Search results for "Organs"

showing 10 items of 2730 documents

P14ARF: The Absence that Makes the Difference

2020

P14ARF is a tumor suppressor encoded by the CDKN2a locus that is frequently inactivated in human tumors. P14ARF protein quenches oncogene stimuli by inhibiting cell cycle progression and inducing apoptosis. P14ARF functions can be played through interactions with several proteins. However, the majority of its activities are notoriously mediated by the p53 protein. Interestingly, recent studies suggest a new role of p14ARF in the maintenance of chromosome stability. Here, we deepened this new facet of p14ARF which we believe is relevant to its tumor suppressive role in the cell. To this aim, we generated a monoclonal HCT116 cell line expressing the p14ARF cDNA cloned in the piggyback vector …

0301 basic medicinecongenital hereditary and neonatal diseases and abnormalitiesCENP‐Elcsh:QH426-470Cellp14ARFBiologylaw.invention03 medical and health sciences0302 clinical medicinep14arfCDKN2AlawComplementary DNAGeneticsmedicineaneuploidyGenetics (clinical)OncogeneARFP14eye diseasesCell biologySettore BIO/18 - Geneticalcsh:Genetics030104 developmental biologymedicine.anatomical_structureApoptosis030220 oncology & carcinogenesisGSK923295MonoclonalSuppressorCENP-Esense organsGenes
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Ophthalmological Findings in Mucopolysaccharidoses

2019

The mucopolysaccharidoses (MPS) are a heterogenous group of lysosomal storage disorders caused by the accumulation of glycosaminoglycans (GAGs). The accrual of these compounds results in phenotypically varied syndromes that produce multi-organ impairment with widespread systemic effects. The low incidence of MPS (approximately 1/25,000 live births) in conjunction with the high childhood mortality rate had limited the availability of research into certain clinical features, especially ocular manifestations. As the recent successes of hematopoietic stem cell transplantation (HSCT) and enzyme replacement therapy (ERT) have greatly increased life expectancy in these patients, they have served a…

0301 basic medicinecongenital hereditary and neonatal diseases and abnormalitiesPediatricsmedicine.medical_specialtygenetic structuresmedicine.medical_treatmentMucopolysaccharidosislcsh:MedicineGlaucomaReviewHematopoietic stem cell transplantation03 medical and health sciences0302 clinical medicineQuality of lifeCorneal cloudingmedicinebusiness.industryMortality rateIncidence (epidemiology)lcsh:Rnutritional and metabolic diseasesmucopolysaccharidosisGeneral MedicineEnzyme replacement therapymedicine.diseaseocular manifestationseye diseasesophthalmology030104 developmental biologycorneal clouding030221 ophthalmology & optometrylysosomal storage disordersense organsbusinessJournal of Clinical Medicine
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Mapping gene regulatory circuitry of Pax6 during neurogenesis.

2016

AbstractPax6 is a highly conserved transcription factor among vertebrates and is important in various aspects of the central nervous system development. However, the gene regulatory circuitry of Pax6 underlying these functions remains elusive. We find that Pax6 targets a large number of promoters in neural progenitors cells. Intriguingly, many of these sites are also bound by another progenitor factor, Sox2, which cooperates with Pax6 in gene regulation. A combinatorial analysis of Pax6-binding data set with transcriptome changes in Pax6-deficient neural progenitors reveals a dual role for Pax6, in which it activates the neuronal (ectodermal) genes while concurrently represses the mesoderma…

0301 basic medicineendocrine systemNeurogenesisBiologyBiochemistryArticle03 medical and health sciencesSOX2GeneticsMolecular BiologyTranscription factorGeneRegulation of gene expressionGeneticsGene knockdownNeurogenesisPromoterCell BiologyNeural progenitorseye diseasesChromatinCell biologyGene regulation030104 developmental biologyPAX6sense organsTranscription FactorsCell discovery
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2021

Circadian clocks prepare the organism to cyclic environmental changes in light, temperature, or food availability. Here, we characterized the master clock in the brain of a strongly photoperiodic insect, the aphid Acyrthosiphon pisum, immunohistochemically with antibodies against A. pisum Period (PER), Drosophila melanogaster Cryptochrome (CRY1), and crab Pigment-Dispersing Hormone (PDH). The latter antibody detects all so far known PDHs and PDFs (Pigment-Dispersing Factors), which play a dominant role in the circadian system of many arthropods. We found that, under long days, PER and CRY are expressed in a rhythmic manner in three regions of the brain: the dorsal and lateral protocerebrum …

