Search results for "Ataxin"

showing 10 items of 42 documents

ATNX2 is not a regulatory gene in Italian amyotrophic lateral sclerosis patients with C9ORF72 GGGGCC expansion

2015

Abstract There are indications that both familial amyotrophic lateral sclerosis (ALS) and sporadic ALS phenotype and prognosis are partly regulated by genetic and environmental factors, supporting the theory that ALS is a multifactorial disease. The aim of this article was to assess the role of ATXN2 intermediate length repeats in a large series of Italian and Sardinian ALS patients and controls carrying a pathogenetic C9ORF72 GGGGCC hexanucleotide repeat. A total of 1972 ALS cases were identified through the database of the Italian ALS Genetic consortium, a collaborative effort including 18 ALS centers throughout Italy. The study population included: (1) 276 Italian and 57 Sardinian ALS ca…

Male0301 basic medicineAgingC9ORF72Genetic Association Studie030105 genetics & heredityBiologySettore MED/03 - GENETICA MEDICA03 medical and health sciences0302 clinical medicineC9orf72medicineAlleleAmyotrophic lateral sclerosisAmyotrophic lateral sclerosiAgedAtaxin-2Regulator geneAmyotrophic lateral sclerosis; ATXN2; C9ORF72; Phenotype; Neuroscience (all); Medicine (all); Aging; Developmental Biology; Geriatrics and Gerontology; Neurology (clinical)GeneticsDNA Repeat ExpansionNeuroscience (all)ProteinMedicine (all)General NeuroscienceATXN2Middle AgedDNA Repeat Expansionmedicine.diseaseAmyotrophic lateral sclerosis3. Good healthC9orf72 ProteinAmyotrophic lateral sclerosis; ATXN2; C9ORF72; Phenotype; Neurology (clinical); Neuroscience (all); Aging; Developmental Biology; Geriatrics and GerontologyPhenotypeItalyPopulation studyFemaleSettore MED/26 - NeurologiaNeurology (clinical)Geriatrics and GerontologyTrinucleotide repeat expansion030217 neurology & neurosurgeryHumanDevelopmental Biology
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Disruption of the ATXN1-CIC complex causes a spectrum of neurobehavioral phenotypes in mice and humans

2017

International audience; Gain-of-function mutations in some genes underlie neurodegenerative conditions, whereas loss-of-function mutations in the same genes have distinct phenotypes. This appears to be the case with the protein ataxin 1 (ATXN1), which forms a transcriptional repressor complex with capicua (CIC). Gain of function of the complex leads to neurodegeneration, but ATXN1-CIC is also essential for survival. We set out to understand the functions of the ATXN1-CIC complex in the developing forebrain and found that losing this complex results in hyperactivity, impaired learning and memory, and abnormal maturation and maintenance of upper-layer cortical neurons. We also found that CIC …

Male0301 basic medicineAutism Spectrum DisorderAtaxin 1neuronsautismNerve Tissue Proteinsattention-deficit/hyperactivity disorderAmygdalaArticleMice03 medical and health sciencesTranscriptional repressor complexataxin-1Cerebellum[ SDV.MHEP ] Life Sciences [q-bio]/Human health and pathologyGeneticsmedicineAnimalsHumansAttention deficit hyperactivity disorderInterpersonal Relationssca1 neuropathologybiologysocial-behaviorNeurodegenerationcag repeatNuclear ProteinsNeurodegenerative Diseasesmedicine.diseasePhenotypeRepressor ProteinsPhenotype030104 developmental biologymedicine.anatomical_structureAutism spectrum disorderintellectual disabilitybiology.proteinAutismFemaleNeurosciencetime pcr datarepressor capicua[SDV.MHEP]Life Sciences [q-bio]/Human health and pathology
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Inheritance patterns of ATCCT repeat interruptions in spinocerebellar ataxia type 10 (SCA10) expansions

2017

Spinocerebellar ataxia type 10 (SCA10), an autosomal dominant cerebellar ataxia disorder, is caused by a non-coding ATTCT microsatellite repeat expansion in the ataxin 10 gene. In a subset of SCA10 families, the 5'-end of the repeat expansion contains a complex sequence of penta- and heptanucleotide interruption motifs which is followed by a pure tract of tandem ATCCT repeats of unknown length at its 3'-end. Intriguingly, expansions that carry these interruption motifs correlate with an epileptic seizure phenotype and are unstable despite the theory that interruptions are expected to stabilize expanded repeats. To examine the apparent contradiction of unstable, interruption-positive SCA10 e…

