Search results for " NADPH Oxidoreductases"

showing 10 items of 28 documents

Mechanisms underlying recoupling of eNOS by HMG-CoA reductase inhibition in a rat model of streptozotocin-induced diabetes mellitus

2007

Abstract Objective HMG-CoA reductase inhibitors have been shown to upregulate GTP cyclohydrolase I (GTPCH-I), the key enzyme for tetrahydrobiopterin de novo synthesis and to normalize tetrahydrobiopterin levels in hyperglycemic endothelial cells. We sought to determine whether in vivo treatment with the HMG-CoA reductase inhibitor atorvastatin is able to upregulate the GTPCH-I, to recouple eNOS and to normalize endothelial dysfunction in an experimental model of diabetes mellitus. Methods and results In male Wistar rats, diabetes was induced by streptozotocin (STZ, 60mg/kg). In STZ rats, atorvastatin feeding (20mg/kg/d, 7 weeks), normalized vascular dysfunction as analyzed by isometric tens…

Malemedicine.medical_specialtyNitric Oxide Synthase Type IIIGTP cyclohydrolase INitric Oxide Synthase Type IIReductaseArticleDiabetes Mellitus ExperimentalCytochrome P-450 Enzyme SystemEnosInternal medicineAtorvastatinmedicineAnimalsNADH NADPH OxidoreductasesPyrrolesRats WistarEndothelial dysfunctionGTP CyclohydrolaseNADPH oxidasebiologyStem CellsBody WeightMicrofilament ProteinsTetrahydrobiopterinPhosphoproteinsmedicine.diseasebiology.organism_classificationBiopterinRatsEnzyme ActivationIntramolecular OxidoreductasesVasodilationNitric oxide synthaseDisease Models AnimalOxidative StressTetrahydrofolate DehydrogenaseDiabetes Mellitus Type 1EndocrinologyHeptanoic AcidsHMG-CoA reductaseNADPH Oxidase 1biology.proteinEndothelium VascularHydroxymethylglutaryl-CoA Reductase InhibitorsCardiology and Cardiovascular MedicineCell Adhesion MoleculesDiabetic Angiopathiesmedicine.drugAtherosclerosis
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Dexamethasone upregulates Nox1 expression in vascular smooth muscle cells.

2014

<b><i>Background/Aim:</i></b> It has been demonstrated that dexamethasone-induced hypertension can be prevented by the NADPH oxidase inhibitor apocynin. The effect of dexamethasone on NADPH oxidase, however, is unknown. The present study was conducted to investigate the effect of dexamethasone on the gene expression of Nox1, the major NADPH oxidase isoform in vascular smooth muscle cells. <b><i>Results:</i></b> Oral treatment of Wistar-Kyoto rats with dexamethasone (0.03 mg/kg/day) for 12 days led to an upregulation of Nox1 mRNA expression in the aorta. In cultured A7r5 rat aortic smooth muscle cells, dexamethasone increased Nox1 mRNA expressi…

Malemedicine.medical_specialtyVascular smooth muscleTime FactorsMyocytes Smooth Musclemedicine.disease_causeRats Inbred WKYDexamethasoneHistone DeacetylasesMuscle Smooth Vascularchemistry.chemical_compoundReceptors GlucocorticoidInternal medicinemedicineAnimalsNADH NADPH Oxidoreductasescardiovascular diseasesRNA MessengerGlucocorticoidsDexamethasoneAortaPharmacologychemistry.chemical_classificationReactive oxygen speciesNADPH oxidasebiologyDose-Response Relationship DrugChemistryfungifood and beveragesGeneral MedicineRatsUp-RegulationEndocrinologyNOX1Gene Knockdown TechniquesApocynincardiovascular systembiology.proteinNADPH Oxidase 1Oxidative stresscirculatory and respiratory physiologymedicine.drugPharmacology
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Differential effects of diabetes on the expression of the gp91phox homologues nox1 and nox4.

2004

The nox2-dependent NADPH oxidase was shown to be a major superoxide source in vascular disease, including diabetes. Smooth muscle cells of large arteries lack the phagocytic gp91phox subunit of the enzyme; however, two homologues have been identified in these cells, nox1 and nox4. It remained to be established whether also increases in protein levels of the nonphagocytic NADPH oxidase contribute to increased superoxide formation in diabetic vessels. To investigate changes in the expression of these homologues, we measured their expression in aortic vessels of type I diabetic rats. Eight weeks after streptozotocin treatment, we found a doubling in nox1 protein expression, while the expressio…

Malemedicine.medical_specialtyXanthine OxidaseVasodilator AgentsBlotting WesternFluorescent Antibody TechniqueNitric OxideBiochemistryNitric oxideDiabetes Mellitus Experimentalchemistry.chemical_compoundNitroglycerinSuperoxidesPhysiology (medical)Internal medicinemedicineAnimalsNADH NADPH OxidoreductasesRats WistarXanthine oxidaseAortaNADPH oxidasebiologySuperoxideMyocardiumMicrofilament ProteinsElectron Spin Resonance SpectroscopyNOX4NADPH Oxidase 1Endothelial CellsNADPH OxidasesPhosphoproteinsImmunohistochemistryAcetylcholineRatsNitric oxide synthaseEndocrinologychemistryNADPH Oxidase 4NOX1cardiovascular systembiology.proteinNADPH Oxidase 1Nitric Oxide SynthaseCell Adhesion MoleculesFree radical biologymedicine
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Enantiospecific semisynthesis of (+)-almuheptolide-A, a novel natural heptolide inhibitor of the mammalian mitochondrial respiratory chain.

