Search results for "Cytochrome"

showing 10 items of 607 documents

Homocysteine Induces Apoptosis of Human Umbilical Vein Endothelial Cells via Mitochondrial Dysfunction and Endoplasmic Reticulum Stress

2017

Homocysteine- (Hcy-) induced endothelial cell apoptosis has been suggested as a cause of Hcy-dependent vascular injury, while the proposed molecular pathways underlying this process are unclear. In this study, we investigated the adverse effects of Hcy on human umbilical vein endothelial cells (HUVEC) and the underlying mechanisms. Our results demonstrated that moderate-dose Hcy treatment induced HUVEC apoptosis in a time-dependent manner. Furthermore, prolonged Hcy treatment increased the expression of NOX4 and the production of intracellular ROS but decreased the ratio of Bcl-2/Bax and mitochondrial membrane potential (MMP), resulting in the leakage of cytochrome c and activation of caspa…

0301 basic medicineAgingArticle SubjectApoptosis030204 cardiovascular system & hematologyTransfectionBiochemistryUmbilical vein03 medical and health sciences0302 clinical medicineRisk FactorsHuman Umbilical Vein Endothelial CellsHumanslcsh:QH573-671Protein kinase AEndoplasmic Reticulum Chaperone BiPHomocysteinebiologylcsh:CytologyKinaseEndoplasmic reticulumCytochrome cCell BiologyGeneral MedicineEndoplasmic Reticulum StressMitochondriaCell biology030104 developmental biologyApoptosiscardiovascular systemUnfolded protein responsebiology.proteinPhosphorylationResearch ArticleOxidative Medicine and Cellular Longevity
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Overexpression of CYB5R3 and NQO1, two NAD+-producing enzymes, mimics aspects of caloric restriction

2018

© 2018 The Authors.

0301 basic medicineAgingCalorie restrictionInflammationmedicine.disease_cause03 medical and health sciencesDownregulation and upregulationmedicineCytochrome b5 reductaseCalorie restrictionchemistry.chemical_classification030102 biochemistry & molecular biologybiologyCYB5R3Cell BiologyCell biology030104 developmental biologyEnzymechemistrySirtuinbiology.proteinNQO1NAD+ kinasemedicine.symptomCarcinogenesisMetabolic homeostasis
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Cholesterol Hydroxylating Cytochrome P450 46A1: From Mechanisms of Action to Clinical Applications

2021

Cholesterol, an essential component of the brain, and its local metabolism are involved in many neurodegenerative diseases. The blood-brain barrier is impermeable to cholesterol; hence, cholesterol homeostasis in the central nervous system represents a balance betweenin situbiosynthesis and elimination. Cytochrome P450 46A1 (CYP46A1), a central nervous system-specific enzyme, converts cholesterol to 24-hydroxycholesterol, which can freely cross the blood-brain barrier and be degraded in the liver. By the dual action of initiating cholesterol efflux and activating the cholesterol synthesis pathway, CYP46A1 is the key enzyme that ensures brain cholesterol turnover. In humans and mouse models,…

0301 basic medicineAgingCognitive Neuroscience24-hydroxycholesterolbrain[SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyCentral nervous systemNeurosciences. Biological psychiatry. NeuropsychiatryReview03 medical and health scienceschemistry.chemical_compound0302 clinical medicinemedicineneurodegenerative diseasesAmyotrophic lateral sclerosisLipid raftlipid raftsbiologyCholesterolbusiness.industryphosphorylation[SDV.NEU.NB] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyCytochrome P450cholesterolmedicine.diseaseplasma membranes3. Good healthVesicular transport proteinCYP46A1030104 developmental biologymedicine.anatomical_structurechemistrySpinocerebellar ataxiabiology.proteinAnimal studiesbusinessNeuroscience030217 neurology & neurosurgeryNeuroscienceRC321-571
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Vascular biotransformation of organic nitrates is independent of cytochrome P450 monooxygenases

2020

Background and Purpose Organic nitrates such as nitroglycerin (NTG) or pentaerythritol tetranitrate (PETN) have been used for over a century in the treatment of angina or ischaemic heart disease. These compounds are prodrugs which release their nitrovasodilators upon enzymic bioactivation by aldehyde dehydrogenase (ALDH2) or cytochromes P450 (CYP). Whereas ALDH2 is known to directly activate organic nitrates in vessels, the contribution of vascular CYPs is unknown and was studied here. Experimental Approach As all CYPs depend on cytochrome P450 reductase (POR) as electron donor, we generated a smooth muscle cell-specific, inducible knockout mouse of POR (smcPOR−/−) to investigate the contri…

