Search results for "amyloid beta"

showing 10 items of 191 documents

LRP1 modulates APP trafficking along early compartments of the secretory pathway

2008

The amyloid beta peptide (A beta) is a central player in Alzheimer's disease (AD) pathology. A beta liberation depends on APP cleavage by beta- and gamma-secretases. The low density lipoprotein receptor related protein 1 (LRP1) was shown to mediate APP processing at multiple steps. Newly synthesized LRP1 can interact with APP, implying an interaction between these two proteins early in the secretory pathway. We wanted to investigate whether LRP1 mediates APP trafficking along the secretory pathway, and, if so, whether it affects APP processing. Indeed, the early trafficking of APP within the secretory pathway is strongly influenced by its interaction with the C-terminal domain of LRP1. The …

GlycosylationAmyloid betaAmino Acid MotifsPlaque AmyloidCHO CellsSecretory pathwayTrafficinglcsh:RC321-571Amyloid beta-Protein PrecursorCricetulusAlzheimer DiseaseCricetinaemental disordersAmyloid precursor proteinAnimalsHumansReceptorlcsh:Neurosciences. Biological psychiatry. NeuropsychiatrySecretory pathwayNeuronsAmyloid beta-PeptidesbiologyLow density lipoprotein receptor related proteinBrainLRP1Cell CompartmentationProtein Structure TertiaryCell biologyProtein TransportNeurologyBiochemistryAlpha secretaseRetentionAmyloid precursor proteinLDL receptorbiology.proteinLiberationProtein Processing Post-TranslationalLow Density Lipoprotein Receptor-Related Protein-1Signal TransductionNeurobiology of Disease
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Neuronal activity and secreted amyloid β lead to altered amyloid β precursor protein and presenilin 1 interactions.

2013

Deposition of amyloid β (Aβ) containing plaques in the brain is one of the neuropathological hallmarks of Alzheimer's disease (AD). It has been suggested that modulation of neuronal activity may alter Aβ production in the brain. We postulate that these changes in Aβ production are due to changes in the rate-limiting step of Aβ generation, APP cleavage by γ-secretase. By combining biochemical approaches with fluorescence lifetime imaging microscopy, we found that neuronal inhibition decreases endogenous APP and PS1 interactions, which correlates with reduced Aβ production. By contrast, neuronal activation had a two-phase effect: it initially enhanced APP-PS1 interaction leading to increased …

ImmunoprecipitationBlotting WesternEndogenyMice TransgenicCleavage (embryo)PresenilinArticlelcsh:RC321-571Amyloid beta-Protein PrecursorMiceAlzheimer Diseasemental disordersmedicinePresenilin-1Premovement neuronal activityAnimalsHumansImmunoprecipitationlcsh:Neurosciences. Biological psychiatry. NeuropsychiatryFeedback PhysiologicalNeuronsPresenilin 1Neuronal activityAmyloid beta-PeptidesChemistryP3 peptideNeurotoxicityAlzheimer's diseasemedicine.diseaseImmunohistochemistryCell biologyNeurologyBiochemistrynervous systemAlzheimer's diseaseAmyloid β precursor proteinFLIM (fluorescence lifetime imaging microscopy)Neurobiology of disease
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Low Density Lipoprotein Receptor-related Protein (LRP) Interacts with Presenilin 1 and Is a Competitive Substrate of the Amyloid Precursor Protein (A…

2005

Presenilin 1 (PS1) is a critical component of the gamma-secretase complex, which is involved in the cleavage of several substrates including the amyloid precursor protein (APP) and the Notch receptor. Recently, the low density receptor-related protein (LRP) has been shown to be cleaved by a gamma-secretase-like activity. We postulated that LRP may interact with PS1 and tested its role as a competitive substrate for gamma-secretase. In this report we show that LRP colocalizes and interacts with endogenous PS1 using coimmunoprecipitation and fluorescence lifetime imaging microscopy. In addition, we found that gamma-secretase active site inhibitors do not disrupt the interaction between LRP an…

