Search results for "microtubule-associated proteins"

showing 10 items of 104 documents

Mutations in KATNB1 Cause Complex Cerebral Malformations by Disrupting Asymmetrically Dividing Neural Progenitors

2014

SummaryExome sequencing analysis of over 2,000 children with complex malformations of cortical development identified five independent (four homozygous and one compound heterozygous) deleterious mutations in KATNB1, encoding the regulatory subunit of the microtubule-severing enzyme Katanin. Mitotic spindle formation is defective in patient-derived fibroblasts, a consequence of disrupted interactions of mutant KATNB1 with KATNA1, the catalytic subunit of Katanin, and other microtubule-associated proteins. Loss of KATNB1 orthologs in zebrafish (katnb1) and flies (kat80) results in microcephaly, recapitulating the human phenotype. In the developing Drosophila optic lobe, kat80 loss specificall…

Microtubule-associated proteinNeurogenesisNeuroscience(all)Cell CountKataninSpindle ApparatusBiologymedicine.disease_causeArticleMice03 medical and health sciences0302 clinical medicineNeural Stem CellsNeuroblastmedicineAnimalsDrosophila ProteinsHumansProgenitor cellZebrafishMitosisZebrafishAdenosine TriphosphatasesMutationGeneral NeuroscienceOptic Lobe NonmammalianBrainDendritesbiology.organism_classificationSpindle apparatusmedicine.anatomical_structureCentrosome030220 oncology & carcinogenesisCerebral malformationsMutationMicrocephalybiology.proteinDrosophilaNeuronKataninMicrotubule-Associated ProteinsNeuroscienceCell Division030217 neurology & neurosurgery
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Missense variants in DPYSL5 cause a neurodevelopmental disorder with corpus callosum agenesis and cerebellar abnormalities

2021

International audience; The collapsin response mediator protein (CRMP) family proteins are intracellular mediators of neurotrophic factors regulating neurite structure/spine formation and are essential for dendrite patterning and directional axonal pathfinding during brain developmental processes. Among this family, CRMP5/DPYSL5 plays a significant role in neuronal migration, axonal guidance, dendrite outgrowth, and synapse formation by interacting with microtubules. Here, we report the identification of missense mutations in DPYSL5 in nine individuals with brain malformations, including corpus callosum agenesis and/or posterior fossa abnormalities, associated with variable degrees of intel…

Models MolecularMale0301 basic medicineHydrolases[SDV]Life Sciences [q-bio]Hippocampal formationMedical and Health Sciences0302 clinical medicineNeurodevelopmental disorderTubulinModelsNeurotrophic factorsCerebellumIntellectual disability2.1 Biological and endogenous factorsMissense mutationAetiologyChilddendrite branchingGenetics (clinical)de novo missense variantsPediatricGenetics & HeredityDPYSL5Biological Sciences[SDV] Life Sciences [q-bio]corpus callosum agenesisMental HealthChild PreschoolNeurologicalFemaleMicrotubule-Associated ProteinsAdultNeuriteIntellectual and Developmental Disabilities (IDD)primary neuronal culturesMutation MissenseBiologyYoung Adult03 medical and health sciencesRare DiseasesMediatorReportIntellectual DisabilityGeneticsmedicineHumansPreschoolCorpus Callosum Agenesisbrain malformationNeurosciencesMolecularmedicine.diseaseneurodevelopmental disorderBrain Disorders030104 developmental biologyNeurodevelopmental DisordersMutationMissenseAgenesis of Corpus CallosumNeuroscience030217 neurology & neurosurgery
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Microtubule Dynamics and Neuronal Excitability: Advances on Cytoskeletal Components Implicated in Epileptic Phenomena

