Search results for "sequence deletion"

showing 10 items of 107 documents

Mosaic particles formed by wild-type hepatitis B virus core protein and its deletion variants consist of both homo- and heterodimers.

2003

AbstractCo-expression in Escherichia coli of wild-type (wt) hepatitis B virus core protein (HBc) and its naturally occurring variants with deletions at amino acid positions 77–93 or 86–93 leads to formation of mosaic particles, which consist of three dimer subunit compositions. These compositions are wt/variant HBc heterodimers and two types of homodimers, formed by wt HBc or the variant HBc themselves. Mosaic particles were found also when both HBc deletion variants 77–93 and 86–93 were co-expressed in E. coli. These findings are discussed in terms of their significance for hepatitis B virus pathogenesis and prospective use of mosaic particles in vaccine development.

Hepatitis B virusvirusesProtein subunitDimerBiophysicsExpressionPlasma protein bindingBiologymedicine.disease_causeMosaic particlesBiochemistrychemistry.chemical_compoundHepatitis B virus core proteinProtein structureStructural Biologyparasitic diseasesGeneticsmedicineHepatitis B VaccinesCloning MolecularProtein Structure QuaternaryMolecular BiologyEscherichia coliSequence Deletionchemistry.chemical_classificationHepatitis B virusViral Core ProteinsWild typevirus diseasesGenetic VariationCell BiologyHepatitis BDimer formationVirologyMolecular biologydigestive system diseasesAmino acidProtein SubunitschemistryDimerizationProtein BindingFEBS letters
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Loss of heterozygosity at the short arm of chromosome 3 in renal‐cell cancer correlates with the cytological tumour type

1993

A majority of renal-cell tumours retain heterozygosity at the short arm of chromosome 3. To investigate possible histopathological differences between tumours with and without such losses, we compared loss of heterozygosity data from 51 tumours with 1 histological and 2 different cytological classifications of renal-cell tumour. Using the cytological classification of Thoenes et al., we only found tumours with loss of heterozygosity in these authors' clear-cell category. Possibly, only these tumours arise by a mechanism of double loss of a tumour-suppressor gene on 3p, non-clear-cell renal tumours having a different genetic background. Alternatively, deletions may occur in all subtypes, in …

HeterozygoteCancer Researchmedicine.medical_specialtyPathologyMitotic crossoverCARCINOMAChromosome DisordersBiologyMOLECULAR ANALYSISLoss of heterozygosityGene duplicationmedicineHumansCarcinoma Renal CellSequence DeletionChromosome AberrationsDELETIONBreakpointCytogeneticsChromosomeCYTOGENETICSKidney NeoplasmsOncologyChromosome 3Clear cell carcinomaChromosomes Human Pair 3Polymorphism Restriction Fragment LengthInternational Journal of Cancer
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The Drosophila ACP65A cuticle gene: deletion scanning analysis of cis-regulatory sequences and regulation by DHR38

2005

1526-954X (Print) Journal Article Research Support, Non-U.S. Gov't; The regulatory sequences of the Drosophila ACP65A cuticle gene were analyzed in vivo in transgenic flies, using both fusion genes constructs and transposase-mediated deletions within a P element containing ACP65A regulatory sequences fused to the lacZ gene (deletion scanning). The sequences located between -594 and +161 are sufficient to confer both temporal and spatial expression specificities, indicating the presence of tissue-specific enhancers and response elements to hormone-induced factors. In addition, timing of expression and tissue-specificity appear to be controlled by distinct cis-regulatory elements, which sugge…

Insect Proteins/*genetics/metabolismMaleBase SequenceGene Expression Regulation/*physiologyTranscription Factors/*physiologyGenetically ModifiedCytoplasmic and Nuclear/*physiologyCrossesDrosophila/*geneticsGeneticDrosophila Proteins/*genetics/metabolism/physiologyDNA-Binding Proteins/*physiologyPupa/geneticsReceptorsAnimalsFemaleSteroid/physiologyTranscriptionSequence Deletion
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A region on human chromosome 4 (q35.1→qter) induces senescence in cell hybrids and is involved in cervical carcinogenesis

