Search results for "Cyclin-Dependent Kinase 5"

showing 7 items of 7 documents

Artemisinin-treatment in pre-symptomatic APP-PS1 mice increases gephyrin phosphorylation at Ser270: a modification regulating postsynaptic GABAAR den…

2021

Abstract Artemisinins, a group of plant-derived sesquiterpene lactones, are efficient antimalarial agents. They also share anti-inflammatory and anti-viral activities and were considered for treatment of neurodegenerative disorders like Alzheimer’s disease (AD). Additionally, artemisinins bind to gephyrin, the multifunctional scaffold of GABAergic synapses, and modulate inhibitory neurotransmission in vitro. We previously reported an increased expression of gephyrin and GABAA receptors in early pre-symptomatic stages of an AD mouse model (APP-PS1) and in parallel enhanced CDK5-dependent phosphorylation of gephyrin at S270. Here, we studied the effects of artemisinin on gephyrin in the brain…

0301 basic medicineClinical BiochemistryNeurotransmissionInhibitory postsynaptic potentialHippocampusBiochemistryMice03 medical and health sciences0302 clinical medicinePostsynaptic potentialAnimalsPhosphorylationMolecular BiologyCells Culturedgamma-Aminobutyric AcidGephyrinbiologyGABAA receptorChemistryCyclin-dependent kinase 5Membrane ProteinsReceptors GABA-AArtemisininsCell biology030104 developmental biologynervous systemSynapsesbiology.proteinPhosphorylationGABAergicCarrier Proteins030217 neurology & neurosurgeryBiological Chemistry
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Alterations in Tau Protein Level and Phosphorylation State in the Brain of the Autistic-Like Rats Induced by Prenatal Exposure to Valproic Acid

2021

Autism spectrum disorder (ASD) is a neurodevelopmental condition characterized by deficient social interaction and communication besides repetitive, stereotyped behaviours. A characteristic feature of ASD is altered dendritic spine density and morphology associated with synaptic plasticity disturbances. Since microtubules (MTs) regulate dendritic spine morphology and play an important role in spine development and plasticity the aim of the present study was to investigate the alterations in the content of neuronal α/β-tubulin and Tau protein level as well as phosphorylation state in the valproic acid (VPA)-induced rat model of autism. Our results indicated that maternal exposure to VPA indu…

0301 basic medicineDendritic spineHippocampuslcsh:Chemistry0302 clinical medicinePregnancyTubulinPhosphorylationlcsh:QH301-705.5SpectroscopyValproic AcidbiologyERK1/2Chemistryautism spectrum disorders (ASD)valproic acid (VPA)BrainGeneral MedicineImmunohistochemistryComputer Science Applicationsmedicine.anatomical_structureCerebral cortexMaternal ExposurePrenatal Exposure Delayed EffectsFemaleDisease Susceptibilitymedicine.drugSignal Transductionmedicine.medical_specialtyCDK5Tau proteintau ProteinsCatalysisArticleInorganic Chemistry03 medical and health sciencesInternal medicinemental disordersmedicineAnimalsPhysical and Theoretical ChemistryAutistic DisorderMolecular BiologyCyclin-dependent kinase 5GSK-3βValproic AcidOrganic Chemistryα/β-tubulinRatsEnzyme Activation030104 developmental biologyEndocrinologylcsh:Biology (General)lcsh:QD1-999MAP-TauChromatolysisSynaptic plasticitybiology.proteinAkt/mTOR signalling030217 neurology & neurosurgeryBiomarkersInternational Journal of Molecular Sciences
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Pharmacological modulation of protein kinases as a new approach to treat addiction to cocaine and opiates.

2016

Drug addiction shares brain mechanisms and molecular substrates with learning and memory processes, such as the stimulation of glutamate receptors and their downstream signalling pathways. In the present work we provide an up-to-date review of studies that have demonstrated the implication of the main memory-related calcium-dependent protein kinases in opiate and cocaine addiction. The effects of these drugs of abuse in different animal models of drug reward, dependence and addiction are altered by manipulation of the mitogen-activated protein kinase (MAPK) family, particularly extracellular signal regulated kinase (ERK), calcium/calmodulin-dependent kinase II (CaMKII), the protein kinase C…

0301 basic medicineMAPK/ERK pathwaymedia_common.quotation_subjectIntracellular SpacePharmacology03 medical and health sciencesCocaine-Related Disorders0302 clinical medicineCa2+/calmodulin-dependent protein kinaseMedicineAnimalsHumansProtein kinase AProtein kinase Cmedia_commonPharmacologybusiness.industryKinaseAddictionCyclin-dependent kinase 5Opioid-Related Disorders030104 developmental biologybusinesscGMP-dependent protein kinaseProtein Kinases030217 neurology & neurosurgeryEuropean journal of pharmacology
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Aβ Induces Excitotoxicity Mediated by APC/C-Cdh1 Depletion That Can Be Prevented by Glutaminase Inhibition Promoting Neuronal Survival

2016

AbstractThe E3 ubiquitin ligase anaphase-promoting complex/cyclosome (APC/C) is activated by the fizzy-related protein homolog/CDC20-like protein 1 (cdh1) in post-mitotic neurons. Growing evidence suggests that dysregulation of APC/C-Cdh1 is involved in neurodegenerative diseases. Here we show in neurons that oligomers of amyloid beta (Aβ), a peptide related to Alzheimer’s disease, cause proteasome-dependent degradation of cdh1. This leads to a subsequent increase in glutaminase (a degradation target of APC/C-Cdh1), which causes an elevation of glutamate levels and further intraneuronal Ca2+ dysregulation, resulting in neuronal apoptosis. Glutaminase inhibition prevents glutamate excitotoxi…

