Search results for "S-Adenosylmethionine"

showing 10 items of 18 documents

Role of glutathione in the regulation of epigenetic mechanisms in disease

2017

Epigenetics is a rapidly growing field that studies gene expression modifications not involving changes in the DNA sequence. Histone H3, one of the basic proteins in the nucleosomes that make up chromatin, is S-glutathionylated in mammalian cells and tissues, making Gamma-L-glutamyl-L-cysteinylglycine, glutathione (GSH), a physiological antioxidant and second messenger in cells, a new post-translational modifier of the histone code that alters the structure of the nucleosome. However, the role of GSH in the epigenetic mechanisms likely goes beyond a mere structural function. Evidence supports the hypothesis that there is a link between GSH metabolism and the control of epigenetic mechanisms…

0301 basic medicineS-AdenosylmethionineEpigenetic regulation of neurogenesisADNBiologyBiochemistryEpigenesis GeneticHistones03 medical and health sciencesHistone H3Epigenetics of physical exerciseHistonasNeoplasmsPhysiology (medical)AnimalsHumansHistone codeEpigeneticsCancer epigeneticsEpigenomicsMetabolic SyndromeGenNeurodegenerative DiseasesDNA MethylationGlutathioneGenéticaNucleosomesMicroRNAs030104 developmental biologyBiochemistryHistone methyltransferaseProteínaEpigenéticaProtein Processing Post-TranslationalFree Radical Biology and Medicine
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Chronic aspartame intake causes changes in the trans-sulphuration pathway, glutathione depletion and liver damage in mice

2017

No-caloric sweeteners, such as aspartame, are widely used in various food and beverages to prevent the increasing rates of obesity and diabetes mellitus, acting as tools in helping control caloric intake. Aspartame is metabolized to phenylalanine, aspartic acid, and methanol. Our aim was to study the effect of chronic administration of aspartame on glutathione redox status and on the trans-sulphuration pathway in mouse liver. Mice were divided into three groups: control; treated daily with aspartame for 90 days; and treated with aspartame plus N-acetylcysteine (NAC). Chronic administration of aspartame increased plasma alanine aminotransferase (ALT) and aspartate aminotransferase activities…

0301 basic medicinemedicine.medical_specialtyGlutamate-Cysteine LigaseClinical BiochemistryPhenylalanineBiochemistryMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineInternal medicineAspartic acidmedicineAnimalsHumansCysteineAspartamelcsh:QH301-705.5lcsh:R5-920S-adenosylmethionineMethioninebiologyAspartameChemistryOrganic ChemistryCystathionine gamma-LyaseMethionine AdenosyltransferaseGlutathioneGlutathioneCystathionine beta synthaseN-acetylcysteineAcetylcysteine030104 developmental biologyEndocrinologyGCLCGene Expression RegulationLiverlcsh:Biology (General)BiochemistrySweetening Agents030220 oncology & carcinogenesisbiology.proteinChemical and Drug Induced Liver Injurylcsh:Medicine (General)Research PaperCysteineRedox Biology
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Identification of a gene-pathway associated with non-alcoholic steatohepatitis.

2007

Background/Aims We have integrated gene expression profiling of liver biopsies of NASH patients with liver samples of a mouse model of steatohepatitis (MAT1A-KO) to identify a gene-pathway associated with NASH. Methods Affymetrix U133 Plus 2.0 microarrays were used to evaluate nine patients with NASH, six patients with steatosis, and six control subjects; Affymetrix MOE430A microarrays were used to evaluate wild-type and MAT1A-KO mice at 15 days, 1, 3, 5 and 8 months after birth. Transcriptional profiles of patients with NASH and MAT1A-KO mice were compared with those of their proficient controls. Results We identified a gene-pathway associated with NASH, that accurately distinguishes betwe…

AdultMalePathologymedicine.medical_specialtySp1 Transcription FactorGene ExpressionHyperphosphorylationBiologyBioinformaticsdigestive systemSp1MiceGene-pathwayGene expressionmedicineAnimalsHumansPhosphorylationPromoter Regions GeneticGeneNon-alcoholic steatohepatitisMice KnockoutS-adenosylmethionineHepatologyMicroarray analysis techniquesGene Expression Profilingnutritional and metabolic diseasesMethionine AdenosyltransferaseMiddle AgedMicroarray Analysismedicine.diseasedigestive system diseasesFatty LiverGene expression profilingLiverFemaleSteatosisSteatohepatitisDNA microarray
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Chromatin remodeling regulation by small molecules and metabolites.

