Search results for "Hybridization"

showing 10 items of 812 documents

EcFLO, a FLORICAULA-like gene from Eschscholzia californica is expressed during organogenesis at the vegetative shoot apex.

2003

FLORICAULA/ LEAFY-like genes were initially characterized as flower meristem identity genes. In a range of angiosperms, expression occurs also in vegetative shoot apices and developing leaves, and in some species with dissected leaves expression is perpetuated during organogenesis at the leaf marginal blastozone. The evolution of these expression patterns and associated functions is not well understood. We have isolated and characterized a FLORICAULA-like gene from California Poppy, Eschscholzia californica Cham. (Papaveraceae), a species belonging to the basal eudicot clade Ranunculales. EcFLO encodes a putative 416-amino-acid protein with highest similarity to homologous genes from Trocho…

California PoppyMolecular Sequence DataOrganogenesisPlant ScienceEschscholziaBotanyGeneticsPapaveraceaePrimordiumAmino Acid SequenceLeafyIn Situ HybridizationPhylogenyDNA PrimersPlant ProteinsEschscholziabiologyBase SequenceSequence Homology Amino AcidReverse Transcriptase Polymerase Chain Reactionfungifood and beveragesRNA ProbesMeristembiology.organism_classificationRanunculalesSequence AlignmentPlanta
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Abstract 4246: Associations of Epstein-Barr virus (EBV)-positive gastric cancer with circulating mediators of inflammation and immune response

2017

Abstract Epstein-Barr virus (EBV) positivity defines one of four major molecular types of gastric cancer in The Cancer Genome Atlas (TCGA). However, viral status is not routinely determined in clinical practice and tumor samples are not generally collected in epidemiologic research. Histologically, EBV-positive gastric cancer is characterized by prominent inflammatory infiltrate. In molecular analyses from TCGA, EBV-positive gastric cancer had significantly higher expression of several chemokines, chemokine receptors and programmed death-ligand 1 (PD-L1) as compared to other molecular types combined. We hypothesized that EBV tumor status may also be reflected in profiles of circulating chem…

Cancer ResearchChemokinebiologybusiness.industryInflammationIn situ hybridizationmedicine.disease_causeEpstein–Barr virusVirusTumor StatusChemokine receptorImmune systemOncologyImmunologybiology.proteinMedicinemedicine.symptombusinessCancer Research
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Activating mutations in human c-Ha-ras-1 protooncogene induced by stereoisomeric fjord-region benzo[c]chrysene diol-epoxides.

1995

The mutagenicity of fjord-region benzo[c]chrysene diol-epoxide (BcCDE) stereoisomers((+) anti-BcCDE, (-)anti-BcCDE, (+)syn-BcCDE, and (-)syn-BcCDE) was studied in a forward-mutation system. pEC plasmid containing the human c-Ha-ras-1 proto-oncogene was reacted in vitro with each optically active isomer separately and transfected into NIH/3T3 cells. Morphologically transformed foci were cloned, and DNA obtained from these foci was tested for the presence of Ha-ras-1 sequence by Southern blot analysis. A total of 50 transformed foci (11-14 for each diastereomer) were generated. To determine the nature of mutations responsible for activating the proto-oncogene, regions of the gene likely to co…

Cancer ResearchGuanineMolecular Sequence DataGene mutationBiologymedicine.disease_causePolymerase Chain ReactionProto-Oncogene MasChryseneschemistry.chemical_compoundMicemedicineAnimalsHumansPoint MutationTransversionMolecular BiologyGeneSouthern blotMutationBase SequenceMutagenicity TestsPoint mutationNucleic Acid HybridizationStereoisomerism3T3 CellsMolecular biologyGenes raschemistryGene Expression RegulationMutationOligonucleotide ProbesDNAMutagensMolecular carcinogenesis
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Pattern of secondary genomic changes in pancreatic tumors ofTgfα/Trp53+/−transgenic mice

