0000000000065771

AUTHOR

Jennifer Winter

showing 15 related works from this author

Reliability of genomic variants across different next-generation sequencing platforms and bioinformatic processing pipelines

2021

Abstract Background Next Generation Sequencing (NGS) is the fundament of various studies, providing insights into questions from biology and medicine. Nevertheless, integrating data from different experimental backgrounds can introduce strong biases. In order to methodically investigate the magnitude of systematic errors in single nucleotide variant calls, we performed a cross-sectional observational study on a genomic cohort of 99 subjects each sequenced via (i) Illumina HiSeq X, (ii) Illumina HiSeq, and (iii) Complete Genomics and processed with the respective bioinformatic pipeline. We also repeated variant calling for the Illumina cohorts with GATK, which allowed us to investigate the e…

Aginglcsh:QH426-470lcsh:BiotechnologyLongevity610 MedizinGATK ; Next-generation sequencing (NGS) technologies ; Illumina ; Longevity ; Complete genomics ; Healthy aging ; Wellderly ; Aging ; Platform-biasesPlatform-biasesPolymorphism Single Nucleotide570 Life sciencesIlluminaNext-generation sequencing (NGS) technologieslcsh:TP248.13-248.65610 Medical sciences620 Engineering and allied operationsHumansComputational BiologyHigh-Throughput Nucleotide SequencingReproducibility of ResultsGATKGenomicsPhysik (inkl. Astronomie)620 Ingenieurwissenschaften und MaschinenbauWellderlylcsh:GeneticsCross-Sectional StudiesHealthy agingComplete genomics570 BiowissenschaftenResearch Article
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Inhibition of histone deacetylation rescues phenotype in a mouse model of Birk-Barel intellectual disability syndrome

2020

Mutations in the actively expressed, maternal allele of the imprinted KCNK9 gene cause Birk-Barel intellectual disability syndrome (BBIDS). Using a BBIDS mouse model, we identify here a partial rescue of the BBIDS-like behavioral and neuronal phenotypes mediated via residual expression from the paternal Kcnk9 (Kcnk9pat) allele. We further demonstrate that the second-generation HDAC inhibitor CI-994 induces enhanced expression from the paternally silenced Kcnk9 allele and leads to a full rescue of the behavioral phenotype suggesting CI-994 as a promising molecule for BBIDS therapy. Thus, these findings suggest a potential approach to improve cognitive dysfunction in a mouse model of an impri…

Male0301 basic medicinePotassium Channels[SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyGeneral Physics and AstronomyDiseasePhenylenediamines[SDV.BBM.BM] Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyCraniofacial AbnormalitiesHistonesMice0302 clinical medicineIntellectual disabilityImprinting (psychology)lcsh:ScienceMice KnockoutGeneticsMultidisciplinaryBehavior AnimalbiologyNeurodevelopmental disordersDevelopmental disordersQBrainPhenotypeUp-RegulationPhenotypeHistoneGene Knockdown TechniquesBenzamidesMuscle HypotoniaFemaleLocus CoeruleusEpigeneticsScienceArticleGeneral Biochemistry Genetics and Molecular BiologyGenomic Imprinting03 medical and health sciencesDevelopmental disorders ; Neurodevelopmental disorders ; EpigeneticsIntellectual DisabilitymedicineAnimalsHumansddc:610AlleleGene[SDV.NEU.NB] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/Neurobiology[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyGeneral Chemistrymedicine.diseaseHistone Deacetylase InhibitorsMice Inbred C57BLDisease Models Animal030104 developmental biologyAcetylationMutationbiology.proteinlcsh:Q030217 neurology & neurosurgery
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The MID1 protein is a central player during development and in disease.

2015

Loss-of-function mutations in the MID1 gene cause a rare monogenic disorder, Opitz BBB/G syndrome (OS), which is characterized by malformations of the ventral midline. The MID1 gene encodes the MID1 protein, which assembles a large microtubule-associated protein complex. Intensive research over the past several years has shed light on the function of the MID1 protein as a ubiquitin ligase and regulator of mTOR signalling and translational activator. As a central player in the cell MID1 has been implicated in the pathogenesis of various other disorders in addition to OS including cancer and neurodegenerative diseases. Influencing the activity of the MID1 protein complex is a promising new st…

