Search results for "Chromosome 19"

showing 4 items of 4 documents

Familial hemiplegic migraine type 2 is linked to 0.9Mb region on chromosome 1q23

2003

Familial hemiplegic migraine (FHM) is a rare autosomal dominant disorder characterized by episodes of transient hemiparesis followed by headache. Two chromosomal loci are associated to FHM: FHM1 on chromosome 19 and FHM2 on chromosome 1q21-23. Mutations of the alpha-1A subunit of the voltage gated calcium channel (CACNA1A) are responsible for FHM1. FHM2 critical region spans 28 cM, hence hampering the identification of the responsible gene. Here, we report the FHM2 locus refining by linkage analysis on two large Italian families affected by pure FHM. The new critical region covers a small area of 0.9Mb in 1q23 and renders feasible a positional candidate approach. By mutation analysis, we ex…

AdultMaleAdolescentGenetic LinkageMigraine with AuraLocus (genetics)Genetic determinismGenetic linkageATP1A2Chromosome 19HumansMedicineChildFamilial hemiplegic migraineAgedAged 80 and overGeneticsbusiness.industryChromosome MappingChromosomeMiddle Agedmedicine.diseasePedigreeNeurologyChromosomes Human Pair 1MutationMutation testingFemaleNeurology (clinical)Lod ScorebusinessNeuroscienceAnnals of Neurology
researchProduct

Functional impact and evolution of a novel human polymorphic inversion that disrupts a gene and creates a fusion transcript

2015

Despite many years of study into inversions, very little is known about their functional consequences, especially in humans. A common hypothesis is that the selective value of inversions stems in part from their effects on nearby genes, although evidence of this in natural populations is almost nonexistent. Here we present a global analysis of a new 415-kb polymorphic inversion that is among the longest ones found in humans and is the first with clear position effects. This inversion is located in chromosome 19 and has been generated by non-homologous end joining between blocks of transposable elements with low identity. PCR genotyping in 541 individuals from eight different human populatio…

Cancer ResearchDNA End-Joining Repairlcsh:QH426-470GenotypeChromosome inversionPopulationChromosome BreakpointsBiologyChromosome breakpointsGenoma humàPolymorphism Single NucleotideEvolution MolecularChromosome Breakpoints03 medical and health sciences0302 clinical medicinePolymorphism Single nucleotideChromosome 19DNA end-joining repairGeneticsTranscription factorsHumansAlleleeducationMolecular BiologyGeneGenetics (clinical)Ecology Evolution Behavior and Systematics030304 developmental biologyChromosomal inversionGeneticsGene expression regulation0303 health scienceseducation.field_of_studyGenètica de poblacionsHaplotypelcsh:GeneticsDNA transposable elementsGenetics PopulationGene Expression RegulationFusion transcriptChromosome InversionDNA Transposable ElementsChromosomes Human Pair 19030217 neurology & neurosurgeryResearch ArticleTranscription Factors
researchProduct

Genomic structure and paralogous regions of the inversion breakpoint occurring between human chromosome 3p12.3 and orangutan chromosome 2.

2003

Intrachromosomal duplications play a significant role in human genome pathology and evolution. To better understand the molecular basis of evolutionary chromosome rearrangements, we performed molecular cytogenetic and sequence analyses of the breakpoint region that distinguishes human chromosome 3p12.3 and orangutan chromosome 2. FISH with region-specific BAC clones demonstrated that the breakpoint-flanking sequences are duplicated intrachromosomally on orangutan 2 and human 3q21 as well as at many pericentromeric and subtelomeric sites throughout the genomes. Breakage and rearrangement of the human 3p12.3-homologous region in the orangutan lineage were associated with a partial loss of dup…

Genome evolutionHerpesvirus 4 HumanPan troglodytesBiologyHybrid CellsChimpanzee genome projectEvolution MolecularContig MappingChromosome 19Pongo pygmaeusGeneticsAnimalsHumansLymphocytesMolecular BiologyGenetics (clinical)In Situ Hybridization FluorescenceChromosomal inversionCell Line TransformedSequence DeletionGeneticsHuman evolutionary geneticsCercopithecidaeChromosome BreakageGenome projectChromosomes MammalianChromosome InversionChromosomes Human Pair 3Chromosome breakageChromosome 21Cytogenetic and genome research
researchProduct

Array-CGH and clinical characterization in a patient with subtelomeric 6p deletion without ocular dysgenesis

2011

Subtelomeric terminal 6p deletion has been recognized as a clinically identifiable syndrome including facial dysmorphism, malformation of the anterior eye chamber, hearing loss, heart defect and developmental delay. Genotype –phenotype correlations of previously published patients have been strongly suggested anterior eye segment anomalies as one of major malformation of the syndrome if the critical 6p25 region containing the FOXC 1 gene. In addition it has been hypothesized the presence in this region of one or more genes involved in hearing loss. We report on a case of terminal 6p deletion in a 47, XYY karyotype. Further characterization of the deletion with array comparative genome hybri…

Heart Defects CongenitalMaleHearing lossDevelopmental DisabilitiesKaryotypeBiologyEyeDysgenesisSettore MED/38 - Pediatria Generale E SpecialisticaChromosome 19GeneticsmedicineHumansarray-CGH.Eye AbnormalitiesGeneGenetics (clinical)Genetic Association StudiesIn Situ Hybridization FluorescenceGeneticsComparative Genomic Hybridizationeye abnormalitieInfantKaryotypeForkhead Transcription Factorshearing loSubtelomereAnterior Eye SegmentSettore MED/03 - Genetica MedicaChromosomes Human Pair 6FOXC1medicine.symptomChromosome Deletionchromosome 6p deletionComparative genomic hybridization
researchProduct