Search results for "gene deletion"

showing 10 items of 159 documents

Transcriptional and Structural Study of a Region of Two Convergent Overlapping Yeast Genes

1999

The exceptionally close packing of many yeast genes and other chromosomal elements raises the question of how those elements are functionally insulated. All published work shows that natural insulators are very effective, but transcriptional interference (TI) occurs if they are mutated or if their natural context is altered. Mechanisms to avoid TI are poorly understood, but are thought to involve an interplay of cis sequences and trans factors in a chromatin context. We have studied the case of two convergent closely packed ORFs (56 bp of separation) in chromosome IX of Saccharomyces cerevisiae. mRNAs from POT1 and YIL161w overlap by up to 115 nt. Convergent transcription causes a small but…

GeneticsTranscription GeneticbiologyGenes FungalSaccharomyces cerevisiaeSaccharomyces cerevisiaeGeneral Medicinebiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyNucleosomesChromatinFungal ProteinsOpen reading frameTranscription (biology)Gene Expression Regulation FungalGenes OverlappingNucleosomeORFSPromoter Regions GeneticGeneGene DeletionGenomic organizationCurrent Microbiology
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Inactivation of folylpolyglutamate synthetase Met7 results in genome instability driven by an increased dUTP/dTTP ratio

2020

AbstractThe accumulation of mutations is frequently associated with alterations in gene function leading to the onset of diseases, including cancer. Aiming to find novel genes that contribute to the stability of the genome, we screened the Saccharomyces cerevisiae deletion collection for increased mutator phenotypes. Among the identified genes, we discovered MET7, which encodes folylpolyglutamate synthetase (FPGS), an enzyme that facilitates several folate-dependent reactions including the synthesis of purines, thymidylate (dTMP) and DNA methylation. Here, we found that Met7-deficient strains show elevated mutation rates, but also increased levels of endogenous DNA damage resulting in gross…

Genome instabilityCell- och molekylärbiologiSaccharomyces cerevisiaeGenome Integrity Repair and ReplicationBiologymedicine.disease_causeGenomic InstabilityFolic AcidGene Expression Regulation FungalGeneticsmedicineThymine NucleotidesPeptide SynthasesDNA FungalUracilGeneCell NucleusRegulation of gene expressionMutationFolylpolyglutamate synthaseFungal geneticsDeoxyguanine NucleotidesMutation AccumulationMolecular biologyMitochondriaMutationDNA methylationGenome FungalDeoxyuracil NucleotidesGene DeletionCell and Molecular BiologyDNA Damage
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Deletion of myosin VI causes slow retinal optic neuropathy and age-related macular degeneration (AMD)-relevant retinal phenotype

2015

The unconventional myosin VI, a member of the actin-based motor protein family of myosins, is expressed in the retina. Its deletion was previously shown to reduce amplitudes of the a- and b-waves of the electroretinogram. Analyzing wild-type and myosin VI-deficient Snell’s Waltzer mice in more detail, the expression pattern of myosin VI in retinal pigment epithelium, outer limiting membrane, and outer plexiform layer could be linked with differential progressing ocular deficits. These encompassed reduced a-waves and b-waves and disturbed oscillatory potentials in the electroretinogram, photoreceptor cell death, retinal microglia infiltration, and formation of basal laminar deposits. A pheno…

Genotypegenetic structuresOuter retinaTranslocator protein TSPOOuter plexiform layermacromolecular substancesBiologyRetinaPhotoreceptor cellMouse modelStereociliaMacular DegenerationMiceCellular and Molecular Neurosciencechemistry.chemical_compoundOptic Nerve DiseasesMyosinmedicineAnimalsBipolar cellMolecular BiologyPharmacologyRetinaRetinal pigment epitheliumMyosin Heavy ChainsNeurodegenerationInner retinaChoriocapillarisRetinalCell BiologyAnatomyMacular degenerationmedicine.diseaseSynapseeye diseasesCell biologyMice Inbred C57BLmedicine.anatomical_structurechemistryMolecular MedicineMicrogliasense organsGene DeletionResearch ArticlePhotoreceptor Cells VertebrateCellular and Molecular Life Sciences
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Identification of Two Mannoproteins Released from Cell Walls of a Saccharomyces cerevisiae mnn1 mnn9 Double Mutant by Reducing Agents

1999

The cell wall of Saccharomyces cerevisiae represents some 30% of the total weight of the cell and is made up of β-glucans, mannose-containing glycoproteins (mannoproteins), and small amounts of chitin (9, 15). The mannoproteins can be divided into three groups according to the linkages that bind them to the structure of the cell wall: (i) noncovalently bound, (ii) covalently bound to the structural glucan, and (iii) disulfide bound to other proteins that are themselves covalently bound to the structural glucan of the cell wall (8). Our work has focused on the disulfide-bound mannoproteins, probably the least well known of the three groups mentioned above. Previous work (25) showed that trea…

