Search results for "sequence deletion"

showing 10 items of 107 documents

Contribution of Large Genomic Rearrangements in Italian Lynch Syndrome Patients: Characterization of a Novel Alu-Mediated Deletion

2012

Lynch syndrome is associated with germ-line mutations in the DNA mismatch repair (MMR) genes, mainlyMLH1andMSH2. Most of the mutations reported in these genes to date are point mutations, small deletions, and insertions. Large genomic rearrangements in the MMR genes predisposing to Lynch syndrome also occur, but the frequency varies depending on the population studied on average from 5 to 20%. The aim of this study was to examine the contribution of large rearrangements in theMLH1andMSH2genes in a well-characterised series of 63 unrelated Southern Italian Lynch syndrome patients who were negative for pathogenic point mutations in theMLH1,MSH2, andMSH6genes. We identified a large novel delet…

Malecongenital hereditary and neonatal diseases and abnormalitiesgenomic rearragementArticle SubjectPopulationlcsh:MedicineSettore BIO/11 - Biologia MolecolareBiologyMLH1General Biochemistry Genetics and Molecular Biologynovel Alu-mediated deletionAlu ElementsmedicineHumanseducationneoplasmsAdaptor Proteins Signal TransducingSequence DeletionGene RearrangementGeneticseducation.field_of_studyGeneral Immunology and MicrobiologyPoint mutationlcsh:RNuclear ProteinsLynch syndrome; genomic rearragements; novel Alu-mediated deletionnutritional and metabolic diseasesGeneral MedicineGene rearrangementmedicine.diseaseColorectal Neoplasms Hereditary NonpolyposisMolecular biologyLynch syndromedigestive system diseasesDNA-Binding ProteinsMSH6Settore MED/18 - Chirurgia GeneraleLynch syndromeMutS Homolog 2 ProteinItalyMSH2FemaleDNA mismatch repairMutL Protein Homolog 1Research ArticleBioMed Research International
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Germline deletion of Cetn1 causes infertility in male mice

2013

Centrins are calmodulin-like Ca2+-binding proteins that can be found in all ciliated eukaryotic cells from yeast to mammals. Expressed in male germ cells and photoreceptors, centrin 1 (CETN1) resides in the photoreceptor transition zone and connecting cilium. To identify its function in mammals, we deleted Cetn1 by homologous recombination. Cetn1−/− mice were viable and showed no sign of retina degeneration suggesting that CETN1 is nonessential for photoreceptor ciliogenesis or structural maintenance. Phototransduction components localized normally to the Cetn1−/− photoreceptor outer segments, and loss of CETN1 had no effect on light-induced translocation of transducin to the inner segment.…

Maleendocrine systemLight Signal TransductionCentrioleChromosomal Proteins Non-HistoneSpermiogenesisBiologyMice03 medical and health sciencesRetinal Rod Photoreceptor CellsCiliogenesismedicineAnimalsBasal bodyTransducinSpermatogenesisGerm-Line MutationInfertility MaleCentriolesSequence Deletion030304 developmental biologyMice KnockoutGenetics0303 health sciencesSpermatidCalcium-Binding ProteinsCell Cycle030302 biochemistry & molecular biologyCell DifferentiationCell BiologySpermatidsCell biologyMice Inbred C57BLmedicine.anatomical_structureCentrinFemalesense organsTransducinResearch ArticleVisual phototransductionJournal of Cell Science
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14q13.1-21.1 deletion encompassing the HPE8 locus in an adolescent with intellectual disability and bilateral microphthalmia, but without holoprosenc…

2011

Interstitial deletions involving 14q13.1q21.1 are rare. In the literature at least 10 cases involving this region have been described and all patients showed a phenotype within the holoprosencephaly (HPE) spectrum. Previous studies suggested the HPE8 region as a candidate locus for HPE at 14q13. We report an adolescent with a 14q13.1q21.1 deletion encompassing the HPE8 region associated with intellectual disability (ID), bilateral microphthalmia, and coloboma, without cerebral anomalies typical of HPE. Except for ocular defects (i.e., microphthalmia, coloboma) consistent with HPE-type anomalies, the minor facial dysmorphia was not suggestive for HPE and the absence of cerebral anomalies sho…

