Search results for "Huntington's disease"

showing 10 items of 25 documents

Neuropeptide Y (NPY) in cerebrospinal fluid from patients with Huntington's Disease: increased NPY levels and differential degradation of the NPY1-30…

2016

Huntington's disease (HD) is an inherited and fatal polyglutamine neurodegenerative disorder caused by an expansion of the CAG triplet repeat coding region within the HD gene. Progressive dysfunction and loss of striatal GABAergic medium spiny neurons (MSNs) may account for some of the characteristic symptoms in HD patients. Interestingly, in HD, MSNs expressing neuropeptide Y (NPY) are spared and their numbers is even up-regulated in HD patients. Consistent with this, we report here on increased immuno-linked NPY (IL-NPY) levels in human cerebrospinal fluid (hCSF) from HD patients (Control n = 10; early HD n = 9; mid HD n = 11). As this antibody-based detection of NPY may provide false pos…

0301 basic medicineAdultMalemedicine.medical_specialtyCathepsin DDynorphinMedium spiny neuronBiochemistry03 medical and health sciencesCellular and Molecular NeuroscienceMice0302 clinical medicineCerebrospinal fluidHuntington's diseaseInternal medicinemental disordersmedicineAnimalsHumansNeuropeptide YNeprilysinAgedThimet oligopeptidaseChemistryMiddle Agedmedicine.diseaseNeuropeptide Y receptorPeptide FragmentsRats030104 developmental biologyEndocrinologyHEK293 CellsHuntington DiseaseProteolysisFemale030217 neurology & neurosurgeryBiomarkersJournal of neurochemistry
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The FOXP2-Driven Network in Developmental Disorders and Neurodegeneration

2017

The transcription repressor FOXP2 is a crucial player in nervous system evolution and development of humans and songbirds. In order to provide an additional insight into its functional role we compared target gene expression levels between human neuroblastoma cells (SH-SY5Y) stably overexpressing either human FOXP2 cDNA or its orthologues from the common chimpanzee, Rhesus monkey, and marmoset, respectively. Subsequent RNA-seq led to identification of 27 genes with differential regulation under the control of human FOXP2, which were previously reported to have FOXP2-driven and/or songbird song-related expression regulation. Importantly, RT-qPCR and Western blotting indicated differential re…

0301 basic medicineCell signalingCytoskeleton organizationspeechbrainBiologyAxonogenesislcsh:RC321-57103 medical and health sciencesCellular and Molecular NeuroscienceHuntington's diseasemedicineGeneTranscription factorlcsh:Neurosciences. Biological psychiatry. Neuropsychiatryneuronal circuitryOriginal ResearchlanguageNeurodegenerationFOXP2medicine.diseaseschizophrenia030104 developmental biologyParkinson’s diseaseNeuroscienceAlzheimer’s diseaseNeuroscienceHuntington’s diseaseFrontiers in Cellular Neuroscience
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ESC-Derived BDNF-Overexpressing Neural Progenitors Differentially Promote Recovery in Huntington's Disease Models by Enhanced Striatal Differentiation

2016

Summary Huntington's disease (HD) is characterized by fatal motoric failures induced by loss of striatal medium spiny neurons. Neuronal cell death has been linked to impaired expression and axonal transport of the neurotrophin BDNF (brain-derived neurotrophic factor). By transplanting embryonic stem cell-derived neural progenitors overexpressing BDNF, we combined cell replacement and BDNF supply as a potential HD therapy approach. Transplantation of purified neural progenitors was analyzed in a quinolinic acid (QA) chemical and two genetic HD mouse models (R6/2 and N171-82Q) on the basis of distinct behavioral parameters, including CatWalk gait analysis. Explicit rescue of motor function by…

0301 basic medicineGene ExpressionBiochemistrychemistry.chemical_compoundMice0302 clinical medicineNeural Stem CellsNeurotrophic factorsGenes Reporterlcsh:QH301-705.5Neuronslcsh:R5-920NeurogenesisCell DifferentiationAnatomyembryonic stem cellsHuntington Diseaselcsh:Medicine (General)NeurogliaLocomotionNeurotrophinHuntington’s diseaseCell SurvivalBiologyMedium spiny neuronArticle03 medical and health sciencesHuntington's diseaseGeneticsmedicinestriatal differentiationAnimalsBrain-derived neurotrophic factorBrain-Derived Neurotrophic FactorCell Biologymedicine.diseaseCorpus StriatumTransplantationDisease Models Animal030104 developmental biologylcsh:Biology (General)chemistrynervous systembiology.proteinNeuroscience030217 neurology & neurosurgeryBiomarkersDevelopmental BiologyQuinolinic acidStem Cell TransplantationStem Cell Reports
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The Drosophila junctophilin gene is functionally equivalent to its four mammalian counterparts and is a modifier of a Huntingtin poly-Q expansion and…

