Search results for "Microphthalmos"

showing 6 items of 6 documents

Maternal Inheritance of a Recessive RBP4 Defect in Canine Congenital Eye Disease

2018

SUMMARY Maternally skewed transmission of traits has been associated with genomic imprinting and oocyte-derived mRNA. We report canine congenital eye malformations, caused by an amino acid deletion (K12del) near the N terminus of retinol-binding protein (RBP4). The disease is only expressed when both dam and offspring are deletion homozygotes. RBP carries vitamin A (retinol) from hepatic stores to peripheral tissues, including the placenta and developing eye, where it is required to synthesize retinoic acid. Gestational vitamin A deficiency is a known risk factor for ocular birth defects. The K12del mutation disrupts RBP folding in vivo, decreasing its secretion from hepatocytes to serum. T…

0301 basic medicineMaleNon-Mendelian inheritanceProtein Foldingcongenital eye defectEye Diseasesgenetic structuresNATIVE DISULFIDE BONDSMedical PhysiologyRetinoic acidReproductive health and childbirth413 Veterinary scienceMicrophthalmiavitamin Achemistry.chemical_compoundPlasmaA-vitamiini2.1 Biological and endogenous factorsMicrophthalmosPrealbuminCRYSTAL-STRUCTUREAetiologyBase Pairinglcsh:QH301-705.5Sequence DeletionPediatricwhole genome sequencingVITAMIN-A-DEFICIENCYANOPHTHALMIAPenetrancePedigreemedicine.anatomical_structurePhenotypeFemalemedicine.medical_specialtyGenotypeENDOPLASMIC-RETICULUMGenes RecessiveMETABOLISMBiologyGeneral Biochemistry Genetics and Molecular BiologyArticle03 medical and health sciencesDogscanine geneticsInternal medicinePlacentaRETINOL-BINDING-PROTEINGeneticsmedicineAnimalsHumansRecessiveMALFORMATIONSBIOCHEMICAL BASISAmino Acid SequenceAlleleEye Disease and Disorders of VisionNutritiongenome-wide association study030102 biochemistry & molecular biologywestern blottingMUTATIONSta1184RBP4maternal inheritancemedicine.diseaseRetinol-Binding ProteinsRetinol binding proteinnuclear magnetic resonance030104 developmental biologyEndocrinologychemistryGeneslcsh:Biology (General)microphthalmiaGenetic LociHela Cells1182 Biochemistry cell and molecular biologyCongenital Structural Anomalies3111 BiomedicineBiochemistry and Cell BiologyDigestive DiseasesGenomic imprintingRetinol-Binding Proteins PlasmaHeLa Cells
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A two base pair deletion in the PQBP1 gene is associated with microphthalmia, microcephaly, and mental retardation.

2007

X-linked mental retardation has been traditionally divided into syndromic (S-XLMR) and non-syndromic forms (NS-XLMR), although the borderlines between these phenotypes begin to vanish and mutations in a single gene, for example PQBP1, can cause S-XLMR as well as NS-XLMR. Here, we report two maternal cousins with an apparently X-linked phenotype of mental retardation (MR), microphthalmia, choroid coloboma, microcephaly, renal hypoplasia, and spastic paraplegia. By multipoint linkage analysis with markers spanning the entire X-chromosome we mapped the disease locus to a 28-Mb interval between Xp11.4 and Xq12, including the BCOR gene. A missense mutation in BCOR was described in a family with …

AdultMaleMicrocephalycongenital hereditary and neonatal diseases and abnormalitiesGermline mosaicismLocus (genetics)BiologyMicrophthalmiaFrameshift mutationGenetic linkageGenes X-LinkedIntellectual DisabilityGeneticsmedicineMissense mutationHumansMicrophthalmosAbnormalities MultipleFrameshift MutationGenetics (clinical)GeneticsChromosomes Human XNuclear ProteinsGenetic Diseases X-LinkedSyndromemedicine.diseasePedigreeLenz microphthalmia syndromeDNA-Binding ProteinsChild PreschoolMicrocephalyFemaleCarrier ProteinsGene DeletionEuropean journal of human genetics : EJHG
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ALDH1A3 Mutations Cause Recessive Anophthalmia and Microphthalmia