0301 basic medicinephysiopathology [Huntington Disease]CarcinogenesisUbiquitin-Protein LigasesRegulatorDiseaseBiologyBioinformaticsmedicine.disease_causephysiopathology [Alzheimer Disease]Congenital AbnormalitiesPathogenesis03 medical and health sciencesMiceAlzheimer Diseasephysiology [Nuclear Proteins]medicineAnimalsHumansgenetics [Microtubule Proteins]ddc:610GenePI3K/AKT/mTOR pathwayActivator (genetics)Nuclear Proteinsgenetics [Nuclear Proteins]genetics [Transcription Factors]physiology [Transcription Factors]Ubiquitin ligase030104 developmental biologyHuntington DiseaseMutationbiology.proteinMicrotubule Proteinsphysiology [Microtubule Proteins]CarcinogenesisMid1 protein humanTranscription FactorsFrontiers in bioscience (Landmark edition)
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Identification of a classic nuclear localization signal at the N terminus that regulates the subcellular localization of Rbfox2 isoforms during diffe…

2016

Nuclear localization of the alternative splicing factor Rbfox2 is achieved by a C-terminal nuclear localization signal (NLS) which can be excluded from some Rbfox2 isoforms by alternative splicing. While this predicts nuclear and cytoplasmic localization, Rbfox2 is exclusively nuclear in some cell types. Here, we identify a second NLS in the N terminus of Rbfox2 isoform 1A that is not included in Rbfox2 isoform 1F. Rbfox2 1A isoforms lacking the C-terminal NLS are nuclear, whereas equivalent 1F isoforms are cytoplasmic. A shift in Rbfox2 expression toward cytoplasmic 1F isoforms occurs during epithelial to mesenchymal transition (EMT) and could be important in regulating the activity and fu…

0301 basic medicineGene isoformCytoplasmEpithelial-Mesenchymal TransitionNuclear Localization SignalsBiophysicsBiochemistryCell LineTransforming Growth Factor beta103 medical and health sciencesMiceMammary Glands AnimalProtein DomainsStructural BiologyCell Line TumorGeneticsNLSAnimalsProtein IsoformsAmino Acid SequenceMolecular BiologyCell NucleusChemistryAlternative splicingCell DifferentiationEpithelial CellsMouse Embryonic Stem CellsCell BiologySubcellular localizationMolecular biologyCell biologyAlternative Splicing030104 developmental biologyP19 cellCytoplasmRNA splicingRNA Splicing FactorsSequence AlignmentNuclear localization sequenceSignal TransductionFEBS letters
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miR379-410 cluster miRNAs regulate neurogenesis and neuronal migration by fine-tuning N-cadherin

2014

N-cadherin-mediated adhesion is essential for maintaining the tissue architecture and stem cell niche in the developing neocortex. N-cadherin expression level is precisely and dynamically controlled throughout development; however, the underlying regulatory mechanisms remain largely unknown. MicroRNAs (miRNAs) play an important role in the regulation of protein expression and subcellular localisation. In this study, we show that three miRNAs belonging to the miR379–410 cluster regulate N-cadherin expression levels in neural stem cells and migrating neurons. The overexpression of these three miRNAs in radial glial cells repressed N-cadherin expression and increased neural stem cell different…

NeurogenesisCellular differentiationBiologyGeneral Biochemistry Genetics and Molecular BiologyMice03 medical and health sciences0302 clinical medicineNeural Stem CellsAntigens CDCell MovementmicroRNAmedicineAnimals10. No inequalityMolecular Biology030304 developmental biologyRegulation of gene expression0303 health sciencesGene knockdownNeocortexGeneral Immunology and MicrobiologyCadherinGeneral NeuroscienceNeurogenesisGene Expression Regulation DevelopmentalArticlesCadherinsNeural stem cellCell biologyMicroRNAsmedicine.anatomical_structure030217 neurology & neurosurgeryThe EMBO Journal
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Mitochondrial function and energy metabolism in neuronal HT22 cells resistant to oxidative stress

2014

Background and Purpose The hippocampal cell line HT22 is an excellent model for studying the consequences of endogenous oxidative stress. Extracellular glutamate depletes cellular glutathione by blocking the glutamate/cystine antiporter system xc−. Glutathione depletion induces a well-defined programme of cell death characterized by an increase in reactive oxygen species and mitochondrial dysfunction. Experimental Approach We compared the mitochondrial shape, the abundance of mitochondrial complexes and the mitochondrial respiration of HT22 cells, selected based on their resistance to glutamate, with those of the glutamate-sensitive parental cell line. Key Results Glutamate-resistant mitoch…