Malemusculoskeletal diseasescongenital hereditary and neonatal diseases and abnormalitiesCandidate geneAdolescentID/MCA deletion syndromeLocus (genetics)MicrophthalmiamicroformSettore MED/38 - Pediatria Generale E SpecialisticaHoloprosencephalyIntellectual DisabilityIntellectual disabilityGeneticsmedicineHumansMicrophthalmoschromosome 14q deletionIn Situ Hybridization FluorescenceGenetics (clinical)Sequence DeletionChromosomes Human Pair 14GeneticsComparative Genomic HybridizationColobomabiologybusiness.industryNPAS3Faciesmedicine.diseaseeye diseasesDevelopmental disorderPhenotypeholoprosencephalySettore MED/03 - Genetica MedicaGenetic Lociarray-CGHbiology.proteinbusinessAmerican Journal of Medical Genetics Part A
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Rubinstein–Taybi syndrome 2 with cerebellar abnormality and neural tube defect

2019

Rubinstein-Taybi syndrome (RSTS) is a rare dominant disorder with intellectual disability, postnatal growth deficiency, and multiple congenital anomalies. Approximately 50-70% of the patients have a mutation in the CREBBP gene (RSTS1) and 5-10% display an EP300 gene mutation (RSTS2). Craniospinal abnormalities such as microcranium, scoliosis, and lordosis are frequent findings in RSTS1, but malformations of the brain or spinal cord are seen only occasionally. Here, we report on a 3-year-old boy with facial abnormalities of RSTS, broad thumbs and halluces, developmental delay, autistic features, cerebellar underdevelopment, and a neural tube defect. Molecular diagnostic of the CREBBP and EP3…

Malespeech delayHeterozygoteCerebellumGenotypecerebellar abnormalityScoliosisGene mutationPathology and Forensic MedicineCerebellummedicinetethered cordHumansmicrocephalyGenetic TestingNeural Tube DefectsFrameshift MutationEP300Genetic Association StudiesGenetics (clinical)Sequence DeletionRubinstein-Taybi Syndromeautistic behaviorRubinstein–Taybi syndromeNeural tube defectGenome Humanbusiness.industryNeural tubeHigh-Throughput Nucleotide Sequencingstereotypic movementsvesicoureteral refluxOriginal Articleslumbosacral myeloceleExonsGeneral MedicineAnatomymedicine.diseaseSpinal cordCREB-Binding Proteinmedicine.anatomical_structuresyringohydromyeliaChild PreschoolMutationPediatrics Perinatology and Child Healthbroad thumbs and hallucesAnatomybusinessE1A-Associated p300 ProteinClinical Dysmorphology
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The evolutionary history of symbiotic associations among bacteria and their animal hosts: a model

2009

AbstractA model to explain the evolutionary history of animal-bacteria obligatory mutualistic symbiosis is presented. Dispensability of genes and genetic isolation are key factors in the reduction process of these bacterial genomes. Major steps in such genome reductive evolution, leading towards primary endoslmblosis, and the possibility of complementation or replacement by a secondary symbiont are also indicated. Yet, we need to understand what happens at the beginning of the adaptative process towards an obligate mutualistic relationship. For this purpose, we propose to sequence the complete genome of SOPE, the primary endosymbiont of the rice weevil.

