Search results for "PRECURSOR"

showing 10 items of 490 documents

Rescue of Hypovitaminosis A Induces Non-Amyloidogenic Amyloid Precursor Protein (APP) Processing.

2015

Retinoic acid, the bioactive metabolite of beta-carotene or vitamin A, plays a pleiotropic, multifunctional role in vertebrate development. Studies in rodents revealed that a diet deficient in vitamin A results in a complex neonatal syndrome (the VAD syndrome), manifested in many organs. In humans, the function of retinoic acid (RA) extends into adulthood, where it has important roles in fertility, vision, and suppression of neoplastic growth. In recent years, it has also been suggested that retinoic acid might potentially act as a therapeutically relevant drug in attenuating or even preventing neurodegenerative diseases such as Alzheimer's disease (AD). Here, we report that VAD leads to an…

0301 basic medicineVitaminmedicine.medical_specialtyADAM10Retinoic acidTretinoin03 medical and health scienceschemistry.chemical_compoundADAM10 ProteinAmyloid beta-Protein PrecursorMiceNeuroblastoma0302 clinical medicineKeratolytic AgentsTretinoinInternal medicineNeuroblastomaGene expressionPresenilin-2medicineAmyloid precursor proteinAnimalsHumansGene Regulatory NetworksRats WistarCells CulturedCerebral CortexNeuronsAmyloid beta-PeptidesbiologyVitamin A Deficiencymedicine.diseaseAcitretinPeptide FragmentsVitamin A deficiencyDisease Models Animal030104 developmental biologyEndocrinologyNeurologychemistryAnimals Newbornbiology.proteinFemaleNeurology (clinical)030217 neurology & neurosurgerymedicine.drugCurrent Alzheimer research
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Physiological Functions of the β-Site Amyloid Precursor Protein Cleaving Enzyme 1 and 2

2017

BACE1 was discovered as the β-secretase for initiating the cleavage of amyloid precursor protein (APP) at the β-secretase site, while its close homology BACE2 cleaves APP within the β-amyloid (Aβ) domain region and shows distinct cleavage preferences in vivo. Inhibition of BACE1 proteolytic activity has been confirmed to decrease Aβ generation and amyloid deposition, and thus specific inhibition of BACE1 by small molecules is a current focus for Alzheimer’s disease therapy. While BACE1 inhibitors are being tested in advanced clinical trials, knowledge regarding the properties and physiological functions of BACE is highly important and this review summarizes advancements in BACE1 research ov…

0301 basic medicineamyloid plaquessecretaseReviewamyloid precursor proteinBiology03 medical and health sciencesCellular and Molecular Neurosciencemental disordersAmyloid precursor proteinaspartic proteaseBACE substratesGlucose homeostasisMolecular Biologychemistry.chemical_classificationNeurogenesisBACE2P3 peptideBACE1Biochemistry of Alzheimer's disease030104 developmental biologyEnzymechemistryBiochemistrySynaptic plasticitybiology.proteinAmyloid precursor protein secretaseAlzheimer’s diseaseNeuroscienceFrontiers in Molecular Neuroscience
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Alexander Disease Mutations Produce Cells with Coexpression of Glial Fibrillary Acidic Protein and NG2 in Neurosphere Cultures and Inhibit Differenti…

2017

Background Alexander disease (AxD) is a rare disease caused by mutations in the gene encoding glial fibrillary acidic protein (GFAP). The disease is characterized by presence of GFAP aggregates in the cytoplasm of astrocytes and loss of myelin. Objectives Determine the effect of AxD-related mutations on adult neurogenesis. Methods We transfected different types of mutant GFAP into neurospheres using the nucleofection technique. Results We find that mutations may cause coexpression of GFAP and NG2 in neurosphere cultures, which would inhibit the differentiation of precursors into oligodendrocytes and thus explain the myelin loss occurring in the disease. Transfection produces cells that diff…

0301 basic medicinecaspase-3Cathepsin Dmacromolecular substancesHSP27lcsh:RC346-429oligodendrocyte precursors03 medical and health sciencesMyelin0302 clinical medicineAlexander diseaseNG2Neurosphereneurospheresmedicinecathepsinlcsh:Neurology. Diseases of the nervous systemOriginal ResearchGlial fibrillary acidic proteinbiologyNeurogenesisNestinGFAP stainmedicine.diseaseMolecular biologyAlexander disease030104 developmental biologymedicine.anatomical_structurenervous systemNeurologyglial fibrillary acidic proteinbiology.proteinNeurology (clinical)030217 neurology & neurosurgeryNeuroscienceFrontiers in Neurology
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Cryptotanshinone deregulates unfolded protein response and eukaryotic initiation factor signaling in acute lymphoblastic leukemia cells.

