Search results for "histone demethylases"

showing 4 items of 14 documents

Androgen receptor activation by polychlorinated biphenyls

2013

The exposure to environmental endocrine disrupting compounds (EDC), as polychlorinated biphenyls (PCBs), widely diffused in the environment may produce epigenetic changes that affect the endocrine system. We found that PCBs activate AR transcriptional activity and that this effect is potentiated by the demethylase Jarid1b, a histone demethylase that catalyzes the removal of trimethylation of lysine 4 on histone H3 (H3K4me3), induced by PCB. The aim of the present study was to investigate the effect of the treatment of cultured cells (HEK293) with a mixture of the most diffused environmental PCBs and, also with dihydrotestosterone (DHT), on the functional interaction between AR and Jarid1b. …

MaleJumonji Domain-Containing Histone DemethylasesJarid1bpolychlorinated biphenylsNuclear ProteinsEndocrine DisruptorsEpigenesis GeneticHistonesRepressor ProteinsReceptors Androgenandrogen receptorTumor Cells CulturedHumanshistone modificationFemaleenvironmentepigeneticResearch PaperEpigenetics
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Clinical and molecular spectrum of renal malformations in Kabuki syndrome.

2013

International audience; OBJECTIVE: To determine the frequency and types of renal malformations, and to evaluate renal function in a cohort of patients with Kabuki syndrome (KS). STUDY DESIGN: Renal ultrasound scans and plasma creatinine measurements were collected from a French cohort of 94 patients with genotyped KS. Renal function was evaluated based on the estimated glomerular filtration rate. A genotype-phenotype study was conducted for renal and urinary tract malformations. RESULTS: Renal malformations were present in 22% of cases, and urinary tract anomalies were present in 15%. Renal malformations were observed in 28% of the MLL2 mutation-positive group and in 0% of the MLL2 mutation…

MalePathologyGenotyping Techniquesurologic and male genital diseasesKidneyCohort Studieschemistry.chemical_compoundChildUltrasonographyHistone Demethylases0303 health sciencesKidney030305 genetics & heredityNuclear ProteinsHypoplasia3. Good healthNeoplasm ProteinsDNA-Binding Proteinsmedicine.anatomical_structureVestibular DiseasesChild PreschoolCreatinineBiological MarkersFemaleFranceAbnormalitiesMultipleCohort studyGlomerular Filtration RateAdultGenetic Markersmedicine.medical_specialtyAdolescentUrinary systemUrologyRenal function03 medical and health sciencesYoung AdultmedicineHumansAbnormalities MultiplePreschoolGenetic Association Studies030304 developmental biologyRetrospective StudiesCreatinine[SDV.GEN]Life Sciences [q-bio]/Geneticsbusiness.industryInfantRetrospective cohort studymedicine.diseaseHematologic DiseaseschemistryFacePediatrics Perinatology and Child Healthbusiness[ SDV.GEN ] Life Sciences [q-bio]/GeneticsKabuki syndromeBiomarkersThe Journal of pediatrics
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Functional antagonism between histone H3K4 demethylases in vivo

2011

Dynamic regulation of histone modifications is critical during development, and aberrant activity of chromatin-modifying enzymes has been associated with diseases such as cancer. Histone demethylases have been shown to play a key role in eukaryotic gene transcription; however, little is known about how their activities are coordinated in vivo to regulate specific biological processes. In Drosophila, two enzymes, dLsd1 (Drosophila ortholog of lysine-specific demethylase 1) and Lid (little imaginal discs), demethylate histone H3 at Lys 4 (H3K4), a residue whose methylation is associated with actively transcribed genes. Our studies show that compound mutation of Lid and dLsd1 results in increa…

Settore BIO/11 - Biologia MolecolareBiologyMethylationHistoneshistone demethylasesHistone H3HeterochromatinHistone H2AHistone methylationGeneticsAnimalsDrosophila ProteinsHistone codeGeneticsReceptors NotchEZH2Oxidoreductases N-DemethylatingHistone-Lysine N-MethyltransferaseSettore BIO/18 - GeneticaDrosophila melanogasterPhenotypeGene Expression RegulationHistone methyltransferaseMutationHeterochromatin protein 1Histone DemethylasesSignal TransductionResearch PaperDevelopmental Biology
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Endocrine disrupters: the new players able to affect the epigenome

2015

Epigenetics represents the way by which the environment is able to program the genome; there are three main levels of epigenetic control on genome: DNA methylation, post-translational histone modification and microRNA expression. The term Epigenetics has been widened by NIH to include “both heritable changes in gene activity and expression but also stable, long-term alterations in the transcriptional potential of a cell that are not necessarily heritable.” These changes might be produced mostly by the early life environment and might affect health influencing the susceptibility to develop diseases, from cancer to mental disorder, during the entire life span. The most studied environmental i…

polychlorinated biphenylsandrogen receptor (AR)ReviewBioinformaticshistone demethylaseschemistry.chemical_compoundEndocrinologymicroRNAEpigeneticsVinclozolinlcsh:QH301-705.5GeneticsJarid1bbiologyepigeneticsCell BiologyEpigenomeHistoneendocrine disruptorslcsh:Biology (General)chemistryDNA methylationbiology.proteinDemethylaseJARID1BDevelopmental BiologyFrontiers in Cell and Developmental Biology
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