2003

Trp53+/− mice overexpressing Tgfα in a pancreas-specific manner represent a well-established animal model for pancreatic cancer. In this study we analyzed 38 pancreatic adenocarcinomas of these mice for secondary genomic changes by comparative genomic hybridization (CGH), loss of heterozygosity (LOH) analysis, real-time PCR, and methylation-specific analysis. CGH screening of the tumors revealed a recurrent pattern of genomic changes. In more than 50% of the tumors, chromosome 11 was affected. The gain of the proximal part spans about 16 cM, including the genes for Egfr, Rel, and Stk10. The distal part of chromosome 11, which contains the Trp53 locus, was deleted. LOH analysis proved that a…

Cancer ResearchLocus (genetics)Biologymedicine.diseaseMolecular biologyLoss of heterozygosityChromosome 15Chromosome 4CDKN2APancreatic cancerDNA methylationGeneticsmedicineComparative genomic hybridizationGenes, Chromosomes and Cancer
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Complex rearrangement of chromosomes 6 and 11 as the sole anomaly in atypical teratoid/rhabdoid tumors of the central nervous system.

2000

Atypical teratoid/rhabdoid tumor of the central nervous system is a rare childhood tumor with a distinct histologic appearance and an aggressive clinical course. Few tumors have been analyzed cytogenetically. The only consistent chromosomal abnormality identified in some of these tumors has been monosomy or deletions of chromosome 22; in others, a normal chromosome 22 was present. The authors report an atypical teratoid/rhabdoid neoplasm of the central nervous system with a novel complex rearrangement affecting chromosomes 6 and 11 as the sole anomaly. The involvement of region 11p15 could be important in the pathogenesis of this entity.

Cancer ResearchMonosomymedicine.medical_specialtyPathologyCentral nervous systemBiologyTranslocation GeneticCentral nervous system diseaseCentral Nervous System NeoplasmsGeneticsmedicineHumansRing ChromosomesChildMolecular BiologyIn Situ Hybridization FluorescenceRhabdoid TumorGeneticsChromosome Aberrationsmedicine.diagnostic_testChromosomes Human Pair 11CytogeneticsTeratomaGene rearrangementmedicine.diseaseTeratoid tumormedicine.anatomical_structureKaryotypingChromosomes Human Pair 6FemaleChromosome 22Fluorescence in situ hybridizationCancer genetics and cytogenetics
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A role for the transcription intermediary factor 2 in zebrafish myelopoiesis.

2007

Objective TIF2 is fused with MOZ in the inv(8)(p11q13) acute myeloid leukemia. TIF2, member of the p160 family, is a histone acetyl transferase (HAT). Deletion of p160 genes were performed in mice. Some observations suggest that p160 family members may perform overlapping functions in mice. Therefore, we decided to choose the zebrafish model to study TIF2. The aim of this study was to characterize the role of this HAT during embryonic development. Material and Methods We use antisense, morpholino-modified oligomers to transiently knockdown tif2 gene, thus determining whether TIF2 plays a role in zebrafish early development. Results We show that tif2 is involved in embryogenesis and in primi…

Cancer ResearchMorpholinesEmbryonic DevelopmentIn situ hybridizationBiologyAngioblastSensitivity and SpecificityNuclear Receptor Coactivator 2Structure-Activity RelationshipNotochordGeneticsmedicineAnimalsRNA MessengerMolecular BiologyZebrafishZebrafishGeneticsMyelopoiesisGene knockdownMembrane GlycoproteinsEmbryogenesisMicrofilament ProteinsGene Expression Regulation DevelopmentalCell DifferentiationCell BiologyHematologyOligonucleotides Antisensebiology.organism_classificationCell biologymedicine.anatomical_structurePhenotypeFLI1Models AnimalRNAMyelopoiesisExperimental hematology
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Engraftment of low numbers of pediatric acute lymphoid and myeloid leukemias into NOD/SCID/IL2Rcγnull mice reflects individual leukemogenecity and hi…

2013

Although immortalized cell lines have been extensively used to optimize treatment strategies in cancer, the usefulness of such in vitro systems to recapitulate primary disease is limited. Therefore, the design of in vivo models ideally utilizing patient-derived material is of critical importance. In this regard, NOD.Cg-Prkdc(scid) IL2rg(tmWjl) /Sz (NSG) mice have been reported to provide superior engraftment rates. However, limited data exist on the validity of such a model to constitute a surrogate marker for clinical parameters. We studied primary and serial engraftment on more than 200 NSG mice with 54 primary pediatric B cell precursor acute lymphatic leukemia (B-ALL), myeloid leukemia …

