Search results for "AUTOSOMAL-DOMINANT"

showing 3 items of 3 documents

Human R1441C LRRK2 regulates the synaptic vesicle proteome and phosphoproteome in a Drosophila model of Parkinson's disease

2016

International audience; Mutations in leucine-rich repeat kinase 2 (LRRK2) cause late-onset, autosomal dominant familial Parkinsons disease (PD) and variation at the LRRK2 locus contributes to the risk for idiopathic PD. LRRK2 can function as a protein kinase and mutations lead to increased kinase activity. To elucidate the pathophysiological mechanism of the R1441C mutation in the GTPase domain of LRRK2, we expressed human wild-type or R1441C LRRK2 in dopaminergic neurons of Drosophila and observe reduced locomotor activity, impaired survival and an age-dependent degeneration of dopaminergic neurons thereby creating a new PD-like model. To explore the function of LRRK2 variants in vivo, we …

0301 basic medicineProteomerab3 GTP-Binding Proteinsalpha-synucleindomainSyntaxin 1Interactomedopaminergic-neuronsAnimals Genetically Modifiedchemistry.chemical_compound0302 clinical medicinemicrotubule stabilityDrosophila ProteinsProtein Interaction MapsGenetics (clinical)LRRK2 GeneKinasephosphorylationBrainParkinson DiseaseArticlesGeneral Medicineautosomal-dominant parkinsonismLRRK2Drosophila melanogasterSynaptotagmin IProteomePhosphorylationSynaptic VesiclesNerve Tissue ProteinsBiologyLeucine-Rich Repeat Serine-Threonine Protein Kinase-203 medical and health sciencesGeneticsAnimalsHumansKinase activitygeneMolecular BiologyAlpha-synucleingtp-bindingDopaminergic Neuronsrepeat kinase 2Molecular biologyPhosphoric Monoester Hydrolasesnervous system diseasesDisease Models Animal030104 developmental biologyGene Expression Regulationchemistrymutation030217 neurology & neurosurgery[SDV.MHEP]Life Sciences [q-bio]/Human health and pathology
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WNT Signaling Perturbations Underlie the Genetic Heterogeneity of Robinow Syndrome

2018

International audience; Locus heterogeneity characterizes a variety of skeletal dysplasias often due to interacting or overlapping signaling pathways. Robinow syndrome is a skeletal disorder historically refractory to molecular diagnosis, potentially stemming from substantial genetic heterogeneity. All current known pathogenic variants reside in genes within the noncanonical Wnt signaling pathway including ROR2, WNT5A, and more recently, DVL1 and DVL3. However, ∼70% of autosomal-dominant Robinow syndrome cases remain molecularly unsolved. To investigate this missing heritability, we recruited 21 families with at least one family member clinically diagnosed with Robinow or Robinow-like pheno…

Male0301 basic medicineCandidate geneFrizzledGROWTH-PLATEDEP DOMAINlnfectious Diseases and Global Health Radboud Institute for Molecular Life Sciences [Radboudumc 4]PROTEINskeletal dysplasiaCraniofacial Abnormalities0302 clinical medicineLocus heterogeneityChromosome SegregationChild[ SDV.GEN.GH ] Life Sciences [q-bio]/Genetics/Human geneticsWnt Signaling PathwayGenetics (clinical)Genes DominantGeneticsWnt signaling pathwayMiddle AgedRobinow syndromeMENDELIAN-INHERITANCEPhenotypeChild PreschoolFemaleNEURAL-TUBE DEFECTSVERTEBRATE GASTRULATIONhuman embryonic developmentRare cancers Radboud Institute for Health Sciences [Radboudumc 9]AdultAdolescentCELL POLARITYLimb Deformities CongenitalMutation MissenseDwarfismBiologyArticledual molecular diagnosisDiagnosis DifferentialGenetic Heterogeneity03 medical and health sciencesFrizzledAll institutes and research themes of the Radboud University Medical CenterSkeletal disorderGeneticsmedicineHumansGenetic Association StudiesNeurodevelopmental disorders Donders Center for Medical Neuroscience [Radboudumc 7]Base SequenceGenetic heterogeneityMUTATIONSROR2medicine.diseaseDROSOPHILA TISSUE POLARITY030104 developmental biology[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsUrogenital AbnormalitiesAUTOSOMAL-DOMINANT030217 neurology & neurosurgery
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Homozygous Familial Hypercholesterolemia in Spain Prevalence and Phenotype-Genotype Relationship

2016

Background— Homozygous familial hypercholesterolemia (HoFH) is a rare disease characterized by elevated plasma levels of low-density lipoprotein cholesterol (LDL-C) and extremely high risk of premature atherosclerotic cardiovascular disease. HoFH is caused by mutations in several genes, including LDL receptor ( LDLR ), apolipoprotein B ( APOB ), proprotein convertase subtilisin/kexin type 9 ( PCSK9 ), and LDL protein receptor adaptor 1 ( LDLRAP1 ). No epidemiological studies have assessed HoFH prevalence or the clinical and molecular characteristics of this condition. Here, we aimed to characterize HoFH in Spain. Methods and Results— Data were collected from the Spanish Dyslipidemia Regist…

Male0301 basic medicineOncologyLdl receptor geneApolipoprotein BLipid-lowering therapyFamilial hypercholesterolemia030204 cardiovascular system & hematologyCompound heterozygosity0302 clinical medicineAutosomal-dominant hypercholesterolemiaRisk FactorsEpidemiologyPrevalenceDiseaseRegistriesGenetics (clinical)Molecular EpidemiologybiologyhypercholesterolemiaHomozygoteDouble-blindMiddle AgedPhenotypeCardiovascular DiseasesApolipoprotein B-100allelesFemalelipids (amino acids peptides and proteins)Proprotein Convertase 9Cardiology and Cardiovascular MedicineMutationsAdultGenetic MarkersHeterozygotemedicine.medical_specialtyInhibitorAdolescentPlacebo-controlled trialHyperlipoproteinemia Type IIlipidsYoung Adult03 medical and health sciencesInternal medicineGeneticsmedicineHumansGenetic Predisposition to DiseaseAlleleAdaptor Proteins Signal TransducingRecessive hypercholesterolemiaPCSK9registriesCholesterol LDLApolipoprotein-bmedicine.disease030104 developmental biologyEndocrinologyReceptors LDLSpainMutationLDL receptorbiology.proteinmutationDyslipidemia
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