2018

[EN] Members of the Junctophilin (JPH) protein family have emerged as key actors in all excitable cells, with crucial implications for human pathophysiology. In mammals, this family consists of four members (JPH1-JPH4) that are differentially expressed throughout excitable cells. The analysis of knockout mice lacking JPH subtypes has demonstrated their essential contribution to physiological functions in skeletal and cardiac muscles and in neurons. Moreover, mutations in the human JPH2 gene are associated with hypertrophic and dilated cardiomyopathies; mutations in JPH3 are responsible for the neurodegenerative Huntington's disease-like-2 (HDL2), whereas JPH1 acts as a genetic modifier in C…

0301 basic medicineHuntingtinNotchProtein familyCardiomyopathyNeuroscience (miscellaneous)Notch signaling pathwayMedicine (miscellaneous)lcsh:Medicinemedicine.disease_causeGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesImmunology and Microbiology (miscellaneous)JPH2BIOQUIMICA Y BIOLOGIA MOLECULARHuntingtin Proteinmedicinelcsh:PathologyGeneticsMutationbiologylcsh:RHuntington's diseasebiology.organism_classification030104 developmental biologyJunctophilinDrosophilaDrosophila melanogasterDrosophila Proteinlcsh:RB1-214Disease Models & Mechanisms
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Tetrahydrocarbazoles decrease elevated SOCE in medium spiny neurons from transgenic YAC128 mice, a model of Huntington's disease

2017

AbstractHuntington's disease (HD) is a hereditary neurodegenerative disease caused by a polyglutamine expansion within the huntingtin (HTT) gene. One of the cellular functions that is dysregulated in HD is store-operated calcium entry (SOCE), a process in which the depletion of Ca2+ from the endoplasmic reticulum (ER) induces Ca2+ influx from the extracellular space. We detected an enhanced activity of SOC channels in medium spiny neurons (MSNs) from YAC128 mice, a transgenic model of HD, and investigated whether this could be reverted by tetrahydrocarbazoles. The compound 6-bromo-N-(2-phenylethyl)-2,3,4,9-tetrahydro-1H-carbazol-1-amine hydrochloride was indeed able to restore the disturbed…

0301 basic medicineHuntingtinTransgeneCarbazolesBiophysicsMice TransgenicBiologyEndoplasmic ReticulumMedium spiny neuronYAC128BiochemistryMice03 medical and health sciences0302 clinical medicineHuntington's diseaseTetrahydrocarbazolesmedicineAnimalsHomeostasisHuntingtinMolecular BiologyCells CulturedMembrane Potential MitochondrialNeuronsSOC channelsMedium spiny neuronsIon TransportEndoplasmic reticulumHuntington's diseaseStore-operated calcium entryCell Biologymedicine.diseaseStore-operated calcium entryCulture MediaCell biology030104 developmental biologyBiochemistryCalcium030217 neurology & neurosurgeryHomeostasisBiochemical and Biophysical Research Communications
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An update on intracerebral stem cell grafts.

2018

Introduction: Primary neurological disorders are notoriously debilitating and deadly, and over the past four decades stem cell therapy has emerged as a promising treatment. Translation of stem cell therapies from the bench to the clinic requires a better understanding of delivery protocols, safety profile, and efficacy in each disease. Areas covered: In this review, benefits and risks of intracerebral stem cell transplantation are presented for consideration. Milestone discoveries in stem cell applications are reviewed to examine the efficacy and safety of intracerebral stem cell transplant therapy for disorders of the central nervous system and inform design of translatable protocols for c…

0301 basic medicineOncologymedicine.medical_specialtyParkinson's diseaseTraumatic brain injurymedicine.medical_treatmentmulti-system atrophyNeuroprotection03 medical and health sciencesGraft vs Host Reaction0302 clinical medicineHuntington's diseaseCentral Nervous System DiseasesRisk FactorsInternal medicineMedicineAnimalsHumansPharmacology (medical)amyotrophic lateral sclerosiAmyotrophic lateral sclerosisStem cellbusiness.industryGeneral NeuroscienceMultiple sclerosistraumatic brain injuryStem-cell therapymedicine.diseasestroke030104 developmental biologyBlood-Brain Barriermultiple sclerosiParkinson’s diseaseneuroprotectionNeurology (clinical)Stem cellbusiness030217 neurology & neurosurgeryHuntington’s diseaseStem Cell TransplantationExpert review of neurotherapeutics
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2020

Huntington's disease (HD) is an autosomal dominantly inherited neurodegenerative disorder caused by a trinucleotide repeat expansion in the Huntingtin gene. As disease-modifying therapies for HD are being developed, peripheral blood cells may be used to indicate disease progression and to monitor treatment response. In order to investigate whether gene expression changes can be found in the blood of individuals with HD that distinguish them from healthy controls, we performed transcriptome analysis by next-generation sequencing (RNA-seq). We detected a gene expression signature consistent with dysregulation of immune-related functions and inflammatory response in peripheral blood from HD ca…

0301 basic medicineRNA-SeqInflammationBiologymedicine.diseaseTranscriptome03 medical and health sciences030104 developmental biology0302 clinical medicineImmune systemNeurologyHuntington's diseaseImmunologyGene expressionmedicineNeurology (clinical)medicine.symptomTrinucleotide repeat expansionGene030217 neurology & neurosurgeryFrontiers in Neurology
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Pharmacological disruption of the MID1/α4 interaction reduces mutant Huntingtin levels in primary neuronal cultures.