0301 basic medicineAldehyde dehydrogenasePharmacologyMiceNitroglycerin03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCytochrome P-450 Enzyme SystemAnimalsPentaerythritol Tetranitrateddc:610NitriteBiotransformationVascular tissuePharmacologyNitratesbiologyChemistryCytochrome P450Cytochrome P450 reductaseMetabolismMonooxygenase030104 developmental biologybiology.proteinMicrosome030217 neurology & neurosurgeryBritish Journal of Pharmacology
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EBI2 Is Highly Expressed in Multiple Sclerosis Lesions and Promotes Early CNS Migration of Encephalitogenic CD4 T Cells

2017

Arrival of encephalitogenic T cells at inflammatory foci represents a critical step in development of experimental autoimmune encephalomyelitis (EAE), the animal model for multiple sclerosis. EBI2 and its ligand, 7{alpha},25-OHC, direct immune cell localization in secondary lymphoid organs. CH25H and CYP7B1 hydroxylate cholesterol to 7{alpha},25-OHC. During EAE, we found increased expression of CH25H by microglia and CYP7B1 by CNS-infiltrating immune cells elevating the ligand concentration in the CNS. Two critical pro-inflammatory cytokines, interleukin-23 (IL-23) and interleukin-1 beta (IL-1{beta}), maintained expression of EBI2 in differentiating Th17 cells. In line with this, EBI2 enhan…

0301 basic medicineCD4-Positive T-LymphocytesCentral Nervous SystemMaleGPR183Cancer ResearchEncephalomyelitis Autoimmune ExperimentalOxysterolCentral nervous systemInterleukin-1betaCytochrome P450 Family 7CH25HmicrogliaAutoimmunityBiologymedicine.disease_causemultiple sclerosisInterleukin-23General Biochemistry Genetics and Molecular BiologyAutoimmunityReceptors G-Protein-Coupled03 medical and health sciencesMiceImmune systemCell MovementmedicineAnimalsEBI2lcsh:QH301-705.5MicrogliaEAEMultiple sclerosisExperimental autoimmune encephalomyelitisGPR18325-OHCmedicine.diseaseMice Inbred C57BLDisease Models Animal030104 developmental biologymedicine.anatomical_structurelcsh:Biology (General)ImmunologySteroid HydroxylasesTh17 CellsFemaleTh17CNSoxysterolCell Reports
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Betulinic acid induces a novel cell death pathway that depends on cardiolipin modification

2016

Cancer is associated with strong changes in lipid metabolism. For instance, normal cells take up fatty acids (FAs) from the circulation, while tumour cells generate their own and become dependent on de novo FA synthesis, which could provide a vulnerability to target tumour cells. Betulinic acid (BetA) is a natural compound that selectively kills tumour cells through an ill-defined mechanism that is independent of BAX and BAK, but depends on mitochondrial permeability transition-pore opening. Here we unravel this pathway and show that BetA inhibits the activity of steroyl-CoA-desaturase (SCD-1). This enzyme is overexpressed in tumour cells and critically important for cells that utilize de n…

0301 basic medicineCancer ResearchProgrammed cell deathCardiolipinsMitochondrionCell Line03 medical and health scienceschemistry.chemical_compoundSDG 3 - Good Health and Well-beingBetulinic acidGeneticsCardiolipinHumansBetulinic AcidCytotoxicityMolecular BiologyCell DeathbiologyCytochrome cFatty AcidsCytochromes cLipid metabolismAntineoplastic Agents PhytogenicTriterpenesMitochondriaCell biology030104 developmental biologyBiochemistrychemistryCancer cellbiology.protein/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingPentacyclic TriterpenesStearoyl-CoA Desaturase
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mRNA-binding protein tristetraprolin is essential for cardiac response to iron deficiency by regulating mitochondrial function

2018

Cells respond to iron deficiency by activating iron-regulatory proteins to increase cellular iron uptake and availability. However, it is not clear how cells adapt to conditions when cellular iron uptake does not fully match iron demand. Here, we show that the mRNA-binding protein tristetraprolin (TTP) is induced by iron deficiency and degrades mRNAs of mitochondrial Fe/S-cluster-containing proteins, specifically Ndufs1 in complex I and Uqcrfs1 in complex III, to match the decrease in Fe/S-cluster availability. In the absence of TTP, Uqcrfs1 levels are not decreased in iron deficiency, resulting in nonfunctional complex III, electron leakage, and oxidative damage. Mice with deletion of Ttp …

0301 basic medicineCardiac responseCardiac function curveIron-Sulfur ProteinsTristetraprolinMitochondria HeartCell Line03 medical and health sciencesElectron Transport Complex IIIMiceTristetraprolinmedicineAnimalschemistry.chemical_classificationMice KnockoutReactive oxygen speciesMultidisciplinaryNDUFS1MyocardiumNADH DehydrogenaseIron deficiencyIron Deficienciesmedicine.diseaseCell biology030104 developmental biologychemistryPNAS PlusCoenzyme Q – cytochrome c reductaseOxidation-ReductionFunction (biology)
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A Dehydrogenase Dual Hydrogen Abstraction Mechanism Promotes Estrogen Biosynthesis: Can We Expand the Functional Annotation of the Aromatase Enzyme?

