Search results for "Dyneins"

showing 10 items of 22 documents

Ultrastructural patterns of primary ciliar dyskinesia syndrome.

2005

Clinical presentation, ciliary ultrastructure, and nasal mucociliary transport by a radioisotopic technique were analyzed in 14 Kartagener syndrome patients. In this study the most common pattern was the absence of outer and inner dynein arms in 57% of cases. Also reported are 14% patients with short inner dynein arms. A total of 29% of the patients showed normal dynein arms. Mucociliary stasis was observed in 13 cases. Primary ciliary dyskinesia syndrome and Kartagener syndrome are clinically homogeneous and morphologically heterogeneous. The authors conclude that a typical clinical presentation with an altered mucociliary transport obtained by radioisotopic technique is diagnostic althoug…

AdultMalePathologymedicine.medical_specialtyAdolescentMucociliary clearanceBiologyPathology and Forensic MedicineDiagnosis DifferentialMicroscopy Electron TransmissionStructural BiologymedicineHumansCiliaChildPrimary ciliary dyskinesiaKartagener SyndromeKartagener SyndromeDyneinsInfantAnatomyMiddle Agedmedicine.diseaseSitus inversusNasal MucosaDyskinesiaHomogeneousMucociliary ClearanceUltrastructureFemalemedicine.symptomCiliary ultrastructureUltrastructural pathology
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BAG3 and friends: co-chaperones in selective autophagy during aging and disease.

2011

There is a reciprocal change in the expression of two members of the BAG (Bcl-2-associated athanogen) family, BAG1 and BAG3, during cellular aging and under acute stress ("BAG1-BAG3-switch"). BAG3 was recently described as a mediator of a novel macroautophagy pathway that uses the specificity of heat shock protein 70 (HSP70) to misfolded proteins and also involves other protein partners, such as HSPB8. Also crucial for induction and execution of autophagy are sequestosome-1/p62 (SQSTM1/p62) and LC3, an autophagosome-associated protein. In this novel pathway, BAG3 mediates the targeting and transport of degradation-prone substrates into aggresomes via the microtubule-motor dynein. Interestin…

AgingProteasome Endopeptidase ComplexDyneinBAG3Models BiologicalJUNQ and IPODUbiquitinAutophagyAnimalsDiseaseMolecular BiologyAdaptor Proteins Signal TransducingbiologyAutophagyUbiquitinationSignal transducing adaptor proteinDyneinsCell BiologyAdaptation PhysiologicalCell biologyHsp70DNA-Binding ProteinsAggresomeBiochemistrybiology.proteinMolecular ChaperonesTranscription FactorsAutophagy
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Roflumilast inhibits respiratory syncytial virus infection in human differentiated bronchial epithelial cells.

2013

Respiratory syncytial virus (RSV) causes acute exacerbations in COPD and asthma. RSV infects bronchial epithelial cells (HBE) that trigger RSV associated lung pathology. This study explores whether the phosphodiesterase 4 (PDE4) inhibitor Roflumilast N-oxide (RNO), alters RSV infection of well-differentiated HBE (WD-HBE) in vitro. WD-HBE were RSV infected in the presence or absence of RNO (0.1-100 nM). Viral infection (staining of F and G proteins, nucleoprotein RNA level), mRNA of ICAM-1, ciliated cell markers (digital high speed videomicroscopy, β-tubulin immunofluorescence, Foxj1 and Dnai2 mRNA), Goblet cells (PAS), mRNA of MUC5AC and CLCA1, mRNA and protein level of IL-13, IL-6, IL-8, T…

CyclopropanesScienceAminopyridinesBronchiCell CountRespiratory Syncytial Virus InfectionsBiologyMucin 5ACImmunofluorescenceVirus ReplicationVirusAntioxidantsChloride ChannelsTubulinGene expressionmedicineHumansCiliaRNA MessengerRespiratory systemRoflumilastMessenger RNAMetaplasiaMultidisciplinarymedicine.diagnostic_testQRvirus diseasesCell DifferentiationEpithelial CellsForkhead Transcription FactorsAxonemal Dyneinsrespiratory systemViral LoadVirologyMolecular biologyRespiratory Syncytial VirusesOxidative StressViral replicationBenzamidesMedicineCytokinesTumor necrosis factor alphaGoblet CellsReactive Oxygen SpeciesBiomarkersmedicine.drugResearch ArticlePloS one
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Rhodopsin's carboxy-terminal cytoplasmic tail acts as a membrane receptor for cytoplasmic dynein by binding to the dynein light chain Tctex-1.