0301 basic medicineendocrine systemanimal structuresbiologyPhysiologyPeriod (gene)fungiCircadian clockbiology.organism_classificationCell biologyAcyrthosiphon pisum03 medical and health sciences030104 developmental biology0302 clinical medicineCryptochromePhysiology (medical)CLOCK Proteinssense organsCircadian rhythmDrosophila melanogasterCorpus allatum030217 neurology & neurosurgeryFrontiers in Physiology
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Dysregulation of C-X-C motif ligand 10 during aging and association with cognitive performance

2017

International audience; Chronic low-grade inflammation during aging (inflammaging) is associated with cognitive decline and neurodegeneration; however, the mechanisms underlying inflammaging are unclear. We studied a population (n = 361) of healthy young and old adults from the MyoAge cohort. Peripheral levels of C-X-C motif chemokine ligand 10 (CXCL10) was found to be higher in older adults, compared with young, and negatively associated with working memory performance. This coincided with an age-related reduction in blood DNA methylation at specific CpGs within the CXCL10 gene promoter. In vitro analysis supported the role of DNA methylation in regulating CXCL10 transcription. A polymorph…

0301 basic medicinegamma interferon inducible protein 10genomic DNAAlzheimerin tautiEpigenesis GeneticCohort StudiesCXCL10 geneCognitionsingle nucleotide polymorphismcognitive defectCognitive declineAged 80 and overCerebral Cortexeducation.field_of_studyprefrontal cortexDNA methylationGeneral NeuroscienceadultNeurodegenerationneurodegenerationta3141U937 CellsMethylationta3142Alzheimer's diseasecohort analysisDNA-metylaatioagedfemalepriority journalepigenetiikkaDNA methylationAlzheimer's diseaseAlzheimer diseasetranscription regulationAlzheimer’s diseasekognitiiviset taidotmedicine.medical_specialty[SDV.MHEP.AHA] Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]in vitro studyAdolescentheredityPopulationBiologyArticleworking memoryYoung Adult03 medical and health sciencesCognitive agingpromoter regionmaleMemoryInternal medicineJournal Articlemedicine[SDV.MHEP.AHA]Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]HumansCXCL10controlled studyEpigeneticshumanbrain levelNeurodegenerationeducationepigeneticscognitive aginghuman cellagingdisease associationmedicine.diseasemajor clinical studyInflammagingChemokine CXCL10gamma interferon inducible protein 10; genomic DNA adult; age; aged; aging; Alzheimer disease; Article; brain level; cognitive defect; cohort analysis; controlled study; CpG island; CXCL10 gene; disease association; DNA methylation; epigenetics; female; heredity; human; human cell; in vitro study; inflammation; major clinical study; male; prefrontal cortex; priority journal; promoter region; single nucleotide polymorphism; transcription regulation; working memory; Alzheimer's disease; Cognitive aging; DNA methylation; Epigenetics; Inflammaging; Neurodegeneration030104 developmental biologyEndocrinologyikääntyminenageinflammationNerve DegenerationCpG islandinflammagingNeurology (clinical)Geriatrics and GerontologyHeLa CellsDevelopmental BiologyNeurobiology of Aging
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Genome-wide association meta-analysis for early age-related macular degeneration highlights novel loci and insights for advanced disease

2020

Abstract Background Advanced age-related macular degeneration (AMD) is a leading cause of blindness. While around half of the genetic contribution to advanced AMD has been uncovered, little is known about the genetic architecture of early AMD. Methods To identify genetic factors for early AMD, we conducted a genome-wide association study (GWAS) meta-analysis (14,034 cases, 91,214 controls, 11 sources of data including the International AMD Genomics Consortium, IAMDGC, and UK Biobank, UKBB). We ascertained early AMD via color fundus photographs by manual grading for 10 sources and via an automated machine learning approach for > 170,000 photographs from UKBB. We searched for early AMD loc…

