0000000000313331

AUTHOR

Konrad Oexle

0000-0001-7447-2252

showing 11 related works from this author

Genome-wide meta-analyses of multiancestry cohorts identify multiple new susceptibility loci for refractive error and myopia

2013

Author version made available in accordance with the publisher's policy.

Candidate geneRefractive errorBone Morphogenetic Protein 2Genome-wide association studyVARIANTSGenomeGenome-wide association studies0302 clinical medicineRisk FactorsMyopiaGRIA4Genetics0303 health sciencesKCNQ Potassium ChannelsDisease geneticsEYE GROWTHASSOCIATIONRETINAL-PIGMENT EPITHELIUMRefractive ErrorsGenetic load3. Good healthADAPTED MOUSE RETINAMeta-analysisACIDPOTASSIUM CHANNELEXPRESSIONSingle-nucleotide polymorphismBiologyWhite PeopleArticle03 medical and health sciencesAsian PeoplemedicineGeneticsHumansGenetic Predisposition to DiseaseReceptors AMPAgene; myopia; refractive030304 developmental biologyHomeodomain Proteinsta1184ta3121medicine.diseaseGENEAlcohol OxidoreductasesSERINE-PROTEASEbiology.protein030221 ophthalmology & optometrySusceptibility locusTrans-ActivatorsEye disorderLamininSerine ProteasesGWAS; meta-analyses; refractive error; myopiaGenome-Wide Association StudyNature Genetics
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Nine Loci for Ocular Axial Length Identified through Genome-wide Association Studies, Including Shared Loci with Refractive Error

2013

Refractive errors are common eye disorders of public health importance worldwide. Ocular axial length (AL) is the major determinant of refraction and thus of myopia and hyperopia. We conducted a meta-analysis of genome-wide association studies for AL, combining 12,531 Europeans and 8,216 Asians. We identified eight genome-wide significant loci for AL (RSPO1, C3orf26, LAMA2, GJD2, ZNRF3, CD55, MIP, and ALPPL2) and confirmed one previously reported AL locus (ZC3H11B). Of the nine loci, five (LAMA2, GJD2, CD55, ALPPL2, and ZC3H11B) were associated with refraction in 18 independent cohorts (n = 23,591). Differential gene expression was observed for these loci in minus-lens-induced myopia mouse …

AdultMaleRefractive errorAdolescentGene ExpressionLocus (genetics)Genome-wide association studyBiologyOcular Axial LengthPolymorphism Single NucleotideWhite PeopleArticle03 medical and health sciences0302 clinical medicineAsian PeopleSDG 3 - Good Health and Well-beingmedicineGeneticsHumansGWASGenetic Predisposition to DiseaseGenetics(clinical)RSPO1Eye ProteinsGeneGenetics (clinical)030304 developmental biologyGenetic associationAgedGenetics0303 health sciencesta1184HeritabilityMiddle Agedta3121medicine.diseaseRefractive ErrorsAxial Length EyeGenetic Loci030221 ophthalmology & optometryEye disorderFemaleGenome-Wide Association StudySignal Transduction
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Meta-analysis of gene-environment-wide association scans accounting for education level identifies additional loci for refractive error

2016

Myopia is the most common human eye disorder and it results from complex genetic and environmental causes. The rapidly increasing prevalence of myopia poses a major public health challenge. Here, the CREAM consortium performs a joint meta-analysis to test single-nucleotide polymorphism (SNP) main effects and SNP × education interaction effects on refractive error in 40,036 adults from 25 studies of European ancestry and 10,315 adults from 9 studies of Asian ancestry. In European ancestry individuals, we identify six novel loci (FAM150B-ACP1, LINC00340, FBN1, DIS3L-MAP2K1, ARID2-SNAT1 and SLC14A2) associated with refractive error. In Asian populations, three genome-wide significant loci AREG…