1999

AbstractThe interaction of cytoplasmic dynein with its cargoes is thought to be indirectly mediated by dynactin, a complex that binds to the dynein intermediate chain. However, the roles of other dynein subunits in cargo binding have been unknown. Here we demonstrate that dynein translocates rhodopsin-bearing vesicles along microtubules. This interaction occurs directly between the C-terminal cytoplasmic tail of rhodopsin and Tctex-1, a dynein light chain. C-terminal rhodopsin mutations responsible for retinitis pigmentosa inhibit this interaction. Our results point to an alternative docking mechanism for cytoplasmic dynein, provide novel insights into the role of motor proteins in the pola…

CytoplasmRhodopsingenetic structuresMicrotubule-associated proteinRecombinant Fusion ProteinsDyneinMolecular Sequence DataReceptors Cell Surfacemacromolecular substancesBiologyT-Complex Genome RegionMicrotubulesGeneral Biochemistry Genetics and Molecular BiologyMotor protein03 medical and health sciencesMice0302 clinical medicineMicrotubuleAnimalsAmino Acid Sequence030304 developmental biologyt-Complex Genome Region0303 health sciencesBinding SitesBiochemistry Genetics and Molecular Biology(all)DyneinsNuclear ProteinsBiological Transport3. Good healthCell biologyCytoplasmRhodopsinMutagenesisDynactinbiology.proteinMicrotubule ProteinsCattlesense organsMicrotubule-Associated Proteins030217 neurology & neurosurgeryPhotoreceptor Cells VertebrateCell
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Myosin VIIa, harmonin and cadherin 23, three Usher I gene products that cooperate to shape the sensory hair cell bundle

2002

Deaf-blindness in three distinct genetic forms of Usher type I syndrome (USH1) is caused by defects in myosin VIIa, harmonin and cadherin 23. Despite being critical for hearing, the functions of these proteins in the inner ear remain elusive. Here we show that harmonin, a PDZ domain-containing protein, and cadherin 23 are both present in the growing stereocilia and that they bind to each other. Moreover, we demonstrate that harmonin b is an F-actin-bundling protein, which is thus likely to anchor cadherin 23 to the stereocilia microfilaments, thereby identifying a novel anchorage mode of the cadherins to the actin cytoskeleton. Moreover, harmonin b interacts directly with myosin VIIa, and i…

DNA ComplementaryCadherin Related ProteinsCell Cycle Proteinsmacromolecular substancesMyosinsBiologyTransfectionMicrofilamentGeneral Biochemistry Genetics and Molecular BiologyCell LineMiceCDH23Two-Hybrid System TechniquesHair Cells Auditoryotorhinolaryngologic diseasesmedicineAnimalsHumansProtein IsoformsRats WistarMolecular BiologyActinAdaptor Proteins Signal TransducingGene LibraryGeneral Immunology and MicrobiologyCadherinGeneral NeuroscienceStereociliaDyneinsCell DifferentiationArticlesCadherinsActin cytoskeletonActinsProtein Structure TertiaryRatsCell biologyCytoskeletal ProteinsMicroscopy Electronmedicine.anatomical_structureMicroscopy FluorescenceMyosin VIIasense organsCarrier ProteinsTip linkPCDH15HeLa CellsProtein BindingThe EMBO Journal
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Differential Distribution of Harmonin Isoforms and Their Possible Role in Usher-1 Protein Complexes in Mammalian Photoreceptor Cells

2003

PURPOSE. Human Usher syndrome is the most common form of combined deafness and blindness. Usher type I (USH1), the most severe form, is characterized by profound congenital deafness, constant vestibular dysfunction, and prepubertal onset retinitis pigmentosa. Previous studies have shown that the USH1-proteins myosin VIIa, harmonin, and cadherin 23 interact and form a functional network during hair cell differentiation in the inner ear. The purpose of the present study was to analyze the molecular and cellular functions of these USH1 proteins in the mammalian retina. METHODS. Antibodies to USH1 proteins were generated and used in Western blot analysis of subcellular photoreceptor fractions a…