Microbiology (medical)Bacterial genome sizeBiologyreplacementBacterial Physiological PhenomenaGenomeEvolution MolecularAnimalsgenome reductionSymbiosisGeneSequence DeletionGeneticsendosymbiosisComplementationBacteriaObligateEndosymbiosisGeneral Medicinebiology.organism_classificationSOPE (Sitophilus oryzae primary endorsement)ComplementationInfectious DiseasesWeevilsGenetic isolateGene DeletionGenome BacterialBacteriaClinical Microbiology and Infection
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Membrane Integration of Poliovirus 2B Viroporin

2011

Virus infections can result in a variety of cellular injuries, and these often involve the permeabilization of host membranes by viral proteins of the viroporin family. Prototypical viroporin 2B is responsible for the alterations in host cell membrane permeability that take place in enterovirus-infected cells. 2B protein can be localized at the endoplasmic reticulum (ER) and the Golgi complex, inducing membrane remodeling and the blockade of glycoprotein trafficking. These findings suggest that 2B has the potential to integrate into the ER membrane, but specific information regarding its biogenesis and mechanism of membrane insertion is lacking. Here, we report experimental results of in vi…

Models MolecularFarmacologiaVesicle-associated membrane protein 8MedicinaMolecular Sequence DataImmunologyPorinsViral Nonstructural ProteinsEndoplasmic ReticulumModels BiologicalMicrobiologyAmino acid sequencesymbols.namesakeMolecular sequence dataCricetinaeVirologyAnimalsAmino Acid SequenceIntegral membrane proteinCells CulturedSequence DeletionHost cell membranebiologyMembrane transport proteinEndoplasmic reticulumGolgi apparatusBiología y Biomedicina / BiologíaVirusVirus-Cell InteractionsCell biologyPoliovirusMembraneBiochemistryCytoplasmInsect Sciencesymbolsbiology.proteinJournal of Virology
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Trimeric HIV Env provides epitope occlusion mediated by hypervariable loops

2014

AbstractHypervariable loops of HIV-1 Env protein gp120 are speculated to play roles in the conformational transition of Env to the receptor binding-induced metastable state. Structural analysis of full-length Env-based immunogens, containing the entire V2 loop, displayed tighter association between gp120 subunits, resulting in a smaller trimeric diameter than constructs lacking V2. A prominent basal quaternary location of V2 and V3′ that challenges previous reports would facilitate gp41-independent gp120-gp120 interactions and suggests a quaternary mechanism of epitope occlusion facilitated by hypervariable loops. Deletion of V2 resulted in dramatic exposure of basal, membrane-proximal gp41…

Models MolecularProtein ConformationvirusesHuman immunodeficiency virus (HIV)[CHIM.THER]Chemical Sciences/Medicinal ChemistryPlasma protein bindingHIV Envelope Protein gp120medicine.disease_causeEnv ProteinEpitopeenv Gene ProductsEpitopesProtein structureModelsComputingMilieux_MISCELLANEOUSSequence DeletionGeneticsMultidisciplinary[SDV.BBM.BS]Life Sciences [q-bio]/Biochemistry Molecular Biology/Structural Biology [q-bio.BM]Transition (genetics)biologyenv Gene Products Human Immunodeficiency Virusvirus diseaseshypervariable loopsHIV Envelope Protein gp41[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biomolecules [q-bio.BM]3. Good health[SDV.BBM.BS]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biomolecules [q-bio.BM]CD4 AntigensHIV/AIDSAntibodyHuman Immunodeficiency VirusProtein BindingEnvGp41ArticleVaccine RelatedGenetics[CHIM.CRIS]Chemical Sciences/CristallographymedicineHumansProtein Interaction Domains and Motifs[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]AntigensVaccine Related (AIDS)Preventionta1182Molecular[SDV.IMM.IMM]Life Sciences [q-bio]/Immunology/ImmunotherapyCD4Peptide Fragmentsgp120Good Health and Well BeingHIV-1biology.proteinImmunizationProtein MultimerizationproteinScientific Reports
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Identification of novel mutations in the ABCA12 gene, c.1857delA and c.5653–5655delTAT, causing harlequin ichthyosis