0301 basic medicinegenetic structures610 MedizinGenome-wide association studyMacular Degeneration0302 clinical medicineAdvanced diseaseCD46Genetics (clinical)GeneticsInternational AMD genomics consortium (IAMDGC)ddc:6100303 health sciencesGenome-wide association study (GWAS)3. Good health030220 oncology & carcinogenesisAge-related macular degeneration (AMD)Meta-analysisResearch ArticleGenetic Markerslcsh:Internal medicineUK biobank (UKBB)lcsh:QH426-470Locus (genetics)GenomicsComputational biologyBiologyPolymorphism Single NucleotideGenome-wide association study (GWAS) Meta-analysis Age-related macular degeneration (AMD) Early AMD CD46 TYR International AMD genomics consortium (IAMDGC) UK biobank (UKBB) Machine-learning Automated phenotyping03 medical and health sciencesEarly AMDGeneticsmedicineHumansGenetic Predisposition to DiseaseGenome-wide Association Study (gwas) ; Meta-analysis ; Age-related Macular Degeneration (amd) ; Early Amd ; Cd46 ; Tyr ; International Amd Genomics Consortium (iamdgc) ; Uk Biobank (ukbb) ; Machine-learning ; Automated Phenotypinglcsh:RC31-1245Machine-learning030304 developmental biologyTYRCD46Macular degenerationmedicine.diseaseHuman geneticseye diseasesGenetic architectureMeta-analysislcsh:Genetics030104 developmental biologyGenetic LociCase-Control StudiesAutomated phenotypingHTRA1030221 ophthalmology & optometrysense organsGenome-Wide Association Study
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2021

Age-related macular degeneration (AMD) is a common irreversible ocular disease characterized by vision impairment among older people. Many risk factors are related to AMD and interact with each other in its pathogenesis. Notably, oxidative stress and choroidal vascular dysfunction were suggested to be critically involved in AMD pathogenesis. In this review, we give an overview on the factors contributing to the pathophysiology of this multifactorial disease and discuss the role of reactive oxygen species and vascular function in more detail. Moreover, we give an overview on therapeutic strategies for patients suffering from AMD.

0301 basic medicinegenetic structuresBioinformaticsmedicine.disease_causeCatalysisInorganic ChemistryPathogenesis03 medical and health sciences0302 clinical medicineAge relatedMedicinePhysical and Theoretical ChemistryOcular diseaseMolecular BiologySpectroscopychemistry.chemical_classificationReactive oxygen speciesbusiness.industryOrganic ChemistryGeneral MedicineMacular degenerationmedicine.diseaseeye diseasesPathophysiologyComputer Science Applications030104 developmental biologychemistry030221 ophthalmology & optometrysense organsVascular functionbusinessOxidative stressInternational Journal of Molecular Sciences
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Cohen Syndrome-Associated Cataract Is Explained by VPS13B Functions in Lens Homeostasis and Is Modified by Additional Genetic Factors

2020

International audience; Purpose: Cohen syndrome (CS) is a rare genetic disorder caused by variants of the VPS13B gene. CS patients are affected with a severe form of retinal dystrophy, and in several cases cataracts also develop. The purpose of this study was to investigate the mechanisms and risk factors for cataract in CS, as well as to report on cataract surgeries in CS patients.Methods: To understand how VPS13B is associated with visual impairments in CS, we generated the Vps13b∆Ex3/∆Ex3 mouse model. Mice from 1 to 3 months of age were followed by ophthalmoscopy and slit-lamp examinations. Phenotypes were investigated by histology, immunohistochemistry, and western blot. Literature anal…

0301 basic medicinegenetic structuresDevelopmental DisabilitiesVesicular Transport Proteins030105 genetics & hereditysurgerygenetic backgroundchemistry.chemical_compoundLensMyopiaHomeostasisMice KnockoutCohen syndrome[SDV.MHEP] Life Sciences [q-bio]/Human health and pathologymedicine.diagnostic_testRetinal DegenerationGenetic disorderinflamma- tionVPS13BcataractKnockout mouseMicrocephalyMuscle Hypotoniamedicine.medical_specialtymouse modelBlotting WesternRetinitisFingersOphthalmoscopy03 medical and health sciencesCataractsIntellectual DisabilityOphthalmologyVPS13BLens CrystallinemedicineAnimalsObesityCohen syndromebusiness.industryfibrosisRetinalgenetic modifiersmedicine.diseaseeye diseasesMice Inbred C57BLDisease Models Animalophthalmology030104 developmental biologyGene Expression RegulationchemistryinflammationRNAsense organsbusiness[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyInvestigative Ophthalmology & Visual Science
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Genome-wide association meta-analysis of corneal curvature identifies novel loci and shared genetic influences across axial length and refractive err…