2010

The eukaryotic genome is a highly organized nucleoprotein structure comprising of DNA, histones, non-histone proteins, and RNAs, referred to as chromatin. The chromatin exists as a dynamic entity, shuttling between the open and closed forms at specific nuclear regions and loci based on the requirement of the cell. This dynamicity is essential for the various DNA-templated phenomena like transcription, replication, and repair and is achieved through the activity of ATP-dependent chromatin remodeling complexes and covalent modifiers of chromatin. A growing body of data indicates that chromatin enzymatic activities are finely and specifically regulated by a variety of small molecules derived f…

DNA ReplicationS-AdenosylmethionineTranscription GeneticInositol PhosphatesBiophysicsBiochemistryChromatin remodelingchemistry.chemical_compoundAdenosine TriphosphateStructural BiologyAcetyl Coenzyme AGeneticsAnimalsHumansMolecular Biologychromatin small moleculesbiologyGenome HumanDNA replicationDNAChromatin Assembly and DisassemblyNADMi-2/NuRD complexChromatinNucleoproteinChromatinHistoneBiochemistrychemistrybiology.proteinNAD+ kinaseDNABiochimica et biophysica acta
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Cork Taint of Wines: Role of the Filamentous Fungi Isolated from Cork in the Formation of 2,4,6-Trichloroanisole by O Methylation of 2,4,6-Trichlorop…

2002

ABSTRACT Cork taint is a musty or moldy off-odor in wine mainly caused by 2,4,6-trichloroanisole (2,4,6-TCA). We examined the role of 14 fungal strains isolated from cork samples in the production of 2,4,6-TCA by O methylation of 2,4,6-trichlorophenol (2,4,6-TCP). The fungal strains isolated belong to the genera Penicillium (four isolates); Trichoderma (two isolates); and Acremonium , Chrysonilia , Cladosporium , Fusarium , Mortierella , Mucor , Paecilomyces , and Verticillium (one isolate each). Eleven of these strains could produce 2,4,6-TCA when they were grown directly on cork in the presence of 2,4,6-TCP. The highest levels of bioconversion were carried out by the Trichoderma and Fusar…

FusariumS-Adenosylmethionine246-TrichloroanisoleTrichoderma longibrachiatumWineAnisolesCorkengineering.materialMethylationApplied Microbiology and BiotechnologyMicrobiologyQuercuschemistry.chemical_compoundBiotransformationTrichodermaEcologybiologyFungiMethyltransferasesbiology.organism_classificationchemistryTrichodermaPenicilliumFood MicrobiologyengineeringCork taintChlorophenolsFood ScienceBiotechnologyCladosporiumApplied and Environmental Microbiology
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Fatty Liver and Fibrosis in Glycine N-Methyltransferase Knockout Mice Is Prevented by Nicotinamide

2010

Deletion of glycine N-methyltransferase (GNMT), the main gene involved in liver S-adenosylmethionine (SAM) catabolism, leads to the hepatic accumulation of this molecule and the development of fatty liver and fibrosis in mice. To demonstrate that the excess of hepatic SAM is the main agent contributing to liver disease in GNMT knockout (KO) mice, we treated 1.5-month-old GNMT-KO mice for 6 weeks with nicotinamide (NAM), a substrate of the enzyme NAM N-methyltransferase. NAM administration markedly reduced hepatic SAM content, prevented DNA hypermethylation, and normalized the expression of critical genes involved in fatty acid metabolism, oxidative stress, inflammation, cell proliferation, …

Liver CirrhosisNiacinamidemedicine.medical_specialtyPathologyS-AdenosylmethionineCirrhosisGene ExpressionGlycine N-MethyltransferaseBiologyArticleLiver diseasechemistry.chemical_compoundMiceFibrosisInternal medicinemedicineAnimalsRas signalingMice KnockoutDNA methylationHepatologyFatty acid metabolismFatty livermedicine.diseaseGlycine N-methyltransferaseFatty LiverEndocrinologyJAK/STAT signalingchemistryGNMThepatocytesHepatic fibrosisGene Deletion
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Aminopropyltransferases involved in polyamine biosynthesis localize preferentially in the nucleus of plant cells

2012

Plant aminopropyltransferases consist of a group of enzymes that transfer aminopropyl groups derived from decarboxylated S-adenosyl-methionine (dcAdoMet or dcSAM) to propylamine acceptors to produce polyamines, ubiquitous metabolites with positive charge at physiological pH. Spermidine synthase (SPDS) uses putrescine as amino acceptor to form spermidine, whereas spermine synthase (SPMS) and thermospermine synthase (TSPMS) use spermidine as acceptor to synthesize the isomers spermine and thermospermine respectively. In previous work it was shown that both SPDS1 and SPDS2 can physically interact with SPMS although no data concerning the subcellular localization was reported. Here we study the…