Gene isoformUsher syndromeBlotting WesternSynaptophysinCell Cycle ProteinsMyosinsBiologyPhotoreceptor cellMiceRetinitis pigmentosaotorhinolaryngologic diseasesmedicineAnimalsProtein IsoformsRats WistarFluorescent Antibody Technique IndirectMicroscopy ImmunoelectronCytoskeletonGeneticsRetinaHair cell differentiationReverse Transcriptase Polymerase Chain ReactionCadherinDyneinsCadherinsmedicine.diseaseeye diseasesRatsCell biologyMice Inbred C57BLCytoskeletal Proteinsmedicine.anatomical_structureMicroscopy FluorescenceMyosin VIIasense organsCarrier ProteinsPhotoreceptor Cells VertebrateSubcellular FractionsInvestigative Opthalmology & Visual Science
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Identification of a Dynein Interacting Domain in the Papillomavirus Minor Capsid Protein L2

2006

ABSTRACT Papillomaviruses enter cells via endocytosis (H. C. Selinka et al., Virology 299:279-287, 2002). After egress from endosomes, the minor capsid protein L2 accompanies the viral DNA to the nucleus and subsequently to the subnuclear promyelocytic leukemia protein bodies (P. M. Day et al., Proc. Natl. Acad. Sci. USA 101:14252-14257, 2004), suggesting that this protein may be involved in the intracytoplasmic transport of the viral genome. We now demonstrate that the L2 protein is able to interact with the microtubule network via the motor protein dynein. L2 protein was found attached to microtubules after uncoating of incoming human papillomavirus pseudovirions. Based on immunofluoresce…

ImmunoprecipitationImmunologyDyneinActive Transport Cell NucleusGenome ViralMicrotubulesMicrobiologyMotor proteinPromyelocytic leukemia proteinMicrotubuleDynein ATPaseVirologyHumansPapillomaviridaebiologyPapillomavirus InfectionsDyneinsOncogene Proteins ViralMolecular biologyEndocytosisVirus-Cell InteractionsMicroscopy FluorescenceCapsidInsect ScienceDNA Viralbiology.proteinDynactinCapsid ProteinsIntranuclear SpaceHeLa CellsProtein BindingJournal of Virology
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Vezatin, a novel transmembrane protein, bridges myosin VIIA to the cadherin-catenins complex

2000

International audience; Defects in myosin VIIA are responsible for deafness in the human and mouse. The role of this unconventional myosin in the sensory hair cells of the inner ear is not yet understood. Here we show that the C-terminal FERM domain of myosin VIIA binds to a novel transmembrane protein, vezatin, which we identi®ed by a yeast two-hybrid screen. Vezatin is a ubiquitous protein of adherens cell±cell junctions, where it interacts with both myosin VIIA and the cadherin±catenins complex. Its recruitment to adherens junctions implicates the C-terminal region of a-catenin. Taken together, these data suggest that myosin VIIA, anchored by vezatin to the cadherin±catenins complex, cre…

MESH: Cytoskeletal ProteinsMESH: alpha CateninStereocilia (inner ear)[SDV]Life Sciences [q-bio]MESH: Amino Acid SequenceDeafnessMESH: CadherinsMiceMESH: Protein Structure Tertiary0302 clinical medicine[SDV.MHEP.MI]Life Sciences [q-bio]/Human health and pathology/Infectious diseasesMyosinMESH: Hair Cells AuditoryMESH: AnimalsCytoskeleton0303 health sciencesFERM domainGeneral NeuroscienceMESH: Alternative SplicingArticlesCadherinsCell biologymedicine.anatomical_structureIntercellular Junctions[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyMyosin VIIaHair cellMESH: Membrane ProteinsMESH: DyneinsProtein BindingMESH: MutationMacromolecular SubstancesMolecular Sequence DataMESH: Deafnessmacromolecular substancesBiologyIn Vitro TechniquesMyosinsGeneral Biochemistry Genetics and Molecular BiologyCell LineAdherens junction03 medical and health sciencesHair Cells Auditorymedicineotorhinolaryngologic diseasesAnimalsHumansMESH: Myosin VIIaMESH: Protein BindingAmino Acid SequenceMolecular BiologyMESH: Mice030304 developmental biologyMESH: In Vitro TechniquesMESH: Molecular Sequence DataMESH: HumansGeneral Immunology and MicrobiologyCadherinDyneinsMembrane ProteinsMESH: Macromolecular SubstancesMESH: MyosinsActin cytoskeleton[SDV.MP.BAC]Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyProtein Structure TertiaryMESH: Cell LineAlternative SplicingCytoskeletal ProteinsMutationsense organs030217 neurology & neurosurgeryalpha Catenin[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyMESH: Intercellular Junctions
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Mutation profile of the MYO7A gene in Spanish patients with Usher syndrome type I.

