Search results for "acetyltransferase"

showing 10 items of 170 documents

Epigenetic Transcriptional Regulation of the Growth Arrest-Specific gene 1 (Gas1) in Hepatic Cell Proliferation at Mononucleosomal Resolution

2011

Background Gas1 (growth arrest-specific 1) gene is known to inhibit cell proliferation in a variety of models, but its possible implication in regulating quiescence in adult tissues has not been examined to date. The knowledge of how Gas1 is regulated in quiescence may contribute to understand the deregulation occurring in neoplastic diseases. Methodology/Principal Findings Gas1 expression has been studied in quiescent murine liver and during the naturally synchronized cell proliferation after partial hepatectomy. Chromatin immunoprecipitation at nucleosomal resolution (Nuc-ChIP) has been used to carry out the study preserving the in vivo conditions. Transcription has been assessed at real …

Chromatin ImmunoprecipitationTranscription GeneticGene Expressionlcsh:MedicineCell Cycle ProteinsRNA polymerase IIBiologyGPI-Linked ProteinsMethylationHistone DeacetylasesChromatin remodelingEpigenesis GeneticS PhaseHistonesMiceMolecular Cell BiologyTranscriptional regulationAnimalsHepatectomyEpigeneticsPromoter Regions Geneticlcsh:ScienceBiologyCell ProliferationHistone AcetyltransferasesRegulation of gene expressionMultidisciplinaryReverse Transcriptase Polymerase Chain ReactionGene Expression Profilinglcsh:RG1 PhaseAcetylationHistone ModificationImmunohistochemistryMolecular biologyChromatinNucleosomesChromatinHistoneGene Expression RegulationLiverbiology.proteinlcsh:QTranscription Initiation SiteChromatin immunoprecipitationProtein BindingResearch ArticlePLoS ONE
researchProduct

Expression of a plant serine O-acetyltransferase inSaccharomyces cerevisiae confers osmotic tolerance and creates an alternative pathway for cysteine…

2004

Screening of a sugar beet (Beta vulgaris cv. Dita) cDNA library for clones able to confer osmotic tolerance to the osmosensitive gpd1 mutant of Saccharomyces cerevisiae identified a novel serine O-acetyltransferase (BvSAT; EC 2.3.1.30). This enzyme is involved in cysteine biosynthesis in plants and bacteria, producing O-acetylserine, which is converted into cysteine in a reaction catalysed by O-acetylserine sulphydrylase (EC 4.2.99.8). This pathway is not conserved in yeast, where cysteine is synthesized in a four-step pathway starting with homoserine and having O-acetylhomoserine, homocysteine and cystathionine as intermediates. Expression of BvSAT in yeast takes advantage of the activity …

DNA ComplementaryOsmotic shockMolecular Sequence DataSaccharomyces cerevisiaeHomoserineBioengineeringSaccharomyces cerevisiaeBiologyApplied Microbiology and BiotechnologyBiochemistrySerinechemistry.chemical_compoundAcetyltransferasesGeneticsSerine O-acetyltransferaseCysteineSulfhydryl CompoundsAmino AcidsDNA PrimersBase SequenceGene Transfer Techniquesbiology.organism_classificationCystathionine beta synthaseYeastBiochemistrychemistrybiology.proteinBeta vulgarisSerine O-AcetyltransferaseBiotechnologyCysteineYeast
researchProduct

Acetyltransfer in natural product biosynthesis--functional cloning and molecular analysis of vinorine synthase.

2004

Vinorine synthase (EC 2.3.1.160) catalyses the acetyl-CoA- or CoA-dependent reversible formation of the alkaloids vinorine (or 11-methoxy-vinorine) and 16-epi-vellosimine (or gardneral). The forward reaction leads to vinorine, which is a direct biosynthetic precursor along the complex pathway to the monoterpenoid indole alkaloid ajmaline, an antiarrhythmic drug from the Indian medicinal plant Rauvolfia serpentina. Based on partial peptide sequences a cDNA clone was isolated and functionally expressed in Escherichia coli. The Km values of the native enzyme for gardneral and acetyl-CoA were determined to be 7.5 and 57 microM. The amino acid sequence of vinorine synthase has highest level of i…

DNA ComplementaryStereochemistrySequence analysisClinical BiochemistryMolecular Sequence DataPharmaceutical ScienceSequence alignmentBiochemistryRauwolfiaIndole AlkaloidsSubstrate Specificitychemistry.chemical_compoundBiosynthesisAcetyltransferasesSequence Analysis ProteinDrug DiscoveryConsensus sequenceAmino Acid SequenceCloning MolecularMolecular BiologyPeptide sequencechemistry.chemical_classificationATP synthasebiologyChemistryOrganic ChemistryAcetylationAmino acidBiochemistryAcetyltransferasebiology.proteinMutagenesis Site-DirectedMolecular MedicineSequence AlignmentBioorganicmedicinal chemistry
researchProduct