0301 basic medicineRefractive errorgenetic structuresGeneral Physics and AstronomyGenome-wide association studyVARIANTSrefractive error ; geneEYEBioinformaticsINCIDENT MYOPIAGenome-wide association studiesSensory disorders Donders Center for Medical Neuroscience [Radboudumc 12]0302 clinical medicinePolymorphism (computer science)10. No inequalityPOPULATIONeducation.field_of_studyMultidisciplinaryQACTIVATED PROTEIN-KINASEta3142single-nucleotide polymorphismRETINAL-PIGMENT EPITHELIUMOUTDOOR ACTIVITY3142 Public health care science environmental and occupational health3. Good healthRefractive errorsMeta-analysislociEducational StatusSciencePopulation610 Medicine & healthEnvironmentBiologyta3111Polymorphism Single NucleotideArticleWhite PeopleGeneral Biochemistry Genetics and Molecular BiologyEducation03 medical and health sciencesAsian PeopleSDG 3 - Good Health and Well-beingGenetic variationmedicineHumansSNPGenetic Predisposition to Diseasemyopia3125 Otorhinolaryngology ophthalmologyGenetic variationeducationRECEPTORGene Expression Profilingta1184General ChemistryHeritabilitymedicine.diseaseeye diseasesta3125TIME OUTDOORS030104 developmental biologyGenetic LociEvolutionary biologyRISK-FACTORS030221 ophthalmology & optometryREsense organs3111 BiomedicineGenome-Wide Association StudyNature Communications
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Leigh syndrome due to compound heterozygosity of dihydrolipoamide dehydrogenase gene mutations. Description of the first E3 splice site mutation.

2003

Item does not contain fulltext A boy with recurrent episodes of hypoglycaemia and ataxia, microcephaly, mental retardation, permanent lactic acidaemia, intermittent 2-oxoglutaric aciduria as well as elevation of serum branched chain amino acids was diagnosed with dihydrolipoamide dehydrogenase (E3) deficiency. Analysis of genomic DNA revealed compound heterozygosity for two novel mutations: I393T in exon 11, located at the interface domain of the protein and possibly interfering with its dimerisation, and IVS9+1G>A located at a consensus splice site. A heterozygous polymorphism was also detected. In the patient's cDNA the I393T mutation and the polymorphism appeared to be homozygous, indica…

MaleHeterozygoteMutation MissensePyruvate Dehydrogenase ComplexGene mutationBiologyCompound heterozygosityLoss of heterozygositymedicineHumansLeigh diseaseMuscle SkeletalDihydrolipoamide DehydrogenaseGeneticsSplice site mutationDihydrolipoamide dehydrogenasePyruvate Dehydrogenase (Lipoamide)Fibroblastsmedicine.diseasePyruvate dehydrogenase complexRenal disorders [UMCN 5.4]Genetic defects of metabolism [UMCN 5.1]Child PreschoolPediatrics Perinatology and Child HealthRNA Splice SitesLeigh DiseaseCellular energy metabolism [UMCN 5.3]
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Large scale international replication and meta-analysis study confirms association of the 15q14 locus with myopia. The CREAM consortium.

2012

Myopia is a complex genetic disorder and a common cause of visual impairment among working age adults. Genome-wide association studies have identified susceptibility loci on chromosomes 15q14 and 15q25 in Caucasian populations of European ancestry. Here, we present a confirmation and meta-analysis study in which we assessed whether these two loci are also associated with myopia in other populations. The study population comprised 31 cohorts from the Consortium of Refractive Error and Myopia (CREAM) representing 4 different continents with 55,177 individuals; 42,845 Caucasians and 12,332 Asians. We performed a meta-analysis of 14 single nucleotide polymorphisms (SNPs) on 15q14 and 5 SNPs on …