1998

The development of novel styryl lactone derivatives as bioactive compounds and the semisynthesis of both 4,5-dialkoxylated eight-membered-ring lactones with a heptolide skeleton (almuheptolide-A (1) type) and 7-alkoxylated delta-lactones with a saturated furanopyrone skeleton (etharvensin (8) type) have been successfully achieved from the chiral unsaturated alpha-pyrone altholactone (7). This new method is a direct and one-step enantiospecific alkoxylation of altholactone (7) in concentrated acid medium, followed by formation of the eight-membered-ring zeta-lactone. The reaction mechanism operating in the synthesis of the heptolide skeleton is postulated to be a direct Michael-type addition…

Models MolecularStereochemistryRespiratory chainEtherIn Vitro TechniquesMitochondria HeartElectron Transportchemistry.chemical_compoundDrug DiscoveryAnimalsMitochondrial respiratory chain complex INADH NADPH OxidoreductasesEnzyme InhibitorsTetrahydrofuranchemistry.chemical_classificationElectron Transport Complex IStereoisomerismSemisynthesisAntineoplastic Agents PhytogenicKineticsMitochondrial respiratory chainchemistryMolecular MedicineCattleEnantiomerOxidation-ReductionLactoneJournal of medicinal chemistry
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Synthesis of pyrido[2,1-a]isoquinolin-4-ones and oxazino[2,3-a]isoquinolin-4-ones: New inhibitors of mitochondrial respiratory chain

2013

International audience; Benzo[a]quinolizine is an important heterocyclic framework that can be found in numerous bioactive compounds. The general scheme for the synthesis of these compounds was based on the preparation of the appropriate dihydroisoquinolines by Bischler-Napieralski cyclization with good yields, followed by the Pemberton method to form the oxazinones or pyridones derivatives via acyl-ketene imine cyclocondensation. All the synthesized compounds were assayed in vitro for their ability to inhibit mitochondrial respiratory chain. Most of the tested compounds were able to inhibit the integrated electron transfer chain, measured as NADH oxidation, which includes complexes I, III …

PyridonesStereochemistryImine010402 general chemistryRing (chemistry)01 natural sciencesMitochondria HeartElectron TransportStructure-Activity Relationshipchemistry.chemical_compoundMultienzyme ComplexesFuranOxazinesDrug DiscoveryAnimalsNADH NADPH OxidoreductasesCytotoxicityPharmacologyDose-Response Relationship DrugMolecular Structure[CHIM.ORGA]Chemical Sciences/Organic chemistry010405 organic chemistryOrganic ChemistryQuinolizineBiological activityGeneral MedicineIsoquinolinesElectron transport chain3. Good health0104 chemical sciencesMitochondrial respiratory chainchemistryCattleEuropean Journal of Medicinal Chemistry
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Semisynthesis of antitumoral acetogenins: SAR of functionalized alkyl-chain bis-tetrahydrofuranic acetogenins, specific inhibitors of mitochondrial c…

2000

The acetogenins of Annonaceae are known by their potent cytotoxic activity. In fact, they are promising candidates as a new future generation of antitumoral drugs to fight against the current chemiotherapic resistant tumors. The main target enzyme of these compounds is complex I (NADH:ubiquinone oxidoreductase) of the mitochondrial respiratory chain, a key enzymatic complex of energy metabolism. In an attempt to characterize the relevant structural factor of the acetogenins that determines the inhibitory potency against this enzyme, we have prepared a series of bis-tetrahydrofuranic acetogenins with different functional groups along the alkyl chain. They comprise several oxo, hydroxylimino,…

StereochemistryAntineoplastic AgentsIn Vitro TechniquesChemical synthesisLactonesStructure-Activity RelationshipOxidoreductaseDrug DiscoveryAnimalsNADH NADPH OxidoreductasesEnzyme InhibitorsFuransAlkylchemistry.chemical_classificationElectron Transport Complex Ibiologybiology.organism_classificationSemisynthesisMitochondriaMitochondrial respiratory chainchemistryEnzyme inhibitorAnnonaceaebiology.proteinMolecular MedicineCattleLactoneJournal of medicinal chemistry
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Epoxy-Acetogenins and other Polyketide Epoxy Derivatives as Inhibitors of the Mitochondrial Respiratory Chain Complex I

2000

Annonaceous acetogenins (ACG), an extensive group of cytotoxic natural products, are antitumor agents whose main mode of action is inhibition of the mammalian mitochondrial complex I. Herein we describe the importance of the different chemical groups along the alkyl chain for optimal inhibitory potency, discussing the structurally relevant factors present in these compounds. For this purpose, a series of epoxide derivatives from alpha-linolenic acid were prepared and their activity compared with that of epoxy-acetogenins and tetrahydrofuranic (THF) acetogenins isolated from Rollinia membranacea.