2015

Abstract Background: Unfolded protein responses (UPR) determine cell fate and are recognized as anticancer targets. In a previous research, we reported that cryptotanshinone (CPT) exerted cytotoxic effects toward acute lymphoblastic leukemia cells through mitochondria-mediated apoptosis. Purpose: In the present study, we further investigated the role of UPR in CPT-induced cytotoxicity on acute lymphoblastic leukemia cells by applying tools of pharmacogenomics and bioinformatics. Methods: Gene expression profiling was performed by mRNA microarray hybridization. Potential transcription factor binding motifs were identified in the promoter regions of the deregulated genes by Cistrome software.…

0301 basic medicineendocrine systemXBP1Eukaryotic Initiation Factor-2Pharmaceutical ScienceApoptosisBiology03 medical and health sciencesPhosphatidylinositol 3-KinasesEukaryotic initiation factorCell Line TumorDrug DiscoveryHumansheterocyclic compoundsRNA MessengerEukaryotic Initiation FactorsTranscription factorPharmacologyeIF2ATF4Computational BiologyPromoterPhenanthrenesPrecursor Cell Lymphoblastic Leukemia-LymphomaMolecular Docking Simulation030104 developmental biologyComplementary and alternative medicineCistromePharmacogeneticsEukaryotic Initiation Factor-4AUnfolded protein responseCancer researchUnfolded Protein ResponseMolecular MedicineTranscription Factor CHOPSignal TransductionTranscription FactorsPhytomedicine : international journal of phytotherapy and phytopharmacology
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Olesoxime improves cerebral mitochondrial dysfunction and enhances Aβ levels in preclinical models of Alzheimer's disease.

2019

Abstract Background Approved drugs for Alzheimer's disease (AD) only have a symptomatic effects and do not intervene causally in the course of the disease. Olesoxime (TRO19622) has been tested in AD disease models characterized by improved amyloid precursor protein processing (AβPP) and mitochondrial dysfunction. Methods Three months old Thy-1-AβPPSL (tg) and wild type mice (wt) received TRO19622 (100 mg/kg b.w.) in supplemented food pellets for 15 weeks (tg TRO19622). Mitochondrial membrane potential (MMP) and adenosine triphosphate (ATP) levels were determined in dissociated brain cells (DBC). Respiration was analyzed in mitochondria isolated from brain tissue. Citrate synthase (CS) activ…

0301 basic medicinemedicine.medical_specialtyRespiratory chainMice TransgenicMitochondrionLipid peroxidation03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineDevelopmental NeuroscienceAlzheimer DiseaseInternal medicineMembrane fluidityAmyloid precursor proteinmedicineCitrate synthaseAnimalsHumansCholestenonesAmyloid beta-PeptidesbiologyBrainRotenoneMitochondriaMice Inbred C57BLDisease Models Animal030104 developmental biologyEndocrinologyHEK293 CellsNeurologychemistrybiology.proteinOlesoximeFemale030217 neurology & neurosurgeryExperimental neurology
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The Metalloprotease Meprin β Is an Alternative β-Secretase of APP

2017

The membrane bound metalloprotease meprin β is important for collagen fibril assembly in connective tissue formation and for the detachment of the intestinal mucus layer for proper barrier function. Recent proteomic studies revealed dozens of putative new substrates of meprin β, including the amyloid precursor protein (APP). It was shown that APP is cleaved by meprin β in distinct ways, either at the β-secretase site resulting in increased levels of Aβ peptides, or at the N-terminus releasing 11 kDa, and 20 kDa peptide fragments. The latter event was discussed to be rather neuroprotective, whereas the ectodomain shedding of APP by meprin β reminiscent to BACE-1 is in line with the amyloid h…

0301 basic medicineproteolysisADAM10ProteolysisN-terminal truncated AβReview03 medical and health sciencesCellular and Molecular Neuroscienceshedding0302 clinical medicinemedicineAmyloid precursor proteinMolecular BiologyMetalloproteinasemedicine.diagnostic_testbiologyChemistryCell adhesion moleculemeprin βSheddaseBiochemistry of Alzheimer's disease030104 developmental biologyBiochemistryEctodomainbiology.proteinAPP030217 neurology & neurosurgeryNeuroscienceFrontiers in Molecular Neuroscience
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Genomic structure and functional characterization of the human ADAM10 promoter

2005

The ADAM10 gene encodes a membrane-bound disintegrin-metalloproteinase, which, after overexpression in an Alzheimer disease (AD) mouse model, prevents amyloid pathology and improves long-term potentiation and memory. Because enhancing ADAM10 expression appears to be a reasonable approach for treatment of AD, we functionally analyzed the ADAM10 gene. Both human and mouse ADAM10 genes comprise approximately 160 kbp, are composed of 16 exons, and are evolutionarily highly conserved within 500 bp upstream of either translation initiation site. By using luciferase reporter assays, we demonstrate that nucleotides -2179 to -1 upstream of the human ADAM10 translation initiation site represent a fun…

