major features such Usher syndrome type 1D (USH1D), USH1F, and hypotrichosis with juvenile macular dystrophy. The process, by which mutations lead to photoreceptor degeneration is still not fully understood. Data from the inner ear phenotype of USH1 mouse models suggest that loss of cell adhesion is a crucial event.

CadherinUsher syndromeMacular dystrophyBiologymedicine.diseasePhenotypeTransmembrane proteinCell biologyRetinitis pigmentosaotorhinolaryngologic diseasesmedicineHypotrichosissense organsCell adhesion
researchProduct

RPGR ORF15 isoform co-localizes with RPGRIP1 at centrioles and basal bodies and interacts with nucleophosmin

2005

The ORF15 isoform of RPGR (RPGR(ORF15)) and RPGR interacting protein 1 (RPGRIP1) are mutated in a variety of retinal dystrophies but their functions are poorly understood. Here, we show that in cultured mammalian cells both RPGR(ORF15) and RPGRIP1 localize to centrioles. These localizations are resistant to the microtubule destabilizing drug nocodazole and persist throughout the cell cycle. RPGR and RPGRIP1 also co-localize at basal bodies in cells with primary cilia. The C-terminal (C2) domain of RPGR(ORF15) (ORF15(C2)) is highly conserved across 13 mammalian species, suggesting that it is a functionally important domain. Using matrix-assisted laser desorption ionization time-of-flight mas…

CentrioleFluorescent Antibody TechniqueMicechemistry.chemical_compoundChlorocebus aethiopsGuanine Nucleotide Exchange FactorsProtein IsoformsBasal bodyConserved SequenceGenetics (clinical)CentriolesGlutathione Transferaseintegumentary systemNuclear ProteinsExonsGeneral MedicineRetinitis pigmentosa GTPase regulatorImmunohistochemistryNocodazoleCOS CellsNucleophosminCell NucleolusRecombinant Fusion ProteinsMolecular Sequence DataBiologyOpen Reading FramesMicrotubuleTwo-Hybrid System TechniquesGeneticsAnimalsHumansAmino Acid SequenceEye ProteinsMolecular BiologyNucleophosminSequence Homology Amino AcidProteinsPrecipitin TestsMolecular biologyeye diseasesProtein Structure TertiaryMice Inbred C57BLCytoskeletal ProteinschemistryCentrosomeCytoplasmSpectrometry Mass Matrix-Assisted Laser Desorption-IonizationMutationCattleHeLa CellsHuman Molecular Genetics
researchProduct

The retinitis pigmentosa 28 protein FAM161A is a novel ciliary protein involved in intermolecular protein interaction and microtubule association

2012

Loss-of-function mutations in the gene encoding FAM161A were recently discovered as the cause for RP28, an autosomal recessive form of retinitis pigmentosa. To initiate the characterization of the cellular role of FAM161A in the retina, we focused on its subcellular localization and conducted in vitro studies to identify FAM161A-interacting proteins and associated cellular structures. Immunohistochemistry revealed the presence of mouse FAM161A in the photoreceptor inner segments, the synaptic regions of the outer and inner plexiform layers and the ganglion cells. In mouse and human retinal sections from unfixed eyes, FAM161A localized to the ciliary region linking photoreceptor outer and in…

CentrioleImmunoelectron microscopyBiologyMicrotubulesRetinaMice03 medical and health sciences0302 clinical medicineMicrotubuleRetinitis pigmentosaGeneticsmedicineAnimalsHumansBasal bodyPhotoreceptor CellsEye ProteinsMolecular BiologyGenetics (clinical)030304 developmental biologyCentrosome0303 health sciencesRetinaCiliumGeneral Medicinemedicine.diseaseCell biologymedicine.anatomical_structureCentrosomeMutationsense organsRetinitis Pigmentosa030217 neurology & neurosurgeryHuman Molecular Genetics
researchProduct

The retinitis pigmentosa protein RP2 links pericentriolar vesicle transport between the Golgi and the primary cilium.

2010

Photoreceptors are complex ciliated sensory neurons. The basal body and periciliary ridge of photoreceptors function in association with the Golgi complex to regulate the export of proteins from the inner segment to the outer segment sensory axoneme. Here, we show that the retinitis pigmentosa protein RP2, which is a GTPase activating protein (GAP) for Arl3, localizes to the ciliary apparatus, namely the basal body and the associated centriole at the base of the photoreceptor cilium. Targeting to the ciliary base was dependent on N-terminal myristoylation. RP2 also localized to the Golgi and periciliary ridge of photoreceptors, which suggested a role for RP2 in regulating vesicle traffic an…

CentriolePhotoreceptor Connecting CiliumGolgi ApparatusBiologysymbols.namesakeMiceIntraflagellar transportGTP-Binding ProteinsGeneticsBasal bodyAnimalsHumansKIF3APhotoreceptor CellsCiliaEye ProteinsTransport VesiclesMolecular BiologyGenetics (clinical)Cells CulturedCentriolesADP-Ribosylation FactorsCiliumCiliary BodyIntracellular Signaling Peptides and ProteinsMembrane ProteinsBiological TransportGeneral MedicineGolgi apparatusCell biologysymbolssense organsCiliary baseRetinitis PigmentosaHuman molecular genetics
researchProduct

Analysis of the Ush2a Gene in Medaka Fish (Oryzias latipes)

2013

Patients suffering from Usher syndrome (USH) exhibit sensorineural hearing loss, retinitis pigmentosa (RP) and, in some cases, vestibular dysfunction. USH is the most common genetic disorder affecting hearing and vision and is included in a group of hereditary pathologies associated with defects in ciliary function known as ciliopathies. This syndrome is clinically classified into three types: USH1, USH2 and USH3. USH2 accounts for well over one-half of all Usher cases and mutations in the USH2A gene are responsible for the majority of USH2 cases, but also for atypical Usher syndrome and recessive non-syndromic RP. Because medaka fish (Oryzias latypes) is an attractive model organism for ge…

DNA ComplementaryEmbryo NonmammalianTime FactorsUsher syndromeOryziasved/biology.organism_classification_rank.speciesMolecular Sequence DataOryziaslcsh:MedicineCiliopathiesRetinaMorpholinosEvolution MolecularRetinitis pigmentosamedicineotorhinolaryngologic diseasesAnimalsHumansAmino Acid SequenceModel organismlcsh:ScienceZebrafishIn Situ HybridizationRegulation of gene expressionGeneticsExtracellular Matrix ProteinsMultidisciplinarybiologyved/biologylcsh:RGenetic disorderGene Expression Regulation Developmentalmedicine.diseasebiology.organism_classificationPhenotypeEar Innerlcsh:Qsense organsResearch ArticlePLoS ONE
researchProduct