Male0301 basic medicineMolecular biologyInheritance Patternslcsh:MedicineGene ExpressionArtificial Gene Amplification and ExtensionPolymerase Chain ReactionDatabase and Informatics MethodsSequencing techniquesAutosomal dominant cerebellar ataxiaMedicine and Health SciencesDNA sequencinglcsh:ScienceGeneticsMovement DisordersMultidisciplinaryNeurodegenerative DiseasesGenomicsPedigreePhenotypeNeurologyMutation (genetic algorithm)Spinocerebellar ataxiaFemaleSequence AnalysisResearch ArticleBioinformaticsBiologyAtaxin-1003 medical and health sciencesSequence Motif AnalysisMicrosatellite RepeatGeneticsmedicineHumansSpinocerebellar AtaxiasRepeated SequencesAlleleAllelesSequence (medicine)EpilepsyBase SequenceBiology and life scienceslcsh:RDideoxy DNA sequencingGenetic Variationmedicine.diseaseResearch and analysis methodsMolecular biology techniques030104 developmental biologyTandem Repeat Sequence AnalysisAtaxinMutationlcsh:QAtaxiaTrinucleotide repeat expansionMicrosatellite RepeatsPLOS ONE
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Genetic investigation of amyotrophic lateral sclerosis patients in south Italy: a two-decade analysis

2020

Amyotrophic lateral sclerosis (ALS) is a multifactorial disease characterized by the interplay of genetic and environmental factors. In the majority of cases, ALS is sporadic, whereas familial forms occur in less than 10% of patients. Herein, we present the results of molecular analyses performed in a large cohort of Italian ALS patients, focusing on novel and already described variations in ALS-linked genes. Our analysis revealed that more than 10% of tested patients carried a mutation in one of the major ALS genes, with C9orf72 hexanucleotide expansion being the most common mutation. In addition, our study confirmed a significant association between ALS patients carrying the ATNX-1 interm…

Male0301 basic medicineSanger sequencingAgingTime FactorsDiseaseCohort Studies03 medical and health sciencessymbols.namesake0302 clinical medicineRisk FactorsC9orf72HumansMedicineAmyotrophic lateral sclerosisRisk factorGenePathologicalAtaxin-1Genetic Association StudiesAmyotrophic lateral sclerosiSanger sequencingGeneticsDNA Repeat ExpansionC9orf72 ProteinMolecular analysibusiness.industryMolecular analysisGeneral NeuroscienceGenetic VariationAmyotrophic lateral sclerosismedicine.disease030104 developmental biologyItalyMutation (genetic algorithm)symbolsFemaleNeurology (clinical)Geriatrics and Gerontologybusiness030217 neurology & neurosurgeryDevelopmental BiologyNeurobiology of Aging
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Differential expression of PGC-1α and metabolic sensors suggest age-dependent induction of mitochondrial biogenesis in Friedreich ataxia fibroblasts.

2011

11 pages, 6 figures. PMID:21687738[PubMed] PMCID: PMC3110204

MaleAgingMitochondrial DiseasesMitochondrial MyopathyUbiquinoneCardiomyopathylcsh:MedicineMitochondrionAMP-Activated Protein Kinasesp38 Mitogen-Activated Protein KinasesAntioxidantsAdenosine TriphosphateAMP-activated protein kinaseTrinucleotide RepeatsFibrosisMolecular Cell BiologyChildlcsh:ScienceHeat-Shock ProteinsRegulation of gene expressionMultidisciplinaryMovement DisordersbiologyNeuromuscular DiseasesMiddle AgedCatalasePeroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alphaCell biologyMitochondriaDNA-Binding ProteinsNeurologyDisease ProgressionMedicineFemalemedicine.symptomSignal TransductionResearch ArticleAdultcongenital hereditary and neonatal diseases and abnormalitiesAtaxiaAdolescentMitochondrial ProteinsmedicineGeneticsHumansBiologyAllelesGlutathione PeroxidaseSuperoxide Dismutaselcsh:RHuman GeneticsFibroblastsmedicine.diseaseMolecular biologyOxidative StressMitochondrial biogenesisGene Expression RegulationFriedreich Ataxiabiology.proteinFrataxinlcsh:QEnergy MetabolismReactive Oxygen SpeciesTranscription FactorsPLoS ONE
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Altered lipid metabolism in a Drosophila model of Friedreich's ataxia

2010

13 páginas, 5 figuras.-- et al.