Macromolecular AssembliesProteomicsS-AdenosylmethioninePlant anatomyImmunohistoquímicaArabidopsislcsh:MedicineSecondary MetabolismSpermineExpressionPlant ScienceSpermidine synthaseBiochemistrychemistry.chemical_compoundBimolecular fluorescence complementationCytosolMolecular Cell BiologyPolyaminesPlant Genomicslcsh:SciencePlant Growth and DevelopmentMultidisciplinarybiologyPlant BiochemistryArabidopsis-ThalianaGenomicsImmunohistochemistryMetabolismeFunctional GenomicsBiochemistrySpermine synthasePlant proteinPlant PhysiologyMechanismResearch ArticleHistologyAcyltransferasePlant Cell BiologyActive Transport Cell NucleusSpermidine SynthaseBimolecular fluorescence complementationProtein InteractionsBiologyCell NucleusCrystal-Structurelcsh:RHistologiaBotanyProtein interactionsSubcellular localizationAnatomia vegetalExpressió gènicaMolecular WeightSpermidineMetabolismchemistryDecarboxylasebiology.proteinPutrescineBotànicalcsh:QGene expressionSpermidine synthase
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Blockade of the trans-sulfuration pathway in acute pancreatitis due to nitration of cystathionine β-synthase

2019

© 2019 Published by Elsevier B.V.

Male0301 basic medicineS-AdenosylmethionineHomocysteineClinical BiochemistryNitric Oxide Synthase Type IINitrosative stressBiochemistryMicechemistry.chemical_compound0302 clinical medicineEdemaMedicineAcute inflammationHomocysteinelcsh:QH301-705.5lcsh:R5-920biologyGlutathioneUp-Regulationmedicine.anatomical_structureAcute pancreatitismedicine.symptomPancreaslcsh:Medicine (General)CeruletideResearch Papermedicine.medical_specialtyCystathionine beta-Synthase03 medical and health sciencesCystathionineInternal medicineAnimalsCysteineCystathionine β-synthaseS-adenosylmethionineMethioninebusiness.industryOrganic ChemistryGlutathionemedicine.diseaseCystathionine beta synthaseDisease Models Animal030104 developmental biologyEndocrinologyPancreatitischemistrylcsh:Biology (General)biology.proteinbusiness030217 neurology & neurosurgeryCysteineRedox Biology
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A long-term (two years) clinical trial with S-adenosylmethionine for the treatment of osteoarthritis

1987

In a long-term multicenter open trial involving 10 general practitioners, the efficacy and tolerance of S-adenosylmethionine (SAMe) were studied for 24 months in 108 patients with osteoarthritis of the knee, hip, and spine. At the end of the 24-month observation period, 97 of the patients were still in the study. The patients received 600 mg of SAMe daily (equivalent to three tablets of 200 mg each) for the first two weeks and thereafter 400 mg daily (equivalent to two tablets of 200 mg each) until the end of the 24th month of treatment. Separate evaluations were made for osteoarthritis of the knee, hip, cervical spine, and dorsal/lumbar spine. The severity of the clinical symptoms (morning…

MaleS-Adenosylmethioninemedicine.medical_specialtyClinical effectivenessOsteoarthritisOsteoarthritisHumansMedicineLongitudinal StudiesAdverse effectAgedClinical Trials as TopicPsychological TestsDepressionbusiness.industryAnti-Inflammatory Agents Non-SteroidalMorning stiffnessGeneral MedicineMiddle Agedmedicine.diseaseCervical spineSurgeryClinical trialFemaleLumbar spineOpen labelbusinessThe American Journal of Medicine
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Chronic ethanol feeding induces cellular antioxidants decrease and oxidative stress in rat peripheral nerves. Effect of S-adenosyl-L-methionine and N…

1998

Chronic ethanol feeding promotes oxidative stress in rat peripheral nerve. Malondialdehyde, a lipid peroxidation product, content increases in sciatic nerves of rats fed an ethanol-containing diet, when compared with pair-fed animals. Moreover, glutathione content and glutathione peroxidase activity in this same tissue decrease in ethanol-fed vs. pair-fed rats. S- adenosyl-L-methionine and N-acetyl-L-cysteine, both with possible therapeutic action on alcoholism, were tested in this animal model. Only N-acetyl-L- cysteine was able to normalize malondialdehyde content and to restore glutathione content and glutathione peroxidase activity, to values not significantly different from those of sc…

Malemedicine.medical_specialtyS-AdenosylmethionineEthanol feedingmedicine.disease_causeBiochemistryAntioxidantsLipid peroxidationRats Sprague-Dawleychemistry.chemical_compoundFree radicalPhysiology (medical)Internal medicineMalondialdehydemedicineAnimalsPeripheral Nerveschemistry.chemical_classificationGlutathione PeroxidaseEthanolS-adenosyl-L-methionineEthanolGlutathione peroxidaseN-acetyl-L- cysteineNerveGlutathioneMalondialdehydeGlutathionePeripheralAcetylcysteineRatsMicroscopy ElectronOxidative StressEndocrinologychemistryBiochemistryGlutathione peroxidaseLipid PeroxidationEthanoOxidative stressFree radical biologymedicine
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