Search results for "histones"

showing 10 items of 200 documents

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
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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
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Mobility of Acetylated Histones in Sodium Dodecyl Sulfate–Polyacrylamide Gel Electrophoresis

1999

Abstract We describe an altered mobility for acetylated histone isoforms in sodium dodecyl sulfate–polyacrylamide gel electrophoresis. Isoforms of histones H3 and H4 with a higher acetylation degree have a slightly faster electrophoretic mobility. Since acetylation neutralizes the positive charge of the e-amino group of lysine, without significantly changing the molecular mass of the protein, the acetylation-dependent mobility shift could be explained by the increase of the net negative charge of the SDS–histone complexes. A possible consequence of this differential mobility for the acetylation site determination by protein microsequencing from SDS gels is discussed.

ErythrocytesSodiumLysineBiophysicschemistry.chemical_elementBiochemistryHistoneschemistry.chemical_compoundElectrochemistryAnimalsSodium dodecyl sulfateMolecular BiologyPolyacrylamide gel electrophoresisGel electrophoresisChromatographyMolecular massReproducibility of ResultsSodium Dodecyl SulfateAcetylationCell BiologyBlood Protein ElectrophoresisElectrophoresischemistryBiochemistryAcetylationElectrophoresis Polyacrylamide GelChickensAnalytical Biochemistry
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Electrophoretic separation of a class of nucleosomes enriched in HMG 14 and 17 and actively transcribed globin genes.

1980

Monomer nucleosomes from chick erythrocytes can be fractionated according to their electrophoretic mobility in (comparatively) high salt acrylamide gels. We show that the fractionation is based predominantly on differences in charge. The monomer heterogeneity persists even when the nucleosomes are trimmed down to 145 bp with Exo III or when H1 and H5 are removed. The slowest migrating monomers are associated with HMG 14 and 17; however, we do not believe that these proteins are entirely responsible for the altered mobility since the nucleosome heterogeneity persists even after removal of HMG 14 and 17. The DNA associated with the HMG 14 and 17 containing nucleosomes is shown to be enriched …

ErythrocytesbiologyChromosomal Proteins Non-HistoneHigh Mobility Group ProteinsCell FractionationNucleosomesHistoneschemistry.chemical_compoundElectrophoresisMonomerHistonechemistryBiochemistryHMG-CoA reductaseGeneticsbiology.proteinNucleosomeAnimalsElectrophoresis Polyacrylamide GelGlobinCell fractionationChickensDNA
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Histone post-translational modifications as potential therapeutic targets for pain management

2021

Effective pharmacological management of pain associated with tissue pathology is an unmet medical need. Transcriptional modifications in nociceptive pathways are pivotal for the development and the maintenance of pain associated with tissue damage. Accumulating evidence has shown the importance of the epigenetic control of transcription in nociceptive pathways via histone post-translational modifications (PTMs). Hence, histone PTMs could be targets for novel effective analgesics. Here, we discuss the current understanding of histone PTMs in the modulation of gene expression affecting nociception and pain phenotypes following tissue injury. We also provide a critical view of the translationa…

Farmacologiadorsal root ganglionPharmacological managementPainToxicologyBioinformaticsHistonesTissue damageHumansPain ManagementMedicinenociceptionPharmacology & PharmacyEpigeneticsspinal dorsal horn11 Medical and Health Sciencesneuropathic painPharmacologyepigeneticsbiologybusiness.industry06 Biological SciencesPain managementgene transcriptionNociceptionHistoneNeuropathic painPosttranslational modificationbiology.proteinbusinessProtein Processing Post-TranslationalGenèticaTrends in Pharmacological Sciences
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Promoter-Targeted Histone Acetylation of Chromatinized Parvoviral Genome Is Essential for the Progress of Infection

2015

ABSTRACT The association of host histones with parvoviral DNA is poorly understood. We analyzed the chromatinization and histone acetylation of canine parvovirus DNA during infection by confocal imaging and in situ proximity ligation assay combined with chromatin immunoprecipitation and high-throughput sequencing. We found that during late infection, parvovirus replication bodies were rich in histones bearing modifications characteristic of transcriptionally active chromatin, i.e., histone H3 lysine 27 acetylation (H3K27ac). H3K27ac, in particular, was located in close proximity to the viral DNA-binding protein NS1. Importantly, our results show for the first time that in the chromatinized …

Gene Expression Regulation Viral0301 basic medicineParvovirus CanineVirus IntegrationvirusesImmunologyGenome ViralMicrobiologyCell LineEpigenesis Geneticviral DNAHistonesParvoviridae Infections03 medical and health sciencesHistone H3VirologyAnimalsHistone codeNucleosomePromoter Regions GeneticEpigenomicsMicroscopy ConfocalbiologyLysinecanine parvovirushistone acetylationAcetylationHistone acetyltransferaseVirologyChromatinchromatinizationVirus-Cell Interactions3. Good healthChromatin030104 developmental biologyHistoneInsect ScienceDNA ViralCatsbiology.proteinChromatin immunoprecipitationJournal of Virology
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Epigenetic modifiers are necessary but not sufficient for reprogramming non-myelinating cells into myelin gene-expressing cells.