2006

Usher syndrome type I is the most severe form of Usher syndrome. It is an autosomal recessive disorder characterized by profound congenital sensorineural deafness, retinitis pigmentosa, and vestibular abnormalities. Mutations in the myosin VIIA gene (MYO7A) are responsible for Usher syndrome type 1B (USH1B). This gene is thought to bear greatest responsibility for USH1 and, depending on the study, has been reported to account for between 24% and 59% of USH1 cases. In this report a mutation screening of the MYO7A gene was carried out in a series of 48 unrelated USH1 families using single strand conformation polymorphism analysis (SSCP) and direct sequencing of those fragments showed an abnor…

MYO7AUsher syndromeDNA Mutational AnalysisBiologyMyosinsFrameshift mutationRetinitis pigmentosaotorhinolaryngologic diseasesGeneticsmedicineMissense mutationHumansGenetic Predisposition to DiseaseGeneGenetics (clinical)Polymorphism Single-Stranded ConformationalGeneticsPolymorphism GeneticModels GeneticDyneinsSingle-strand conformation polymorphismmedicine.diseaseeye diseasesStop codonGene Expression RegulationSpainMyosin VIIaMutationUsher SyndromesHuman mutation
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X-linked primary ciliary dyskinesia due to mutations in the cytoplasmic axonemal dynein assembly factor PIH1D3

2017

By moving essential body fluids and molecules, motile cilia and flagella govern respiratory mucociliary clearance, laterality determination and the transport of gametes and cerebrospinal fluid. Primary ciliary dyskinesia (PCD) is an autosomal recessive disorder frequently caused by non-assembly of dynein arm motors into cilia and flagella axonemes. Before their import into cilia and flagella, multi-subunit axonemal dynein arms are thought to be stabilized and pre-assembled in the cytoplasm through a DNAAF2–DNAAF4–HSP90 complex akin to the HSP90 co-chaperone R2TP complex. Here, we demonstrate that large genomic deletions as well as point mutations involving PIH1D3 are responsible for an X-li…

MaleCytoplasmProtein FoldingAxoneme[SDV]Life Sciences [q-bio][SDV.GEN] Life Sciences [q-bio]/Genetics[SDV.MHEP.PSR]Life Sciences [q-bio]/Human health and pathology/Pulmonology and respiratory tractouterGenes X-LinkedChilddefectsPhylogenyZebrafisharmsSequence DeletionvariantsIntracellular Signaling Peptides and ProteinsGenetic Diseases X-LinkedPedigreeMultidisciplinary Sciences[SDV] Life Sciences [q-bio]motilityChild PreschoolMicrotubule ProteinsSperm MotilityScience & Technology - Other TopicsFemaleAdultAdolescentinnerUK10K Rare Groupr2tp complexof-function mutationsArticleMicroscopy Electron TransmissionMD MultidisciplinaryExome SequencingAnimalsHumansPoint MutationCiliaHSP90 Heat-Shock Proteins[SDV.GEN]Life Sciences [q-bio]/GeneticsScience & TechnologyKartagener SyndromeInfant NewbornAxonemal DyneinsDisease Models AnimalHEK293 Cells[SDV.MHEP.PSR] Life Sciences [q-bio]/Human health and pathology/Pulmonology and respiratory tractidentifies mutationsproteinApoptosis Regulatory ProteinsSequence AlignmentMolecular ChaperonesNature Communications
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