PharmacologyOligomycinATP synthaseCellular respirationOxidative phosphorylationMitochondrionBiologymedicine.disease_causechemistry.chemical_compoundMitochondrial permeability transition poreBiochemistrychemistrymedicinebiology.proteinATP–ADP translocaseOxidative stressBritish Journal of Pharmacology
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Progranulin protects against exaggerated axonal injury and astrogliosis following traumatic brain injury

2016

In response to traumatic brain injury (TBI) microglia/macrophages and astrocytes release inflammatory mediators with dual effects on secondary brain damage progression. The neurotrophic and anti-inflammatory glycoprotein progranulin (PGRN) attenuates neuronal damage and microglia/macrophage activation in brain injury but mechanisms are still elusive. Here, we studied histopathology, neurology and gene expression of inflammatory markers in PGRN-deficient mice (Grn-/- ) 24 h and 5 days after experimental TBI. Grn-/- mice displayed increased perilesional axonal injury even though the overall brain tissue loss and neurological consequences were similar to wild-type mice. Brain inflammation was …

0301 basic medicinePathologymedicine.medical_specialtyTraumatic brain injuryInflammationBrain damageBlood–brain barrier03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicinemedicineNeuroinflammationMicrogliabiologybusiness.industrymedicine.diseaseAstrogliosis030104 developmental biologymedicine.anatomical_structurenervous systemNeurologybiology.proteinmedicine.symptombusiness030217 neurology & neurosurgeryNeurotrophinGlia
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MicroRNAs miR-19, miR-340, miR-374 and miR-542 regulate MID1 protein expression.

2018

The MID1 ubiquitin ligase activates mTOR signaling and regulates mRNA translation. Misregulation of MID1 expression is associated with various diseases including midline malformation syndromes, cancer and neurodegenerative diseases. While this indicates that MID1 expression must be tightly regulated to prevent disease states specific mechanisms involved have not been identified. We examined miRNAs to determine mechanisms that regulate MID1 expression. MicroRNAs (miRNA) are small non-coding RNAs that recognize specific sequences in their target mRNAs. Upon binding, miRNAs typically downregulate expression of these targets. Here, we identified four miRNAs, miR-19, miR-340, miR-374 and miR-542…

0301 basic medicineUntranslated regionSmall interfering RNAPhysiologymetabolism [Microtubule Proteins]Alzheimer's DiseaseBiochemistryImmune PhysiologyMedicine and Health SciencesSmall interfering RNAsmetabolism [Transcription Factors]3' Untranslated RegionsImmune System ProteinsMultidisciplinarybiologyReverse Transcriptase Polymerase Chain ReactionMessenger RNAQRNuclear ProteinsNeurodegenerative DiseasesTranslation (biology)EnzymesUbiquitin ligaseCell biologyNucleic acidsNeurologyMicrotubule ProteinsMedicineOxidoreductasesLuciferasemetabolism [Nuclear Proteins]Research ArticleScienceUbiquitin-Protein LigasesImmunologyTransfectionResearch and Analysis MethodsReal-Time Polymerase Chain ReactionAntibodies03 medical and health sciencesMental Health and PsychiatrymicroRNAGeneticsHumansddc:610Non-coding RNAMolecular Biology TechniquesMolecular BiologyMessenger RNABiology and life sciencesThree prime untranslated regionHEK 293 cellsProteinsGene regulationphysiology [MicroRNAs]MicroRNAs030104 developmental biologyHEK293 CellsEnzymologybiology.proteinRNAProtein TranslationDementiaGene expressionTranscription FactorsMid1 protein human
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mTOR Driven Gene Transcription Is Required for Cholesterol Production in Neurons of the Developing Cerebral Cortex

2021

AbstractDysregulated mammalian target of rapamycin (mTOR) activity is associated with various neurodevelopmental disorders ranging from idiopathic autism spectrum disorders to syndromes caused by single gene defects. This suggests that maintaining mTOR activity levels in a physiological range is essential for brain development and functioning. Upon activation, mTOR regulates a variety of cellular processes such as cell growth, autophagy and metabolism. On a molecular level, however, the consequences of mTOR activation in the brain are not well understood.Low levels of cholesterol are associated with a wide variety of neurodevelopmental disorders. We here describe numerous genes of the stero…