MaleAtaxiaCell SurvivalLipid Metabolism Disordersmedicine.disease_causeNervous SystemAnimals Genetically ModifiedLipid peroxidationchemistry.chemical_compoundDownregulation and upregulationIron-Binding ProteinsLipid dropletGeneticsmedicineAnimalsDrosophila ProteinsHumansMolecular BiologyGenetics (clinical)Membrane GlycoproteinsbiologyCélulas glialesFatty AcidsLipid metabolismArticlesGeneral MedicineCell biologyDisease Models AnimalOxidative Stressmedicine.anatomical_structurechemistryBiochemistryFriedreich AtaxiaFrataxinbiology.proteinNeurogliaDrosophilaLipid Peroxidationmedicine.symptomCarrier ProteinsNeurogliaOxidative stress
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ATXN2 trinucleotide repeat length correlates with risk of ALS

2017

We investigated a CAG trinucleotide repeat expansion in the ATXN2 gene in amyotrophic lateral sclerosis (ALS). Two new case-control studies, a British dataset of 1474 ALS cases and 567 controls, and a Dutch dataset of 1328 ALS cases and 691 controls were analyzed. In addition, to increase power, we systematically searched PubMed for case-control studies published after 1 August 2010 that investigated the association between ATXN2 intermediate repeats and ALS. We conducted a meta-analysis of the new and existing studies for the relative risks of ATXN2 intermediate repeat alleles of between 24 and 34 CAG trinucleotide repeats and ALS. There was an overall increased risk of ALS for those carry…

MaleExpansion0301 basic medicineAgingATXN2 geneSettore MED/03 - GENETICA MEDICA0302 clinical medicineTrinucleotide RepeatsGenetic Report AbstractAmyotrophic lateral sclerosisAtaxin-2GeneticsCAGGeneral NeuroscienceATXN2Triplet3. Good healthFemalePsychologyNeurovetenskaperRiskNeuroscience(all)Age of onsetClinical Neurology03 medical and health sciencesSCA2Trinucleotide repeatJournal ArticlemedicineHumansAlleleAllelesGenetic Association StudiesAmyotrophic lateral sclerosiIntermediate expansionNeuroscience (all)NeurosciencesExponential riskCase-control studyAmyotrophic lateral sclerosismedicine.diseaseClinical neurologyAgeing030104 developmental biologyCase-Control StudiesHuman medicineNeurology (clinical)ALSGeriatrics and GerontologyAge of onsetTrinucleotide Repeat ExpansionTrinucleotide repeat expansionALS; ATXN2; Age of onset; Amyotrophic lateral sclerosis; CAG; Expansion; Exponential risk; Intermediate expansion; Risk; SCA2; Trinucleotide repeat; TripletNeuroscience030217 neurology & neurosurgeryMeta-AnalysisDevelopmental BiologyNeurobiology of Aging
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Friedreich's Ataxia: Autosomal Recessive Disease Caused by an Intronic GAA Triplet Repeat Expansion

1996

International audience; Friedreich's ataxia (FRDA) is an autosomal recessive, degenerative disease that involves the central and peripheral nervous systems and the heart. A gene, X25, was identified in the critical region for the FRDA locus on chromosome 9q13. This gene encodes a 210-amino acid protein, frataxin, that has homologs in distant species such as Caenorhabditis elegans and yeast. A few FRDA patients were found to have point mutations in X25, but the majority were homozygous for an unstable GAA trinucleotide expansion in the first X25 intron.