2020

AbstractExtensive researches have deepened knowledge on the role of synaptic components in epileptogenesis, but limited attention has been devoted to the potential implication of the cytoskeleton. The study of the development of epilepsy and hyperexcitability states involves molecular, synaptic, and structural alterations of neuronal bioelectric activity. In this paper we aim to explore the neurobiological targets involved in microtubule functioning and cytoskeletal transport, i.e. how dynamic scaffolding of microtubules can influence neuronal morphology and excitability, in order to suggest a potential role for microtubule dynamics in the processes turning a normal neuronal network in a hy…

NeurodevelopmentHyperexcitabilityMicrotubuleBiologyMicrotubulesSettore BIO/09 - FisiologiaEpileptogenesisNeuroprotectionMicrotubule polymerizationCellular and Molecular NeuroscienceNeurotrophic factorsMicrotubulemedicineHumansPremovement neuronal activityCannabinoidCytoskeletonNeuronsEpilepsyNeurodegenerationCell BiologyGeneral Medicinemedicine.diseaseNeuroprotectionMicrotubule-Associated ProteinsNeuroscienceNeural developmentCellular and Molecular Neurobiology
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Polymorphisms in DCDC2 and S100B associate with developmental dyslexia

2015

Genetic studies of complex traits have become increasingly successful as progress is made in next-generation sequencing. We aimed at discovering single nucleotide variation present in known and new candidate genes for developmental dyslexia: CYP19A1, DCDC2, DIP2A, DYX1C1, GCFC2 (also known as C2orf3), KIAA0319, MRPL19, PCNT, PRMT2, ROBO1 and S100B. We used next-generation sequencing to identify single-nucleotide polymorphisms in the exons of these 11 genes in pools of 100 DNA samples of Finnish individuals with developmental dyslexia. Subsequent individual genotyping of those 100 individuals, and additional cases and controls from the Finnish and German populations, validated 92 out of 111 …

Nonsynonymous substitutionCandidate genemedicine.medical_specialtyShort CommunicationGenomicsS100 Calcium Binding Protein beta SubunitBiologyPolymorphism Single NucleotideDyslexia03 medical and health sciences0302 clinical medicineDCDC2Molecular geneticssingle-nucleotide polymorphismsmedicineHumansGenetic Predisposition to DiseasegeneticsGenotypingGenetic Association StudiesGenetics (clinical)ta515030304 developmental biologyGenetics0303 health sciencesperinnöllisyystiedeta1184DyslexiaSequence Analysis DNAmedicine.diseasedevelopmental dyslexiata3124Genetic epidemiologyCase-Control Studiesindividual genotypingMicrotubule-Associated Proteins030217 neurology & neurosurgeryJournal of Human Genetics
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Expression of cell cycle markers and human papillomavirus infection in oral squamous cell carcinoma: use of fuzzy neural networks.

2005

Our aim was to evaluate in oral squamous cell carcinoma (OSCC) the relationship between some cell cycle markers and HPV infection, conditionally to age, gender and certain habits of patients, and to assess the ability of fuzzy neural networks (FNNs) in building up an adequate predictive model based on logic inference rules. Eighteen cases of OSCC were examined by immunohistochemistry for MIB-1, PCNA and survivin expression; presence of HPV DNA was investigated in exfoliated oral mucosa cells by nested PCR (nPCR, MY09-MY11/GP5-GP6), and HPV genotype was determined by direct DNA sequencing. Data were analyzed by traditional statistics (TS) and FNNs. HPV DNA was found in 9/18 OSCCs (50.0 %) wi…