2005

Human papillomavirus (HPV) types 16 and 18 are known to play a major role in cervical carcinogenesis. Additional genetic alterations are required for the development and progression of cervical cancer. Previously, we showed that the introduction of an entire human chromosome 4 into HPV-immortalized cells by microcell-mediated chromosome transfer (MMCT) can induce senescence in cell hybrids. In the present study, we established eight new murine donor cell lines harboring different fragments of the human chromosome 4. These were tested for their ability to induce senescence by MMCT into HPV16-immortalized keratinocytes (HPK II) and cervical carcinoma cells (HeLa). By exclusion, we could ident…

KeratinocytesSenescenceCancer ResearchChromosome TransferUterine Cervical NeoplasmsLocus (genetics)Hybrid CellsBiologyPolymerase Chain ReactionLoss of heterozygosityGeneticsmedicineHumansAlleleCellular SenescenceIn Situ Hybridization FluorescenceSequence DeletionChromosome AberrationsCervical cancermedicine.diagnostic_testChromosome Mappingmedicine.diseaseMolecular biologyChromosome 4FemaleChromosomes Human Pair 4Microsatellite RepeatsFluorescence in situ hybridizationGenes, Chromosomes and Cancer
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A new family with an SLC9A6 mutation expanding the phenotypic spectrum of Christianson syndrome

2016

Using targeted next generation sequencing, we have identified a splicing mutation (c.526-9_526-5del) in the SLC9A6 gene in a 9-year-old boy with mild intellectual disability (ID), microcephaly, and social interaction disabilities. This intronic microdeletion leads to the skipping of exon 3 and to an in-frame deletion of 26 amino acids in the TM4 domain. It segregates with cognitive impairment or learning difficulties in other members of the family. Mutations in SLC9A6 have been reported in X-linked Christianson syndrome associating severe to profound intellectual deficiency and an Angelman-like phenotype with microcephaly, absent speech, ataxia with progressive cerebellar atrophy, ophthalmo…

Male0301 basic medicineProbandMicrocephalyDNA Mutational Analysisx-chromosome inactivationSLC9A6Gene mutationexchangerEpilepsyOcular Motility Disorders0302 clinical medicineangelman-syndromeX Chromosome InactivationIntellectual disabilitymicrocephalyChild10. No inequalityGenetics (clinical)Sequence DeletionGeneticsBrainGenetic Diseases X-LinkedtoolMagnetic Resonance ImagingPedigree3. Good healthPhenotypeFemaleCerebellar atrophyChristianson syndromemedicine.symptomAdultHeterozygoteSodium-Hydrogen ExchangersAtaxiaAdolescentlearning disabilities linked mental-retardation03 medical and health sciencescerebellar atrophyIntellectual Disability[ SDV.MHEP ] Life Sciences [q-bio]/Human health and pathologyAngelman syndromeGeneticsmedicineHumansFamilygeneGenetic Association Studiesbusiness.industryFaciesmedicine.disease030104 developmental biologysplicing signalsMutationepilepsyAtaxiaRNA Splice Sitesbusiness030217 neurology & neurosurgery[SDV.MHEP]Life Sciences [q-bio]/Human health and pathology
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Effects of Presynaptic Mutations on a Postsynaptic Cacna1s Calcium Channel Colocalized with mGluR6 at Mouse Photoreceptor Ribbon Synapses

2008

Purpose Photoreceptor ribbon synapses translate light-dependent changes of membrane potential into graded transmitter release via L-type voltage-dependent calcium channel (VDCC) activity. Functional abnormalities (e.g., a reduced electroretinogram b-wave), arising from mutations of presynaptic proteins, such as Bassoon and the VDCCalpha1 subunit Cacna1f, have been shown to altered transmitter release. L-type VDCCalpha1 subtype expression in wild-type and mutant mice was examined, to investigate the underlying pathologic mechanism. Methods Two antisera against Cacna1f, and a Cacna1f mouse mutant (Cacna1fDeltaEx14-17) were generated. Immunocytochemistry for L-type VDCCalpha1 subunits and addi…