PopulationLocus (genetics)Genome-wide association studySingle-nucleotide polymorphismBiologyPolymorphism Single Nucleotide03 medical and health sciences0302 clinical medicineMyopiaGeneticsHumansSNPGenetics(clinical)AlleleeducationAllelesGenetics (clinical)Original Investigation030304 developmental biologyGenetic associationGeneticsChromosomes Human Pair 150303 health scienceseducation.field_of_study3. Good healthPhenotype030221 ophthalmology & optometryPopulation studyRE
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Genome-wide association study for refractive astigmatism reveals genetic co-determination with spherical equivalent refractive error: the CREAM conso…

2015

To identify genetic variants associated with refractive astigmatism in the general population, meta-analyses of genome-wide association studies were performed for: White Europeans aged at least 25 years (20 cohorts, N = 31,968); Asian subjects aged at least 25 years (7 cohorts, N = 9,295); White Europeans aged <25 years (4 cohorts, N = 5,640); and all independent individuals from the above three samples combined with a sample of Chinese subjects aged <25 years (N = 45,931). Participants were classified as cases with refractive astigmatism if the average cylinder power in their two eyes was at least 1.00 diopter and as controls otherwise. Genome-wide association analysis was carried out for …

MaleRefractive errorBLUE MOUNTAINS EYECORNEAL ASTIGMATISMSpherical equivalentGenome-wide association studyastigmatism; gene; SNPDISEASECohort Studies0302 clinical medicineStatisticsGenetics(clinical)Neural Cell Adhesion MoleculesPOPULATIONGenetics (clinical)Original InvestigationGenetics0303 health scienceseducation.field_of_studyAge FactorsHigh Mobility Group ProteinsMiddle Aged3142 Public health care science environmental and occupational health3. Good healthFemaleOPEN-ANGLE GLAUCOMAAdultGenetic MarkersEXPERIMENTALLY-INDUCED MYOPIAKeratoconusSUSCEPTIBILITY LOCICell Adhesion Molecules NeuronaleducationPopulationNerve Tissue ProteinsAstigmatismBiologyWhite People03 medical and health sciencesAGEAsian PeopleMAJOR LOCUSmedicineGeneticsHumans3125 Otorhinolaryngology ophthalmologyeducation030304 developmental biologyGenetic associationCalcium-Binding ProteinsAstigmatismHeritabilitymedicine.diseaseNONCODING RNAS030221 ophthalmology & optometryGenome-Wide Association Study
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Mutations in the skeletal muscle alpha-actin gene in patients with actin myopathy and nemaline myopathy

1999

Muscle contraction results from the force generated between the thin filament protein actin and the thick filament protein myosin, which causes the thick and thin muscle filaments to slide past each other. There are skeletal muscle, cardiac muscle, smooth muscle and non-muscle isoforms of both actin and myosin. Inherited diseases in humans have been associated with defects in cardiac actin (dilated cardiomyopathy and hypertrophic cardiomyopathy), cardiac myosin (hypertrophic cardiomyopathy) and non-muscle myosin (deafness). Here we report that mutations in the human skeletal muscle alpha-actin gene (ACTA1) are associated with two different muscle diseases, 'congenital myopathy with excess o…

AdultMalemedicine.medical_specialtyMyofilamentAdolescentDNA Mutational AnalysisMolecular Sequence Datamacromolecular substancesBiologyMyopathies NemalineTPM203 medical and health sciences0302 clinical medicineNemaline myopathyMuscular DiseasesInternal medicineMyosinGeneticsmedicineHumansPoint MutationAmino Acid SequenceChildMuscle SkeletalPolymorphism Single-Stranded ConformationalActin030304 developmental biologyFamily Health0303 health sciencesPolymorphism GeneticBase SequenceSequence Homology Amino AcidInfantSkeletal muscleDNASequence Analysis DNAmedicine.diseaseCongenital myopathyActins3. Good healthEndocrinologymedicine.anatomical_structureAmino Acid SubstitutionChild PreschoolMutationFemaleMYH7030217 neurology & neurosurgery
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Prevalence of Age-Related Macular Degeneration in Europe