GlycosylationSaccharomyces cerevisiae ProteinsGlycosylationBlotting WesternMolecular Sequence DataSaccharomyces cerevisiaeSaccharomyces cerevisiaeMicrobiologyGene Expression Regulation EnzymologicFungal ProteinsCell wallOpen Reading FramesSurface-Active Agentschemistry.chemical_compoundCell WallGene Expression Regulation FungalEndopeptidasesAspartic Acid EndopeptidasesAmino Acid SequenceSubtilisinsFluorescent Antibody Technique IndirectMolecular BiologyMercaptoethanolGlucanGel electrophoresischemistry.chemical_classificationFungal proteinMembrane GlycoproteinsbiologySodium Dodecyl SulfateBiological Transportbiology.organism_classificationRecombinant ProteinsYeastMolecular Weightcarbohydrates (lipids)Cytoskeletal ProteinsEukaryotic CellsPhenotypechemistryBiochemistryMutagenesisReducing AgentsElectrophoresis Polyacrylamide GelProprotein ConvertasesProtein Tyrosine PhosphatasesGlycoproteinGene DeletionJournal of Bacteriology
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Genetic manipulation of longevity-related genes as a tool to regulate yeast life span and metabolite production during winemaking

2013

Abstract Background Yeast viability and vitality are essential for different industrial processes where the yeast Saccharomyces cerevisiae is used as a biotechnological tool. Therefore, the decline of yeast biological functions during aging may compromise their successful biotechnological use. Life span is controlled by a variety of molecular mechanisms, many of which are connected to stress tolerance and genomic stability, although the metabolic status of a cell has proven a main factor affecting its longevity. Acetic acid and ethanol accumulation shorten chronological life span (CLS), while glycerol extends it. Results Different age-related gene classes have been modified by deletion or o…

HST3GlycerolSaccharomyces cerevisiae ProteinsTranscription Genetic<it>HST3</it>Saccharomyces cerevisiaeLongevitylcsh:QR1-502SOD2BioengineeringApoptosisWinePUB1Saccharomyces cerevisiaeStressApplied Microbiology and Biotechnologylcsh:MicrobiologyHistone DeacetylasesStress granuleSirtuin 2<it>PUB1</it>Gene expressionChronological agingSirtuinsNADH NADPH OxidoreductasesRNA MessengerEthanol metabolismSilent Information Regulator Proteins Saccharomyces cerevisiaeAcetic AcidbiologyEthanolSuperoxide DismutaseResearchRNA-Binding Proteinsbiology.organism_classificationYeastYeastBiochemistryCaspasesFermentationMutationFermentationHistone deacetylaseGene DeletionBiotechnologyMicrobial Cell Factories
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Two Host Clades, Two Bacterial Arsenals: Evolution through Gene Losses in Facultative Endosymbionts.

2015

International audience; Bacterial endosymbiosis is an important evolutionary process in insects, which can harbor both obligate and facultative symbionts. The evolution of these symbionts is driven by evolutionary convergence, and they exhibit among the tiniest genomes in prokaryotes. The large host spectrum of facultative symbionts and the high diversity of strategies they use to infect new hosts probably impact the evolution of their genome and explain why they undergo less severe genomic erosion than obligate symbionts. Candidatus Hamiltonella defensa is suitable for the investigation of the genomic evolution of facultative symbionts because the bacteria are engaged in specific relations…

Hamiltonella defensaVirulence Factors[SDV]Life Sciences [q-bio]fungifood and beveragesGenomicscomparative genomicsbiochemical phenomena metabolism and nutritionBemisia tabaciEvolution MolecularHemipteraaphidsEnterobacteriaceaeCell WallAnimals[INFO.INFO-BI]Computer Science [cs]/Bioinformatics [q-bio.QM]SymbiosisGene DeletionGenome BacterialPhylogenyResearch Article
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Interaction of wild-type and naturally occurring deleted variants of hepatitis B virus core polypeptides leads to formation of mosaic particles

2000

AbstractThe simultaneous presence of hepatitis B virus (HBV) genomes carrying wild-type (wt) and in-frame deleted variants of the HBV core gene has been identified as a typical feature of HBV-infected renal transplant patients with severe liver disease. To investigate possible interactions of wt and deleted core polypeptides a two-vector Escherichia coli expression system ensuring their concomitant synthesis has been developed. Co-expression of wt and a mutant core lacking 17 amino acid residues (77–93) within the immunodominant region led to the formation of mosaic particles, whereas the mutant alone was incapable of self-assembly.