'Up-regulation of histone acetylation induced by social defeat mediates the conditioned rewarding effects of cocaine

2016

Social defeat (SD) induces a long-lasting increase in the rewarding effects of psychostimulants measured using the self-administration and conditioned place procedures (CPP). However, little is known about the epigenetic changes induced by social stress and about their role in the increased response to the rewarding effects of psychostimulants. Considering that histone acetylation regulates transcriptional activity and contributes to drug-induced behavioral changes, we addressed the hypothesis that SD induces transcriptional changes by histone modifications associated with the acquisition of place conditioning. After a fourth defeat, H3(K9) acetylation was decreased in the hippocampus, whil…

Dominance-SubordinationMaleCurcuminHippocampusSpatial BehaviorPharmacologyHippocampusChromatin remodelingEpigenesis GeneticSocial defeatHistone H4Histones03 medical and health sciencesMice0302 clinical medicineRewardCocaineConditioning PsychologicalValproic acidAnimalsEpigeneticsBiological PsychiatryHistone AcetyltransferasesPharmacologySocial stressCerebral CortexbiologyValproic AcidAcetylation030227 psychiatryUp-RegulationHistone Deacetylase InhibitorsDisease Models AnimalHistoneHistone acetylationAcetylationbiology.proteinCentral Nervous System StimulantsPsychologySocial defeat stress030217 neurology & neurosurgeryStress Psychological
researchProduct

Drug-metabolizing enzymes in the skin of man, rat, and pig.

2007

The mammalian skin has long been considered to be poor in drug metabolism. However, many reports clearly show that most drug metabolizing enzymes also occur in the mammalian skin albeit at relatively low specific activities. This review summarizes the current state of knowledge on drug metabolizing enzymes in the skin of human, rat, and pig, the latter, because it is often taken as a model for human skin on grounds of anatomical similarities. However only little is known about drug metabolizing enzymes in pig skin. Interestingly, some cytochromes P450 (CYP) have been observed in the rat skin which are not expressed in the rat liver, such as CYP 2B12 and CYP2D4. As far as investigated most d…

Drugcytochrome P450Swinemedia_common.quotation_subjectMetaboliteAldehyde dehydrogenaseHuman skinEpoxide hydrolaseEsterasechemistry.chemical_compoundOrgan Culture TechniquesCytochrome P-450 Enzyme SystemSpecies SpecificityGlycosyltransferaseAnimalsHumansPharmacology (medical)ratGeneral Pharmacology Toxicology and PharmaceuticsFlavin monooxygenaseCells Culturedmedia_commonSkinchemistry.chemical_classificationquinone reductase [NAD(P)H]biologyintegumentary systemAlcohol dehydrogenaseSulfotransferaseCytochrome P450Aldehyde dehydrogenaseMetabolic Detoxication Phase IIEnzymesRatsGlutathione S-transferaseIsoenzymesEnzymechemistryBiochemistryPharmaceutical PreparationsN-acetyltransferasebiology.proteinMetabolic Detoxication Phase IPig skin drug metabolismDrug metabolismUDP-glucuronosyltransferaseHuman
researchProduct

The non-neuronal cholinergic system

2012

EXPRESSIONBasic scienceAutoimmunityBiologyPharmacologyReceptors NicotinicLYMPHOCYTESGeneral Biochemistry Genetics and Molecular BiologyANTIGEN-SPECIFIC IGG(1)LUNG-CANCERNICOTINENeoplasmsSECRETE ACETYLCHOLINEAnimalsHumansAcetylcholine metabolismGeneral Pharmacology Toxicology and PharmaceuticsCANCER CELLSACETYLCHOLINE-RECEPTORSGeneral MedicineReceptors MuscarinicAcetylcholineACETYLTRANSFERASECholinergic systemNeuroscienceKNOCKOUT MICELife Sciences
researchProduct

Significance of pantothenate for glucose fermentation by Oenococcus oeni and for suppression of the erythritol and acetate production.

2001

The heterofermentative lactic acid bacterium Oenococcus oeni requires pantothenic acid for growth. In the presence of sufficient pantothenic acid, glucose was converted by heterolactic fermentation stoichiometrically to lactate, ethanol and CO2. Under pantothenic acid limitation, substantial amounts of erythritol, acetate and glycerol were produced by growing and resting bacteria. Production of erythritol and glycerol was required to compensate for the decreasing ethanol production and to enable the synthesis of acetate. In ribose fermentation, there were no shifts in the fermentation pattern in response to pantothenate supply. In the presence of pantothenate, growing O. oeni contained at l…

ErythritolAcetatesBiochemistryMicrobiologyPantothenic Acidchemistry.chemical_compoundPhosphate AcetyltransferaseAcetyl Coenzyme APantothenic acidGeneticsGlycerolEthanol fuelCoenzyme AMolecular BiologyOenococcus oeniEthanolbiologyGeneral Medicinebiology.organism_classificationAldehyde OxidoreductasesCulture MediaGram-Positive CocciErythritolGlucosechemistryBiochemistryFermentationFermentationBacteriaLeuconostocArchives of microbiology
researchProduct