2017

Expression of mutant Huntingtin (HTT) protein is central to the pathophysiology of Huntington's Disease (HD). The E3 ubiquitin ligase MID1 appears to have a key role in facilitating translation of the mutant HTT mRNA suggesting that interference with the function of this complex could be an attractive therapeutic approach. Here we describe a peptide that is able to disrupt the interaction between MID1 and the α4 protein, a regulatory subunit of protein phosphatase 2A (PP2A). By fusing this peptide to a sequence from the HIV-TAT protein we demonstrate that the peptide can disrupt the interaction within cells and show that this results in a decrease in levels of ribosomal S6 phosphorylation a…

0301 basic medicinecongenital hereditary and neonatal diseases and abnormalitiesHuntingtinMid1 protein mouseProtein subunitUbiquitin-Protein LigasesMutantPrimary Cell CulturePeptide03 medical and health sciencesMiceHuntington's diseasemental disordersmedicineAnimalsHumansHtt protein mouseddc:610Protein Phosphatase 2Neuronschemistry.chemical_classificationMessenger RNAHuntingtin ProteinbiologyChemistryGeneral NeuroscienceProteinsgenetics [Huntingtin Protein]metabolism [Protein Phosphatase 2]metabolism [Proteins]Protein phosphatase 2medicine.diseaseUbiquitin ligaseCell biology030104 developmental biologyHEK293 Cellsmetabolism [Neurons]metabolism [Huntingtin Protein]Mutationbiology.proteinProtein Binding
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Is TGF-β1 a Biomarker of Huntington’s Disease Progression?

2021

Huntington’s disease (HD) is an autosomal dominant genetic disease that can be divided into preclinical and symptomatic stages. Due to the diverse HD phenotype, there is an urgent need to identify markers that would independently assess its severity. The aim of this study was to evaluate the use of plasma levels of TGF-β1 in the assessment of HD severity. One hundred HD patients and 40 healthy volunteers were included in the study. All HD patients underwent neurological and cognitive function assessment. TGF-β1 levels were determined in the plasma of all patients. The correlations between TGF-β1 levels and clinical profile and HD severity were also investigated. In symptomatic patients, cog…

0301 basic medicinemedicine.medical_specialtymarkersDiseaseGastroenterologyArticle03 medical and health sciences0302 clinical medicineDisease severityHuntington's diseaseInternal medicineTGF-β1medicineCognitive declineStage (cooking)business.industryRGeneral MedicinePlasma levelsHuntington diseasemedicine.disease030104 developmental biologyBiomarker (medicine)Medicinebusiness030217 neurology & neurosurgeryTransforming growth factorJournal of Clinical Medicine
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A novel function of Huntingtin in the cilium and retinal ciliopathy in Huntington's disease mice

2015

Huntington's disease (HD) is a neurodegenerative disorder caused by the toxic expansion of polyglutamine in the Huntingtin (HTT) protein. The pathomechanism is complex and not fully understood. Increasing evidence indicates that the loss of normal protein function also contributes to the pathogenesis, pointing out the importance of understanding the physiological roles of HTT. We provide evidence for a novel function of HTT in the cilium. HTT localizes in diverse types of cilia — including 9 + 0 non-motile sensory cilia of neurons and 9 + 2 motile multicilia of trachea and ependymal cells — which exert various functions during tissue development and homeostasis. In the photoreceptor cilium,…

AxonemeMalecongenital hereditary and neonatal diseases and abnormalitiesHuntingtinCentrioleMice TransgenicNerve Tissue ProteinsBiologyMicrotubulesPhotoreceptor cellRetinalcsh:RC321-571MiceHuntington's diseaseIntraflagellar transportmental disordersmedicineAnimalsHumansPhotoreceptor CellsHuntingtinCilialcsh:Neurosciences. Biological psychiatry. NeuropsychiatryComputingMilieux_MISCELLANEOUSHuntingtin ProteinPhotoreceptorCiliumNuclear ProteinsHuntington's diseasemedicine.diseaseCell biologyCiliopathyDisease Models Animalmedicine.anatomical_structureHEK293 CellsHuntington DiseaseNeurologyFemale[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]sense organs
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