Transcription GeneticQH301-705.5Primary Cell CulturemTORC1Mechanistic Target of Rapamycin Complex 1BiologySREBPCatalysisArticleInorganic ChemistryMiceAutophagyTranscriptional regulationmedicineAnimalsPhysical and Theoretical ChemistryBiology (General)Molecular BiologyTranscription factorQD1-999mTORC1SpectroscopyPI3K/AKT/mTOR pathwayCerebral CortexNeuronsSterol Regulatory Element Binding ProteinsCell growthTOR Serine-Threonine KinasesOrganic Chemistrycholesterol ; NF-Y ; neurogenesis ; mTOR ; mTORC1 ; SP1 ; SREBPAutophagyGene Expression Regulation DevelopmentalcholesterolGeneral MedicineComputer Science ApplicationsSterol regulatory element-binding proteinCell biologySP1Chemistryneurogenesismedicine.anatomical_structureCCAAT-Binding FactorCerebral cortexmTORNF-YProtein KinasesSignal TransductionInternational Journal of Molecular Sciences
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Deregulated Splicing Is a Major Mechanism of RNA-Induced Toxicity in Huntington's Disease.

2019

Huntington's disease (HD) is caused by an expanded CAG repeat in the huntingtin (HTT) gene, translating into an elongated polyglutamine stretch. In addition to the neurotoxic mutant HTT protein, the mutant CAG repeat RNA can exert toxic functions by trapping RNA-binding proteins. While few examples of proteins that aberrantly bind to mutant HTT RNA and execute abnormal function in conjunction with the CAG repeat RNA have been described, an unbiased approach to identify the interactome of mutant HTT RNA is missing. Here, we describe the analysis of proteins that preferentially bind mutant HTT RNA using a mass spectrometry approach. We show that (I) the majority of proteins captured by mutant…

congenital hereditary and neonatal diseases and abnormalitiesSpliceosomeHuntingtinRNA SplicingMutantRNA-binding proteinRNA-binding proteinsBiologygenetics [Huntington Disease]Structural Biologymental disordersmedicineAnimalsHumansddc:610genetics [RNA]Molecular BiologyGeneHuntingtin Proteingenetics [Spliceosomes]CAG repeat RNANeurodegenerationneurodegenerationRNAgenetics [Huntingtin Protein]medicine.diseasenervous system diseasesCell biologypolyglutamine diseaseHuntington Diseasenervous systemCardiovascular and Metabolic DiseasesRNA splicingSpliceosomesgenetics [RNA Splicing]RNATechnology PlatformsspliceosomeJournal of molecular biology
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Heterotopic ossifications and Charcot joints: Congenital insensitivity to pain with anhidrosis (CIPA) and a novel NTRK1 gene mutation

2018

Abstract Congenital insensitivity to pain with anhidrosis (CIPA), also known as hereditary sensory and autonomic neuropathy type IV (HSAN-IV), is a rare and severe autosomal recessive disorder. We report on an adult female patient whose clinical findings during childhood were not recognized as CIPA. There was neither complete anhidrosis nor a recognizable sensitivity to heat. Tumorlike swellings of many joints and skeletal signs of Charcot neuropathy developed in adolescence which, together with a history of self-mutilation, led to a clinical suspicion of CIPA confirmed by identification of a novel homozygous variant c.1795G > T in the NTRK1 gene in blood lymphocytes. Both parents were hete…

AdultPremature Stop Codonmedicine.medical_specialtyPainmedicine.disease_causeYoung AdultCongenital insensitivity to pain with anhidrosisHereditary sensory and autonomic neuropathyGeneticsmedicineHumansGenetic Predisposition to DiseaseReceptor trkAAnhidrosisGenetics (clinical)HypohidrosisMutationAdult femalebusiness.industryOssification HeterotopicGeneral MedicineEuropean populationNTRK1 Genemedicine.diseaseDermatologyFemaleArthropathy Neurogenicmedicine.symptombusinessEuropean Journal of Medical Genetics
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Mild phenotypes in a series of patients with Opitz GBBB syndrome with MID1 mutations

2004

Contains fulltext : 48815.pdf (Publisher’s version ) (Closed access) Opitz syndrome (OS; MIM 145410 and MIM 300000) is a congenital midline malformation syndrome characterized by hypertelorism, hypospadias, cleft lip/palate, laryngotracheoesophageal (LTE) abnormalities, imperforate anus, developmental delay, and cardiac defects. The X-linked form (XLOS) is caused by mutations in the MID1 gene, which encodes a microtubule-associated RBCC protein. In this study, phenotypic manifestations of patients with and without MID1 mutations were compared to determine genotype-phenotype correlations. We detected 10 novel mutations, 5 in familial cases, 2 in sporadic cases, and 3 in families for whom it …