MaleIron-sulfur cluster assemblyPolymerase Chain Reaction0302 clinical medicineTrinucleotide RepeatsIron-Binding ProteinsGenetics0303 health sciencesMultidisciplinaryAutosomal recessive cerebellar ataxiaPedigree3. Good healthFemalemedicine.symptomChromosomes Human Pair 9HumanPair 9Heterozygotecongenital hereditary and neonatal diseases and abnormalitiesAtaxiaMolecular Sequence DataGenes RecessiveLocus (genetics)BiologyChromosomes03 medical and health sciencesGene mappingAlleles; Amino Acid Sequence; Base Sequence; Chromosomes Human Pair 9; DNA Primers; Female; Friedreich Ataxia; Genes Recessive; Heterozygote; Humans; Male; Molecular Sequence Data; Pedigree; Point Mutation; Polymerase Chain Reaction; Proteins; Sequence Alignment; Introns; Iron-Binding Proteins; Trinucleotide RepeatsmedicineRecessiveHumansPoint MutationAmino Acid SequenceAlleleAllelesDNA Primers030304 developmental biologyBase SequencePoint mutationProteins[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologymedicine.diseaseMolecular biologyIntronsGenes[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsFriedreich AtaxiaFrataxinbiology.proteinSequence Alignment030217 neurology & neurosurgeryScience
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Comparative multiplex dosage analysis in spinocerebellar ataxia type 2 patients.

2013

We developed a new application of comparative multiplex dosage analysis (CMDA) for evaluation of the ataxin 2 gene. Expansions of the triplet CAG can cause spinocerebellar ataxia type 2 (SCA2), a neurodegenerative disease with an autosomal-dominant mode of inheritance. Molecular diagnosis of SCA2 is routinely based on the use of conventional PCR to detect the CAG expansion. However, PCR does not amplify an allele with an expansion of many triplets (>80), which is typically found in infantile and juvenile forms of SCA2, thus leading to false negatives. We propose the analysis of the ATXN2 gene by CMDA to complement existing methods currently used for the detection of large expansions of the …

Malecongenital hereditary and neonatal diseases and abnormalitiesGenotypeGene DosagePrenatal diagnosisNerve Tissue ProteinsDiseaseAtaxin 2 Spinocerebellar ataxia type 2 Quantitative PCR Autosomal dominant Prenatal diagnosisSettore BIO/13 - Biologia ApplicataGeneticsMedicineHumansSpinocerebellar AtaxiasMultiplexAlleleMolecular BiologyGeneAllelesGeneticsbusiness.industryGeneral Medicinemedicine.diseaseReal-time polymerase chain reactionAtaxinsAtaxinCase-Control StudiesSpinocerebellar ataxiaFemalebusinessTrinucleotide Repeat ExpansionMultiplex Polymerase Chain ReactionGenetics and molecular research : GMR
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TORC1 Inhibition by Rapamycin Promotes Antioxidant Defences in a Drosophila Model of Friedreich’s Ataxia

2015

Friedreich's ataxia (FRDA), the most common inherited ataxia in the Caucasian population, is a multisystemic disease caused by a significant decrease in the frataxin level. To identify genes capable of modifying the severity of the symptoms of frataxin depletion, we performed a candidate genetic screen in a Drosophila RNAi-based model of FRDA. We found that genetic reduction in TOR Complex 1 (TORC1) signalling improves the impaired motor performance phenotype of FRDA model flies. Pharmacologic inhibition of TORC1 signalling by rapamycin also restored this phenotype and increased the lifespan and ATP levels. Furthermore, rapamycin reduced the altered levels of malondialdehyde + 4-hydroxyalke…

Malelcsh:MedicineGene Expressionmedicine.disease_causeAntioxidantsAnimals Genetically ModifiedAdenosine Triphosphate0302 clinical medicineRNA interferenceIron-Binding ProteinsMalondialdehydeDrosophila Proteinslcsh:ScienceAconitate HydrataseGenetics0303 health sciencesMultidisciplinaryReverse Transcriptase Polymerase Chain ReactionGlutathione3. Good healthCell biologyDrosophila melanogasterRNA Interferencemedicine.symptomImmunosuppressive AgentsDrosophila ProteinResearch ArticleAtaxiaLongevityMotor ActivityBiologyAconitase03 medical and health sciencesmedicineAnimalsHumans030304 developmental biologySirolimusAldehydesSuperoxide Dismutaselcsh:RAutophagyRepressor ProteinsDisease Models AnimalOxidative StressFriedreich AtaxiaFrataxinbiology.proteinlcsh:Q030217 neurology & neurosurgeryOxidative stressTranscription FactorsGenetic screenPLOS ONE
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