OncologyMaleCancer ResearchSurvivinmedicine.disease_causeInhibitor of Apoptosis ProteinsRisk FactorsOral mucosaPapillomaviridaeAged 80 and overCell CycleSmokingHPV infectionAge FactorsAnatomical pathologyCell cycleMiddle AgedImmunohistochemistryNeoplasm Proteinsoral squamous cell carcinomamedicine.anatomical_structureCell Transformation NeoplasticOncologyCarcinoma Squamous CellImmunohistochemistryFemaleMouth NeoplasmscarcinogenesisMicrotubule-Associated ProteinsAdultmedicine.medical_specialtyBiologySex FactorsFuzzy LogicInternal medicineSurvivinmedicineHumanshuman papillomaviruAgedfuzzy neural networkGene Expression ProfilingPapillomavirus Infectionsmedicine.diseaseProliferating cell nuclear antigenstomatognathic diseasesImmunologyDNA Viralbiology.proteinNeural Networks ComputerCarcinogenesisInternational journal of cancer
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Survivin is regulated by interleukin-4 in colon cancer stem cells

2010

Colorectal cancer has provided an important model to test the stem cell hypothesis of cancer origin, which implies that cancer arises as a result of genetic aberrations in stem cells leading to deregulation of the proliferation/differentiation balance. We and others have demonstrated that, similarly to other solid tumors, colon carcinogenesis and progression are dictated by highly apoptosis-resistant stem-like cells. Our data have suggested that protection from apoptosis is achieved by autocrine production of interleukin-4 (IL-4) through up-regulation of anti-apoptotic mediators. In this study, we extend our analysis to another apoptosis inhibitor widely expressed in tumors, namely survivin…

Organoplatinum CompoundsPhysiologyColorectal cancerSurvivinmedicine.medical_treatmentClinical BiochemistryFluorescent Antibody TechniqueAntineoplastic AgentsApoptosisBiologyInhibitor of Apoptosis ProteinsSurvivin inetrleukin-4Cancer stem cellSurvivinIn Situ Nick-End LabelingmedicineHumansPhosphorylationAutocrine signallingInterleukin 4Staining and LabelingCancerIsoxazolesCell Biologymedicine.diseaseGene Expression Regulation NeoplasticOxaliplatinProtein TransportCytokineImmunologyNeoplastic Stem CellsCancer researchInterleukin-4Stem cellColorectal NeoplasmsSTAT6 Transcription FactorMicrotubule-Associated ProteinsLeflunomideJournal of Cellular Physiology
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Intravitreal delivery of AAV-NDI1 provides functional benefit in a murine model of Leber hereditary optic neuropathy.

2012

Leber hereditary optic neuropathy (LHON) is a mitochondrially inherited form of visual dysfunction caused by mutations in several genes encoding subunits of the mitochondrial respiratory NADH-ubiquinone oxidoreductase complex (complex I). Development of gene therapies for LHON has been impeded by genetic heterogeneity and the need to deliver therapies to the mitochondria of retinal ganglion cells (RGCs), the cells primarily affected in LHON. The therapy under development entails intraocular injection of a nuclear yeast gene NADH-quinone oxidoreductase (NDI1) that encodes a single subunit complex I equivalent and as such is mutation independent. NDI1 is imported into mitochondria due to an e…

Oxidoreductase complexRetinal Ganglion CellsretinaSaccharomyces cerevisiae Proteinsgenetic structuresGenetic enhancementProtein subunitGenetic VectorsOptic Atrophy Hereditary LeberBiologyMitochondrionmedicine.disease_causeRetinal ganglionArticleMiceLHONGeneticsmedicineAnimalsHumansGenetics (clinical)GeneticsRetinaMutationElectron Transport Complex IGenetic heterogeneityAAVDependovirusgene therapyeye diseasesmitochondriaDisease Models AnimalOptic AtrophyNDI1medicine.anatomical_structureIntravitreal InjectionsCancer researchsense organsMicrotubule-Associated ProteinsEuropean journal of human genetics : EJHG
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The expression level of the orphan nuclear receptor GCNF (germ cell nuclear factor) is critical for neuronal differentiation.

