Search results for "CpG Islands"

showing 10 items of 61 documents

Promoter CpG island methylation of RET predicts poor prognosis in stage II colorectal cancer patients

2014

Abstract Improved prognostic stratification of patients with TNM stage II colorectal cancer (CRC) is desired, since 20–30% of high-risk stage II patients may die within five years of diagnosis. This study was conducted to investigate REarranged during Transfection ( RET ) gene promoter CpG island methylation as a possible prognostic marker for TNM stage II CRC patients. The utility of RET promoter CpG island methylation in tumors of stage II CRC patients as a prognostic biomarker for CRC related death was studied in three independent series (including 233, 231, and 294 TNM stage II patients, respectively) by using MSP and pyrosequencing. The prognostic value of RET promoter CpG island methy…

MaleCpg island methylationOncologyCancer Researchmedicine.medical_specialtyColonColorectal cancerBiologyBioinformaticsCell Line TumorInternal medicineGeneticsmedicineHumansStage (cooking)Promoter Regions GeneticneoplasmsResearch ArticlesAgedNeoplasm StagingProportional hazards modelRectumStage II Colorectal CancerPromoterGeneral MedicineMethylationDNA MethylationMiddle AgedPrognosismedicine.diseasedigestive system diseasesOncologyDNA methylationMolecular MedicineCpG IslandsFemaleColorectal NeoplasmsMolecular Oncology
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Aberrant methylation within RUNX3 CpG island associated with the nuclear and mitochondrial microsatellite instability in sporadic gastric cancers. Re…

2007

Background: Gastric cancer (GC) development is a multistep process, during which numerous alterations accumulate in nuclear and mitochondrial DNA. A deficiency of repair machinery brings about an accumulation of errors introduced within simple repetitive microsatellite sequences during replication of DNA. Aberrant methylation is related to microsatellite instability (MSI) by the silencing of the hMLH1 gene. The aim of this study is to investigate a possible relationship between the RUNX3 promoter methylation, nuclear microsatellite instability (nMSI) and mitochondrial microsatellite instability (mtMSI), in order to clarify its biological role in GC. Patients and methods: nMSI and mtMSI were…

MaleMitochondrial DNAGC Rich SequenceBiologyDNA Mitochondriallaw.inventionlawStomach NeoplasmsmedicineHumansGenetic Predisposition to DiseaseProspective StudiesPolymerase chain reactionAgedCell NucleusCancerMicrosatellite instabilityHematologyMethylationDNA MethylationMiddle Agedmedicine.diseaseMolecular biologydigestive system diseasesCore Binding Factor Alpha 3 SubunitOncologyCpG siteMicrosatelliteCpG IslandsFemaleMicrosatellite InstabilityMicrosatellite Repeats
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Differences in DNA Methylation Patterns and Expression of the CCRK Gene in Human and Nonhuman Primate Cortices

2009

Changes in DNA methylation patterns during embryo development and differentiation processes are linked to the transcriptional plasticity of our genome. However, little is known about the evolutionary conservation of DNA methylation patterns and the evolutionary impact of epigenetic differences between closely related species. Here we compared the methylation patterns of CpG islands (CGIs) in the promoter regions of seven genes in humans and chimpanzees. We identified a block of CpGs in the cell cycle-related kinase (CCRK) gene that is more methylated in the adult human cortex than in the chimpanzee cortex and, in addition, it exhibits considerable intraspecific variation both in humans and …

MalePan troglodytesMolecular Sequence DataGene Expressionbiology.animalGeneticsAnimalsHumansEpigeneticsPromoter Regions GeneticMolecular BiologyGeneEcology Evolution Behavior and SystematicsGeneticsBase SequencebiologyPromoterMethylationDNA Methylationbiology.organism_classificationMacaca mulattaCyclin-Dependent KinasesFrontal LobeRhesus macaqueCpG siteDNA methylationCpG IslandsFemaleCyclin-Dependent Kinase-Activating KinasePapioBaboonMolecular Biology and Evolution
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Sequence-based bioinformatic prediction and QUASEP identify genomic imprinting of the KCNK9 potassium channel gene in mouse and human

2007

Genomic imprinting is the epigenetic marking of gene subsets resulting in monoallelic or predominant expression of one of the two parental alleles according to their parental origin. We describe the systematic experimental verification of a prioritized 16 candidate imprinted gene set predicted by sequence-based bioinformatic analyses. We used Quantification of Allele-Specific Expression by Pyrosequencing (QUASEP) and discovered maternal-specific imprinted expression of the Kcnk9 gene as well as strain-dependent preferential expression of the Rarres1 gene in E11.5 (C57BL/6 3 Cast/Ei)F1 and informative (C57BL/6 3 Cast/ Ei) 3 C57BL/6 backcross mouse embryos. For the remaining 14 candidate impr…