ImmunoprecipitationNotch signaling pathwayMice TransgenicBinding CompetitiveBiochemistryPresenilinCell LineSubstrate SpecificityRats Sprague-DawleyAmyloid beta-Protein PrecursorMiceEndopeptidasesmental disordersPresenilin-1Amyloid precursor proteinAnimalsAspartic Acid EndopeptidasesHumansBinding siteMolecular BiologyBrain ChemistryBinding SitesbiologyChemistryMembrane ProteinsCell BiologyRatsnervous system diseasesCell biologyTransmembrane domainBiochemistryMultiprotein ComplexesLDL receptorbiology.proteinlipids (amino acids peptides and proteins)Amyloid Precursor Protein SecretasesAmyloid precursor protein secretaseLow Density Lipoprotein Receptor-Related Protein-1Journal of Biological Chemistry
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Action of low doses of Aspirin in Inflammation and Oxidative Stress induced by aβ

2019

Aspirin has been used as anti-inflammatory and anti-aggregate for decades but the precise mechanism(s) of action after the presence of the toxic peptide Aβ1-42 in cultured astrocytes remains poorly resolved. Here we use low-doses of aspirin (10-7 M) in astrocytes in primary culture in presence or absence of Aβ1-42 toxic peptide. We noted an increase of cell viability and proliferation with or without Aβ1-42 peptide presence in aspirin treated cells. In addition, a decrease in apoptosis, determined by Caspase 3 activity and the expression of Cyt c and Smac/Diablo, were detected. Also, aspirin diminished necrosis process (LDH levels), pro-inflammatory mediators (IL-β and TNF-α) and NF-ᴋB prot…

InflammationAmyloid beta-PeptidesAspirinDose-Response Relationship DrugCell SurvivalTumor Necrosis Factor-alphaInterleukin-1betaPrimary Cell CultureNF-kappa BAlzheimer's diseasePeptide FragmentsRatsOxidative StressGene Expression RegulationAlzheimer DiseaseAstrocytesAnimalsHumansAmyloid-βCell ProliferationResearch PaperInternational journal of medical sciences
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Lack of APP and APLP2 in GABAergic Forebrain Neurons Impairs Synaptic Plasticity and Cognition.

2020

AbstractAmyloid-β precursor protein (APP) is central to the pathogenesis of Alzheimer’s disease, yet its physiological functions remain incompletely understood. Previous studies had indicated important synaptic functions of APP and the closely related homologue APLP2 in excitatory forebrain neurons for spine density, synaptic plasticity, and behavior. Here, we show that APP is also widely expressed in several interneuron subtypes, both in hippocampus and cortex. To address the functional role of APP in inhibitory neurons, we generated mice with a conditional APP/APLP2 double knockout (cDKO) in GABAergic forebrain neurons using DlxCre mice. These DlxCre cDKO mice exhibit cognitive deficits i…

InterneuronCognitive NeuroscienceLong-Term PotentiationSpatial LearningHippocampusAction PotentialsInhibitory postsynaptic potentialHippocampusNesting Behavior03 medical and health sciencesCellular and Molecular NeuroscienceAmyloid beta-Protein PrecursorMice0302 clinical medicineCognitionProsencephalonAmyloid precursor proteinmedicineAnimalsGABAergic NeuronsCA1 Region Hippocampal030304 developmental biologySpatial MemoryMice Knockout0303 health sciencesNeuronal PlasticitybiologyPyramidal CellsExcitatory Postsynaptic PotentialsLong-term potentiationmedicine.anatomical_structurenervous systemInhibitory Postsynaptic PotentialsSynaptic plasticityForebrainExcitatory postsynaptic potentialbiology.proteinNeuroscience030217 neurology & neurosurgeryCerebral cortex (New York, N.Y. : 1991)
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A New Tool for the Analysis of the Effect of Intracerebrally Injected Anti-Amyloid-β Compounds

