Search results for "Ciliopathy"

showing 7 items of 27 documents

TALPID3 controls centrosome and cell polarity and the human ortholog KIAA0586 is mutated in Joubert syndrome (JBTS23)

2015

Joubert syndrome (JBTS) is a severe recessive neurodevelopmental ciliopathy which can affect several organ systems. Mutations in known JBTS genes account for approximately half of the cases. By homozygosity mapping and whole-exome sequencing, we identified a novel locus, JBTS23, with a homozygous splice site mutation in KIAA0586 (alias TALPID3), a known lethal ciliopathy locus in model organisms. Truncating KIAA0586 mutations were identified in two additional patients with JBTS. One mutation, c.428delG (p.Arg143Lysfs*4), is unexpectedly common in the general population and may be a major contributor to JBTS. We demonstrate KIAA0586 protein localization at the basal body in human and mouse p…

QH301-705.5chickenSciencePopulationCell Cycle ProteinsBiologymedicine.disease_causeRetinaGeneral Biochemistry Genetics and Molecular BiologyJoubert syndromeMiceTalpid3CerebellumJoubert syndromeCiliogenesismedicineAnimalsHumansBasal bodyAbnormalities MultiplehumanEye AbnormalitiesBiology (General)Human Biology and MedicineeducationmouseGeneticsMutationeducation.field_of_studyGeneral Immunology and MicrobiologyGeneral NeuroscienceCiliumQRGeneral MedicineKidney Diseases Cysticmedicine.diseaseKIAA05863. Good healthDisease Models Animalcell polarityCiliopathyDevelopmental Biology and Stem CellsciliopathycentrosomeCentrosomeMutationMedicineResearch ArticleeLife
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Primary Cilium Mediated Retinal Pigment Epithelium Maturation is Retarded in Ciliopathy Patient Cells

2018

Primary cilia are sensory organelles that protrude from the cell membrane. Cilia defects cause ciliopathy disorders with retinal degeneration as a prominent phenotype. Here, we demonstrate that the retinal pigment epithelium (RPE), essential for photoreceptor development and function, requires a functional primary cilium for complete maturation, and RPE maturation defects in ciliopathies precede photoreceptor development. Pharmacologically enhanced ciliogenesis in wildtype induced pluripotent stem cells (iPSCs)-RPE leads to fully-mature and functional cells. Whereas, ciliopathy patient-derived iPSCs-RPE and wildtype iPSC-RPE with a knockdown of ciliary-trafficking protein remain immature, w…

Retinal degenerationRetinal pigment epitheliumCiliumBiologymedicine.diseaseCiliopathieseye diseasesCell biologyCell membraneCiliopathymedicine.anatomical_structureCiliogenesismedicinesense organsInduced pluripotent stem cellSSRN Electronic Journal
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2021

Primary cilia are sensory organelles vital for developmental and physiological processes. Their dysfunction causes a range of phenotypes including retinopathies. Although primary cilia have been described in the retinal pigment epithelium (RPE), little is known about their contribution to biological processes within this tissue. Ciliary proteins are increasingly being identified in non-ciliary locations and might carry out additional functions, disruption of which possibly contributes to pathology. The RPE is essential for maintaining photoreceptor cells and visual function. We demonstrate that upon loss of Bbs8, predominantly thought to be a ciliary gene, the RPE shows changes in gene and …

Retinal degenerationRetinal pigment epitheliumCiliumCell BiologyBiologymedicine.diseasePhenotypeCell biologyCiliopathymedicine.anatomical_structuremedicinesense organsSignal transductionCytoskeletonCell adhesionDevelopmental BiologyFrontiers in Cell and Developmental Biology
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Usher Syndrome Protein Network Functions in the Retina and their Relation to Other Retinal Ciliopathies