StereochemistryChemical structurePharmaceutical ScienceEpoxideAnalytical ChemistryElectron TransportLactonesPolyketidechemistry.chemical_compoundDrug DiscoveryNADH NADPH OxidoreductasesMitochondrial respiratory chain complex IFuransMode of actionAlkylPharmacologychemistry.chemical_classificationbiologyOrganic ChemistryEpoxybiology.organism_classificationMitochondriaComplementary and alternative medicinechemistryAnnonaceaevisual_artvisual_art.visual_art_mediumEpoxy CompoundsMolecular MedicinePlanta Medica
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Membrane D-lactate oxidase in Zymomonas mobilis: evidence for a branched respiratory chain.

1998

Respiratory chain composition of the ethanol-producing bacterium Zymomonas mobilis was studied. Its membrane D-lactate oxidase was characterised. With NADH, but not D-lactate as substrate, a cytochrome o-like component was seen in CO difference spectra. Chlorpromazine specifically inhibited reduction of cytochrome d, while myxothiazol eliminated the cytochrome o-like features in CO difference spectra. It is suggested that electrons from NADH are distributed between branches terminated by the cytochrome o-like component, cytochrome a, and cytochrome d. With D-lactate, electrons are transported to cytochrome a, or an unidentified CN(-)-sensitive oxidase, and cytochrome d.

StereochemistryChlorpromazineMicrobiologyMixed Function OxygenasesElectron Transportchemistry.chemical_compoundOxygen ConsumptionCytochrome C1Multienzyme ComplexesGeneticsCytochrome c oxidaseNADH NADPH OxidoreductasesLactic AcidMolecular BiologyZymomonasbiologyMyxothiazolCytochrome b6f complexCytochrome bCytochrome cCytochrome dNADAerobiosisThiazolesBiochemistrychemistrySpectrophotometryCoenzyme Q – cytochrome c reductasebiology.proteinCytochromesMethacrylatesOxidation-ReductionFEMS microbiology letters
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Gamma-lactone-Functionalized antitumoral acetogenins are the most potent inhibitors of mitochondrial complex I.

2001

To study the relevance of the terminal alpha,beta-unsaturated gamma-methyl-gamma-lactone moiety of the antitumoral acetogenins of Annonaceae for potent mitochondrial complex I inhibition, we have prepared a series of semisynthetic acetogenins with modifications only in this part of the molecule, from the natural rolliniastatin-1 (1) and cherimolin-1 (2). Some of the hydroxylated derivatives (1b, 1d and 1e) in addition to two infrequent natural beta-hydroxy gamma-methyl gamma-lactone acetogenins, laherradurin (3) and itrabin (4), are more potent complex I inhibitors than any other known compounds.

StereochemistryClinical BiochemistrySubmitochondrial ParticlesPharmaceutical ScienceAntineoplastic AgentsMitochondrionBiochemistryMitochondria HeartLactonesMagnoliopsidaMultienzyme ComplexesDrug DiscoveryMoietyAnimalsNADH NADPH OxidoreductasesFuransMolecular Biologychemistry.chemical_classificationElectron Transport Complex IbiologyMolecular StructureOrganic ChemistryBiological activitybiology.organism_classificationIn vitroEnzymechemistryEnzyme inhibitorAnnonaceaebiology.proteinMolecular MedicineCattleLactoneBioorganicmedicinal chemistry letters
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Natural substances (acetogenins) from the family Annonaceae are powerful inhibitors of mitochondrial NADH dehydrogenase (Complex I).

1994

Natural products from the plants of the family Annonaceae, collectively called Annonaceous acetogenins, are very potent inhibitors of the NADH-ubiquinone reductase (Complex I) activity of mammalian mitochondria. The properties of five of such acetogenins are compared with those of rotenone and piericidin, classical potent inhibitors of Complex I. Rolliniastatin-1 and rolliniastatin-2 are more powerful than piericidin in terms of both their inhibitory constant and the protein-dependence of their titre in bovine submitochondrial particles. These acetogenins could be considered therefore the most potent inhibitors of mammalian Complex I. Squamocin and otivarin also have an inhibitory constant …

StereochemistryPyridinesSubmitochondrial ParticlesAnnonacinRespiratory chainIn Vitro TechniquesBiochemistryMitochondria Heartchemistry.chemical_compoundRotenoneAnimalsNADH NADPH OxidoreductasesSubmitochondrial particleFuransMolecular BiologyNADH dehydrogenase complexchemistry.chemical_classificationElectron Transport Complex IPlants MedicinalbiologyMolecular StructureCell BiologyRotenonebiology.organism_classificationEnzymechemistryBiochemistryAnnonaceaeCattleBullatacinResearch Article
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