5' Flanking Region5' flanking regionTretinoinBiologyPolymorphism Single NucleotideBiochemistryCell LineConserved sequenceADAM10 ProteinMiceOpen Reading FramesExonAlzheimer DiseaseGeneticsAnimalsHumansPromoter Regions GeneticMolecular BiologyTranscription factorGeneConserved SequenceExpressed Sequence TagsIntronMembrane ProteinsPromoterExonsMolecular biologyIntronsADAM ProteinsOpen reading frameMutagenesis Site-DirectedAmyloid Precursor Protein SecretasesBiotechnologyThe FASEB Journal
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Latvijas Universitātes Raksti. 755. sēj.

2010

:MEDICINE [Research Subject Categories]Iron deficiencyDzelzs deficīts2. tipa cukura diabētsVairogdziedzera vēzisUzmanības deficīta sindromsAerobās darbspējasEndoskopiska retrogrāda holangiopankreatogrāfijaMedicīniskās palīdzības pieejamībaPsoriāzeSkin precursor cellsBody massCitokīniType 2 diabetes mellitusKoagulāzes negatīvie stafilokoki
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Statins and the squalene synthase inhibitor zaragozic acid stimulate the non-amyloidogenic pathway of amyloid-beta protein precursor processing by su…

2010

Cholesterol-lowering drugs such as statins influence the proteolytic processing of the amyloid-beta protein precursor (AbetaPP) and are reported to stimulate the activity of alpha-secretase, the major preventive secretase of Alzheimer's disease. Statins can increase the alpha-secretase activity by their cholesterol-lowering properties as well as by impairment of isoprenoids synthesis. In the present study, we elucidate the contribution of these pathways in alpha-secretase activation. We demonstrate that zaragozic acid, a potent inhibitor of squalene synthase which blocks cholesterol synthesis but allows synthesis of isoprenoids, also stimulates alpha-secretase activity. Treatment of human n…

ADAM10Blotting Westernchemistry.chemical_compoundSqualeneADAM10 ProteinAmyloid beta-Protein PrecursorCell Line TumormedicineHumansLovastatinRNA Small InterferingProtein precursorLuciferasesLipid raftNeuronsbiologyATP synthaseChemistryReverse Transcriptase Polymerase Chain ReactionTerpenesGeneral NeuroscienceAnticholesteremic AgentsCell MembraneMembrane ProteinsTricarboxylic AcidsZaragozic acidGeneral MedicineBridged Bicyclo Compounds HeterocyclicEnzyme ActivationPsychiatry and Mental healthClinical PsychologyADAM ProteinsCholesterolFarnesyl-Diphosphate FarnesyltransferaseBiochemistrybiology.proteinlipids (amino acids peptides and proteins)LovastatinGeriatrics and GerontologyAmyloid Precursor Protein SecretasesHydroxymethylglutaryl-CoA Reductase InhibitorsAmyloid precursor protein secretasemedicine.drugJournal of Alzheimer's disease : JAD
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Brothers in arms: proBDNF/BDNF and sAPPα/Aβ-signaling and their common interplay with ADAM10, TrkB, p75NTR, sortilin, and sorLA in the progression of…

2021

Abstract Brain-derived neurotrophic factor (BDNF) is an important modulator for a variety of functions in the central nervous system (CNS). A wealth of evidence, such as reduced mRNA and protein level in the brain, cerebrospinal fluid (CSF), and blood samples of Alzheimer’s disease (AD) patients implicates a crucial role of BDNF in the progression of this disease. Especially, processing and subcellular localization of BDNF and its receptors TrkB and p75 are critical determinants for survival and death in neuronal cells. Similarly, the amyloid precursor protein (APP), a key player in Alzheimer’s disease, and its cleavage fragments sAPPα and Aβ are known for their respective roles in neuropro…

ADAM10Clinical BiochemistryNerve Tissue ProteinsTropomyosin receptor kinase BReceptors Nerve Growth FactorBiochemistryNeuroprotectionADAM10 ProteinAmyloid beta-Protein PrecursorNeurotrophic factorsAlzheimer DiseaseAmyloid precursor proteinHumansReceptor trkBMolecular BiologyLDL-Receptor Related ProteinsAmyloid beta-PeptidesMembrane GlycoproteinsbiologyBrain-Derived Neurotrophic FactorMembrane ProteinsMembrane Transport ProteinsAdaptor Proteins Vesicular Transportnervous systembiology.proteinSignal transductionAmyloid Precursor Protein SecretasesNeuroscienceAmyloid precursor protein secretaseNeurotrophinBiological chemistryReferences
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