Search results for "Hybridization"

showing 10 items of 812 documents

Cellular localization of mGluR3 and mGluR5 mRNAs in normal and injured rat brain

2007

Abstract In order to understand the role of metabotropic glutamate receptors (mGluRs) in the brain, it is important to know how the mGluRs are differentially expressed among the different cell types. At present, the cellular expression of mGluR3 and mGluR5 has been mostly studied in terms of proteins with observations suggesting the expression of both mGluR3 and mGluR5 in neuronal and in glial cells. In order to verify the brain cell type-expressing mGluR3 and mGluR5 mRNAs, both in normal and injured brain, we performed a double labeling analysis, by in situ hybridization for mGluR3 or mGluR5 mRNA and immunohistochemistry for specific cellular markers. This approach allowed us to find mGluR…

MaleCell typeReceptor Metabotropic Glutamate 5In situ hybridizationHippocampal formationBiologyReceptors Metabotropic GlutamateSettore BIO/09 - Fisiologiamental disordersmedicineAnimalsRNA MessengerRats WistarMolecular BiologyCellular localizationIn Situ HybridizationNeuronsGeneral NeuroscienceGlutamate receptorBrainImmunohistochemistryOligodendrocyteCell biologyRatsmedicine.anatomical_structurenervous systemBrain InjuriesNeurogliaNeurology (clinical)NeuroscienceNeurogliaDevelopmental BiologyAstrocyte
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Expression of connexin36 in the adult and developing rat brain.

2000

The distribution of connexin36 (Cx36) in the adult rat brain and retina has been analysed at the protein (immunofluorescence) and mRNA (in situ hybridization) level. Cx36 immunoreactivity, consisting primarily of round or elongated puncta, is highly enriched in specific brain regions (inferior olive and the olfactory bulb), in the retina, in the anterior pituitary and in the pineal gland, in agreement with the high levels of Cx36 mRNA in the same regions. A lower density of immunoreactive puncta can be observed in several brain regions, where only scattered subpopulations of cells express Cx36 mRNA. By combining in situ hybridization for Cx36 mRNA with immunohistochemistry for a general neu…

MaleCerebellumPathologymedicine.medical_specialtygenetic structuresHippocampusIn situ hybridizationBiologyPineal GlandConnexinsmedicineAnimalsRNA MessengerEye ProteinsMolecular BiologyNeuronsBrain MappingGeneral NeuroscienceAge FactorsBrainGap JunctionsNuclear ProteinsImmunohistochemistryOlfactory bulbCell biologyRatsmedicine.anatomical_structureParvalbuminsnervous systemAnimals NewbornCerebral cortexCerebellar cortexPituitary Glandbiology.proteinsense organsNeurology (clinical)NeuronNeuNBiomarkersDevelopmental BiologyBrain research
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Deletion mapping on chromosome 10p and definition of a critical region for the second DiGeorge syndrome locus (DGS2)

1998

DiGeorge syndrome (DGS) is a developmental field defect, characterised by absent/hypoplastic thymus and parathyroid, and conotruncal heart defects, with haploinsufficiency loci at 22q (DGS1) and 10p (DGS2). We performed fluorescence in situ hybridisations (FISH) and polymerase chain reaction (PCR) analyses in 12 patients with 10p deletions, nine of them with features of DGS, and in a familial translocation 10p;14q associated with midline defects. The critical DGS2 region is defined by two DGS patients, and maps within a 1 cM interval including D10S547 and D10S585. The other seven DGS patients are hemizygous for both loci. The breakpoint of the reciprocal translocation 10p;14q maps at a dist…

MaleChromosomal translocationLocus (genetics)BiologyPolymerase Chain ReactionTranslocation Geneticlaw.inventionPtosislawDiGeorge syndromeDiGeorge SyndromeGeneticsmedicineHumansDeletion mappingIn Situ HybridizationGenetics (clinical)Polymerase chain reactionCell Line TransformedSequence DeletionGeneticsChromosomes Human Pair 10BreakpointInfant NewbornChromosome MappingInfantmedicine.diseaseFemalemedicine.symptomHaploinsufficiencyEuropean Journal of Human Genetics
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Mantle-cell lymphoma genotypes identified with CGH to BAC microarrays define a leukemic subgroup of disease and predict patient outcome