2020

Corneal curvature, a highly heritable trait, is a key clinical endophenotype for myopia - a major cause of visual impairment and blindness in the world. Here we present a trans-ethnic meta-analysis of corneal curvature GWAS in 44,042 individuals of Caucasian and Asian with replication in 88,218 UK Biobank data. We identified 47 loci (of which 26 are novel), with population-specific signals as well as shared signals across ethnicities. Some identified variants showed precise scaling in corneal curvature and eye elongation (i.e. axial length) to maintain eyes in emmetropia (i.e. HDAC11/FBLN2 rs2630445, RBP3 rs11204213); others exhibited association with myopia with little pleiotropic effects …

0301 basic medicinegenetic structuresMedicine (miscellaneous)EmmetropiaGenome-wide association studyVARIANTSGenome-wide association studiesSensory disorders Donders Center for Medical Neuroscience [Radboudumc 12]Cornea0302 clinical medicineRisk FactorsCorneaDatabases GeneticMULTIPLEMyopiaGene Regulatory NetworksEXPRESSION PATTERNS10. No inequalitylcsh:QH301-705.5POPULATIONGeneticseducation.field_of_studymedicine.diagnostic_testHERITABILITYCorneal DiseasesAsian Continental Ancestry Group ; Axial Length Eye ; Cornea ; Corneal Topography ; Databases Genetic ; European Continental Ancestry Group ; Gene Regulatory Networks ; Genetic Loci ; Genetic Predisposition to Disease ; Genome-Wide Association Study ; Humans ; Myopia ; Phenotype ; Polymorphism Single Nucleotide ; Refractometry ; Risk Assessment ; Risk FactorsCorneal topographyEYE SIZE3. Good healthAxial Length EyePhenotypemedicine.anatomical_structureGeneral Agricultural and Biological SciencesExtracellular matrix organizationKeratoconusCorneal diseasesPopulationBiologyPolymorphism Single NucleotideRisk AssessmentArticleWhite PeopleGeneral Biochemistry Genetics and Molecular BiologyOCULAR COMPONENT DIMENSIONS03 medical and health sciencesSPHERICAL EQUIVALENTAsian PeoplemedicineHumansGenetic Predisposition to DiseaseKERATOCONUS3125 Otorhinolaryngology ophthalmologyeducationCorneal Topographymedicine.diseaseCOLLAGENeye diseasesRefractometry030104 developmental biologylcsh:Biology (General)Genetic LociRE3111 Biomedicinesense organs030217 neurology & neurosurgeryGenome-Wide Association StudyCommunications Biology
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Quantitative Assessment of Eye Phenotypes for Functional Genetic Studies Using Drosophila melanogaster

2016

AbstractAbout two-thirds of the vital genes in the Drosophila genome are involved in eye development, making the fly eye an excellent genetic system to study cellular function and development, neurodevelopment/degeneration, and complex diseases such as cancer and diabetes. We developed a novel computational method, implemented as Flynotyper software (http://flynotyper.sourceforge.net), to quantitatively assess the morphological defects in the Drosophila eye resulting from genetic alterations affecting basic cellular and developmental processes. Flynotyper utilizes a series of image processing operations to automatically detect the fly eye and the individual ommatidium, and calculates a phen…

0301 basic medicinegenetic structuresNeurogenesisComputational biologyInvestigationsQH426-470EyeAnimals Genetically Modified03 medical and health sciences0302 clinical medicineOmmatidiumGeneticsAnimalsDrosophila Proteinshuman disease modelsEnhancerMolecular BiologyGeneGenetics (clinical)Genetic Association StudiesGeneticsGene knockdownbiologyModels Geneticneurodevelopmental disordersReproducibility of Resultsbiology.organism_classificationommatidiaPhenotypeeye diseases030104 developmental biologyPhenotypeDrosophila melanogastermodifier screensrough eyeGene Knockdown TechniquesEye developmentsense organsDrosophila melanogaster030217 neurology & neurosurgeryDrosophila ProteinFunction (biology)AlgorithmsG3: Genes, Genomes, Genetics
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