2004

The germ cell nuclear factor (GCNF) is essential for normal embryonic development and gametogenesis. To test the prediction that GCNF is additionally required for neuronal differentiation, we used the mouse embryonal carcinoma cell line PCC7-Mz1, which represents an advantageous model to study neuronal cells from the stage of fate choice until the acquirement of functional competence. We generated stable transfectants that express gcnf sense or antisense RNA under the control of a tetracycline-regulated promoter. After retinoic acid-induced withdrawal from the cell cycle, sense clones developed a neuron network with changed properties, and the time course of neuron maturation was shortened.…

Patch-Clamp TechniquesGerm cell nuclear factorSynaptophysinDown-RegulationGene ExpressionReceptors Cytoplasmic and NuclearNerve Tissue ProteinsTretinoinBiologyNestinMiceEndocrinologyGAP-43 ProteinIntermediate Filament ProteinsNuclear Receptor Subfamily 6 Group A Member 1AnimalsRNA AntisenseMolecular BiologyNeuronsCell CycleCell PolarityCell DifferentiationGeneral MedicineCell cycleNestinCell biologyUp-RegulationNeuroepithelial cellDNA-Binding Proteinsnervous systemNeuron maturationSynaptophysinbiology.proteinNeuron differentiationStem cellMicrotubule-Associated ProteinsMolecular endocrinology (Baltimore, Md.)
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Clinical spectrum of BICD2 mutations.

2020

Background and purpose Mutations in the BICD2 gene cause autosomal dominant lower extremity-predominant spinal muscular atrophy 2A (SMALED2A), a condition that is associated with a specific pattern of thigh and calf muscle involvement when studied by magnetic resonance imaging (MRI). Patients may present minor clinical sensory impairment, but objective sensory involvement has yet to be demonstrated. Methods We collected clinical data from 11 patients from five different families carrying mutations in BICD2. Genetic diagnosis was achieved using gene panel testing and skin biopsies were taken from two patients to study the epidermal nerve fiber density. Results In the studied patients, three …

Pathologymedicine.medical_specialtyWeaknessSensory systemNerve fiberBICD2 Charcot-Marie-Tooth hereditary motor neuropathy muscle magnetic resonance imaging spinal muscular atrophyThighmedicine.disease_causeMuscular Atrophy Spinal03 medical and health sciences0302 clinical medicineCharcot-Marie-Tooth DiseasemedicineHumans030212 general & internal medicineMuscle SkeletalMutationLegmedicine.diagnostic_testbiologybusiness.industryMagnetic resonance imagingSpinal muscular atrophymedicine.diseasebiology.organism_classificationMagnetic Resonance ImagingMediusmedicine.anatomical_structureNeurologyMutationNeurology (clinical)medicine.symptombusinessMicrotubule-Associated Proteins030217 neurology & neurosurgery
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Identification of Novel Molecular Components of the Photoreceptor Connecting Cilium by Immunoscreens

2002

Abstract The connecting cilium of photoreceptor cells is the only intracellular link between the morphologically, functionally and biochemically different compartments of the inner and outer segments. The non-motile modified cilium plays an important role in the organization and the function of photoreceptor cells, namely in delivery and turnover of enzymes and substrates of the visual transduction cascade, and the photosensitive membranes of the outer segment. The protein components of the cilium participate in the intracellular transport through the cilium, in the outer segment disk morphogenesis and in the maintenance of discrete membrane domains. In order to identify yet unknown cytoske…

Photoreceptor Connecting CiliumAdenomatous Polyposis Coli ProteinXenopus ProteinsBiologyPhotoreceptor cellRats Sprague-DawleyMiceCellular and Molecular NeurosciencemedicineAnimalsDrosophila ProteinsCiliaCloning MolecularCytoskeletonMicrotubule-Associated Protein 4CytoskeletonGene LibraryRetinaCiliumCalcium-Binding ProteinsDynactin ComplexSensory SystemsRatsCell biologyMice Inbred C57BLOphthalmologymedicine.anatomical_structureCentrinsense organsMicrotubule-Associated ProteinsPhotoreceptor Cells VertebrateVisual phototransductionExperimental Eye Research
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