MalePotassium ChannelsBiologyPolymorphism Single NucleotideGenomic ImprintingMiceChromosome 15Potassium Channels Tandem Pore DomainGeneticsAnimalsHumansEpigeneticsImprinting (psychology)AlleleMolecular BiologyGeneGenetics (clinical)GeneticsBase SequenceBrainComputational BiologySequence Analysis DNAGeneral MedicineDNA MethylationMice Inbred C57BLCpG siteDNA methylationCpG IslandsFemaleGenomic imprintingHuman Molecular Genetics
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Epigenetic Control of the foxp3 Locus in Regulatory T Cells

2007

Compelling evidence suggests that the transcription factor Foxp3 acts as a master switch governing the development and function of CD4+ regulatory T cells (Tregs). However, whether transcriptional control of Foxp3 expression itself contributes to the development of a stable Treg lineage has thus far not been investigated. We here identified an evolutionarily conserved region within the foxp3 locus upstream of exon-1 possessing transcriptional activity. Bisulphite sequencing and chromatin immunoprecipitation revealed complete demethylation of CpG motifs as well as histone modifications within the conserved region in ex vivo isolated Foxp3+CD25+CD4+ Tregs, but not in naïve CD25−CD4+ T cells. …

MaleQH301-705.5Bisulfite sequencingImmunologyMolecular Sequence Datachemical and pharmacologic phenomenaCell SeparationThymus GlandBiologyT-Lymphocytes RegulatoryGeneral Biochemistry Genetics and Molecular BiologyEpigenesis GeneticMiceTranscriptional regulationAnimalsEpigeneticsBiology (General)Regulation of gene expressionMice Inbred BALB CGeneral Immunology and MicrobiologyBase SequenceGeneral NeuroscienceInterleukin-2 Receptor alpha SubunitFOXP3Homo (human)hemic and immune systemsForkhead Transcription FactorsDNA MethylationFlow CytometryMolecular biologyMus (mouse)Cell biologyIn VitroDNA demethylationGene Expression RegulationDNA methylationCpG IslandsGeneral Agricultural and Biological SciencesChromatin immunoprecipitationResearch ArticlePLoS Biology
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Hypermethylator phenotype in sporadic colon cancer: study on a population-based series of 582 cases.

2008

Abstract The CpG island methylator phenotype (CIMP) is a distinct phenotype in colorectal cancer, associated with specific clinical, pathologic, and molecular features. However, most of the studies stratified methylation according to two subgroups (CIMP-High versus No-CIMP/CIMP-Low). In our study, we defined three different subgroups of methylation (No-CIMP, CIMP-Low, and CIMP-High) and evaluated the prognostic significance of methylation status on a population-based series of sporadic colon cancers. A total of 582 colon adenocarcinomas were evaluated using methylation-specific PCR for 5 markers (hMLH1, P16, MINT1, MINT2, and MINT31). No-CIMP status was defined as no methylated locus, CIMP-…

OncologyAdultMaleProto-Oncogene Proteins B-rafCancer Researchmedicine.medical_specialtyPathologyColorectal cancerPopulationBiologyAdenocarcinomamedicine.disease_causeProto-Oncogene Proteins p21(ras)Internal medicineProto-Oncogene ProteinsmedicineHumanseducationneoplasmsAgededucation.field_of_studyRelative survivalCpG Island Methylator PhenotypeMicrosatellite instabilityMethylationDNA MethylationMiddle Agedmedicine.diseasePrognosisdigestive system diseasesPhenotypeOncologyDNA methylationColonic NeoplasmsMutationras ProteinsCpG IslandsFemaleMicrosatellite InstabilityKRASCancer research
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Genome-wide parent-of-origin DNA methylation analysis reveals the intricacies of human imprinting and suggests a germline methylation-independent mec…

2014

Genomic imprinting is a form of epigenetic regulation that results in the expression of either the maternally or paternally inherited allele of a subset of genes (Ramowitz and Bartolomei 2011). This imprinted expression of transcripts is crucial for normal mammalian development. In humans, loss-of-imprinting of specific loci results in a number of diseases exemplified by the reciprocal growth phenotypes of the Beckwith-Wiedemann and Silver-Russell syndromes, and the behavioral disorders Angelman and Prader-Willi syndromes (Kagami et al. 2008; Buiting 2010; Choufani et al. 2010; Eggermann 2010; Kelsey 2010; Mackay and Temple 2010). In addition, aberrant imprinting also contributes to multige…

PlacentaADNGene ExpressionBiologyMethylationGenomic ImprintingPregnancyGerm cellsGeneticsmedicineHumansEpigeneticsRNA-Directed DNA MethylationAllelesEmbryonic Stem CellsGenetics (clinical)GeneticsGenome HumanResearchDNAGenomicsDNA Methylationmedicine.diseaseUniparental disomyCèl·lules germinalsGenòmicaGerm CellsDifferentially methylated regionsDNA methylationIllumina Methylation AssayCpG IslandsFemaleMetilacióGenomic imprintingReprogrammingGenome Research
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Germline correction of an epimutation related to Silver-Russell syndrome.