2021

Background: A wide range of techniques has been developed over the past decades to characterize amyloid-β (Aβ) pathology in mice. Until now, no method has been established to quantify spatial changes in Aβ plaque deposition due to targeted delivery of substances using ALZET® pumps. Objective: Development of a methodology to quantify the local distribution of Aβ plaques after intracerebral infusion of compounds. Methods: We have developed a toolbox to quantify Aβ plaques in relation to intracerebral injection channels using Zeiss AxioVision® and Microsoft Excel® software. For the proof of concept, intracerebral stereotactic surgery was performed in 50-day-old APP-transgenic mice injected wit…

Intracerebral injectionAmyloid βMice TransgenicPlaque Amyloidamyloid-βtransgenic miceStereotaxic TechniqueshistologyMiceAlzheimer DiseaseAnimalsHumansDistribution (pharmacology)implantable infusion pumpdistributional activityAmyloid beta-PeptidesChemistryGeneral NeuroscienceBrainGeneral MedicineImmunohistochemistryplaquesAβ depositionquantificationDisease Models AnimalPsychiatry and Mental healthClinical PsychologyGeriatrics and GerontologyAlzheimer’s diseaseResearch ArticleBiomedical engineeringJournal of Alzheimer's Disease
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Oestradiol or genistein rescues neurons from amyloid beta-induced cell death by inhibiting activation of p38.

2007

Oestrogenic compounds have been postulated as neuroprotective agents. This prompted us to investigate their mechanism action in neurons in primary culture. Cells were pretreated with physiological concentrations of 17-beta estradiol (0.2 nm) or with nutritionally relevant concentrations of genistein (0.5 microm), and 48 h later treated with 5 microm of amyloid beta (Abeta) for 24 h. We found that Abeta increased oxidative stress, measured as peroxide levels or oxidized glutathione/reduced glutathione ratio, which in turn, caused phosphorylation of p38 MAP kinase. Amyloid beta subsequently induced neuronal death. Inhibiting the MAP kinase pathway prevented cell death, confirming the role of …

MAPK/ERK pathwayAgingProgrammed cell deathmedicine.medical_specialtyAmyloid betaCell Survivalp38 mitogen-activated protein kinasesGenisteinPhytoestrogensIn Vitro Techniquesmedicine.disease_causeNeuroprotectionp38 Mitogen-Activated Protein Kinaseschemistry.chemical_compoundInternal medicinemedicineAnimalsCells CulturedCerebral CortexNeuronsAmyloid beta-PeptidesbiologyCell DeathEstradiolEstrogensCell BiologyGlutathioneGenisteinMitochondriaRatsOxidative StressEndocrinologychemistrybiology.proteinOxidation-ReductionOxidative stressAging cell
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Reduced firing rates of pyramidal cells in the frontal cortex of APP/PS1 can be restored by acute treatment with levetiracetam

2020

Contains fulltext : 229488.pdf (Publisher’s version ) (Open Access) Contains fulltext : 229488pre.pdf (Author’s version preprint ) (Open Access) In recent years, aberrant neural oscillations in various cortical areas have emerged as a common physiological hallmark across mouse models of amyloid pathology and patients with Alzheimer's disease. However, much less is known about the underlying effect of amyloid pathology on single cell activity. Here, we used high-density silicon probe recordings from frontal cortex area of 9-month-old APP/PS1 mice to show that local field potential power in the theta and beta band is increased in transgenic animals, whereas single-cell firing rates, specifica…