Cancer ResearchMyeloidmedicine.diagnostic_testT-cell leukemiaCancerMyeloid leukemiaBiologymedicine.diseaseMinimal residual diseasemedicine.anatomical_structureImmunophenotypingOncologyImmunologymedicineB cellFluorescence in situ hybridizationInternational Journal of Cancer
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Chimeric amplicons containing the c-myc gene in HL60 cells

1998

The major amplicon present in HL60 cells is chimeric in nature being composed of 70 kb of DNA sequence derived from the MYC locus linked to 80 kb of novel DNA sequence derived from a non contiguous region located telomeric to the c-myc gene at 8q24 (Feo et al., 1996). Here we show by fluorescence in situ hybridization (FISH) that these coamplified sequences, MCR (Myc Coamplified Region), are derived from a locus located 3-4 Mb telomeric to the c-myc gene in the q24.2-24.3 region of chromosome 8. Genomic cloning and Southern blot analysis indicate the arrangement of chimeric amplicons are in tandem arrays. Analysis of the DNA sequences at the juncture of the MYC locus and the MCR suggest tha…

Cancer ResearchOncogene Proteins FusionInverted repeatMolecular Sequence DataGenes mycHL-60 CellsLocus (genetics)BiologyMolecular cloningDNA sequencingLeukemia Promyelocytic AcuteGene mappingGeneticsHumansCloning MolecularMolecular BiologyGeneIn Situ Hybridization FluorescenceSouthern blotChromosome AberrationsRecombination GeneticGeneticsBase SequenceChromosome FragilityGene AmplificationSequence Analysis DNAAmpliconMolecular biologyBlotting SouthernChromosomes Human Pair 8Oncogene
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Evaluation of genetic stability of the SYT gene rearrangement by break-apart FISH in primary and xenotransplanted synovial sarcomas

2006

Synovial sarcomas (SS) are infrequent and morphologically heterogeneous soft tissue sarcomas. The t(X;18)(p11.2;q11.2), which results in fusion of the SYT gene at 18q11 with the SSX1, SSX2, or (rarely) SSX4 gene is a primary genetic event in 90% of SS. To determine whether the t(X;18) present in the original tumor is maintained in its passages, a dual-color break-apart FISH assay for SYT gene disruption was performed in two tissue microarrays (TMA) comprising eight molecularly confirmed primary SSs and their xenografts, which were followed for several generations. A simplified scoring system was applied to the FISH results of the primary and xenotransplanted SS to classify the FISH data int…

Cancer ResearchOncogene Proteins FusionXenotransplantationmedicine.medical_treatmentTransplantation HeterologousChromosomal translocationIn situ hybridizationBiologyTranslocation GeneticSarcoma SynovialProto-Oncogene ProteinsGeneticsmedicineAnimalsHumansMolecular BiologyGeneIn Situ Hybridization FluorescenceGene RearrangementGeneticsChromosomes Human XTissue microarrayGene rearrangementmedicine.diseaseMolecular biologyRepressor ProteinsTransplantationTissue Array AnalysisSarcomaChromosomes Human Pair 18Cancer Genetics and Cytogenetics
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Frequent deletion ofCDKN2Aand recurrent coamplification ofKIT,PDGFRA, andKDRin fibrosarcoma of bone-An array comparative genomic hybridization study

2009

Very little is known about the genetics of fibrosarcoma (FS) of bone. We applied array comparative genomic hybridization (CGH) to identify genes and genomic regions with potential role in the pathogenesis of this tumor. Seventeen patients with FS of bone were included in the study. Array CGH analysis was carried out in 13 fresh frozen tissue specimens from 11 of these patients (nine primary tumors and four local recurrences). DNA was extracted and hybridizations were performed on Agilent 244K CGH oligoarrays. The data were analyzed using Agilent DNA Analytics Software. The number of changes per patient ranged from 0 to 132 (average = 43). Losses were most commonly detected at 6q, 8p, 9p, 10…

Cancer ResearchPDGFRBPDGFRABiologymedicine.diseaseCHD1LCDKN2AGene duplicationDNA methylationGeneticsmedicineCancer researchFibrosarcomaComparative genomic hybridizationGenes, Chromosomes and Cancer
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