Search results for " Benign Neonatal"

showing 4 items of 4 documents

A novel mutation in KCNQ3-related benign familial neonatal epilepsy: electroclinical features and neurodevelopmental outcome.

2019

Benign familial neonatal epilepsy (BFNE) is caused, in about 5% of families, by mutations in the KCNQ3 gene encoding voltage-gated potassium channel subunits. Usually, newborns with BFNE show a normal neurological outcome, but recently, refractory seizures and/or developmental disability have been reported suggesting phenotype variability associated with KCNQ3-related BFNE. Here, we describe a proband from a BFNE family carrying a novel variant in the KCNQ3 gene. Regarding the paucity of data in the literature, we describe the presented case with a view to further establishing: (1) a genotype/phenotype correlation in order to define a BFNE phenotype associated with favourable outcome; (2) a…

MaleGenotypeelectroclinical featureInfantElectroencephalographygenotype-phenotype correlationSettore MED/39 - Neuropsichiatria InfantileEpilepsy Benign NeonatalKCNQ3 Potassium ChannelKCNQSettore MED/38 - Pediatria Generale E SpecialisticaPhenotypevoltage-gated potassium channelsSettore M-PSI/08 - Psicologia ClinicaHumansbenign familial neonatal epilepsyEpileptic SyndromesEpileptic disorders : international epilepsy journal with videotape
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No evidence of ATP1A2 involvement in 12 multiplex Italian families with benign familial infantile seizures

2005

A missense mutation in the gene encoding the alpha(2) Subunit of the Na+,K+ ATPase pump (ATP1A2) was found in a family with both familial hemiplegic migraine (FHM) and Benign Familial Infantile Seizures (BFIC). As it is still unclear whether ATP1A2 is responsible for pure BFIC syndromes, we checked mutations of the ATP1A2 gene in probands of 12 Italian multiplex families with pure BFIC, who were negative for mutations in the SCN2A gene. We screened the ATP1A2 gene by denaturing high performance liquid chromatography (D-HPLC) and direct sequencing of DNA fragments showing an aberrant elution pattern. We found one exonic variant and five intronic variants, none leading to significant amino ac…

ProbandBenign NeonatalMigraine DisordersMutation MissenseBenign familial infantile convulsionsBiologymedicine.disease_causeDenaturing high performance liquid chromatographyBenign familial infantile convulsions; Epilepsy; Familial hemiplegic migraine; Genetics; Epilepsy Benign Neonatal; Exons; Family Health; Humans; Infant; Introns; Italy; Migraine Disorders; Sodium-Potassium-Exchanging ATPase; Mutation MissenseExonATP1A2GeneticsmedicineHumansMissense mutationGeneFamilial hemiplegic migraineFamilial hemiplegic migraineFamily HealthGeneticsMutationEpilepsyGeneral NeuroscienceInfantExonsmedicine.diseaseEpilepsy Benign NeonatalIntronsItalyMutationBenign familial infantile convulsionMissenseSodium-Potassium-Exchanging ATPaseNeuroscience Letters
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Linkage analysis and disease models in benign familial infantile seizures: a study of 16 families.

2006

Summary: Purpose: Benign familial infantile seizures (BFIS) is a genetically heterogeneous condition characterized by partial seizures, onset age from 3 to 9 months, and favorable outcome. BFIS loci were identified on chromosomes 19q12-13.1 and 16p12-q12, allelic to infantile convulsions and choreathetosis. The identification of SCN2A mutations in families with only infantile seizures indicated that BFNIS and BFIS may show overlapping clinical features. Infantile seizures also were in a family with familial hemiplegic migraine and mutations in the ATP1A2 gene. We have examined the heterogeneous genetics of BFIS by means of linkage analysis. Methods: Sixteen families were examined. Probands …

ProbandMaleGenetic LinkagePenetranceEpilepsyModelsgeneticsTomographyFamilial hemiplegic migraineGeneticsNeurologic ExaminationBrainChromosome MappingElectroencephalographyPenetranceMagnetic Resonance Imagingstatistics /&/ numerical dataPedigreeX-Ray ComputedNeurologyFemaleHumanmedicine.medical_specialtyBenign NeonatalBrain; pathology/radiography Chromosome Mapping Chromosomes; Human; Pair 16; genetics Chromosomes; Pair 19; genetics Electroencephalography; statistics /&/ numerical data Epilepsy; Benign Neonatal; diagnosis/genetics Family Female Genetic Heterogeneity Genetic Linkage Haplotypes Humans Magnetic Resonance Imaging Male Models; Genetic Mutation; genetics Neurologic Examination Pedigree Penetrance Tomography; X-Ray Computedpathology/radiographyChromosomesGenetic HeterogeneityGeneticGenetic linkageFebrile seizureGenetic modelmedicineHumansFamilyPsychiatryEpilepsyModels GeneticPair 19Genetic heterogeneitybusiness.industryPair 16medicine.diseaseEpilepsy Benign NeonatalHaplotypesMutationNeurology (clinical)Tomography X-Ray ComputedbusinessChromosomes Human Pair 19Chromosomes Human Pair 16diagnosis/genetics
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Benign familial infantile epilepsy associated with KCNQ3 mutation: a rare occurrence or an underestimated event?

2020

Abstract Benign familial infantile epilepsy (BFIE) is the most genetically heterogeneous phenotype among early-onset familial infantile epilepsies. It has an autosomal dominant inheritance pattern with incomplete penetrance. Although PRRT2 is the most mutated gene detected in families with BFIE, other mutations in KCNQ2, SCN2A, and GABRA6 genes have also been described. To date, KCNQ3 mutations have been detected in only four patients with BFIE. Here, we describe the clinical pattern and course of an additional individual with BFIE associated with a novel missense heterozygous KCNQ3 c.1850G>C variant inherited by his unaffected father. The incidence of KCNQ3 mutations among BFIE patients…

MaleGABRA6Mutation Missensemedicine.disease_causeKCNQ3 Potassium ChannelEpilepsymutation.medicineHumansMissense mutationBFIEGeneticsBenign familial infantile epilepsyMutationKCNQ3biologybusiness.industryGenetic heterogeneityInfantGeneral Medicinemedicine.diseasePenetranceEpilepsy Benign NeonatalNeurologybenign familial infantile epilepsybiology.proteinincidenceNeurology (clinical)businessPRRT2
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