2014

The human Usher syndrome (USH) is the most frequent cause of combined hereditary deaf-blindness. USH is genetically and clinically heterogeneous: 15 chromosomal loci assigned to 3 clinical types, USH1-3. All USH1 and 2 proteins are organized into protein networks by the scaffold proteins harmonin (USH1C), whirlin (USH2D) and SANS (USH1G). This has contributed essentially to our current understanding of the USH protein function in the eye and the ear and explains why defects in proteins of different families cause very similar phenotypes. Ongoing in depth analyses of USH protein networks in the eye indicated cytoskeletal functions as well as roles in molecular transport processes and ciliary…

Scaffold proteinGeneticsRetinaUsher syndromeBiologymedicine.diseaseInteractomeCiliopathiesCiliopathymedicine.anatomical_structureRetinitis pigmentosaotorhinolaryngologic diseasesmedicineRetinal Dystrophies
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Gene-based treatment options for Usher type 1C by translational read-through of a nonsense mutation

2012

The Usher syndrome (USH) is the most frequent cause of inherited combined deaf-blindness. The ciliopathy is clinically and genetically heterogeneous, assigned to three clinical USH types of which the most severe type is USH1. The USH1C gene encodes the PDZ containing scaffold protein harmonin which is expressed in form of numerous alternatively spliced variants. Hamonin binds directly to all USH1/2 proteins and is a key organizer of USH protein networks in photoreceptor cells. So far no effective treatment for the ophthalmic component of USH exists. Translational read-through was introduced as an innovative therapy option for several non-ocular diseases caused by nonsense mutations leading …

Scaffold proteinGeneticslcsh:CytologyUsher syndromePDZ domainNonsense mutationCell BiologyBiologymedicine.diseaseCiliopathiesPhotoreceptor cellCell biologyCiliopathymedicine.anatomical_structureotorhinolaryngologic diseasesmedicineOral Presentationlcsh:QH573-671GeneCilia
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Identification of molecular and physiopathologic basis in oral-facial-digital syndromes

2016

Oral-facial-digital syndromes (OFDS) are characterized by the association of oral, facial and digital anomalies. The different modes of inheritance and additional features lead to clinically delineate 13 subtypes. For a long time, only the OFD1 gene, responsible for OFDI subtype and coding for a centrosomal protein, has been known, suggesting the involvement of the primary cilium in OFDS. Mutations have recently been reported in the TMEM216, DDX59, SCLT1, TBC1D32 and TCTN3 genes in anecdotic cases. To identify new genes involved in OFDS, we performed whole-exome sequencing in 24 patients. In 14/24 cases, we identified 5 novel genes (C2CD3, TMEM107, INTU, KIAA0753, IFT57), enlarged the clini…

[SDV.GEN]Life Sciences [q-bio]/GeneticsSyndromes oro-facio-digitauxSéquençage haut-débitOral-facial-digital syndromesWhole-exome sequencingCiliopathyGenetics[SDV.GEN] Life Sciences [q-bio]/GeneticsGénétique[ SDV.GEN ] Life Sciences [q-bio]/GeneticsCiliopathies
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Tissue‐dependent differences in Bardet–Biedl syndrome gene expression

2019

BACKGROUND INFORMATION Primary cilia are highly conserved multifunctional cell organelles that extend from the cell membrane. A range of genetic disorders, collectively termed ciliopathies, is attributed to primary cilia dysfunction. The archetypical ciliopathy is the Bardet-Biedl syndrome (BBS), patients of which display virtually all symptoms associated with dysfunctional cilia. The primary cilium acts as a sensory organelle transmitting intra- and extracellular signals thereby transducing various signalling pathways facilitated by the BBS proteins. Growing evidence suggests that cilia proteins also have alternative functions in ciliary independent mechanisms, which might be contributing …

congenital hereditary and neonatal diseases and abnormalitiesContext (language use)BiologyCiliopathiesMice03 medical and health sciences0302 clinical medicineBardet–Biedl syndromeGene expressionOrganellemedicineAnimalsBardet-Biedl Syndrome030304 developmental biologyMice KnockoutRegulation of gene expression0303 health sciencesCiliumCell BiologyGeneral Medicinemedicine.diseaseCell biologyDisease Models AnimalCiliopathyGene Expression RegulationOrgan Specificity030217 neurology & neurosurgerySignal TransductionBiology of the Cell
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