2005

To identify recurrent genomic changes in mantle cell lymphoma (MCL), we used high-resolution comparative genomic hybridization (CGH) to bacterial artificial chromosome (BAC) microarrays in 68 patients and 9 MCL-derived cell lines. Array CGH defined an MCL genomic signature distinct from other B-cell lymphomas, including deletions of 1p21 and 11q22.3-ATM gene with coincident 10p12-BMI1 gene amplification and 10p14 deletion, along with a previously unidentified loss within 9q21-q22. Specific genomic alterations were associated with different subgroups of disease. Notably, 11 patients with leukemic MCL showed a different genomic profile than nodal cases, including 8p21.3 deletion at tumor necr…

MaleChromosomes Artificial BacterialGenotypeImmunologyLocus (genetics)Lymphoma Mantle-CellBiologyBiochemistryGene duplicationmedicineHumansAgedOligonucleotide Array Sequence AnalysisSequence DeletionAged 80 and overGeneticsLeukemiaGene Expression ProfilingGenomic signatureGenomicsCell BiologyHematologyMiddle Agedmedicine.diseaseLymphomaSurvival RateGene expression profilingTreatment OutcomeGenomic ProfileCancer researchFemaleMantle cell lymphomaComparative genomic hybridizationBlood
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10qter deletion: A new case

2008

Vertebrate telomeres consist of tandem repeats of the TTAGGG sequence that cap the ends of chromosomes, protecting them from degradation and fusion. Extensive evidence has shown that telomere shortening and erosion lead lo chromo¬some end-to-end fusions and genomic instability, causing mental retardation and/or malformation syndromes. So far, over 19,000 patients with mental retardation have been tested and reported of whom -2.5% appeared to have a subtelomeric rearrange¬ment [Ravnan et al., 2006; Ballif et al., 2007; Ledbetter and Martin, 2007]. Since the identification of sub¬microscopic subtelomeric rearrangements as a major cause of mental retardation [Flint et al., 1995], testing for s…

MaleChromosomes Human Pair 1010qter deletionDevelopmental DisabilitiesBiologyCraniofacial AbnormalitiesMonosomySettore MED/38 - Pediatria Generale E SpecialisticaChild PreschoolGeneticsHumansAbnormalities MultipleChromosome DeletionIn Situ Hybridization FluorescenceGenetics (clinical)Oligonucleotide Array Sequence Analysis
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The first case of myoclonic epilepsy in a child with a de novo 22q11.2 microduplication

2011

Chromosome 22, particularly the q11.2 sub-band, has long been recognized as responsible for multiple congenital anomaly disorders. In particular, its susceptibility to subtle microdeletions or, more rarely, microduplications has been attributed to the presence of several low-copy repeats spanning the region as mediators of nonallelic homologous recombination that result in 22q11.2 rearrangements. While recent data suggest that the frequency of 22q11.2 microduplications could be approximately half of all deletions, now only 50 unrelated cases have been reported thus far. However, it is reasonable to suppose that microduplications of 22q11.2 may be largely undetected as a result of a less-dis…

MaleChromosomes Human Pair 22Non-allelic homologous recombinationEpilepsies MyoclonicMultiple congenital anomalyBiologyRAB36 genemyoclonic epilepsySettore MED/38 - Pediatria Generale E SpecialisticaChromosome DuplicationGene duplicationClinical heterogeneityGeneticsmedicineHumansChildIn Situ Hybridization FluorescenceGenetics (clinical)GeneticsComparative Genomic HybridizationFaciesmedicine.diseaseMild learning difficultiesdevelopmental delayPhenotypeSettore MED/03 - Genetica MedicaChild PreschoolMyoclonic epilepsynonallelic homologous recombinationChromosome 2222q11.2 microduplicationComparative genomic hybridizationAmerican Journal of Medical Genetics Part A
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Laboratory investigations in genetic syndromes: examples of clinical approach in the neonatal unit.