Male0301 basic medicineAgingAlzheimer`s disease Donders Center for Medical Neuroscience [Radboudumc 1]LevetiracetamAction PotentialsamyloidoosiLocal field potentialAlzheimerin tautiAmyloid beta-Protein Precursor0302 clinical medicineBeta RhythmChemistryPyramidal CellsGeneral Neuroscienceamyloidfood and beveragesAmyloidosisPhenotypePathophysiologyFrontal Lobesingle cellmedicine.anatomical_structureLevetiracetamPyramidal cellAlzheimer’s diseasemedicine.drugNeuroinformaticspatofysiologiaAmyloidmouse modelTransgeneMice Transgenic03 medical and health sciencesAlzheimer Diseasemental disordersPresenilin-1medicineAnimalslocal field potential (LFP)hermosolutDisease Models Animal030104 developmental biologynervous systemfiring rateNeurology (clinical)Geriatrics and GerontologyNeuroscience030217 neurology & neurosurgeryDevelopmental BiologyNeurobiology of Aging
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Garcinoic acid prevents β-amyloid (Aβ) deposition in the mouse brain

2020

Garcinoic acid (GA or δ-T3-13'COOH), is a natural vitamin E metabolite that has preliminarily been identified as a modulator of nuclear receptors involved in β-amyloid (Aβ) metabolism and progression of Alzheimer's disease (AD). In this study, we investigated GA's effects on Aβ oligomer formation and deposition. Specifically, we compared them with those of other vitamin E analogs and the soy isoflavone genistein, a natural agonist of peroxisome proliferator–activated receptor γ (PPARγ) that has therapeutic potential for managing AD. GA significantly reduced Aβ aggregation and accumulation in mouse cortical astrocytes. Similarly to genistein, GA up-regulated PPARγ expression and apolipoprote…

Male0301 basic medicineApolipoprotein EBiologiamedicine.medical_treatmentMetaboliteGenisteinFisiologiavitamin EPharmacologyProtein Aggregation PathologicalBiochemistry)protein aggregationgenisteinMiceProtein Aggregates03 medical and health scienceschemistry.chemical_compoundperoxisome proliferator-activated receptor gamma (PPARγ)neurodegenerative diseaseNeurobiologygarcinoic acidmedicineAnimalsBenzopyranstocotrienolReceptorMolecular BiologyPregnane X receptorAmyloid beta-Peptidespregnane X receptor (PXR)peroxisome proliferator-activated receptor (PPAR)030102 biochemistry & molecular biologyVitamin EBrainCell BiologyAlzheimer's diseasetocopherol030104 developmental biologyNuclear receptorchemistryperoxisome proliferator-activated receptor gamma (PPAR gamma)amyloid-beta (AB)apolipoprotein E (ApoETocotrienolAlzheimer diseaseapolipoprotein E (ApoE)
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Memory-enhancing and brain protein expression-stimulating effects of novel calcium antagonist in Alzheimer’s disease transgenic female mice

2016

The prevalence of Alzheimer's disease (AD) is higher in females than in males, and causes more severe cognitive, memory and behavioral impairments. Previously, in male transgenic (Tg) APPSweDI mice, we reported that the novel lipophilic 1,4-dihydropyridine (DHP) derivative AP-12 crossed the blood-brain barrier, blocked neuronal and vascular calcium channels, changed brain protein expression and improved behavior. In this study, we used female Tg APPSweDI mice to assess the effects of AP-12 on behavior, and brain protein expression, with a particular focus on those of the GABAergic system. The results showed that in female Tg mice, similar to male Tg mice, AP-12 improved spatial learning/mem…

Male0301 basic medicineCingulate cortexDihydropyridinesmedicine.medical_specialtyElevated plus mazeVesicular Inhibitory Amino Acid Transport ProteinsHippocampusMice TransgenicWater mazeBiologyHippocampal formationGyrus CinguliHippocampusArticleAmyloid beta-Protein PrecursorMice03 medical and health sciences0302 clinical medicineAlzheimer DiseaseMemoryInternal medicineNeuroplasticitymedicineAnimalsGABAergic NeuronsMaze LearningPharmacologyAmyloid beta-PeptidesNeuronal PlasticityGlutamate DecarboxylaseCalcium Channel BlockersUp-RegulationDisease Models Animal030104 developmental biologyEndocrinologyAnti-Anxiety AgentsBlood-Brain BarrierSynaptic plasticityGABAergicCalciumFemale030217 neurology & neurosurgeryPharmacological Research
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