2015

Like genetic mutations, DNA methylation anomalies or epimutations can disrupt gene expression and lead to human diseases. However, unlike genetic mutations, epimutations can in theory be reverted through developmental epigenetic reprograming, which should limit their transmission across generations. Following the request for a parental project of a patient diagnosed with Silver-Russell syndrome (SRS), and the availability of both somatic and spermatozoa DNA from the proband and his father, we had the exceptional opportunity to evaluate the question of inheritance of an epimutation. We provide here for the first time evidence for efficient reversion of a constitutive epimutation in the sperm…

ProbandAdultMaleGenetic counselingRussell-Silver SyndromeBiologymedicine.disease_causeGermlineEpigenesis GeneticGenomic ImprintingGene OrderGeneticsmedicineHumansExomeEpigeneticsPromoter Regions GeneticMolecular BiologyGenetics (clinical)GeneticsMutationSilver–Russell syndromeHigh-Throughput Nucleotide SequencingGeneral MedicineDNA Methylationmedicine.diseaseSilver-Russell SyndromeGerm CellsPhenotypeGene Expression RegulationGenetic LociDNA methylationCpG IslandsFemaleRNA Long NoncodingHuman molecular genetics
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Enhanced dendritic cell maturation by TNF-alpha or cytidine-phosphate-guanosine DNA drives T cell activation in vitro and therapeutic anti-tumor immu…

2000

Abstract Dendritic cells (DC) manipulated ex vivo can induce tumor immunity in experimental murine tumor models. To improve DC-based tumor vaccination, we studied whether DC maturation affects the T cell-activating potential in vitro and the induction of tumor immunity in vivo. Maturation of murine bone marrow-derived DC was induced by GM-CSF plus IL-4 alone or by further addition of TNF-α or a cytidine-phosphate-guanosine (CpG)-containing oligonucleotide (ODN-1826), which mimics the immunostimulatory effect of bacterial DNA. Flow cytometric analysis of costimulatory molecules and MHC class II showed that DC maturation was stimulated most by ODN-1826, whereas TNF-α had an intermediate effec…

T cellT-LymphocytesImmunologyAntineoplastic AgentsCell CommunicationBiologyLymphocyte ActivationImmunotherapy AdoptiveMiceImmune systemAdjuvants ImmunologicIn vivomedicineTumor Cells CulturedImmunology and AllergyAnimalsInterleukin 4Cells CulturedMice Inbred BALB CTumor Necrosis Factor-alphaCell DifferentiationDendritic cellDendritic CellsMolecular biologyInterleukin-12Coculture TechniquesGrowth InhibitorsMice Inbred C57BLmedicine.anatomical_structureOligodeoxyribonucleotidesColonic NeoplasmsInterleukin 12Cancer researchTumor necrosis factor alphaCpG IslandsFemaleInterleukin-4Ex vivoNeoplasm TransplantationJournal of immunology (Baltimore, Md. : 1950)
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Efficient homologous prime-boost strategies for T cell vaccination based on virus-like particles.

2005

Induction of high frequencies of specific T cells by vaccination requires prime-boost regimens. To reach optimal immune responses, it is necessary to use different vectors for priming and boosting as e.g. DNA vaccination followed by boosting with a recombinant viral vector. Here, we show that vaccines based on virus-like particles (VLP) displaying peptide epitopes are equally effective to induce CTL responses if used in a homologous or heterologous prime-boost setting. Strikingly, high frequencies (>20% of CD8(+) cells) of protective CTL could be induced and maintained by weekly injection of VLP. Thus, the use of VLP may avoid the requirement for complicated heterologous prime-boost regi…

T cellvirusesT-LymphocytesImmunologyT-cell vaccinationPriming (immunology)HeterologousEpitopes T-LymphocyteVaccinia virusBiologycomplex mixturesEpitopeViral vectorDNA vaccinationMicemedicineVaccines DNAVacciniaImmunology and AllergyAnimalsVaccinationVirionViral VaccinesVirologyHepatitis B Core AntigensCTL*medicine.anatomical_structureImmunologyCpG IslandsFemale
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