0301 basic medicineProteasome Endopeptidase ComplexCell SurvivalAmyloid betaBlotting WesternExcitotoxicityHippocampusmedicine.disease_causeHippocampusArticleAnaphase-Promoting Complex-CyclosomeCdh1 ProteinsAnimals Genetically ModifiedMice03 medical and health sciences0302 clinical medicineGlutaminasemedicineAnimalsRats WistarNeuronsAmyloid beta-PeptidesMultidisciplinarybiologyGlutaminaseCyclin-dependent kinase 5Glutamate receptorCyclin-Dependent Kinase 5Molecular biologyRatsUbiquitin ligase030104 developmental biologyApoptosisbiology.protein030217 neurology & neurosurgeryScientific Reports
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Involvement of cyclin-dependent kinase-5 in the kainic acid-mediated degeneration of glutamatergic synapses in the rat hippocampus

2011

Increased levels of glutamate causing excitotoxic damage accompany neurological disorders such as ischemia/stroke, epilepsy and some neurodegenerative diseases. Cyclin-dependent kinase-5 (Cdk5) is important for synaptic plasticity and is deregulated in neurodegenerative diseases. However, the mechanisms by which kainic acid (KA)-induced excitotoxic damage involves Cdk5 in neuronal injury are not fully understood. In this work, we have thus studied involvement of Cdk5 in the KA-mediated degeneration of glutamatergic synapses in the rat hippocampus. KA induced degeneration of mossy fiber synapses and decreased glutamate receptor (GluR)6/7 and post-synaptic density protein 95 (PSD95) levels in…

0303 health sciencesKainic acidGeneral NeuroscienceCyclin-dependent kinase 5ExcitotoxicityGlutamate receptorBiologyHippocampal formationmedicine.disease_cause3. Good healthCell biology03 medical and health sciencesGlutamatergicchemistry.chemical_compound0302 clinical medicinenervous systemchemistrySynaptic plasticitymedicineReceptorNeuroscience030217 neurology & neurosurgery030304 developmental biologyEuropean Journal of Neuroscience
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Molecular properties underlying regional vulnerability to Alzheimer’s disease pathology

2018

Amyloid deposition and neurofibrillary degeneration in Alzheimer's disease specifically affect discrete neuronal systems, but the underlying mechanisms that render some brain regions more vulnerable to Alzheimer's disease pathology than others remain largely unknown. Here we studied molecular properties underlying these distinct regional vulnerabilities by analysing Alzheimer's disease-typical neuroimaging patterns of amyloid deposition and neurodegeneration in relation to regional gene expression profiles of the human brain. Graded patterns of brain-wide vulnerability to amyloid deposition and neurodegeneration in Alzheimer's disease were estimated by contrasting multimodal amyloid-sensiti…

Male0301 basic medicinePathologyphysiology [Amyloidogenic Proteins]genetics [Transcriptome]genetics [Alzheimer Disease]Cohort StudiesTranscriptomepathology [Alzheimer Disease]metabolism [Amyloidogenic Proteins]methods [Magnetic Resonance Imaging]0302 clinical medicinepathology [Brain]Gene expressiongenetics [Genetic Predisposition to Disease]Aged 80 and overmethods [Positron-Emission Tomography]NeurodegenerationBrainNeurofibrillary TanglesHuman brainMagnetic Resonance Imagingmetabolism [Neurofibrillary Tangles]medicine.anatomical_structureFemalemethods [Neuroimaging]Alzheimer's Disease Neuroimaging InitiativeAmyloidmedicine.medical_specialtyAmyloidmetabolism [Amyloid beta-Peptides]Amyloidogenic ProteinsNeuroimagingtau ProteinsBiology03 medical and health sciencesAlzheimer DiseasemedicineHumansDementiaGenetic Predisposition to Diseaseddc:610metabolism [Amyloid]AgedAmyloid beta-PeptidesCyclin-dependent kinase 5medicine.diseasemetabolism [tau Proteins]030104 developmental biologyPositron-Emission Tomographypathology [Neurofibrillary Tangles]Neurology (clinical)Transcriptome030217 neurology & neurosurgeryBrain
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Involvement of cyclin-dependent kinase-5 in the kainic acid-mediated degeneration of glutamatergic synapses in the rat hippocampus.

2011

Increased levels of glutamate causing excitotoxic damage accompany neurological disorders such as ischemia/stroke, epilepsy and some neurodegenerative diseases. Cyclin-dependent kinase-5 (Cdk5) is important for synaptic plasticity and is deregulated in neurodegenerative diseases. However, the mechanisms by which kainic acid (KA)-induced excitotoxic damage involves Cdk5 in neuronal injury are not fully understood. In this work, we have thus studied involvement of Cdk5 in the KA-mediated degeneration of glutamatergic synapses in the rat hippocampus. KA induced degeneration of mossy fiber synapses and decreased glutamate receptor (GluR)6/7 and post-synaptic density protein 95 (PSD95) levels in…

MaleNeuronsKainic Acidhippocampuynaptic degenerationCalpainIntracellular Signaling Peptides and ProteinsMembrane ProteinsCyclin-Dependent Kinase 5Settore BIO/09 - FisiologiaHippocampusRatsReceptors Kainic AcidNerve DegenerationSynapsescyclin-dependent kinase-5Excitatory Amino Acid AgonistsAnimalsHumansCalciumRats WistarDisks Large Homolog 4 ProteinCells CulturedThe European journal of neuroscience
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