2018

Cytochrome P450 (CYP450) enzymes are involved in the metabolism of exogenous compounds and in the synthesis of signaling molecules. Among the latter, human aromatase (HA) promotes estrogen biosynthesis, which is a key pharmacological target against breast cancers. After decades of debate, interest in gaining a comprehensive picture of HA catalysis has been renewed by the recent discovery that compound I (Cpd I) is the reactive species of the peculiar aromatization step. Herein, for the first time, a complete atomic-level picture of all controversial steps of estrogen biosynthesis is presented. By performing cumulative quantum-classical molecular dynamics and metadynamics simulations of abou…

0301 basic medicineCell signalingDehydrogenase-Molecular Dynamics Simulation010402 general chemistryHydroxylation01 natural sciencesenzyme catalysisCatalysisEnzyme catalysisHydroxylation03 medical and health scienceschemistry.chemical_compoundAromataseCytochrome P-450 Enzyme SystemHumansAromatasechemistry.chemical_classificationhydrogen abstractionbiologyOrganic ChemistryAromatizationAndrostenedioneCytochrome P450EstrogensGeneral Chemistrymolecular dynamics0104 chemical sciencesreaction mechanisms030104 developmental biologyEnzymechemistryBiochemistrySettore CHIM/03 - Chimica Generale E Inorganicadensity functional calculationsbiology.proteinProtonsOxidoreductasesOxidation-ReductionHydrogen
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Customised in vitro model to detect human metabolism-dependent idiosyncratic drug-induced liver injury

2017

Drug-induced liver injury (DILI) has a considerable impact on human health and is a major challenge in drug safety assessments. DILI is a frequent cause of liver injury and a leading reason for post-approval drug regulatory actions. Considerable variations in the expression levels of both cytochrome P450 (CYP) and conjugating enzymes have been described in humans, which could be responsible for increased susceptibility to DILI in some individuals. We herein explored the feasibility of the combined use of HepG2 cells co-transduced with multiple adenoviruses that encode drug-metabolising enzymes, and a high-content screening assay to evaluate metabolism-dependent drug toxicity and to identify…

0301 basic medicineDrugCYP2B6Drug-induced liver injuryHealth Toxicology and Mutagenesismedia_common.quotation_subjectPopulationDrug Evaluation PreclinicalPharmacologyToxicologyHepatotoxicity mechanismsGene Expression Regulation EnzymologicOrgan Toxicity and MechanismsAdenoviridae03 medical and health sciences0302 clinical medicineCYPToxicity TestsHumansCytochrome P450 Family 2educationmedia_commonMembrane Potential Mitochondrialeducation.field_of_studyCYP3A4biologyCytochrome P450IdiosyncrasyHep G2 CellsGeneral MedicineCYP2E1Recombinant ProteinsHigh-Throughput Screening Assays030104 developmental biology030220 oncology & carcinogenesisInactivation MetabolicToxicityCell modelbiology.proteinChemical and Drug Induced Liver InjuryReactive Oxygen SpeciesDrug metabolism
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Drug metabolism by cultured human hepatocytes: how far are we from the in vivo reality?

2004

The investigation of metabolism is an important milestone in the course of drug development. Drug metabolism is a determinant of drug pharmacokinetics variability in human beings. Fundamental to this are phenotypic differences, as well as genotypic differences, in the expression of the enzymes involved in drug metabolism. Genotypic variability is easy to identify by means of polymerase chain reaction-based or DNA chip-based methods, whereas phenotypic variability requires direct measurement of enzyme activities in liver, or, indirectly, measurement of the rate of metabolism of a given compound in vivo. There is a great deal of phenotypic variability in human beings, only a minor part being…

0301 basic medicineDrugDiclofenacmedia_common.quotation_subjectBiologyPharmacologyToxicologyGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences0302 clinical medicineCytochrome P-450 Enzyme SystemIn vivoGenetic variationmedicineHumansCells Culturedmedia_common030102 biochemistry & molecular biologyAnti-Inflammatory Agents Non-SteroidalGenetic VariationGeneral MedicineMetabolismIn vitroMedical Laboratory TechnologyDrug developmentBiochemistryLiverPharmaceutical Preparations030220 oncology & carcinogenesisMultigene FamilyHepatocytesAceclofenacDrug metabolismmedicine.drugAlternatives to laboratory animals : ATLA
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