Hepatitis B virusBlotting WesternMutantBiophysicsBiologymedicine.disease_causeBiochemistryGenomeHepatitis B virus PRE betaLiver diseaseStructural BiologyEscherichia coliGeneticsmedicineProtein Structure QuaternaryMolecular BiologyEscherichia coliSequence DeletionHepatitis B virusImmunodominant EpitopesHepatitis B virus coreViral Core ProteinsVirus AssemblyWild typeGenetic VariationCell Biologymedicine.diseaseDimer formationHepatitis B Core AntigensPrecipitin TestsVirologyMolecular biologyRecombinant ProteinsMosaic particleMicroscopy ElectronPeptidesDimerizationC gene deletionProtein BindingFEBS Letters
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Multiplex ligation-dependent probe amplification detection of an unknown large deletion of the CREB-binding protein gene in a patient with Rubinstein…

2013

Rubinstein-Taybi syndrome is a rare autosomal dominant congenital disorder characterized by postnatal growth retardation, psychomotor developmental delay, skeletal anomalies, peculiar facial morphology, and tumorigenesis. Mutations in the gene encoding the cAMP response element-binding protein (CREB, also known as CREBBP or CBP) on chromosome 16p13.3 have been identified. In addition, some patients with low intelligence quotients and autistic features bear large deletions. Based on these observations, we used multiplex ligation-dependent probe amplification to search for large deletions affecting the CREBBP gene in a Rubinstein-Taybi syndrome patient. We identified a novel heterozygote dele…

HeterozygoteCREBExonSettore BIO/13 - Biologia ApplicataGeneticsmedicineHumansMultiplexMultiplex ligation-dependent probe amplificationGenetic TestingCREB-binding proteinMolecular BiologyGeneGeneticsRubinstein-Taybi SyndromeRubinstein–Taybi syndromebiologyMultiplex ligation-dependent probe amplification Comparative multiplex dosage analysis CREB-binding protein Rubinstein-Taybi syndromeHeterozygote advantageGeneral Medicinemedicine.diseaseMolecular biologyCREB-Binding ProteinChild Preschoolbiology.proteinFemaleMultiplex Polymerase Chain ReactionGene Deletion
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p16INK4A (CDKN2A) gene deletion is a frequent genetic event in synovial sarcomas.

2006

We assessed the frequency of genomic deletion of p16 INK4A (CDKN2A) in synovial sarcomas (SSs) and its possible association with immunoexpression of p16 and cyclin D1 and the Ki-67 proliferation index using dualcolor fluorescence in situ hybridization (FISH) on tissue microarray sections of 41 histologically and molecularly confirmed SSs. A heterozygous p16 INK4A gene deletion was identified in 28 (74%) of 38 cases, with 25 (89%) of them showing abnormal p16 protein expression (20 negative and 5 heterogeneous). Of 25 cases, 19 (76%) exhibiting increased cyclin D1 expression also demonstrated heterozygous p16 INK4A deletion. No significant association was observed between p16 INK4A deletion …

HeterozygoteProliferation indexTumor suppressor geneSoft Tissue NeoplasmsBiologySarcoma SynovialCyclin D1CDKN2ACyclin DCyclinsmedicineBiomarkers TumorHumansCDKN2A Gene DeletionCyclin-Dependent Kinase Inhibitor p16In Situ Hybridization FluorescenceCell Nucleusmedicine.diagnostic_testGeneral Medicinemedicine.diseaseImmunohistochemistrySynovial sarcomaKi-67 AntigenTumor progressionTissue Array AnalysisCancer researchGene DeletionFluorescence in situ hybridizationAmerican journal of clinical pathology
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The role of the human cytomegalovirus UL111A gene in down-regulating CD4+ T-cell recognition of latently infected cells: implications for virus elimi…

2009

AbstractThe capacity of human cytomegalovirus (HCMV) to establish and maintain a latent infection from which it can later reactivate ensures its widespread distribution in the population, but the mechanisms enabling maintenance of latency in the face of a robust immune system are poorly understood. We examined the role of the HCMV UL111A gene, which encodes homologs of the immunosuppressive cytokine interleukin-10 in the context of latent infection of myeloid progenitor cells. A UL111A deletion virus was able to establish, maintain, and reactivate from experimental latency in a manner comparable with parental virus, but major histocompatibility complex class II levels increased significantl…

Human cytomegalovirusCD4-Positive T-LymphocytesIsoantigensMyeloidGenes Viralmedicine.medical_treatmentImmunologyPopulationCytomegalovirusDown-RegulationBiologyIn Vitro Techniquesmedicine.disease_causeBiochemistryAutoantigensHerpesviridaeVirusImmune systemmedicineHumansProgenitor celleducationMyeloid Progenitor Cellseducation.field_of_studyHistocompatibility Antigens Class IICell BiologyHematologymedicine.diseaseVirologyVirus LatencyCytokinemedicine.anatomical_structureImmunologyCytomegalovirus InfectionsHost-Pathogen InteractionsGene DeletionBlood
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