Enzymes involved in the dynamic equilibrium of core histone acetylation ofPhysarum polycephalum

1992

DEAE-Scpharose chromatography of extracts from plasmodia of the myxomyccte PI~.~suru~~t ,~/.~crpl~~ho~~ revealed the presence of multiple histone acetyltransferases and histonc deacctylascs. A cyloplasmic histonc acctyltransferase B, specific for histonc H4, and two nuclear acetyltransferases Al and A2 were identilied; Al acetylates all core hislones with a preference for l-13 and H2A. whereas A2 is specific for H3 and also slightly for H2B. Two hislone deacetylases. HDI and HD2, could be discriminated. They differ with respect to subslralc speciliciiy and pH dependence. For the first time the substrate specificity of histonc deacetylascs was determined using HPLC-purilicd individual core h…

ErythrocytesSaccharomyces cerevisiae ProteinsBiophysicsBiochemistryHistone DeacetylasesSubstrate SpecificityHistonesPhysarumHistone H1AcetyltransferasesPhysarum polycephalumStructural BiologyHistone H2AGeneticsAnimalsHistone deacetylaseHistone octamerMolecular BiologyChromatography High Pressure LiquidHistone AcetyltransferasesHistone AcetyltransferasesbiologyHistone deacetylase 2AcetylationButyrateCell BiologyHistone acetyltransferaseMolecular biologyChromatinHistone Deacetylase InhibitorsIsoenzymesButyratesKineticsHistone acetylationBiochemistryHistone methyltransferasebiology.proteinButyric AcidHistone acetyltransferaseHistone deacetylaseChickensProtein Processing Post-TranslationalFEBS Letters
researchProduct

Gcn5p is involved in the acetylation of histone H3 in nucleosomes.

1997

Abstract Enzymatic extracts from a gcn5 mutant and wild-type strains of Saccharomyces cerevisiae were chromatographically fractionated and the histone acetyltransferase activities compared. When free histones were used as substrate, extracts from wild-type cells showed two peaks of activity on histone H3 but extracts from gcn5 mutant cells showed only one. With nucleosomes as substrate, the histone acetyltransferase activities present in extracts from the gcn5 mutant strain were not able to modify H3 whereas wild-type cell extracts acetylated intensely this histone. The activity that acetylated nucleosome-bound H3 behaved as a 170-kDa complex. We suggest that Gcn5p represents a catalytic su…

ErythrocytesSaccharomyces cerevisiae ProteinsBiophysicsSaccharomyces cerevisiaeBiochemistryFungal ProteinsHistonesHistone H3Histone H1Structural BiologyHistone H2AHistone methylationGeneticsHistone codeAnimalsHistone octamerMolecular BiologyHistone AcetyltransferasesHistone acetyltransferase GCN5biologyAcetylationCell BiologyHistone acetyltransferaseChromatinNucleosomesDNA-Binding ProteinsMolecular WeightBiochemistryNucleosomeHistone methyltransferasebiology.proteinChickensProtein KinasesFEBS letters
researchProduct

Effect of a 2-y dietary and physical activity intervention on plasma fatty acid composition and estimated desaturase and elongase activities in child…

2016

Background: Evidence on the effects of lifestyle interventions on plasma fatty acid composition in children is limited. Objective: We investigated the effects of a dietary and physical activity intervention on plasma fatty acid composition of cholesteryl esters (CEs) and phospholipids and estimated desaturase and elongase activities in children. Design: We conducted a 2-y controlled dietary and physical activity intervention based on Finnish nutrition and physical activity recommendations in a population sample of 506 children aged 6–8 y. We assessed plasma fatty acid composition by gas chromatography and estimated desaturase and elongase activities as the ratio of product fatty acids to pr…

Fatty Acid DesaturasesMaleHealth BehaviorMedicine (miscellaneous)physical activity030204 cardiovascular system & hematologychemistry.chemical_compound0302 clinical medicineFood scienceChildta315FinlandPhospholipidsinterventionchemistry.chemical_classificationNutrition and Dieteticsalpha-Linolenic Acidta3141elongaseLipidsTreatment OutcomeBiochemistrycholesteryl esterFatty Acids UnsaturatedCholesteryl esterFemaleCholesterol EstersStearic acidPolyunsaturated fatty acidFatty Acid ElongasesLinoleic acidPhysical activityPhospholipidGuidelines as Topic030209 endocrinology & metabolismHealth Promotionta3111Linoleic Acid03 medical and health scienceschildrenAcetyltransferasesHumansExerciseLife StylephospholipidFatty acidOleic acidchemistryfatty aciddietdesaturaseAmerican Journal of Clinical Nutrition
researchProduct