2010

Background Modifications on specific histone residues and DNA methylation play an essential role in lineage choice and cellular reprogramming. We have previously shown that histone modifications or combinatorial codes of transcription factors (TFs) are critical for the differentiation of multipotential progenitors into myelinating oligodendrocytes. In this study we asked whether combining global manipulation of DNA methylation and histone acetylation together with the expression of oligodendrocyte- specific TFs, was sufficient to switch the identity of fibroblasts into myelin gene-expressing cells. Methodology/Principal Findings Transfection of six oligodendrocyte-specific TFs (Olig1, Olig2…

Gene Expressionlcsh:MedicineBiologyCell LineEpigenesis GeneticHistones03 medical and health sciencesMice0302 clinical medicineHistone H1Histone methylationHistone H2ANeuroscience/Neuronal Signaling MechanismsHistone codeAnimalsCell Lineagelcsh:ScienceCells Cultured030304 developmental biologyEpigenomics0303 health sciencesMultidisciplinaryNeuroscience/Neuronal and Glial Cell BiologyMultipotent Stem Cellslcsh:RAcetylationCell DifferentiationDNA MethylationFibroblastsMolecular biologyChromatinChromatinRatsOligodendrogliaHomeobox Protein Nkx-2.2Histone methyltransferaseNIH 3T3 Cellslcsh:QNeuroscience/Neurobiology of Disease and RegenerationChromatin immunoprecipitation030217 neurology & neurosurgeryMyelin ProteinsResearch ArticleNeuroscienceTranscription FactorsPLoS ONE
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Divergent Evolution of an "Orphon" Historic Gene Cluster in Chironomus

1993

The histone genes of the midge Chironomus thummi thummi are organized in tandemly repeated gene groups, each containing the four core histone genes plus an H1 gene. These repetitive gene groups are found at five different loci, linked on one chromosomal arm. In addition to the clustered gene groups an isolated histone gene group exists which is found spatially separated on a different chromosome ("orphon" gene group). These orphon genes have been cloned and analysed in detail. Nucleotide sequence and in situ hybridization data suggest that the orphon gene group was established early during chironomid speciation, possibly by a transposition-like mechanism. This allowed the genes to be moved …

GeneticsBase SequencebiologyMolecular Sequence DataRestriction MappingNucleic acid sequenceChromosomeGenes InsectSequence alignmentBiological EvolutionChironomidaeHistonesDivergent evolutionHistoneStructural BiologyMolecular evolutionMultigene FamilySequence Homology Nucleic AcidGene clusterbiology.proteinAnimalsCloning MolecularSequence AlignmentMolecular BiologyGeneJournal of Molecular Biology
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The Sas3p and Gcn5p histone acetyltransferases are recruited to similar genes.

2006

A macroarray platform was used to identify binding sites of yeast histone acetyltransferase catalytic subunits and to correlate their positions with acetylation of lysine 14 of histone H3, revealing that Sas3p and Gcn5p are recruited to similar sets of intensely transcribed genes.

GeneticsHistone AcetyltransferasesChromatin ImmunoprecipitationSaccharomyces cerevisiae ProteinsResearchAcetylationHistone acetyltransferaseSaccharomyces cerevisiaeSAP30BiologyCell biologyHistonesHistone H3GenòmicaHistone H1Histone methyltransferaseGene Expression Regulation FungalHistone H2Abiology.proteinHistone codeHistone Acetyltransferases
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Histone-mediated transgenerational epigenetics

2019

Abstract Epigenetic mechanisms operate at the interface between the environment and genome, by converting the environmental stimuli to phenotypic responses through changes in the chromatin landscape, which ultimately affects gene expression in the absence of alterations in DNA sequence. In this scenario, transgenerational inheritance occurs when epigenetic variations induced by environmental stimuli are transmitted through the germ line to succeeding generations that had never experienced those stimuli. There is an ever-growing list of reports indicating that histones are fundamental players in these processes in a variety of organisms. In this chapter, we provide a perspective on histone-d…

GeneticsHistonebiology.proteinInheritance (genetic algorithm)NucleosomeSettore BIO/11 - Biologia MolecolareEpigeneticsHistone-based epigenetic inheritanceHistone inheritance in diseaseHistone posttranslational modificationsHistone variantsNucleosome positioningPerpetuation of maternal histonesRetention of paternal nucleosomeTransgenerational transmission of environmental informationBiologyGenomePhenotypeGermlineChromatin
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