2013

Abstract Harlequin ichthyosis (HI) is a severe autosomal recessive developmental disorder of the skin that is frequently but not always fatal in the first few days of life. In HI, mutations in both ABCA12 gene alleles must have a severe impact on protein function and most mutations are truncating. The presence of at least one nontruncating mutation (predicting a residual protein function) usually causes a less severe congenital ichthyosis (lamellar ichthyosis or congenital ichthyosiform erythroderma). Here we report on a girl with severe HI diagnosed by prenatal ultrasound at 33 5/7 week gestation. Ultrasound findings included ectropion, eclabium, deformed nose, hands and feet, joint contra…

Pathologymedicine.medical_specialtyCongenital ichthyosiform erythrodermaDNA Mutational AnalysisBiologyModels BiologicalPolymorphism Single NucleotideUltrasonography PrenatalExonFatal OutcomePregnancyCongenital ichthyosisGeneticsmedicineHumansABCA12Sequence DeletionGeneticsInfant NewbornEctropionGeneral MedicineLamellar ichthyosisHarlequin Ichthyosismedicine.diseaseEclabiumbiology.proteinATP-Binding Cassette TransportersFemalemedicine.symptomIchthyosis LamellarGene
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Exon deletions of the phenylalanine hydroxylase gene in Italian hyperphenylalaninemics

2009

A consistent finding of many studies describing the spectrum of mutant phenylalanine hydroxylase (PAH) alleles underlying hyperphenylalaninemia is the impossibility of achieving a 100% mutation ascertainment rate using conventional gene-scanning methods. These methods include denaturing gradient gel electrophoresis (DGGE), denaturing high performance liquid chromatography (DHPLC), and direct sequencing. In recent years, it has been shown that a significant proportion of undetermined alleles consist of large deletions overlapping one or more exons. These deletions have been difficult to detect in compound heterozygotes using gene-scanning methods due to a masking effect of the non-deleted al…

Phenylalanine hydroxylasePhenylketonuriasDNA Mutational AnalysisClinical Biochemistrygene dosageCompound heterozygosityBiochemistryGene dosageDenaturing high performance liquid chromatographyExonHyperphenylalaninemiaGene FrequencyPhenylketonuriasmedicineHumansMultiplex ligation-dependent probe amplificationMolecular BiologySequence DeletionGeneticsphenylalanine hydroxylase; phenylketonurias; ligase chain reaction; gene deletion; gene dosagebiologygene deletionReverse Transcriptase Polymerase Chain ReactionPhenylalanine HydroxylaseExonsmedicine.diseaseMolecular biologyItalyDisease Progressionbiology.proteinligase chain reactionMolecular MedicineOriginal ArticleExperimental and Molecular Medicine
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Cell cycle independent role of Cyclin E during neural cell fate specification in Drosophila is mediated by its regulation of Prospero function

2009

AbstractDuring development, neural progenitor cells or neuroblasts generate a great intra- and inter-segmental diversity of neuronal and glial cell types in the nervous system. In thoracic segments of the embryonic central nervous system of Drosophila, the neuroblast NB6-4t undergoes an asymmetric first division to generate a neuronal and a glial sublineage, while abdominal NB6-4a divides once symmetrically to generate only 2 glial cells. We had earlier reported a critical function for the G1 cyclin, CyclinE (CycE) in regulating asymmetric cell division in NB6-4t. Here we show that (i) this function of CycE is independent of its role in cell cycle regulation and (ii) the two functions are m…

ProsperoNerve Tissue ProteinsStem cellsCyclinEBiologyCell fate determinationNeuroblastNeuroblastsCyclin EAsymmetric cell divisionAnimalsDrosophila ProteinsCell LineageMolecular BiologyNeural cellCell ProliferationSequence DeletionNeuronsCell fate determinationCell CycleNuclear ProteinsCell DifferentiationCell BiologyCell cycleNeural stem cellUp-RegulationCell biologyProtein TransportDrosophila melanogasternervous systemDrosophilaCNSStem cellGanglion mother cellBiomarkersProtein BindingTranscription FactorsDevelopmental BiologyDevelopmental Biology
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