MaleCalcium Channels L-TypeBlotting WesternPresynaptic TerminalsRibbon synapseBiologyReceptors Metabotropic GlutamateSynaptic TransmissionEpitopesMicePostsynaptic potentialAnimalsCalcium SignalingActive zoneFluorescent Antibody Technique IndirectMicroscopy ImmunoelectronSequence DeletionMembrane potentialSheepVoltage-dependent calcium channelReverse Transcriptase Polymerase Chain ReactionCalcium channelMetabotropic glutamate receptor 6ColocalizationAnatomyBlotting NorthernMice Mutant StrainsPeptide FragmentsCell biologyMice Inbred C57BLFemaleCalcium ChannelsRabbitssense organsPhotoreceptor Cells VertebrateInvestigative Opthalmology & Visual Science
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Is BRCA1-5083del19, identified in breast cancer patients of Sicilian origin, a Calabrian founder mutation?

2007

Various studies have been published in Italy regarding the different BRCA1 mutations, but only the BRCA1-5083del19 mutation is recurrent and specific to individuals of Italian descent with a founder effect on the Calabrian population. In our previous study, BRCA1-5083del19 mutation carriers were found in four index cases of 106 Sicilian patients selected for familial and/or hereditary breast/ovarian cancers. The high frequency rate of this mutation identified in the Sicilian population led us to perform haplotype analysis in all family carriers. Five highly polymorphic microsatellite markers were used (D17S1320, D17S932, D17S1323, D17S1326, D17S1325) to establish whether or not all these fa…

MaleCancer ResearchSettore MED/06 - Oncologia MedicaPopulationBRCA1 breast cancerBreast NeoplasmsBiologyRisk AssessmentAllelotype AnalysisReference ValuesHumansAlleleeducationSicilySequence DeletionOvarian NeoplasmsGeneticseducation.field_of_studyBRCA1 ProteinHaplotypeFounder Effectlanguage.human_languagePedigreeOncologyMutationMutation (genetic algorithm)languageMicrosatelliteFemaleSicilianMicrosatellite RepeatsFounder effect
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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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X-linked primary ciliary dyskinesia due to mutations in the cytoplasmic axonemal dynein assembly factor PIH1D3

2017

By moving essential body fluids and molecules, motile cilia and flagella govern respiratory mucociliary clearance, laterality determination and the transport of gametes and cerebrospinal fluid. Primary ciliary dyskinesia (PCD) is an autosomal recessive disorder frequently caused by non-assembly of dynein arm motors into cilia and flagella axonemes. Before their import into cilia and flagella, multi-subunit axonemal dynein arms are thought to be stabilized and pre-assembled in the cytoplasm through a DNAAF2–DNAAF4–HSP90 complex akin to the HSP90 co-chaperone R2TP complex. Here, we demonstrate that large genomic deletions as well as point mutations involving PIH1D3 are responsible for an X-li…

MaleCytoplasmProtein FoldingAxoneme[SDV]Life Sciences [q-bio][SDV.GEN] Life Sciences [q-bio]/Genetics[SDV.MHEP.PSR]Life Sciences [q-bio]/Human health and pathology/Pulmonology and respiratory tractouterGenes X-LinkedChilddefectsPhylogenyZebrafisharmsSequence DeletionvariantsIntracellular Signaling Peptides and ProteinsGenetic Diseases X-LinkedPedigreeMultidisciplinary Sciences[SDV] Life Sciences [q-bio]motilityChild PreschoolMicrotubule ProteinsSperm MotilityScience & Technology - Other TopicsFemaleAdultAdolescentinnerUK10K Rare Groupr2tp complexof-function mutationsArticleMicroscopy Electron TransmissionMD MultidisciplinaryExome SequencingAnimalsHumansPoint MutationCiliaHSP90 Heat-Shock Proteins[SDV.GEN]Life Sciences [q-bio]/GeneticsScience & TechnologyKartagener SyndromeInfant NewbornAxonemal DyneinsDisease Models AnimalHEK293 Cells[SDV.MHEP.PSR] Life Sciences [q-bio]/Human health and pathology/Pulmonology and respiratory tractidentifies mutationsproteinApoptosis Regulatory ProteinsSequence AlignmentMolecular ChaperonesNature Communications
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