Malemedicine.medical_specialtyUbiquitin-Protein LigasesBiologymedicine.disease_causeGastroenterologyG/BBB SYNDROMEFAMILIESGenomic disorders and inherited multi-system disorders [IGMD 3]Genotype-phenotype distinctionInternal medicineGeneticsmedicineHumansHypertelorismGeneGenetics (clinical)GeneticsFamily HealthX-linked Opitz syndromeMutationMID1Nuclear ProteinsGenetic Diseases X-LinkedExonsOpitz G/BBB Syndromemedicine.diseasePhenotypeGENEPedigreeSmith-Lemli-Opitz SyndromePhenotypeGenetic defects of metabolism [UMCN 5.1]HypospadiasMutationMicrotubule ProteinsFemalephenotypic variabilityXP22medicine.symptomImperforate anusFunctional Neurogenomics [DCN 2]BBBTranscription FactorsAmerican Journal of Medical Genetics. Part A
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Isolation of nuclei and downstream processing of cell-type-specific nuclei from micro-dissected mouse brain regions – techniques and caveats

2020

AbstractThe mammalian brain consists of several structurally and functionally distinct regions equipped with an equally complex cell-type system. Due to its relevance in uncovering disease mechanisms, the study of cell-type-specific molecular signatures of different brain regions has increased. The rapid evolution of newer and cheaper sequencing techniques has also boosted the interest in cell-type-specific epigenetic studies. In fact, the nucleus holds most of the cell’s epigenetic information and is quite resistant to tissue dissociation processes as compared to cells. As such, nuclei are continually preferred over cells for epigenetic studies. However, the isolation of nuclei from cells …

medicine.anatomical_structureDownstream processingChemistryDisease mechanismsCell type specificmedicineBiophysicsCentrifugationDensity gradient ultracentrifugationEpigeneticsNuclear membraneNucleus
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Homozygous variants in the gene SCAPER cause syndromic intellectual disability

2019

The S-Phase Cyclin A Associated Protein In The ER (SCAPER) gene is a ubiquitously expressed gene with unknown function in the brain. Recently, biallelic SCAPER variants were described in four patients from three families with retinitis pigmentosa (RP) and intellectual disability (ID). Here, we expand the spectrum of pathogenic variants in SCAPER and report on 10 further patients from four families with ID, RP, and additional dysmorphic features carrying homozygous variants in SCAPER. The variants found comprise frameshift, nonsense, and missense variants as well as an intragenic homozygous deletion, which spans SCAPER exons 15 and 16 and introduces a frameshift and a premature stop codon. A…

AdultMale0301 basic medicineAdolescentmedia_common.quotation_subjectCyclin ANonsenseGene Expression030105 genetics & heredityFrameshift mutationConsanguinityMice03 medical and health sciencesExonNeural Stem CellsIntellectual DisabilityRetinitis pigmentosaGene expressionGeneticsmedicineAnimalsHumansMissense mutationFamilyChildGeneGenetics (clinical)media_commonCerebral CortexNeuronsGeneticsbiologyHomozygoteSyndromemedicine.diseasePedigree030104 developmental biologyMutationbiology.proteinFemaleCarrier ProteinsRetinitis PigmentosaAmerican Journal of Medical Genetics Part A
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INTACT vs. FANS for Cell-Type-Specific Nuclei Sorting: A Comprehensive Qualitative and Quantitative Comparison

2021

Increasing numbers of studies seek to characterize the different cellular sub-populations present in mammalian tissues. The techniques “Isolation of Nuclei Tagged in Specific Cell Types” (INTACT) or “Fluorescence-Activated Nuclei Sorting” (FANS) are frequently used for isolating nuclei of specific cellular subtypes. These nuclei are then used for molecular characterization of the cellular sub-populations. Despite the increasing popularity of both techniques, little is known about their isolation efficiency, advantages, and disadvantages or downstream molecular effects. In our study, we compared the physical and molecular attributes of sfGFP+ nuclei isolated by the two methods—INTACT and FAN…

MaleQH301-705.5Cell type specificATAC-seqATAC-SeqComputational biologyCell SeparationBiologyCatalysisFluorescenceArticleInorganic ChemistryMiceINTACTAnimalsRNA-SeqBiology (General)Physical and Theoretical Chemistryneuronal nucleiQD1-999Molecular BiologySpectroscopyCell specificCell NucleusOrganic ChemistrySortingGeneral MedicineFlow CytometryChromatinComputer Science ApplicationsChromatinChemistryProtein Transportnuclei sortingNeuronal nucleiFemaleFANSInternational Journal of Molecular Sciences
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