2013

Anophthalmia and microphthalmia (A/M) are early-eye-development anomalies resulting in absent or small ocular globes, respectively. A/M anomalies occur in syndromic or nonsyndromic forms. They are genetically heterogeneous, some mutations in some genes being responsible for both anophthalmia and microphthalmia. Using a combination of homozygosity mapping, exome sequencing, and Sanger sequencing, we identified homozygosity for one splice-site and two missense mutations in the gene encoding the A3 isoform of the aldehyde dehydrogenase 1 (ALDH1A3) in three consanguineous families segregating A/M with occasional orbital cystic, neurological, and cardiac anomalies. ALDH1A3 is a key enzyme in the…

MaleGenetic LinkageRetinoic acidGenes RecessiveBiologymedicine.disease_causeMicrophthalmiachemistry.chemical_compoundsymbols.namesakeChromosome SegregationReportmedicineGeneticsFood and NutritionHumansMicrophthalmosMissense mutationGenetics(clinical)Genetics (clinical)Exome sequencingSanger sequencingGeneticsMutationAnophthalmiaHomozygoteAnophthalmosExonsSequence Analysis DNAAldehyde DehydrogenaseDisease gene identificationmedicine.diseaseAldehyde OxidoreductasesMolecular biologyIntronseye diseasesPedigreeHEK293 CellschemistryAlimentation et NutritionMutationsymbolsFemaleMutant Proteinssense organsThe American Journal of Human Genetics
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Childhood microphthalmic neurofibromatosis.

1989

We present an atypical case of neurofibromatosis marked by young age at onset, rapid invasiveness of the tumor, the presence of curious autonomic symptoms, cranial malformation and congenital microphthalmus, a combination that suggests a new syndrome, which might be called childhood microphthalmic neurofibromatosis.

Malemedicine.medical_specialtyPediatricsNeurologyNeurofibromatosis 1AdolescentGeneral NeuroscienceDermatologyGeneral MedicineSyndromemedicine.diseaseMagnetic Resonance ImagingDevelopmental psychologyPsychiatry and Mental healthYoung agemedicineAutonomic symptomsHumansMicrophthalmosNeurology (clinical)NeurosurgeryNeurofibromatosisPsychologyNeuroradiologyItalian journal of neurological sciences
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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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Microphthalmia, persistent hyperplastic hyaloid vasculature and lens anomalies following overexpression of VEGF-A188 from the αA-crystallin promoter

2007

Purpose During growth of the embryonic eye, dose- and site-specific expression of heparin-binding growth factors is critical for the formation of an appropriate vascular supply. Overexpression of vascular endothelial growth factor-A188 (VEGF-A188), a strongly heparin-binding, endothelial-specific mitogen, leads to severe disturbance of vascular and overall ocular morphology. This study aimed to evaluate the effects of VEGF-A188 overexpression on growth of ocular tissue components. Methods Stereological and immunohistochemical methods were employed to identify the vascular profiles, ocular tissue proportions, and cell types in VEGF-A188 transgenic mice and compare them with wild-type mice. R…

Vascular Endothelial Growth Factor Agenetic structuresMyocytes Smooth MuscleCell CountMice TransgenicEyealpha-Crystallin A ChainCongenital AbnormalitiesCorneaMiceLens CrystallineAnimalsMicrophthalmosVascular DiseasesPromoter Regions GeneticHyperplasiaEndothelial CellsHypertrophyEmbryo MammalianAntigens DifferentiationImmunohistochemistryeye diseasesActinsDisease Models AnimalAnimals NewbornBlood Vesselssense organsPericytesHeparan Sulfate ProteoglycansResearch ArticleMolecular Vision
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