2017

Manuscript no. 2016-1147 Supplemental material is available at www.aaojournal.org/; International audience; [u]Purpose:[/u] Age-related macular degeneration (AMD) is a frequent, complex disorder in elderly of European ancestry. Risk profiles and treatment options have changed considerably over the years, which may have affected disease prevalence and outcome. We determined the prevalence of early and late AMD in Europe from 1990 to 2013 using the European Eye Epidemiology (E3) consortium, and made projections for the future. [u]Design:[/u] Meta-analysis of prevalence data. [u]Participants:[/u] A total of 42 080 individuals 40 years of age and older participating in 14 population-based cohor…

0301 basic medicinemedicine.medical_specialtyVisual acuityOPTICAL COHERENCE TOMOGRAPHYMACULOPATHYgenetic structuresPopulationPrevalenceHEART-DISEASEchoroidal neovascularizationSensory disorders Donders Center for Medical Neuroscience [Radboudumc 12]03 medical and health sciencesRotterdam Study0302 clinical medicineAll institutes and research themes of the Radboud University Medical CenterBEAVER DAM EYEEpidemiologygeographic atrophymedicineVISUAL IMPAIRMENT[SDV.MHEP.OS]Life Sciences [q-bio]/Human health and pathology/Sensory OrganseducationPOPULATIONeducation.field_of_studyBIRTH COHORTbusiness.industryMacular degenerationmedicine.diseaseTRENDSConfidence intervaleye diseases3. Good healthEuropean Prospective Investigation into Cancer and NutritionOphthalmology030104 developmental biologyAge-related Macular DegenerationENDOTHELIAL GROWTH-FACTORBLINDNESS030221 ophthalmology & optometryOptometryAge-related Macular Degeneration choroidal neovascularization geographic atrophysense organsmedicine.symptombusiness[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyDemography
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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 …

genetic structureslikinäköisyyssense organsgeneettiset tekijäteye diseases
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Childhood gene-environment interactions and age-dependent effects of genetic variants associated with refractive error and myopia: The CREAM Consorti…

2018

Myopia, currently at epidemic levels in East Asia, is a leading cause of untreatable visual impairment. Genome-wide association studies (GWAS) in adults have identified 39 loci associated with refractive error and myopia. Here, the age-of-onset of association between genetic variants at these 39 loci and refractive error was investigated in 5200 children assessed longitudinally across ages 7-15 years, along with gene-environment interactions involving the major environmental risk-factors, nearwork and time outdoors. Specific variants could be categorized as showing evidence of: (a) early-onset effects remaining stable through childhood, (b) early-onset effects that progressed further with i…

MaleAdolescentRefractive ErrorsPolymorphism Single NucleotideArticleWhite PeopleAsian PeopleMyopiaHumansFemaleGene-Environment InteractionGenetic Predisposition to DiseaseLongitudinal StudiesAge of OnsetChildGenome-Wide Association Study
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Rare variant analyses across multiethnic cohorts identify novel genes for refractive error

2023

Refractive error, measured here as mean spherical equivalent (SER), is a complex eye condition caused by both genetic and environmental factors. Individuals with strong positive or negative values of SER require spectacles or other approaches for vision correction. Common genetic risk factors have been identified by genome-wide association studies (GWAS), but a great part of the refractive error heritability is still missing. Some of this heritability may be explained by rare variants (minor allele frequency [MAF] ≤ 0.01.). We performed multiple gene-based association tests of mean Spherical Equivalent with rare variants in exome array data from the Consortium for Refractive Error and Myopi…

genetic predisposition to diseaseperinnölliset tauditympäristötekijättaittovirheetperinnöllisyyslääketiederiskitekijätquantitative traitperiytyvyysgenome-wide association studiesquantitative trait lociperimäsilmätauditmicroarraysperinnöllisyys
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