2010

Contiguous gene deletion syndromes: the importance of an accurate genetic definition for a careful clinical monitoring. Contiguous gene deletion syndromes are so named because the deletion manifests as a distinctive cluster of otherwise unrelated single-gene disorders in the same subject. An accurate genetic definition of the deleted region is extremely important for the appropriate management of these patients and for unravelling the function of the involved genes. The microarray-based comparative genomic hybridization (CGH arrays) analysis is the actual molecular method able to accurately define the bounds of a deleted region, since it allows an evaluation of DNA copy number alterations a…

MaleComparative Genomic Hybridizationgenetic syndrome neonategenetic syndromesDisorders of Sex DevelopmentGene DosageGenetic Diseases InbornInfant NewbornLaboratories HospitalEarly DiagnosisPhenotypeSettore MED/38 - Pediatria Generale E SpecialisticaIntensive Care Units NeonatalIntensive Care NeonatalChromosomes HumanHumansFemaleGenetic TestingGene Deletion
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Sexual selection drives asymmetric introgression in wall lizards.

2015

Hybridisation is increasingly recognised as an important cause of diversification and adaptation. Here, we show how divergence in male secondary sexual characters between two lineages of the common wall lizard (Podarcis muralis) gives rise to strong asymmetries in male competitive ability and mating success, resulting in asymmetric hybridisation upon secondary contact. Combined with no negative effects of hybridisation on survival or reproductive characters in F1-hybrids, these results suggest that introgression should be asymmetric, resulting in the displacement of sexual characters of the sub-dominant lineage. This prediction was confirmed in two types of secondary contact, across a natur…

MaleCompetitive BehaviorLineage (evolution)introgressionIntrogressionBiologymale-male competitionbiology.animalGermanyhybridisationAnimalsFemale choicefemale choiceMatingSelection GeneticEcology Evolution Behavior and SystematicsEcologyLizardmale–male competitionLizardsMating Preference Animalbiology.organism_classificationlizardsPodarcis muralisFemale choice hybridisation introgression lizards male–male competitionMate choiceItalySexual selectionHybridization GeneticFemaleFranceAdaptationEcology letters
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Additional evidence to support the role of the 20q13.33 region in susceptibility to autism

2012

MaleDNA Copy Number VariationsGenotypeChromosomes Human Pair 20MEDLINEReceptors NicotinicBiologyText miningKCNQ2 Potassium ChannelGenotypeGeneticsmedicineHumansKCNQ2 Potassium ChannelGenetic Predisposition to DiseaseAutistic DisorderChildGenetics (clinical)GeneticsComparative Genomic Hybridizationbusiness.industrymedicine.diseaseAutismChromosome DeletionbusinessComparative genomic hybridizationAmerican Journal of Medical Genetics Part A
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Molecular characterization of Lma-p54, a new epicuticular surface protein in the cockroach Leucophaea maderae (Dictyoptera, oxyhaloinae)

2002

0965-1748 (Print) Journal Article Research Support, Non-U.S. Gov't; The epicuticular surface protein Lma-p54 is imbedded in the "cuticular waxes" which cover the abdominal surface of the adult Leucophaea maderae. Natural Lma-p54 was purified and the complete cDNA sequence was determined by RT-PCR using primers based on Edman degradation fragments. Northern blot and in situ hybridization analyses showed that Lma-p54 was expressed in the adult abdominal epidermis and in the chemical sense organs of both sexes. Sequence alignment indicates that Lma-p54 is closely related to aspartic proteases (EC 3.4.23). However, there are critical amino acid substitutions at the level of the active site and,…

MaleDNA ComplementaryMolecular Sequence DataSequence HomologyCockroachesSequence alignmentRecombinant Proteins/chemistryComplementary/geneticsBiochemistryPolymerase Chain ReactionCockroaches/*genetics/growth & developmentComplementary DNAAspartic Endopeptidases/*geneticsAspartic Acid EndopeptidasesAnimalsGlycoproteins/*geneticsNorthern blotAmino Acid SequenceMolecular BiologyPeptide sequenceIn Situ HybridizationGlycoproteinschemistry.chemical_classificationSequence Homology Amino AcidbiologyEdman degradationBase SequenceDictyopteraDNAbiology.organism_classificationMolecular biologyRecombinant ProteinsAmino acidInsect Proteins/*geneticsAmino AcidBiochemistrychemistryInsect ScienceLarvaInsect ProteinsFemaleGlycoproteinSequence Alignment
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